CN2461943Y - Heald frames side rod structure of loom - Google Patents

Heald frames side rod structure of loom Download PDF

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Publication number
CN2461943Y
CN2461943Y CN 01201575 CN01201575U CN2461943Y CN 2461943 Y CN2461943 Y CN 2461943Y CN 01201575 CN01201575 CN 01201575 CN 01201575 U CN01201575 U CN 01201575U CN 2461943 Y CN2461943 Y CN 2461943Y
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CN
China
Prior art keywords
side rod
heald frame
wear plate
weaving loom
rod structure
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Expired - Fee Related
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CN 01201575
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Chinese (zh)
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周宝田
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Individual
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Individual
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Priority to CN 01201575 priority Critical patent/CN2461943Y/en
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Abstract

The utility model relates to a heald frame side rod structure of looms, wherein, a side rod is a long bar-shaped body, and the side rod body is integrally formed by aluminium material. One side end edge of the body is provided with a slide way part, and the surface of the slide way part is covered with a wear-resistant plate which is made of wear resisting material. The other side end edge of the side rod is respectively integrally formed with a supporting plate near the upper and the lower ends, the resistance strength of the side rod can be reinforced, so the side rod is not easy to deform or curve, and the utility model can reinforce the closed performance of the side rod and the wear-resisting plate.

Description

Weaving loom heald frame side rod structure
The utility model relates to textile machine, relates in particular to a kind of weaving loom heald frame side rod structure.
The function of general weaving loom mainly is that warp is staggered in parallel, its weaving action be utilize can upper and lower slippage heald frame finish.As shown in Figure 1 and Figure 2, weaving loom is to be respectively equipped with the sliding chute seat 15 with several chutes 16 in the both sides of board 10, and wherein sliding chute seat 15 can supply heald frame 20 upper and lower slippages.Heald frame 20 is to be connected in series the rectangle framework that forms mutually by two side rods 21 and upper and lower transverse slat 25, wherein side rod 21 corresponding upper and lower transverse slats 25 places have protruded out one respectively and have accepted sheet 24, accept sheet 24 and be used for the slotting transverse slat 25 that is solidly connected, the ora terminalis of side rod 21 corresponding sliding chute seat 15 chutes 16 is provided with a slide rail portion 22, produces the effect of relative slip for slide rail with sliding chute seat 15.As shown in Figure 3, traditional side rod 21 is to be made of a microscler shaft-like body 210, protruded out one on the edge of the corresponding transverse slat 25 in body 210 two ends and accepted sheet 24, body 210 is by plastic cement material one ejection formation, the body 210 of side rod 21 coats one deck corrosion resistant plate 23 outside slide rail portion 22, to improve the ABRASION RESISTANCE of slide rail portion.The preparation of side rod 21 for corrosion resistant plate 23 is coated in the side rod 21, needs corresponding corrosion resistant plate 23 designs one protuberance 31 in mould 30 appropriate locations as shown in Figure 4 usually, could form stair-stepping coating like this.There is following problem in this design of side rod 21: 1, power resistance strength deficiency in preparation and use.The body 210 of side rod 21 is by the plastic cement material ejection formation, because the crushing resistance of plastic cement material itself is poor, and influence the quality of material easily because of external factor, thereby cause side rod 21 whole power resistance strength deficiencies, easily because of the stressed bending that slides, even whole fracture, influence the braid movement of weaving loom.2, as shown in Figure 4, it requires the precision height of mould.Because mould 30 corresponding corrosion resistant plate 23 designs have protuberance 31; and being face with stainless steel 23, protuberance 31 contacts; therefore when if protuberance 31 contact-making surfaces tilt or salient point are arranged; can cause corrosion resistant plate 23 to tilt; and can't fit and form the gap fully with protuberance 31, when ejection formation, the phenomenon of flash 35 takes place in regular meeting like this; so during mfg. moulding die, must pay special attention to its precision.3, need processing in addition to revise.Brought forward is described, and high-precision mould must increase the cost of mould 30; In addition, the design of protuberance 31 also can be increased the manufacture difficulty of mould 30; Moreover when flash 35 takes place, need the side rod 21 and the flash 35 of corrosion resistant plate 23 seam crossings are revised removal, its invisible manufacturing cost that has improved whole side rod 21 again.Problem of environmental pollution is arranged when 4, reclaiming.The plastic cement material of side rod 21 bodies 210 is when recycling, and the plastic cement material of side rod body 210 need carry out heat fused, but plastic cement material is heated when reaching uniform temperature, can produce chemical change and be formed with poisonous gas, causes environmental pollution.5, adaptation is poor.The corrosion resistant plate 23 of general plastic cement material and metal material is dissimilar materials, its associativity is original to be not fine just, after side rod 21 slides for a long time, very easily produce high heat, because plastic cement material is different with the thermal coefficient of expansion of stainless steel, therefore after expanding with heat and contract with cold, plastic cement side rod body 210 very easily separates with corrosion resistant plate 23, both adaptations are very poor, peeling off phenomenon very easily, thus influence the whole service life of heald frame 20.
In view of this, creator of the present utility model carries out deep discussion according to being engaged in weaving loom research and development and the experience of making for many years at the problems referred to above that traditional heald frame side rod is faced, and actively seeks the scheme that solves, through constantly making great efforts and test, successfully develop the utility model finally.
The purpose of this utility model is to provide a kind of weaving loom heald frame side rod structure, and its power resistance strength that can strengthen side rod makes side rod be difficult for bending, and can strengthen the adaptation of side rod and wear plate, and has solved the problem of Mould Machining and environmental protection effectively.
The purpose of this utility model is realized by following technical scheme.
The utility model weaving loom heald frame side rod structure, this side rod is microscler shaft-like body, its improvements are, described side rod body is that aluminum material is one-body molded, its body one side edge is provided with slide rail portion one, this slide rail portion surface is coated with the wear plate that one deck high-abrasive material is made, and side rod in addition side edge closes on the upper and lower end place and is formed with respectively and accepts sheet.
Above-mentioned purpose of the present utility model can also further realize by following technical measures.
The utility model weaving loom heald frame side rod structure, the wear plate both sides medium film section of described side rod body are respectively equipped with together curved flank, and two curved flanks are cambered outwards arcuation; The curved flank of described wear plate can be the one bending and forms; The curved flank of described wear plate can be and fixedly installs; The curved flank of described wear plate can be integrated solid.
Concrete structure of the present utility model is provided in detail by following examples and accompanying drawing thereof.
Fig. 1 is a traditional textile machine overall appearance schematic diagram.
Fig. 2 is a traditional textile machine heald frame overall structure perspective exploded view.
Fig. 3 is a traditional textile machine side rod structural upright schematic appearance.
Fig. 3 A is an A-A section structure schematic diagram shown in Figure 3.
The generalized section of Fig. 4 for concerning between traditional textile machine side rod and mould.
Fig. 4 A is a flash shown in Figure 4 position structure enlarged diagram.
Fig. 5 is the perspective view of the utility model side rod.
Fig. 5 A is an A-A section structure schematic diagram shown in Figure 5.
The generalized section of Fig. 6 for concerning between the utility model side rod and mould.
Consult shown in Figure 5, the utility model weaving loom heald frame side rod structure, this side rod is microscler rhabodoid, the body of rod 500 is provided with slide rail portion 51 one at the ora terminalis of corresponding board 10 sliding chute seats 15 (shown in Figure 2), corresponding transverse slat 25 places, these body of rod 500 two ends are provided with the integrated sheet 54 of accepting respectively, and this accepts the transverse slat 25 interior (shown in Figure 2) that sheet 54 is used to be plugged in heald frame 20.
Consult Fig. 5, Fig. 5 A, shown in Figure 6, the body of rod 500 of side rod 50 is that aluminum material is one-body molded, be formed with simultaneously and accept sheet 54, slide rail portion 51 surfaces of the body of rod 500 are coated with the wear-resisting and withstand voltage wear plate of one deck 52, wear plate 52 of the present utility model adopts stainless steel to make, this wear plate 52 is [font, its both sides medium film section is respectively equipped with together curved flank 53, two curved flanks 53 are cambered outwards arcuation, this curved flank can be the one bending and forms, also can be and fixedly install, also can be integrated solid, be used to strengthen the power resistance strength of whole side rod 50.
Consult shown in Figure 6, the utility model during fabrication, earlier wear plate 52 is directly placed mould 60, and make curved flank 53 apical margins of wear plate 52 fit in mould 60 inner faces, aluminum raw material with side rod 50 bodies of rod 500 injects in the mould 60 then, to form the aluminium matter body of rod 500 of a shape, after slightly condensing, promptly can take out by side rod 50 bodies of rod 500, there is not the weaving loom heald frame side rod of environmental issue and low cost of manufacture when becoming power resistance strength foot, recovery.
The utility model has following advantage in use: do not have environmental issue when 1, reclaiming.When long-term use of side rod 50 and behind the aged deterioration, can be with side rod 50 heating, the body of rod 500 melted by heat that aluminum material is made, can reclaim and reuse, when heating again, aluminum material can not produce excessive toxic gas, so the problem of environmental pollution can overcome the traditional plastic cement side rod body of rod and reclaim the time.2, the preparation of mould is easy.Because when the wear plate 52 of side rod 50 is inserted mould 60, utilize the apical margin applying die surface of curved flank 53, therefore can reduce mould contact surface significantly tilts or the inclination that situation such as salient point causes occurs, its whole stickiness is preferable, the flash phenomenon can not take place, therefore not only less demanding to mould and die accuracy, also can save the cost of labor of follow-up trimming operation, while is mould 60 surfaces because the apical margin of wear plate 52 curved flanks 53 can be fitted, so mould 60 does not need to design protuberance, the difficulty of processing of mould is reduced, and nature can reduce production costs significantly like this.3, power resistance strength height.The wear plate 52 of side rod 50 of the present utility model is provided with curved flank 53, general curved flank all has certain strengthening action, these side rod 50 bodies of rod adopt aluminium to make, the whole power resistance strength of side rod 50 will inevitably be increased substantially, its serial connection transverse slat accept not easy fracture of sheet 54, side rod 50 also is difficult for flexural deformation, reduces the spoilage of heald frame.4, adaptation is good.The curved flank 53 that the utility model wear plate 52 is provided with makes wear plate 52 have zig zag plane, the material of side rod 50 bodies of rod can compress wear plate like this, simultaneously because the body of rod 500 is to be made by aluminum material, not only the same type of material adaptation is good, the fusing point of the body of rod 500 is also higher, general fricative temperature does not cause the aluminium material body of rod 500 to change, so can avoid peeling off of wear plate 52 and side rod 50, has prolonged the service life of side rod 50 effectively.
In sum, the utility model weaving loom heald frame side rod structure, reasonable in design has overcome pollution and the mould that the power resistance strength that traditional product exists is not good, adaptation is poor, produce environment when reclaiming and has prepared problems such as difficulty is big, the result of use ideal reaches design purpose.

Claims (5)

1, a kind of weaving loom heald frame side rod structure, this side rod is microscler shaft-like body, it is characterized in that, described side rod body is that aluminum material is one-body molded, its body one side edge is provided with slide rail portion one, this slide rail portion surface coats the wear plate that one deck high-abrasive material is made, and the contiguous upper and lower end of other side edge of side rod place is formed with respectively accepts sheet.
According to the described weaving loom heald frame of claim 1 side rod structure, it is characterized in that 2, the wear plate both sides medium film section of described side rod body is respectively equipped with together curved flank, two curved flanks are cambered outwards arcuation.
According to the described weaving loom heald frame of claim 2 side rod structure, it is characterized in that 3, the curved flank of described wear plate is that the one bending forms.
4, according to the described weaving loom heald frame of claim 2 side rod structure, it is characterized in that the curved flank of described wear plate can be and fixedly installs.
5, according to the described weaving loom heald frame of claim 2 side rod structure, it is characterized in that the solid that the curved flank of described wear plate is formed in one.
CN 01201575 2001-01-19 2001-01-19 Heald frames side rod structure of loom Expired - Fee Related CN2461943Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 01201575 CN2461943Y (en) 2001-01-19 2001-01-19 Heald frames side rod structure of loom

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Application Number Priority Date Filing Date Title
CN 01201575 CN2461943Y (en) 2001-01-19 2001-01-19 Heald frames side rod structure of loom

Publications (1)

Publication Number Publication Date
CN2461943Y true CN2461943Y (en) 2001-11-28

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CN 01201575 Expired - Fee Related CN2461943Y (en) 2001-01-19 2001-01-19 Heald frames side rod structure of loom

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101173414B (en) * 2006-11-03 2010-07-14 丁宏利 Fly-shuttle loom harness frame position limiter
CN101768807B (en) * 2008-12-23 2013-12-04 格罗兹-贝克特公司 Integrated pole having steady corner connecting parts
CN110117860A (en) * 2018-02-07 2019-08-13 广野精机股份有限公司 Improved inkle loom slide construction

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101173414B (en) * 2006-11-03 2010-07-14 丁宏利 Fly-shuttle loom harness frame position limiter
CN101768807B (en) * 2008-12-23 2013-12-04 格罗兹-贝克特公司 Integrated pole having steady corner connecting parts
CN110117860A (en) * 2018-02-07 2019-08-13 广野精机股份有限公司 Improved inkle loom slide construction

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C19 Lapse of patent right due to non-payment of the annual fee
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