Claims
- 1. A weft processing apparatus for a jet loom, comprising weft length measuring means including at least one sensor disposed substantially at a termination point for reception of a weft jetted from a weft inserting main nozzle into a weft insertion passage and thereby inserted into a warp shed, wherein said weft length measuring means includes means for measuring the length of a broken weft yarn piece separated from the weft inserted.
- 2. A weft processing apparatus according to claim 1, further comprising:
- control means connected to said weft length measuring means;
- first weft detecting means disposed at a predetermined position in the vicinity of said weft length measuring means and spaced from said warp shed and being adapted to supply a weft insertion failure detection signal to said control means unless the weft inserted arrives at said predetermined position, thereby commanding stoppage of a driving motor for said jet loom through said control means;
- said weft length measuring means including a pair of photoelectric length measuring sensors disposed with a predetermined distance (L) therebetween at respective positions each at a greater distance from said warp shed than said first weft detecting means; and
- said control means being previously loaded with the value of said predetermined distance (L) and being adapted to obtain and store therein, when said broken weft piece passes by said pair of length measuring sensors, a weft leading end arrival time (t.sub.1) at which a leading end of said broken weft piece reaches a detection region of one of said pair of length measuring sensors, a weft leading end arrival time (t.sub.2) at which the leading end of said broken weft piece reaches a detection region of the other length measuring sensor, and a weft trailing end pass-by time (t.sub.3) at which a trailing end of said broken weft piece passes by said detection region of said other length measuring sensor, thereby performing on the basis of said arrival times (t.sub.1, t.sub.2), said pass-by time (t.sub.3) and said predetermined distance (L) an arithmetic operation in accordance with the following expression:
- x.sub.2 =L(t.sub.3 -t.sub.2)/(t.sub.2 -t.sub.1)
- wherein L/(t.sub.2 -t.sub.1) represents the velocity of said broken weft piece, (t.sub.3 -t.sub.2) represents the time taken for said broken weft piece to pass by said other length measuring sensor, and (x.sub.2) represents the length of said broken weft piece.
- 3. A weft processing apparatus according to claim 2, wherein said weft length measuring means includes:
- an air duct having a passage of rectangular cross-section for guiding the weft;
- a pair of sensor arrays each including a light projecting element and a light receiving element which cooperate to constitute each of said length measuring sensors and which are disposed in opposition to each other within said passage of said air duct on a first pair of opposite inner surfaces thereof, respectively; and
- lens means disposed between said light projecting and receiving elements of each sensor array at a position closer to said light projecting element for focusing light rays emitted from said light projecting element onto the associated light receiving element in such a pattern that substantially the entire area of said rectangular cross-section is traversed by said focused light rays.
- 4. A weft processing apparatus according to claim 2, further comprising alarm means connected to said control means, wherein unless said other length measuring sensor detects the presence of the weft piece while said one length measuring sensor detects the presence of the weft piece, said control means outputs to said alarm means an alarm signal indicating that the broken weft piece remains within said warp shed.
- 5. A weft processing apparatus according to claim 2, further comprising display means connected to said control means for displaying said measured length (x.sub.2) of said broken weft piece.
- 6. A weft processing apparatus according to claim 2, further comprising:
- second weft detecting means disposed at the entrance side of said jet loom from which the weft is inserted into said weft insertion passage, said second weft detecting means being connected to said control means and adapted to detect the presence or absence of a defective weft within said warp shed at said entrance side; and
- weft withdrawal means disposed at said entrance side of the jet loom and including a step motor connected to said control means and paired driving and driven rollers;
- wherein said control means supplies actuation pulses to said step motor of said weft withdrawal means over a period during which a weft presence detection signal is being inputted to said control means, said control means determining arithmetically on the basis of the number of said pulses a length (x.sub.1) by which the defective weft has been withdrawn from said warp shed and then determining arithmetically a sum of the withdrawn length (x.sub.1) of said defective weft and said length (x.sub.2) of said broken weft piece, thereby commanding restart of the operation of said jet loom when said sum is equal to or greater than a value corresponding to a preset weft insertion length.
- 7. A weft processing apparatus according to claim 6, further comprising:
- an air flow converging tube fixedly mounted on a slay of said jet loom at a position between said first weft detecting means and said one of said pair of length measuring sensor means;
- an air guide fixedly mounted on said slay at a position between said pair of length measuring sensor means;
- said air converging tube and said air guide having respective center axes aligned with an extension of said weft insertion passage;
- said pair of length measuring sensor means having respective detection regions defined on and along said extension of said weft insertion passage; and
- a suction pipe disposed at a position located beyond said other of said pair of length measuring sensor means, and a blower connected to said suction pipe.
- 8. A weft processing apparatus according to claim 6, further comprising a command means connected to said control means for commanding operations of said second weft detecting means and said weft withdrawal means.
- 9. A weft processing apparatus according to claim 1, further comprising:
- control means connected to said weft length measuring means and having a winding type weft storage and measuring device of said jet loom connected thereto;
- first weft detecting means disposed at a predetermined position in the vicinity of said weft length measuring means and spaced from said warp shed and being adapted to supply a weft insertion failure detection signal to said control means unless the weft inserted arrives at said predetermined position, thereby commanding stoppage of a driving motor for said jet loom through said control means;
- said weft length measuring means including a length measuring sensor disposed at a greater distance from said warp shed than said first weft detecting means, and a balloon sensor disposed in the vicinity of said winding type weft storing and length measuring device; and
- said control means being adapted to obtain and store therein, when said broken weft piece passes by said pair of length measuring sensors, a weft leading end arrival time (t.sub.1) at which a leading end of said broken weft piece reaches a detection region of said length measuring sensor, and a weft trailing end pass-by time (t.sub.3) at which the trailing end of said broken weft piece passes by said detection region of the said length measuring sensor, and arithmetically determine an estimated velocity (V) of said broken weft piece on the basis of information obtained from said balloon sensor, thereby performing on the basis of said arrival time (t.sub.1), said pass-by time (t.sub.3) and said estimated running speed (V) an arithmetic operation in accordance with the following expression:
- x.sub.2 =V(t.sub.3 -t.sub.1)
- to thereby obtain the length (x.sub.2) of said broken weft piece.
- 10. A weft processing apparatus for a jet loom, comprising:
- first weft length measuring means disposed at the side of a termination point for reception of a weft jetted from a weft inserting main nozzle for measuring the length of a broken weft yarn piece separated from the weft inserted;
- weft withdrawal means for removing a defective weft which has undergone abnormal weft insertion by withdrawing laterally said defective weft through the action of a succeeding weft connected to said defective weft; and
- second weft length measuring means for measuring the length of said defective weft which has undergone abnormal insertion and has been withdrawn by said weft withdrawal means.
- 11. A weft processing apparatus according to claim 10, said first and second weft length measuring means including a computer,
- wherein said weft processing apparatus further comprises:
- first weft detecting means disposed at a predetermined position in the vicinity of said first weft length measuring means and spaced from said warp shed and being adapted to supply a weft insertion failure detection signal to said computer unless the weft as inserted arrives at said predetermined position, thereby commanding stoppage of a driving motor for said jet loom through said computer;
- wherein said first weft length measuring means includes a pair of photoelectric length measuring sensors disposed with a predetermined distance (L) therebetween at respective positions each at a greater distance from said warp shed than said first weft detecting means;
- said computer being previously loaded with said predetermined distance (L) and being adapted to obtain and store therein, when said broken weft piece passes by said pair of length measuring sensors, a weft leading end arrival time (t.sub.1) at which a leading end of said broken weft piece reaches a detection region of one of said pair of length measuring sensors, a weft leading end arrival time (t.sub.2) at which the leading end of said broken weft piece reaches a detection region of the other length measuring sensor, and a weft trailing end pass-by time (t.sub.3) at which the trailing end of said broken weft piece passes by the detection region of said other length measuring sensor, thereby performing on the basis of said arrival times (t.sub.1, t.sub.2), said pass-by time (t.sub.3) and said predetermined distance (L), as stored, an arithmetic operation in accordance with the following expression:
- x.sub.2 =L(t.sub.3 -t.sub.2)/(t.sub.2 -t.sub.1)
- wherein L/(t.sub.2 -t.sub.1) represents the velocity of said broken weft piece, (t.sub.3 -t.sub.2) represents the time taken for said broken weft piece to pass by said other length measuring sensor, and (x.sub.2) represents the length of said broken weft piece; and
- said weft processing apparatus further comprises second weft detecting means disposed at the entrance side of the jet loom from which the weft is inserted, for detecting the presence or absence of the weft at said entrance side, said second weft detecting means being connected to said computer; and
- wherein said weft withdrawal means includes a step motor connected to said computer and a pair of driving and driven rollers;
- said computer supplying actuation pulses to said step motor of said weft withdrawal means over a period during which the weft presence detection signal is being inputted to said computer;
- said computer determining arithmetically on the basis of the number of said pulses a length (x.sub.1) by which the defective weft has been withdrawn from the warp shed and then determining arithmetically a sum of the withdrawn length (x.sub.1) of said defective weft and the length (x.sub.2) of said broken weft piece, thereby commanding restart of operation of said jet loom when said sum is equal to or greater than a value corresponding to a preset weft insertion length.
- 12. A weft processing apparatus for a jet loom, comprising:
- first weft withdrawal means disposed alongside a termination point for reception of a weft inserted under the action of a jet from a weft inserting main nozzle for removing a broken weft piece separated from an inserted weft by withdrawing said broken weft piece laterally from a warp shed;
- first weft length measuring means for measuring the length of the broken weft piece withdrawn by said first weft withdrawal means;
- second weft withdrawal means for removing a defective weft which has undergone abnormal weft insertion by withdrawing laterally said defective weft by making use of a succeeding weft connected to said defective weft; and
- second weft length measuring means for measuring the length of said defective weft which has undergone abnormal insertion and has been withdrawn by said second weft withdrawal means.
- 13. A weft processing apparatus according to claim 12, further comprising:
- control means connected to said first and second weft length measuring means;
- first weft detecting means disposed at a predetermined position in the vicinity of said first weft length measuring means and adapted to supply a weft insertion failure detection signal to said control means unless the weft as inserted arrives at said predetermined position, thereby commanding stoppage of a driving motor for said jet loom through said control means;
- second weft detecting means disposed at the entrance side of said jet loom from which the weft is inserted and connected to said control means, for detecting the presence or absence of the weft at said entrance side;
- each of said first and second weft withdrawal means including a step motor and a pair of driving and driven rollers;
- said first weft length measuring means including a pair of photoelectric length measuring sensors disposed with a predetermined distance (L) therebetween;
- said control means commanding operation of said second weft withdrawal means in response to the weft presence detection signal outputted from said second weft detecting means when said broken weft piece has not passed by said pair of length measuring sensors;
- said control means supplying actuation pulses to said step motor of said second weft withdrawal means over a period during which the weft presence detection signal from said second weft detecting means is being inputted thereto, and arithmetically determining the length (x.sub.1) of the weft withdrawn from said warp shed on the basis of the number of said pulses;
- said control means commanding operation of said first weft withdrawal means after completion of the operation of said second weft withdrawal means and arithmetically determining a withdrawn length (x') of the broken weft piece on the basis of the number of actuation pulses supplied to said step motor of said first weft withdrawal means over a period during which the weft presence detection signal is being inputted to said control means from said other length measuring sensor following the start of operation of said step motor triggered when said broken weft piece is gripped between said driving and driven rollers of said first weft withdrawal means; and
- said control means determining arithmetically a sum of said withdrawn length (x') and a length (L') of the weft extending between said driving and driven rollers and said other length measuring sensor and loaded previously into said control means to thereby calculate the length of said broken weft piece in accordance with
- x.sub.2 =X'+L'
- and commanding restart of operation of said jet loom when the sum (x.sub.1 +x.sub.2) is greater than a value corresponding to a preset weft insertion length.
- 14. A weft processing apparatus according to claim 13, wherein when said broken weft piece passes by said pair of length measuring sensors, said control means comprises a computer for obtaining and storing therein a weft leading end arrival time point (t.sub.1) at which a leading end of the broken weft piece reaches a detection region of said one length measuring sensor, a weft leading end arrival time (t.sub.2) at which the leading end of said broken weft piece reaches a detection region of said other length measuring sensor, and a weft trailing end pass-by time (t.sub.3) at which a trailing end of said broken weft piece passes by the detection region of said other length measuring sensor, thereby performing on the basis of said arrival times (t.sub.1 t.sub.2), said passby time (t.sub.3) and said predetermined distance (L) between said pair of length measuring sensors loaded previously into said control means an arithmetic operation in accordance with the following expression:
- x.sub.3 =L(t.sub.3 -(t.sub.2)/t.sub.2 -t.sub.1)
- wherein L/(t.sub.2 -t.sub.1) represents the velocity of said broken weft piece, (t.sub.3 -t.sub.2) represents the time taken for said broken weft piece to pass by said other length measuring sensor, and (x.sub.3) represents the length of said broken weft piece, wherein said control means commands restart of operation of said jet loom when the sum (x.sub.1 +x.sub.3) is equal to or greater than a value corresponding to the present weft insertion length.
- 15. A weft processing apparatus according to claim 12, wherein said first weft length measuring means includes:
- a pair of photoelectric length measuring sensor arrays disposed with a predetermined distance therebetween;
- an air duct having a passage of rectangular cross-section for guiding a weft therethrough;
- each of said pair of sensor arrays including a light projecting element and a light receiving element which cooperate to constitute each of said length measuring sensors and which are disposed in opposition to each other within said passage of said air duct on a first pair of opposite inner surfaces thereof, respectively;
- each of said sensor arrays further including a lens means disposed between said light projecting element and said light receiving element at a position close to said light projecting element for focusing light rays emitted from said light projecting element onto the associated light receiving element in such a pattern that substantially the entire area of said rectangular cross-section is traversed by said focused light rays.
- 16. A weft processing apparatus according to claim 15, wherein said air duct is formed of transparent walls, and wherein said light receiving part and said lens means are disposed on exteriorsurfaces of said transparent walls to thereby avoid disturbing the flatness of the interior surface of said air duct.
- 17. A weft processing apparatus according to claim 15, wherein said lens means comprises a rod lens of a substantially semicircular cross-section.
- 18. Weft processing apparatus for a jet loom which forms a warp shed during loom operation, said warp shed having a weft entrance side and a weft exit side, said apparatus comprising a controller for controlling the operation of said loom, first means including a weft inserting main nozzle disposed at said weft entrance side for inserting a predetermined length of weft yarn into said warp shed, second means disposed at said exit side of said shed for detecting satisfactory and unsatisfactory insertion of said predetermined length of weft yarn into said warp shed and for providing a signal to said controller, and at least one additional means disposed on one side of said shed for providing another signal to said controller in cooperation with said second means for measuring a length of weft yarn recovered from said shed upon detection by said second means of an unsatisfactory weft insertion.
- 19. Weft processing apparatus according to claim 18, wherein said second means comprises a first sensor for detecting at its location the presence or absence of a weft yarn and providing said first mentioned signal, and said additional means comprises a second sensor disposed at said exit side of said warp shed a predetermined distance from said first sensor farther from said warp shed exit in alignment with said first sensor and said warp shed for providing said second mentioned signal.
- 20. Weft processing apparatus according to claim 18, wherein said second means comprises a first sensor coupled to said controller for detecting at its location the presence or absence of a weft yarn and providing said first mentioned signal, and said additional means comprises a second sensor disposed at said entrance side of said warp shed and coupled to said controller for providing said second mentioned signal.
- 21. Weft processing apparatus according to claim 20, wherein said first means comprises a winding type weft metering and storing device for supplying said predetermined length of weft yarn to said main nozzle, and said second sensor comprises a balloon sensor disposed adjacent and in cooperation with said winding type device.
- 22. Weft processing apparatus according to claim 21, wherein said controller comprises timing means for determining the velocity (V) with which a weft is jetted through said warp shed on the basis of the time (t.sub.0) when said predetermined length of weft yarn is released for insertion through said warp shed, the time (t), when the leading end of said predetermined length of warp yarn is detected by said first sensor, and the known distance (L) between said first sensor and the tip of said main nozzle, using the expression:
- V=L/(t.sub.1 -t.sub.0),
- said balloon sensor providing a signal marking the time t.sub.0.
- 23. Weft processing apparatus according to claim 18, wherein said first means comprises a winding type weft metering and storing device for supplying said predetermined length of weft yarn to said main nozzle, said second means comprises a first sensor coupled to said controller for detecting at its location the presence or absence of a weft yarn and providing said first mentioned signal, and said additional means comprises a retaining pin assembly disposed adjacent said winding type device, said another signal being related to actuation of said retaining pin assembly to release said predetermined length of weft yarn.
- 24. Weft processing apparatus according to claim 23, wherein said controller comprises timing means for determining the velocity (V) with which a weft is jetted through said warp shed on the basis of the time (t.sub.0) when said predetermined length of weft yarn is released for insertion through said warp shed, the time (t.sub.1) when the leading end of said predetermined length of warp yarn is detected by said first sensor, and the known distance (L) between said first sensor and the tip of said main nozzle, using the expression:
- V=L/(t.sub.1 -t.sub.0),
- said time (t.sub.0) being obtained by said controller from a signal corresponding to the said actuation of said retaining pin assembly to release said predetermined length of weft yarn.
Priority Claims (3)
Number |
Date |
Country |
Kind |
1-219531 |
Aug 1989 |
JPX |
|
1-222450 |
Aug 1989 |
JPX |
|
1-222451 |
Aug 1989 |
JPX |
|
BACKGROUND OF THE INVENTION
This application is a continuation-in-part of allowed application Ser. No. 07/568,362, filed Aug. 16, 1990, now abandoned.
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
4730643 |
Tamatani |
Mar 1988 |
|
4781221 |
Onishi et al. |
Nov 1988 |
|
4969489 |
Tanaka et al. |
Nov 1990 |
|
4989644 |
Tanaka et al. |
Feb 1991 |
|
Foreign Referenced Citations (1)
Number |
Date |
Country |
62-28446 |
Feb 1987 |
JPX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
568362 |
Aug 1990 |
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