CN102127834A - Pile orientation device for pile fabric loom - Google Patents

Pile orientation device for pile fabric loom Download PDF

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Publication number
CN102127834A
CN102127834A CN 201110004396 CN201110004396A CN102127834A CN 102127834 A CN102127834 A CN 102127834A CN 201110004396 CN201110004396 CN 201110004396 CN 201110004396 A CN201110004396 A CN 201110004396A CN 102127834 A CN102127834 A CN 102127834A
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CN
China
Prior art keywords
pile
cloth
cotton cloth
fabric loom
orientation equipment
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Granted
Application number
CN 201110004396
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Chinese (zh)
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CN102127834B (en
Inventor
岩野义美
酒井要介
山本顺治
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Toyota Industries Corp
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Toyoda Automatic Loom Works Ltd
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Publication date
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Publication of CN102127834A publication Critical patent/CN102127834A/en
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Publication of CN102127834B publication Critical patent/CN102127834B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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    • DTEXTILES; PAPER
    • D03WEAVING
    • D03DWOVEN FABRICS; METHODS OF WEAVING; LOOMS
    • D03D39/00Pile-fabric looms
    • D03D39/22Terry looms
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03JAUXILIARY WEAVING APPARATUS; WEAVERS' TOOLS; SHUTTLES
    • D03J1/00Auxiliary apparatus combined with or associated with looms
    • D03J1/06Auxiliary apparatus combined with or associated with looms for treating fabric

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Looms (AREA)
  • Woven Fabrics (AREA)

Abstract

A pile orientation device for pile fabric loom includes a cloth guide member and a pile orientation member. The pile fabric loom for producing a woven cloth has a terry motion. The woven cloth is moved reciprocally in the front-and-rear direction of the pile fabric loom to shift a cloth fell position by the terry motion and piles are formed in the woven cloth by the terry motion. The cloth guide member is movable reciprocally in the front-and-rear direction of the pile fabric loom by the terry motion and guides the woven cloth toward the winding side of the pile fabric loom. The pile orientation member is used for pressing the woven cloth on the cloth guide member. The pile orientation member is mounted on the pile fabric loom without being moved in the front-and-rear direction of the pile fabric loom by the terry motion.

Description

The pile orientation equipment that is used for pile fabric loom
Technical field
The present invention relates to a kind of pile orientation equipment that is used for pile fabric loom, be used for forming pile by changing cloth fell.
Background technology
The pile that forms in weaving cotton cloth by pile fabric loom is directed to random direction, and has weaving cotton cloth of this pile and be considered to low-quality and weave cotton cloth.Having proposed various types of pile orientation equipments is used to form along the pile of a direction orientation.
Publication number is that the Japanese utility model application of 64-51680 discloses a kind of pile fabric loom, and wherein the terry motion by mobile cloth fell forms pile in weaving cotton cloth.According to the disclosure document, by shaft-like pile directed element fabric is bent so that pile along a direction orientation.The pile of weaving cotton cloth of being pressed by the pile directed element is laid along the direction opposite with the moving direction of weaving cotton cloth with by the tension force of weaving cotton cloth or the compressing power by the pile directed element and the tension force of weaving cotton cloth and along a direction orientation.Above-mentioned open source literature 64-51680 has provided two examples that the pile directed element is set.In one example, the pile directed element is set at and is used in cross thread-carrier and the path of weaving cotton cloth between the take up roll that the guiding of loom winding side is weaved cotton cloth.In another example, the pile directed element is set in the path of weaving cotton cloth between cross thread-carrier and the fell.
Publication number be 10-273854 Japanese Patent Application Publication a kind of pile fabric loom, wherein by move weave cotton cloth in the terry motion of fell form pile.In this pile fabric loom, the pile orientation lever is set in cloth induction element and the path of weaving cotton cloth between the fell that pile fabric loom winding side guiding is weaved cotton cloth, the situation in second example of above-mentioned open source literature 64-51680.The pile orientation lever is supported by leaf spring, and by the press-bending of will weaving cotton cloth of the compressing power of leaf spring.Thus, the compressing power by the pile orientation lever and the tension force of weaving cotton cloth will weave cotton cloth pile along the direction opposite with the moving direction of weaving cotton cloth lay so that pile along a direction orientation.
Publication number is that the Japan of 13-6878 has retrieved the pile orientation equipment that utility model discloses a kind of pile fabric loom, and wherein the terry motion by mobile stop position forms pile in weaving cotton cloth.According to publication number is that the equipment of the above-mentioned open source literature of 13-6878 has the multistrand yarn rope, cotton cord for example, and they are arranged on obliquely with predetermined spacing on the semi-circular indentation that vertically forms along pressing plate.Yarn rope on the pressing plate be directed to contacting of take up roll at the brest beams and the weaving cotton cloth between the take up roll of weaving cotton cloth with knitting needle, and lay the pile of weaving cotton cloth obliquely by the yarn rope of pressing plate.
The pile orientation equipment that according to publication number is the above-mentioned open source literature of 64-51680 and 10-273854 has wherein by utilizing the tension force that is bent to form by weaving cotton cloth to lay the same structure of pile.But the pile orientation equipment can be bent because of weaving cotton cloth and can not apply enough pressure to pile.Therefore, pile can return its original state easily before being laid.Along the reverse drive pile fabric loom when repairing mixed weft or broken yarn, by weaving cotton cloth promptly by along oppositely moving of pile directed element or rod bending.As a result, pile perk easily.In addition, can hinder pile directed element or pile orientation lever along weaving cotton cloth of oppositely moving, the result for example is easy to generate defectives such as abrasion mark exactly.Therefore, be the disclosed pile orientation equipment of above-mentioned open source literature of 64-51680 and 10-273854 according to publication number, pile just can not have stablely along required direction and is directed.
When in the path of weaving cotton cloth that is set at the pile directed element as publication number is situation in the above-mentioned open source literature of 64-51680 and 10-273854 between fell and cross thread-carrier or the cloth induction element, the pile of fully not laid is in that weave cotton cloth may perk when cross thread-carrier or cloth induction element move as yet.Therefore, under situation about having with the pile of random direction orientation, it is rolled-up to weave cotton cloth.When the pile directed element be set at the cross thread-carrier and the braiding path between the take up roll of weaving cotton cloth in the time, weaving cotton cloth may be rolled-up when it has basically pile along a direction orientation.But, be set at the assembling process that the pile orientation equipment between cross thread-carrier and the take up roll can hinder loom, thereby make the operating efficiency of changing when weaving cotton cloth take up roll reduce.
Publication number is that the yarn rope that will be arranged on obliquely in the above-mentioned open source literature of 13-6878 on the pressing plate can not make the bending of weaving cotton cloth with the contacted pile orientation equipment of weaving cotton cloth on the take up roll of weaving cotton cloth with knitting needle.But, according to this pile orientation equipment, but because the flexibility of yarn rope and the pressing plate displaceability in recess space, so be difficult to produce the pressure of pressing to pile, weaving cotton cloth just to form the stable pile that has along a direction orientation.Publication number be in the above-mentioned open source literature of 13-6878 disclosed be set at brest beams and the machinability of pile orientation equipment when take up roll is weaved cotton cloth in replacing between the take up roll of weaving cotton cloth aspect be disadvantageous.
The present invention relates to provide a kind of pile orientation equipment that is used for having the directed pile of weaving cotton cloth in stability ground of operating.
Summary of the invention
According to the present invention, a kind of pile orientation equipment that is used for pile fabric loom comprises cloth induction element and pile directed element.Be used to produce the pile fabric loom of weaving cotton cloth and have terry motion.Weave cotton cloth and moved around to move cloth fell by terry motion and in weaving cotton cloth, to form pile by terry motion by fore-and-aft direction along pile fabric loom.The cloth induction element can move around and weaves cotton cloth to the winding side guiding of pile fabric loom along the fore-and-aft direction of pile fabric loom by terry motion.The pile directed element is used to be pressed on the cloth induction element weaving cotton cloth.The pile directed element is installed on the pile fabric loom and can move by the fore-and-aft direction of terry motion along pile fabric loom.
Other application of the present invention and advantage will be introduced the following explanation of the principle of the invention in conjunction with the drawings for example and become apparent.
Description of drawings
The present invention may be better understood and purpose and advantage for preferred embodiment explanation by providing below the reference and accompanying drawing, in the accompanying drawings:
Fig. 1 is the side view according to pile orientation equipment in the pile fabric loom of first preferred embodiment of the invention, shows the equipment operation during the bright pick;
Fig. 2 shows among Fig. 1 the pile orientation equipment at the side view of loose weft manipulate;
Fig. 3 shows the decomposition diagram of pile orientation equipment among Fig. 1;
Fig. 4 is the side view that shows the pile orientation equipment that is used for pile fabric loom according to second preferred embodiment of the invention, shows the equipment operation during the bright pick;
Fig. 5 A shows the side view that the pile orientation equipment partly amplifies according to another embodiment of the invention; And
Fig. 5 B shows the perspective side elevation view that the pile orientation equipment partly amplifies according to still another embodiment of the invention.
The specific embodiment
Hereinafter with reference to the pile orientation equipment that be used for pile fabric loom of Fig. 1 to 3 introduction according to first preferred embodiment of the invention.Should note left side among Fig. 1 and right side front side and rear side corresponding to pile fabric loom.With reference to Fig. 1, pile fabric loom comprises pile orientation equipment 11.Pile orientation equipment 11 has cloth induction element 1 and the rocking element 2 that is fixedly mounted on the axle 3.Cloth induction element 1 is shaped as cylindrical and is fixed to the top of rocking element 2, and is driven the reciprocal direction back and forth that is used for shown in the axle 3 upper edge arrow A 1 by the terry motion (not shown) and waves.Rocking element 2 has from its projection of stretching out 4 and has the connecting pin 5 in the hole projection of being inserted through 4.Connecting pin 5 moves fell plate 7 and temple equipment (not shown) together by the fore-and-aft direction of connector 6 along pile fabric loom.Thus, the W that weaves cotton cloth that extends between cloth induction element 1 and the fell W1 just reciprocally waves along the fore-and-aft direction shown in the arrow A 2 by the rocking action of cloth induction element 1, so that the position of fell W1 moves back and forth along the fore-and-aft direction of pile fabric loom.
Fig. 1 shows the pile fabric loom during the bright pick, and cloth induction element 1 is moved to its rear position at this moment, and fell W1 then overlaps with the stop position of reed 8 in the pile fabric loom.Fig. 2 shows the pile fabric loom during the loose weft, and cloth induction element 1 is moved to its anterior position at this moment, and fell W1 is then spaced apart with the stop position of reed 8 within a predetermined distance.At the pile fabric loom run duration, the loose weft operation is that opening operation and the wefting insertion by warp thread Y carries out in the state of Fig. 2, and the bright pick operation is that opening operation and the wefting insertion by warp thread Y carries out in the state of Fig. 1.The W that weaves cotton cloth with pile of forming by bright pick guides the winding side of pile fabric loom into by cloth induction element 1, moves and is wrapped on the take up roll (not shown) around surface roll 9 and cord roller 10 then.
The position of carriage 12 above cloth induction element 1 is mounted to the frame (not shown) of pile fabric loom.The cylindrical support element 13 that extends along pile fabric loom knitting width direction is mounted to carriage 12 in its opposite end regularly by the bolt 15 that penetrates pressing plate 14.Particularly, support component 13 has long and narrow hole 13A, the 13B that penetrates shaping at the front side of pile fabric loom and rear side, and bolt 15 passes long and narrow hole 13A, 13B and is used for support component 13 is fixed to carriage 12.
Introduce pile orientation equipment 11 hereinafter with reference to Fig. 3.With the predetermined spacing setting, each leaf spring all has crooked shape to a plurality of leaf springs 16 along the knitting width direction.Each leaf spring 16 all is fixed to support component 13 and is fixed to the tabular pile directed element 18 that extends along knitting width by screw 19 at its other end by screw 17 at the one end.Pile directed element 18 is set to be pressed on the outer surface of cloth induction element 1 and be installed on the pile fabric loom and terry motion that can be by cloth induction element 1 moves along the fore-and-aft direction of pile fabric loom by the compressing power of leaf spring 16 W that will weave cotton cloth.Loose bolts 15, support component 13 can rotate by long and narrow hole 13A, 13B.In other words, support component 13 can be when bolt 15 be loosening rotating in a circumferential direction along cylindrical support element 13.By the support component 13 that turns clockwise among Fig. 1, pile directed element 18 promptly is released to break away from and the engaging of cloth induction element 1.Thus, assembling or maintenance operation (for example introducing is weaved cotton cloth or connected warp thread) promptly can be carried out under improved machinability.
Pile directed element 18 with contact surface 20 be set to make contact surface 20 during bright pick, to be parallel at its contact point place and cloth induction element 1 tangent straight line so that contact surface 20 by moving direction setting along the swaying direction or the cloth induction element 1 of rocking element 2.Contact surface 20 be shaped as shown in Figure 2 have drape induction element 1 the whole length of range L that vertically moves stably to press to cloth induction element 1.Cloth induction element 1 is used to guide the weave cotton cloth outer surface of W to be shaped as and to have curved surface, the contact surface 20 of pile directed element 18 then is shaped as has plane surface, so that during the normal rotation of pile fabric loom, be formed with wedge shape space 21 between the pile directed element 18 of side or the W advancing side of weaving cotton cloth at its upstream at cloth induction element 1 with respect to the moving direction of the W that weaves cotton cloth.Similarly wedge shape space 22 also is formed on the W that weaves cotton cloth with respect to the downstream of its moving direction or the winding side of pile fabric loom.Thus, wedge shape space 21,22 promptly is formed on upstream side and the downstream of W with respect to cloth induction element 1 and pile directed element 18 of weaving cotton cloth.These spaces 21,22 W that helps to weave cotton cloth enters and leaves alignment regions between cloth induction element 1 and the pile directed element 18 smoothly.
Below will introduce the operation and the advantageous effects of the pile orientation equipment in the pile fabric loom according to a first advantageous embodiment of the invention.At the pile fabric loom run duration, cloth induction element 1 is by terry motion (not shown) vertically and with predetermined working method swinging along pile fabric loom.
The W that weaves cotton cloth moves forward according to knit operation and enters smoothly in the wedge shape space 21.In wedge shape space 21, the pile among the W that weaves cotton cloth is laid gradually backward by the contact surface 20 of pile directed element 18.Contact point place between contact surface 20 and cloth induction element 1, the pile among the W that weaves cotton cloth is owing to the compressing power in the leaf spring 16 that is pressed towards the W that weaves cotton cloth is subjected to strong pressure.And, because cloth induction element 1 vertically moves reciprocally swinging on the range L by terry motion above-mentioned shown in Fig. 2, therefore the pile on the contact surface 20 will bear the active force that is produced by sliding-contact, and is subjected to the strong pressure by the compressing power generation of leaf spring 16 simultaneously.So, the pile of laying is thus flattened securely just as ironed.
The W that weaves cotton cloth that accepts the pile orientation thus leaves and stably is wrapped in from space 22 on the take up roll (not shown) and can not allow pile perk through surface roll 9 and cord roller 10 time.Therefore, the synergy of strong pressure that the pile fabric loom that the pile orientation equipment 11 with pile directed element 18 has been installed just can be by pressing to pile and the sliding-contact power that applied by terry motion is produced its pile along the firmly directed W that weaves cotton cloth of a direction.
If mixed weft or broken yarn take place in warp thread Y during knit operation, so just along the reverse drive pile fabric loom to repair.Along reverse mobile pile fabric loom the time, the W that weaves cotton cloth is moved backward.Because pile laid securely, the W that therefore weaves cotton cloth can enter smoothly in the wedge shape space 22 and can not allow pile at the contact point place of pile directed element 18 owing to be touched surperficial 20 tractives and perk.Therefore, just needn't worry for example the such defective of abrasion mark may along the reverse drive pile fabric loom time, occur.
First preferred embodiment of the present invention provides following advantageous effects:
(1) synergy of the pile orientation equipment 11 sliding-contact power that can apply by strong pressure and by terry motion makes pile firmly directed along a direction.
(2) weaving cotton cloth W can be not crooked when the W that will weave cotton cloth by pile directed element 18 is pressed to the cloth induction element 1 of rigidity, so that pile directed element 18 can directly apply the compressing power of leaf spring 16 to the W that weaves cotton cloth, improves the pressure of pressing to pile thus.Because leaf spring 16 is removable, the therefore leaf spring that can select to have required pressure size according to the type of the W that weaves cotton cloth that will weave.
(3) because leaf spring 16 can absorb vibration, the required pressure of therefore pressing to pile can be held constant and the influence of the vibration that can not be subjected to producing basically during the pile fabric loom knit operation.
(4) because therefore contact surface 20 quilts of pile directed element 18 along the moving direction setting of cloth induction element 1, do not worry that the contact surface 20 of pile directed element 18 can and damage and weave cotton cloth W or stop terry motion with cloth induction element 1 collision of shaking by terry motion.
Introduce second preferred embodiment of the present invention hereinafter with reference to Fig. 4.The difference of second preferred embodiment and first preferred embodiment is to have revised cloth induction element 1 and pile directed element 18.Use identical Reference numeral represent with first preferred embodiment in corresponding those parts of like or element, and its explanation all is omitted.
According to second preferred embodiment of the present invention, cylindrical support element 23 is fixed to the upper end of rocking element 2, and the pencil cloth induction element 24 that extends along the width of cloth is fixed to support component 23.Cloth induction element 24 has flat pressure bearing surface 25 as the cloth guiding surface.Columniform pile directed element 26 is fixed to the leaf spring 16 of pile orientation equipment 11 by screw 19.Pile directed element 26 is set to the W that weaves cotton cloth is pressed on the pressure bearing surface 25 of cloth induction element 24.Thus, the same with situation in first preferred embodiment, between cloth induction element 24 and pile directed element 26, formed wedge shape space 27 and wedge shape space 28, and the W that weaves cotton cloth enters in the wedge shape space 27 and from wedge shape space 28 and leaves.
In Fig. 4, cloth induction element 24 during the bright pick and the cloth induction element 24 during the loose weft are represented with solid line respectively and are dotted.According to second preferred embodiment of the present invention, the strong pressure that applies to pile by pile directed element 26 and be added to the W that weaves cotton cloth by the sliding-contact power that the terry motion of cloth induction element 24 produces.Thus,, the synergy of strong pressure and sliding-contact power can be obtained, thereby its pile can be woven by the W that weaves cotton cloth along the firm orientation of a direction according to second preferred embodiment of the present invention.Therefore, can obtain the advantageous effects identical with first preferred embodiment.
The present invention is not limited to the first and second above-mentioned preferred embodiments, but can following example be modified to various optional embodiment.
(5) with reference to Fig. 5 A, an optional embodiment according to the present invention shows the pile orientation equipment, the pile directed element 29 that is fixed to leaf spring 16 by screw 19 be formed have haply identical with situation among first embodiment tabular, but 30 moving directions with respect to the W that weaves cotton cloth with curved surfaces 31 of contact surface are formed on its upstream side.Curved surfaces 31 W that allows to weave cotton cloth is set moves through crimping point between pile directed element 29 and the cloth induction element 1 smoothly.
(6) with reference to Fig. 5 B, an optional embodiment according to the present invention shows the pile orientation equipment, the pile directed element 32 that is fixed to leaf spring 16 by screw 19 is formed to have tabularly, and the contact surface 33 of pile directed element 32 is respectively formed at its upstream side and downstream with respect to the moving direction of the W that weaves cotton cloth with curved surfaces 34 and 35.The curved surfaces 35 that pile directed element 32 the is set W that allows to weave cotton cloth along the reverse drive pile fabric loom time enters between pile directed element 32 and the cloth induction element 1 smoothly.Thus, can avoid damaging the W that weaves cotton cloth that oppositely moves.
(7) be not limited to provide by leaf spring 16 therein the structure of compressing power according to the pile directed element 18,26,29,32 of the foregoing description, and the pile directed element can be formed and makes that compressing power is to be provided by himself weight.
(8) tabular pile directed element is formed for example have the curved surfaces shown in Fig. 5 A 31 or have for example curved surfaces shown in Fig. 5 B 34,35, cloth induction element 1 can have and is used to guide the planar pilot surface of W of weaving cotton cloth, and example is cloth induction element 24 as shown in Figure 4.
(9) pile directed element 18,26,29,32 is not limited to pile directed element therein and defeats set-up mode to cloth induction element 1 or 24 by the compressing of leaf spring 16 or himself weight, but can form as described below.Thereby pile directed element 18,26,29,32 can be set to need not to apply compressing power or the fixing W that can will weave cotton cloth to be pressed on the cloth induction element 1,24 spaced apartly with preset space length and the cloth induction element 1,24 narrower than the thickness of the W that weaves cotton cloth, consequently makes pile directed element 18,26,29,32 be pressed on the cloth induction element 1,24 by the reaction force of the W stretching action of the weaving cotton cloth W that will weave cotton cloth.
(10) set-up mode of reciprocally swinging therein cloth induction element 1,24 is not limited in preferred embodiment, but can be set to move back and forth linearly.
(11) according to the present invention, the structure below wherein the contact surface 20,30 of pile directed element 18,26,29,32 has been comprised by the structure along the moving direction setting of cloth induction element 1,24.When cloth induction element 1,24 reciprocally swingings, pile directed element 18,26,29,32 is not limited to contact surface wherein and is parallel to structure with the tangent straight line of contact point, but can be set to tangential perpendicular to contact point.When cloth induction element 1,24 moved back and forth linearly, pile directed element 18,26,29,32 can be set to be parallel to or perpendicular to the linear moving direction of cloth induction element 1,24.

Claims (10)

1. pile orientation equipment (11) that is used for pile fabric loom, be used for producing the weave cotton cloth pile fabric loom of (W) and have terry motion, weave cotton cloth (W) moved back and forth to move the position of fell (W1) by terry motion along the fore-and-aft direction of pile fabric loom, form pile by terry motion in weave cotton cloth (W), pile orientation equipment (11) comprising:
Cloth induction element (1,24) can move back and forth and to the winding side guiding of pile fabric loom weave cotton cloth (W) along the fore-and-aft direction of pile fabric loom by terry motion,
It is characterized in that, pile orientation equipment (11) comprises and is used for weave cotton cloth (W) is pressed in cloth induction element (1,24) the pile directed element (18 on, 26,29,32), and pile directed element (18,26,29,32) be installed on the pile fabric loom and can not move by the fore-and-aft direction of terry motion along pile fabric loom.
2. pile orientation equipment as claimed in claim 1 (11) is characterized in that, pile directed element (18,26,29,32) have weave cotton cloth (W) is pressed in contact surface (20 on the cloth induction element (1,24), 30,33), contact surface (20,30,33) by moving direction setting along cloth induction element (1,24).
3. pile orientation equipment as claimed in claim 1 or 2 (11) is characterized in that, contact surface (20,30,33) has the whole length that vertically moves scope (L) of drape induction element (1,24).
4. pile orientation equipment as claimed in claim 1 or 2 (11) is characterized in that, at contact surface (20,30,33) and cloth induction element (1,24) be formed with wedge shape space (21,22,27,28) between, and weave cotton cloth (W) enters in the wedge shape space (21,22,27,28).
5. pile orientation equipment as claimed in claim 4 (11) is characterized in that, wedge shape space (21,22,27,28) with respect to contact surface (20,30,33) and cloth induction element (1,24) be respectively formed at the upstream side of weave cotton cloth (W) and the downstream of (W) of weaving cotton cloth.
6. pile orientation equipment as claimed in claim 1 or 2 (11) is characterized in that, cloth induction element (1,24) surface and contact surface (20,30,33) any one surface in is shaped as has curved surface, and another surface then is shaped as has plane surface.
7. pile orientation equipment as claimed in claim 1 or 2 (11) is characterized in that, by compressing power pile directed element (18,26,29,32) is pressed to cloth induction element (1,24).
8. pile orientation equipment as claimed in claim 7 (11) is characterized in that, compressing power is the weight generation by leaf spring (16) or pile directed element (18,26,29,32) self.
9. pile orientation equipment as claimed in claim 1 or 2 (11), it is characterized in that fixedly the pile directed element (18,26,29,32) thus spaced apart with predetermined spacing and cloth induction element (1,24) so that pile directed element (18,26,29,32) by the reaction force of (W) stretching action of weaving cotton cloth will weave cotton cloth (W) be pressed on the cloth induction element (1,24).
10. pile orientation equipment as claimed in claim 1 or 2 (11), it is characterized in that, pile orientation equipment (11) has cylindrical support element (13), cylindrical support element (13) is set to extend along the direction of pile fabric loom knitting width, be mounted to the frame of pile fabric loom regularly by bolt (15), and can rotating in a circumferential direction when loose bolts (15) along cylindrical support element (13), and pile directed element (18,26,29,32) support by cylindrical support element (13).
CN 201110004396 2010-01-12 2011-01-11 Pile orientation device for pile fabric loom Expired - Fee Related CN102127834B (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2010003514A JP5644113B2 (en) 2010-01-12 2010-01-12 Pile aligner in pile loom
JP2010-003514 2010-01-12

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CN102127834A true CN102127834A (en) 2011-07-20
CN102127834B CN102127834B (en) 2013-09-04

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CN (1) CN102127834B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106167948A (en) * 2016-08-31 2016-11-30 山东日发纺织机械有限公司 A kind of loom Bo Mao mechanism

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106012212B (en) * 2016-07-29 2018-04-13 鲁丰织染有限公司 Ceremonial dress face fabric method for weaving and the special temple of full dress kind face weave

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1361312A (en) * 1971-03-17 1974-07-24 Sulzer Ag Looms for making terry cloth
JPH10273854A (en) * 1997-03-28 1998-10-13 Toyota Autom Loom Works Ltd Pile arranging apparatus in pile weaving machine
CN1423158A (en) * 2001-11-22 2003-06-11 日立制作所股份有限公司 Grinding cloth for directional processing
CN1710168A (en) * 2004-06-18 2005-12-21 圣豪纺织机械有限公司 Method and device for shedding jacquard patterned pile warp yarns in a face to face weaving machine

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6451680A (en) 1987-08-22 1989-02-27 Sumitomo Electric Industries Oxide ceramics laminated layer structure and its manufacture
JPH0640601Y2 (en) * 1987-09-18 1994-10-26 津田駒工業株式会社 Pile aligner
JPH0187182U (en) * 1987-11-27 1989-06-08
JPH01183553A (en) * 1988-01-13 1989-07-21 Kikuo Niida Towel loom
JPH1121743A (en) * 1997-07-07 1999-01-26 Tsudakoma Corp Pile formation system
JP2001006878A (en) 1999-06-22 2001-01-12 Matsushita Electric Ind Co Ltd Thin film el element and its driving method

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1361312A (en) * 1971-03-17 1974-07-24 Sulzer Ag Looms for making terry cloth
JPH10273854A (en) * 1997-03-28 1998-10-13 Toyota Autom Loom Works Ltd Pile arranging apparatus in pile weaving machine
CN1423158A (en) * 2001-11-22 2003-06-11 日立制作所股份有限公司 Grinding cloth for directional processing
CN1710168A (en) * 2004-06-18 2005-12-21 圣豪纺织机械有限公司 Method and device for shedding jacquard patterned pile warp yarns in a face to face weaving machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106167948A (en) * 2016-08-31 2016-11-30 山东日发纺织机械有限公司 A kind of loom Bo Mao mechanism

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EP2343404B1 (en) 2013-06-05
CN102127834B (en) 2013-09-04
JP2011144456A (en) 2011-07-28
JP5644113B2 (en) 2014-12-24
EP2343404A1 (en) 2011-07-13

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