Claims
- 1. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven fiber feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element a nipping zone forming a passage for the mass of fiber material;
- said nipping zone having a predeterminate substantially constant and essentially invariable size during detection of density variations of the received mass of fiber material passing through said nipping zone;
- means coacting with one of said elements conjointly forming said nipping zone for generating measuring signals representative of density variations of the received mass of fiber material passing through the nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine; and
- control means for processing at least the generated signals representative of the density variations of the received mass of fiber material passing through said nipping zone, and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density.
- 2. The apparatus as defined in claim 1, further including:
- drive means for driving the driven fiber feed roll element; and
- said control means controlling the driving of the driven fiber feed roll element.
- 3. The apparatus as defined in claim 1, further including:
- means for generating at least one signal representative of a predeterminate desired density of the processed fiber material at the outlet side of the textile machine; and
- said control means processing said at least one signal representative of a predeterminate desired density of the processed fiber material at the outlet side of the textile machine together with said generated signals representative of the density variations of the received mass of fiber material passing through said nipping zone, and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain the control signals for producing at the outlet said of the textile machine processed fiber material of essentially uniform density.
- 4. The apparatus as defined in claim 1, wherein:
- said fiber infeed means comprises at least one feed plate defining said at least one fiber infeed element;
- said at least one feed plate being stationary at least during detection of density variations of the mass of fiber material passing through the nipping zone; and
- said driven fiber feed roll element comprises a movable feed roll positionally movable from a starting position into an operating position during operation of the fiber infeed means and during detecting the density variations of the received mass of fiber material passing through said nipping zone.
- 5. The apparatus as defined in claim 4, further including:
- adjustable stop means for bearing against the positionally movable feed roll when the feed roll is moved to the operating position.
- 6. The apparatus as defined in claim 1, further including:
- means defining an abutment, one of said elements and said abutment conjointly forming said nipping zone, said one of said elements being positioned for bearing against said abutment when moved into contacting relationship during operation of the fiber infeed means, said means for generating signals at said nipping zone thereby generating signals representative of a force generated by said one of said elements bearing against said abutment for thereby detecting said density variations of the mass of fiber material passing through said nipping zone.
- 7. The apparatus as defined in claim 6, wherein:
- said fiber infeed element being movable into contact with said abutment comprises a feed plate.
- 8. The apparatus as defined in claim 3, wherein:
- said means defining said abutment comprises adjustable stop means.
- 9. The apparatus as defined in claim 5, wherein:
- said at least one adjustable stop means comprises adjustable screw means.
- 10. The apparatus as defined in claim 6, wherein:
- said fiber infeed element comprises a fiber feed plate;
- means for pivotably mounting said fiber feed plate for pivotal motion about a pivot axis; and
- said means defining said abutment comprises at least one adjustable stop means for bearing against the fiber feed plate during operation of the fiber infeed means, the fiber feed plate thereby bounding one side of said nipping zone.
- 11. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven fiber feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- said at least one fiber infeed element comprising a counter roll cooperating with said driven fiber feed roll element;
- means for pivotably mounting said counter roll for pivotal motion about a pivot axis; and
- adjustable stop means limiting the pivotal motion of the counter roll for setting a predeterminate size of the essentially invariable size nipping zone.
- 12. The apparatus as defined in claim 10, further including:
- means defining an abutment, said counter roll bearing against said abutment when said counter roll is moved into contacting relationship during operation of the fiber infeed means to detect density variations of the mass of fiber material;
- said means for generating said measuring signals comprises at least one force measuring unit;
- said at least one force measuring unit comprising at least one force measuring cell operatively coacting with said means defining said abutment and determining forces generated in the nipping zone by the action of the mass of fiber material therein; and
- said determined forces being generated at said means defining said abutment and thereby to said at least one force measuring cell for generating, as said measuring signals, electrical signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone.
- 13. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- said fiber infeed element comprising a fiber feed plate;
- means for pivotably mounting said fiber feed plate for pivotal motion about a pivot axis;
- means defining an abutment, the fiber feed plate bearing against said abutment during operation of the fiber infeed means, the fiber feed plate thereby bonding the nipping zone at one side thereof;
- said means for delivering said measuring signals comprise two strain gauge means;
- each of said strain gauge means being mounted at a predeterminate part of said means for pivotably mounting said fiber feed plate;
- said two strain gauge means being arranged in spaced relationship with respect to one another; and
- said two strain gauge means detecting shear forces arising at said means for pivotably mounting the feed plate by virtue of the action of the forces of the movement of the mass of fiber material in the nipping zone upon the fiber feed plate and delivering as said measuring signals electrical signals representative of the density variations of the mass of fiber material passing through the nipping zone.
- 14. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the mass of fiber material passing through the nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- means defining an abutment, said one of said elements being positioned for bearing against said abutment when moved into contacting relationship during operation of the fiber infeed means, said means for generating signals at said nipping zone thereby generating signals representative of a force generated by said one of said elements bearing against said abutment for thereby detecting said density variations of the mass of fiber material passing through said nipping zone;
- said means for generating said measuring signals comprising at least one force measuring unit;
- said at least one force measuring unit comprising at least one force measuring cell operatively coacting with said means defining said abutment and determining forces generated in the nipping zone by the action of the mass of fiber material therein; and
- said determined forces being generated at said means defining said abutment and thereby to said at least one force measuring cell for generating, as said measuring signals, electrical signals representative of the density of variations of the throughpassing mass of fiber material in the nipping zone.
- 15. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- means defining an abutment, said one of said elements being positioned for bearing against said abutment when moved into contacting relationship during operation of the fiber infeed means, said means for generating signals at said nipping zone thereby generating signals representative of a force generated by said one of said elements bearing against said abutment for thereby detecting said density variations of the mass of fiber material passing through said nipping zone;
- said one element movable into contact with said abutment comprising a feed plate defining the fiber infeed element of the fiber infeed means;
- said means for generating said measuring signals comprising at least one force measuring unit;
- said feed plate comprising groove means;
- said at least one force measuring unit being mounted essentially free of play in said groove means; and
- the mass of fiber material in the nipping zone producing forces transmittable in a substantially predeterminate amount of the force measuring unit thus producing as the measuring signals electrical signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone.
- 16. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- said fiber infeed means comprising at least one feed plate defining said at least one fiber infeed element;
- said at least one feed plate being stationary at least during detection of density variations of the mass of fiber material located in the nipping zone;
- said drive fiber feed roll element comprising a movable feed roll movable from a starting position into an operating position during operation of the fiber infeed means for detecting the density variations of the throughpassing mass of fiber material;
- said means for generating said measuring signals comprising at least one for measuring unit;
- said feed plate comprising groove means;
- said at least one force measuring unit being mounted essentially free of play in said groove means; and
- the mass of fiber material in the nipping zone producing forces which are transmitted in a substantially predeterminate amount to the force measuring unit thus producing, as the measuring signals, electrical signals representative of the density variations of the throughpassing means of fiber material in the nipping zone.
- 17. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- means defining an abutment, said one of said elements being positioned for bearing against said abutment when moved into contacting relationship during operation of the fiber infeed means, said means for generating signals at said nipping zone thereby generating signals representative of a force generated by said one of said elements bearing against said abutment for thereby detecting said density variations of the mass of fiber material passing through said nipping zone;
- said means for delivering said measuring signals comprising at least two force measuring units;
- said one element movable into contact with said abutment comprises a feed plate of the fiber infeed element of the fiber infeed means;
- said feed plate comprising groove means having a base and opening into the nipping zone;
- said at least two forces measuring units bearing against the base of the groove means;
- force transmission beam means covering the at least two force measuring units;
- said force transmission beam means having a surface directed towards the nipping zone and constituting a part of a surface of the feed plate forming the nipping zone; and
- forces transmitted by the force transmission beam means to the at least two force measuring force units producing, as the measuring signals, electrical signals representative of the density of the mass of fiber material moving through the nipping zone.
- 18. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- means defining an abutment, said one of said elements being positioned for bearing against said abutment when moved into contacting relationship during operation of the fiber infeed means, said means for generating signals at said nipping zone thereby generating signals representative of a force generated by said one of said elements bearing against said abutment for thereby detecting said density variations of the mass of fiber material passing through said nipping zone;
- said one element movable into contact with said abutment comprising a feed plate defining the fiber infeed element of the fiber infeed means;
- said feed plate having a predeterminate length;
- said means for delivering said measuring signals comprising a membrane essentially extending over said predeterminate length of the feed plate and integrated into a surface thereof bounding the nipping zone;
- said means for delivering said measuring signals further comprising a pressure converter for transmitting forces by the action of fluid means and whereby forces are applied to the membrane by the action of the mass of fiber material moving through the nipping zone; and
- sad membrane generating, as the measuring signals, electrical signals representative of the density variations of the mass of fiber material moving through the nipping zone.
- 19. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- means defining an abutment, said one of said elements being positioned for bearing against said abutment when moved into contacting relationship during operation of the fiber infeed means, said means for generating signals at said nipping zone thereby generating signals representative of a force generated by said one of said elements bearing against said abutment for thereby detecting said density variations of the mass of fiber material passing through said nipping zone;
- said one element movable into contact with said abutment comprising a feed plate defining the fiber infeed element of the fiber infeed means;
- said feed plate comprising groove means;
- said feed plate having predeterminate length;
- said groove means opening into said nipping zone;
- pivot shaft means for pivotably supporting said feed plate;
- said groove means extending substantially over the predeterminate length of the feed plate and substantially parallel to said pivot shaft means pivotably supporting said feed plate;
- pressure converter means operatively associated with said groove means;
- said groove means having a groove wall confronting said pivot shaft means;
- said groove wall forming with a surface of the feed plate at the nipping zone an angle not exceeding 30.degree.; and
- said pressure converter means delivering, as said measuring signals, signals governed by the pressure prevailing in the groove means.
- 20. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- means defining an abutment, said one of said elements being positioned for bearing against said abutment when moved into contacting relationship during operation of the fiber infeed means, said means for generating signals at said nipping zone thereby generating signals representative of a force generated by said one of said elements bearing against said abutment for thereby detecting said density variations of the mass of fiber material passing through said nipping zone;
- said one element movable into contact with said abutment comprises a feed plate defining the fiber infeed element of the fiber infeed means;
- pivot means for pivotably mounting said feed plate;
- said feed plate having a predeterminate length;
- said means for delivering said measuring signals comprises groove means provided in the feed plate;
- said groove means communicating with the nipping zone;
- said groove means extending over a predetermined portion of said predeterminate length of the feed plate;
- a pressure converter operatively associated with said groove means;
- a compressed air source operatively associated with said groove means;
- said compressed air source delivering a supply of compressed air at essentially constant pressure;
- said groove means having a groove wall directed towards said pivot means for said feed plate;
- said groove wall forming with a surface of the feed plate at the nipping zone an angle at most 30.degree.; and
- said pressure converter delivering, as said measuring signals, signals essentially corresponding to the pressure exerted by the mass of fiber material at the groove means.
- 21. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- said fiber infeed element comprising a feed plate;
- pivot means for pivotably mounting said feed plate about a pivot axis;
- said feed plate having a predeterminate length;
- said means delivering said measuring signals comprises a first groove means and a second groove means;
- each of said first and second groove means being arranged in said feed plate;
- each of said first and second groove means opening into said nipping zone;
- each of said first and second groove means extending essentially over a predeterminate portion of the predeterminate length of the feed plate and substantially parallel to said pivot axis of the feed plate;
- said first groove means comprising a groove for receiving air blown therethrough;
- said second groove means comprising an air venting groove means;
- each of said first and second groove means having a wall confronting the pivot axis;
- the groove walls of both of said first and second groove means each forming with a surface of the nipping zone of the feed plate an angle not exceeding 30.degree.;
- said first groove means being spaced at a predetermined distance from said second groove means;
- a source of compressed air provided for the first groove means and delivering an essentially constant quantity of air;
- a pressure converter operatively associated with said source of compressed air;
- said pressure converter generating air pressure signals essentially corresponding to the air pressure exerted on the fiber mass; and
- said second groove means venting to atmosphere.
- 22. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising:
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at leas the generated signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- said driven fiber feed roll element having an axis of rotation;
- said at least one fiber infeed element comprising a feed plate;
- means for pivotably mounting said feed plate about a predeterminate pivot axis; and
- means cooperating with said pivotably mounting means for the feed plate for allowing the predeterminate pivot axis of the feed plate to pivot throughout a predetermine region about the axis of rotation of the driven fiber feed roll element and to be fixed in a predetermined position with respect to the axis of rotation of the driven fiber feed roll element.
- 23. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven fiber feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- means providing at least one signal representative of a predeterminate desired density of the processed fiber material at the outlet side of the textile machine;
- said control means processing said at least one signal representative of a predeterminate desired density of the processed fiber material at the outlet side of the textile machine together with said generated signals representative of the density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain the control signals for producing at the outlet side of the textile machine processed fiber material of essentially uniform density;
- said textile machine comprising a card having a rotatable doffer roll;
- means for generating signals representative of the rotational speed of the rotatable doffer roll; and
- said control means processing said generated signals representative of the rotational speed of the rotatable doffer roll, said at least one signal representative of the predeterminate desired density of the processed fiber material at the outlet side of the textile machine, said generated signals representative of the density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain the control signals for producing at the outlet side of the textile machine processed fiber material of essentially uniform density.
- 24. The apparatus as defined in claim 23, further including:
- means for generating signals representative of the rotational speed of the fiber feed roll element; and
- said control means processing said generated signals representative of the rotational speed of the fiber feed roll element, said generated signals representative of the rotational speed of the rotatable doffer roll, said at least one signal representative of the predeterminate desired density of the processed fiber material at the outlet side of the textile machine, said generated signals representative of the density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain the control signals for producing at the outlet side of the textile machine processed fiber material of essentially uniform density.
- 25. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising;
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven fiber feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone;
- means for generating signals representative density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density;
- means providing at least one signal representative of a predeterminate desired density of the processed fiber material at the outlet side of the textile machine;
- said control means processing said at least one signal representative of a predeterminate desired density of the processed fiber material at the outlet side of the textile machine together with said generated signals representative of the density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain the control signals for producing at the outlet side of the textile machine processed fiber material of essentially uniform density;
- the textile machine having at the outlet side thereof a rotatable roll;
- means for generating signals representative of the rotational speed of said rotatable roll; and
- said control means processing said generated signals representative of the rotational speed of the rotatable roll, said at least one signal representative of the predeterminate desired density of the processed fiber material at the outlet side of the textile machine, said generated signals representative of the density variations of the throughpassing means of fiber material in the essentially invariable size nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain the control signals for producing at the outlet side of the textile machine processed fiber material of essentially uniform density.
- 26. The apparatus as defined in claim 25, further including:
- means for generating signals representative of the rotational speed of the driven fiber feed roll element; and
- said control means processing said generated signals representative of the rotational speed of the driven fiber feed roll element, said generated signals representative of the rotational speed of the rotatable roll at said outlet side of the textile machine, said at least one signal representative of the predeterminate desired density of the processed fiber material at the outlet side of the textile machine, said generated signals representative of the density variations of the throughpassing mass of fiber material in the nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals, said obtained control signals controlling the rotational speed of the rotatable feed roll to produce at the outlet side of the textile machine processed fiber material of essentially uniform density.
- 27. The apparatus as defined in claim 26, wherein:
- said fiber infeed element of said fiber infeed means comprises a feed plate coacting with the driven fiber feed roll element;
- said feed plate having a nose portion at which there departs the mass of fiber material; and
- said control means controlling the rotational speed of the driven fiber feed roll element by means of the obtained control signals so that detected density variations of the mass of fiber material are substantially evened out at the nose portion of the feed plate.
- 28. The apparatus defined in claim 27, wherein:
- the signals representative of the density variations of the mass of fiber material in the nipping zone are generated at a location upstream of the nose portion of the feed plate.
- 29. An apparatus for automatically compensating density variations of fiber material at a textile machine, comprising;
- fiber infeed means for receiving a mass of fiber material whose density variations are to be detected;
- said fiber infeed means comprising at least one driven fiber feed roll element for feeding the mass of fiber material to a textile machine;
- said fiber infeed means further comprising at least one fiber infeed element;
- said at least one driven fiber feed roll element forming in conjunction with said at least one fiber infeed element an essentially invariable size nipping zone forming a passage for the mass of fiber material;
- means coacting with one of said elements for generating measuring signals representative of density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone;
- means for generating signals representative of density variations of fiber material processed in the textile machine at an outlet side of said textile machine;
- control means for processing at least the generated signals representative of the density variations of the throughpassing mass of fiber material in the essentially invariable size nipping zone and the generated signals representative of density variations of the processed fiber material at the outlet side of the textile machine to obtain control signals for controlling the rotational speed of the driven fiber feed roll element to produce at the outlet side of the textile machine processed fiber material of essentially uniform density; and
- said means for generating signals representative of density variations of fiber material processed in the textile machine at the outlet side of said textile machine comprising a drivable roll for transporting the processed fiber material and a freely rotatable roll cooperating with said drivable roll and forming therewith a nipping zone for the processed fiber material.
- 30. The apparatus as defined in claim 29, further including:
- means for mounting said freely rotatable roll for movement from a starting position into an operating position;
- an adjustable element for defining said operating position of said freely rotatable roll; and
- said driveable roll comprising a spatially stationary rotatable roll forming said nipping zone during coaction with said freely rotatable roll.
- 31. The apparatus as defined in claim 30, wherein:
- said means for mounting said freely rotatable roll for movement from said starting position into said operating position comprises pivot shaft means; and
- said adjustable element for defining said operating position of said freely rotatable roll comprises an adjustable abutment means which limits the pivotal motion of the freely rotatable roll.
Priority Claims (1)
Number |
Date |
Country |
Kind |
04951/86 |
Dec 1986 |
CHX |
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CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a divisional application of the commonly assigned, copending U.S. application Ser. No. 07/132,274, filed Dec. 10, 1987, entitled "METHOD FOR AUTOMATICALLY COMPENSATING DENSITY OR THICKNESS VARIATIONS OF FIBER MATERIAL AT TEXTILE MACHINES, SUCH AS CARDS, DRAW FRAMES AND THE LIKE", now U.S. Pat. No. 4,854,011, granted Aug. 8, 1989. This application also is related to our commonly assigned, co-pending U.S. application Ser. No. 07/132,204, filed Dec. 10, 1987, and entitled "METHOD FOR DETECTING THE DENSITY OR THICKNESS AND VARIATIONS THEREOF OF FIBER MATERIAL AT THE INFEED OF A TEXTILE MACHINE AS WELL AS A METHOD FOR EVENING THE DENSITY OR THICKNESS VARIATIONS OF FIBER MATERIAL AT THE INFEED OF A TEXTILE MACHINE", now U.S. Pat. NO. 4,860,406, granted Aug. 29, 1989.
US Referenced Citations (6)
Foreign Referenced Citations (3)
Number |
Date |
Country |
2050111 |
Jan 1971 |
DEX |
2379624 |
Jan 1978 |
FRX |
0956146 |
Apr 1964 |
GBX |
Divisions (1)
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Number |
Date |
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Parent |
132274 |
Dec 1987 |
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