Claims
- 1. An apparatus for pneumatically delivering fiber tufts to a fiber processing machine, comprising:
- (a) a duct;
- (b) a blower having a pressure side and a suction side; said pressure side communicating with said duct for pneumatically driving fiber tufts therein in a stream M.sub.1 ;
- (c) a branch conduit extending from said duct at a branch-off location situated downstream of said blower as viewed in a direction of flow of the stream M.sub.1 for separating a stream M.sub.3 from the stream M.sub.1, leaving a stream M.sub.2 to proceed in the duct downstream of said branch-off location;
- (d) means for preventing fiber tufts from entering from said duct into said branch conduit; and
- (e) flow varying means for changing a flow rate of the stream M.sub.3 in said branch conduit; said flow varying means including a throttle mechanism situated in said branch conduit.
- 2. An apparatus as defined in claim 1, wherein said duct has, immediately upstream of said branch-off location, a length portion of circular cross section having an inner diameter; the length of said length portion being approximately three times said inner diameter.
- 3. An apparatus as defined in claim 1, wherein said flow varying means comprises a desired value transmitter and means for controlling said throttle mechanism as a function of a magnitude set in said desired value transmitter.
- 4. An apparatus as defined in claim 1, wherein said means for preventing fiber tufts from entering into said branch conduit comprises an apertured divider plate positioned in said duct at said branch-off location at an acute angle to a length dimension of said duct; the divider plate dividing an inner space of said duct into a duct length portion and a starting portion of said branch conduit; said duct length portion and said starting portion extending parallel to one another; said throttle mechanism comprising a throttle gate forming a longitudinal wall of said starting portion opposite said divider plate substantially along a length thereof; further comprising means for pivotally supporting an upstream end of said throttle gate to provide movement therefor towards and away from said divider plate.
- 5. An apparatus as defined in claim 1, further comprising suction means connected to said branch conduit for driving the stream M.sub.3.
- 6. An apparatus as defined in claim 5, further comprising a filter connected to said branch conduit and said suction means.
- 7. An apparatus as defined in claim 1, wherein said flow varying means comprises a flow rate sensor exposed to at least one of the streams M.sub.2 and M.sub.3 in said duct and in said branch conduit, and a regulator having an input connected to an output of said flow rate sensor and an output operatively connected to said throttle mechanism.
- 8. An apparatus as defined in claim 7, wherein said flow rate sensor is positioned in said branch conduit for measuring the flow rate of the stream M.sub.3.
- 9. An apparatus as defined in claim 7, wherein said flow rate sensor is positioned in said duct downstream of said branch-off location for measuring the flow rate of the stream M.sub.2.
- 10. An apparatus as defined in claim 9, wherein said flow rate sensor is a first flow rate sensor; further comprising a second flow rate sensor positioned in said duct upstream of said branch-off location for measuring the flow rate of the stream M.sub.1 ; said second flow rate sensor having an output connected to an input of said regulator.
- 11. An apparatus as defined in claim 9, wherein said flow rate sensor is a first flow rate sensor; further comprising a second flow rate sensor positioned in said branch conduit for measuring the flow rate of the stream M.sub.3 ; said second flow rate sensor having an output connected to an input of said regulator.
- 12. An apparatus as defined in claim 11, further comprising a third flow rate sensor positioned in said duct upstream of said branch-off location for measuring the flow rate of the stream M.sub.1 ; said second flow rate sensor having an output connected to an input of said regulator.
- 13. In a fiber processing line including a first fiber processing machine having an output; at least one feed chute having an input and an output; at least one second fiber processing machine having an input connected to the output of a respective said feed chute; a distributor duct connecting the output of the first fiber processing machine with the input of the feed chute; and a blower in the distributor duct for driving fiber tufts in an air stream M.sub.1 in the duct in a flow direction from the first fiber processing machine to the second fiber processing machine; the improvement comprising
- (a) a branch conduit extending from said distributor duct from a branch location thereof for guiding an air stream M.sub.3 from the air stream M.sub.1 away from the distributor duct; said blower being situated in said distributor duct upstream of said branch location as viewed in said flow direction;
- (b) means for preventing fiber tufts from entering from said duct into said branch conduit; and
- (c) means for setting a flow rate of the air stream M.sub.3 in said branch conduit as a function of at least one of a fill level of the fiber in said feed chute and the quantity of second fiber processing machines.
- 14. A fiber processing line as defined in claim 13, wherein said branch conduit has an end bounding said distributor duct, said means for preventing fiber tufts from entering into said branch conduit comprising means defining air passage openings for allowing air to travel from the distributor duct into said branch conduit; said air passage openings being smaller than the expected smallest size of the fiber tufts.
- 15. A fiber processing line as defined in claim 13, wherein said branch conduit communicates with an ambient atmosphere.
- 16. A fiber processing line as defined in claim 13, wherein said means for setting a flow rate of the air stream M.sub.3 includes variable throttle means for altering a flow passage cross section of said branch conduit.
- 17. A fiber processing line as defined in claim 13, wherein said means for setting a flow rate of the air stream M.sub.3 includes means for determining an air pressure p.sub.2 in the distributor duct.
- 18. A fiber processing line as defined in claim 13, wherein said means for setting a flow rate of the air stream M.sub.3 comprises
- (a) sensor means for determining a flow rate of an air stream M.sub.1 travelling in the distributor duct between the blower and a branching location of the branch conduit;
- (b) throttle means for altering a flow passage cross section of said branch conduit; and
- (c) a control device having an input connected to said sensor means and an output connected to said throttle means for setting the flow rate of the air stream M.sub.3 in said branch conduit as a function of the flow rate of the air stream M.sub.1.
- 19. A fiber processing line as defined in claim 13, wherein said means for setting a flow rate of the air stream M.sub.3 includes sensor means for determining a flow rate of an air stream M.sub.2 travelling in the distributor duct from a branching location of the branch conduit to said feed chute and equalling M.sub.1 -M.sub.3.
- 20. A fiber processing line as defined in claim 19, wherein said sensor means is situated in said distributor duct between said branching location and said feed chute.
- 21. A fiber processing line as defined in claim 13, wherein said means for setting a flow rate of the air stream M.sub.3 comprises
- (a) sensor means for determining an air pressure p.sub.2 in the distributor duct downstream of a branching location of said branch conduit as viewed in a direction of air flow in said distributor duct;
- (b) throttle means for altering a flow passage cross section of said branch conduit; and
- (c) a control and regulating device having an input connected to said sensor means and an output connected to said throttle means for setting the flow rate of the air stream M.sub.3 in said branch conduit as a function of the pressure p.sub.2.
- 22. A fiber processing line as defined in claim 21, further comprising a memory connected to said control device and arranged for storing desired values.
- 23. A fiber processing line as defined in claim 21, wherein said control device comprises a microcomputer.
- 24. A fiber processing line as defined in claim 23, further comprising a desired value setter connected with said microcomputer.
- 25. A fiber processing line as defined in claim 13, wherein said means for setting a flow rate of the air stream M.sub.3 comprises
- (a) sensor means for determining a flow rate of an air stream M.sub.2 travelling in the distributor duct from a branching location of the branch conduit to said feed chute and equalling M.sub.1 -M.sub.3 ;
- (b) throttle means for altering a flow passage cross section of said branch conduit; and
- (c) a control device having an input connected to said sensor means and an output connected to said throttle means for setting the flow rate of the air stream M.sub.3 in said branch conduit as a function of the flow rate of the air stream M.sub.2.
- 26. A fiber processing line as defined in claim 25, further comprising a memory connected to said control device and arranged for storing desired values.
- 27. A fiber processing line as defined in claim 25, wherein said control device comprises a microcomputer.
- 28. A fiber processing line as defined in claim 27, further comprising a desired value setter connected with said microcomputer.
- 29. A fiber processing line as defined in claim 28, wherein said desired value setter is connected with said sensor means.
- 30. An apparatus for pneumatically delivering fiber tufts in a duct to a fiber processing machine, comprising:
- (a) means for generating an air stream M.sub.1 for driving the air stream M.sub.1 with the fiber tufts through the duct;
- (b) means for branching off a stream M.sub.3 from the stream M.sub.1 at a branch-off location upstream of the fiber processing machine as viewed in a direction of stream flow in the duct for leaving a stream M.sub.2 in the duct downstream of the branch-off location;
- (c) means for preventing fiber tufts from entering from said duct into said branch conduit; and
- (d) means for directly varying the flow rate of the stream M.sub.3 for indirectly varying the flow rate of the stream M.sub.2 in the duct.
- 31. A method of pneumatically delivering fiber tufts in a duct to a fiber processing machine, comprising the following steps:
- (a) generating an air stream M.sub.1 and driving the air stream M.sub.1 with the fiber tufts through the duct;
- (b) branching off a stream M.sub.3 from the stream M.sub.1 at a branch-off location upstream of the fiber processing machine as viewed in a direction of stream flow in the duct for leaving a stream M.sub.2 in the duct downstream of the branch-off location;
- (c) preventing fiber tufts from entering from said duct into said branch conduit; and
- (d) directly varying the flow rate of the stream M.sub.3 for indirectly varying the flow rate of the stream M.sub.2 in the duct.
- 32. A method as defined in claim 31, wherein the step of varying the flow rate includes the steps of measuring the flow rate of the stream M.sub.2 in the duct and regulating the flow rate of the stream M.sub.3 based on a desired value.
Priority Claims (2)
Number |
Date |
Country |
Kind |
4005642 |
Feb 1990 |
DEX |
|
4038150 |
Nov 1990 |
DEX |
|
CROSS REFERENCE TO RELATED APPLICATION
This is a continuation-in-part of application Ser. No. 07/656,689, filed Feb. 19, 1991, now abandoned.
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Jan 1973 |
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4176988 |
Lattmann et al. |
Dec 1979 |
|
4701981 |
Leifeld |
Oct 1987 |
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Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
656689 |
Feb 1991 |
|