CN112981621B - Multilayer textile apron structure capable of being independently disassembled and assembled and replaced - Google Patents

Multilayer textile apron structure capable of being independently disassembled and assembled and replaced Download PDF

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Publication number
CN112981621B
CN112981621B CN202110186025.5A CN202110186025A CN112981621B CN 112981621 B CN112981621 B CN 112981621B CN 202110186025 A CN202110186025 A CN 202110186025A CN 112981621 B CN112981621 B CN 112981621B
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layer
clamping
buffer layer
replaced
apron
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CN112981621A (en
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王介文
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Zhejiang Huayang Leisure Products Co.,Ltd.
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Zhejiang Huayang Leisure Products Co ltd
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    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01HSPINNING OR TWISTING
    • D01H5/00Drafting machines or arrangements ; Threading of roving into drafting machine
    • D01H5/18Drafting machines or arrangements without fallers or like pinned bars
    • D01H5/70Constructional features of drafting elements
    • D01H5/86Aprons; Apron supports; Apron tensioning arrangements

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Textile Engineering (AREA)
  • Connection Of Plates (AREA)

Abstract

The invention provides a multilayer textile apron structure capable of being independently disassembled, assembled and replaced, relates to the technical field of textile equipment, and aims to solve the problems that the conventional textile apron is subjected to repeated mechanical stress in the operation process to cause rubber fatigue, so that the outer surface of the apron is cracked and damaged, and the apron can only be integrally replaced; the left side and the right side of the main body are fixedly clamped with the clamping and buckling mechanisms; the four buckling mechanisms are divided into two groups, and the two groups are fixedly connected through the bottom of the integration mechanism through bolt assemblies; and a spring mechanism is arranged inside the bottom of the integration mechanism. In this device, set up outer buffer layer and interior buffer layer, outer buffer layer makes the apron main part receive repeated mechanical stress can obtain the buffering at the operation in-process, and interior buffer layer can be so that the effort of bounce-back can obtain the buffering to alleviate the apron surface and split a crack and damage, and can change alone when the skin is damaged.

Description

Multilayer textile apron structure capable of being independently disassembled and assembled and replaced
Technical Field
The invention belongs to the technical field of textile equipment, and particularly relates to a multi-layer textile apron structure capable of being independently disassembled and replaced.
Background
The leather ring is a leather or synthetic rubber ring-shaped part used for controlling the movement of fibers in a spinning machine, is one of important parts of the spinning machine, and is generally used in a drafting mechanism of a roving frame and a spinning frame. A spinning apron for controlling the movement of fibres in a spinning machine, which reduces wear and vibration and noise.
For example, publication nos.: CN107338520A discloses a spinning apron, which comprises an apron body, wherein a reinforced steel belt is arranged in the middle of the apron body, compression-resistant laminates are arranged on both sides of the reinforced steel belt, wear-resistant laminates are arranged on both sides of the compression-resistant laminates, a smooth antistatic layer is arranged on the outer side of the apron body, fixing grooves are arranged on both sides of the apron body, a metal mesh grid is embedded in the inner side wall of each fixing groove, a reinforcing cushion body is embedded in each fixing groove, and a silica gel cushion layer is arranged on one side of one end of each reinforcing cushion body. Resources are saved, the smooth anti-static layer is used for avoiding the influence of burrs on the yarns, and the quality of the yarns is improved.
Based on the prior art, the prior textile apron is subjected to repeated mechanical stress in the running process to cause rubber fatigue, so that the outer surface of the apron is cracked and damaged, and the apron can only be integrally replaced; the inner surface of the apron is contacted with metal devices such as a spinning roller and the like, the friction force is large, the apron is easy to wear, the whole apron cannot be used continuously after the inner surface is damaged, and resources are wasted.
Disclosure of Invention
In order to solve the technical problems, the invention provides a multi-layer textile apron structure capable of being independently disassembled, assembled and replaced, so as to solve the problems that the conventional textile apron is subjected to repeated mechanical stress in the operation process to cause rubber fatigue, so that the outer surface of the apron is cracked and damaged, and the apron can only be integrally replaced; the inner surface of the apron is contacted with metal devices such as a spinning roller and the like, the friction force is large, the apron is easy to wear, the whole apron cannot be used continuously after the inner surface is damaged, and resources are wasted.
The invention relates to a purpose and an effect of a multi-layer textile leather collar structure capable of being independently disassembled, assembled and replaced, which are achieved by the following specific technical means:
a multi-layer textile apron structure capable of being independently disassembled, assembled and replaced comprises a main body; the left side and the right side of the main body are fixedly clamped with the clamping and buckling mechanisms; the four buckling mechanisms are divided into two groups, and the two groups are fixedly connected through the bottom of the integration mechanism through bolt assemblies; and a spring mechanism is arranged inside the bottom of the integration mechanism.
Furthermore, the main body comprises an outer layer, an outer buffer layer, a reinforcing layer, an inner buffer layer and an inner layer, wherein the outer buffer layer is provided with three unidirectional moving upward clamping cone structures on two sides respectively, the inner buffer layer is provided with three unidirectional moving downward clamping cone structures on two sides respectively, the reinforcing layer is provided with three clamping groove structures in opposite directions on two sides respectively, and an inner ring of the outer layer is provided with three clamping grooves in unidirectional upward clamping; the inlayer outer lane is equipped with the draw-in groove of three one-way downward joint, and skin, back up coat, inlayer draw-in groove all are greater than outer buffer layer and interior buffer layer joint awl.
Further, buckle mechanism contains picture peg, cardboard, spring axle, first through-hole, and the buffer layer is fixed run through to the picture peg, and the top is through spring axle swing joint cardboard to the bottom is equipped with first through-hole.
Further, the cardboard contains auxiliary sheet, connecting plate, briquetting, and auxiliary sheet fixed welding is at cardboard outer end top, the inboard fixed welding connecting plate of cardboard outer wall, and three groups of briquetting of inboard fixed welding of connecting plate.
Further, it contains roof, card needle, bottom plate, second through-hole to integrate the mechanism, and the roof is fixed to be bonded at the back up coat top, and the card needle runs through roof and back up coat to bottom activity joint is inside the bottom plate, and the bottom plate is equipped with the second through-hole.
Further, spring mechanism contains button, spring post, rotatory calorie of post, passive calorie of post, and button fixed connection spring post's bottom, and the top fixed connection of spring post is at rotatory calorie of post central authorities, and rotatory calorie of post activity joint is passive calorie of post.
Furthermore, the moving distance of the passive clamping column is greater than the height of the clamping needle in the bottom plate, and the size of the long clamping cone of the passive clamping column is smaller than the moving distance of the spring column.
Compared with the prior art, the invention has the following beneficial effects:
1. in this device, set up outer buffer layer and interior buffer layer, outer buffer layer makes the apron main part receive repeated mechanical stress can obtain the buffering at the operation in-process, and interior buffer layer can be so that the effort of bounce-back can obtain the buffering to alleviate the apron surface and split a crack and damage, and can change alone when the skin is damaged.
2. In this device, it is big to have set up metal parts contact friction such as inlayer and weaving roller, can dismantle alone after impaired and change, utilizes the decurrent joint awl structure of buffer layer both sides unidirectional movement and inlayer draw-in groove joint each other fixed for can change alone after the inlayer damages, the main part can continue to use, avoids the wasting of resources.
3. In this device, buckle mechanism and integration mechanism have been set up for integration mechanism fixes the back in the reinforced layer, utilizes bolt assembly to run through and fixed connection first through-hole and second through-hole, and then fixed connection integration mechanism and buckle mechanism, finally with reinforced layer, interior buffer layer, outer buffer layer, inlayer, outer fixed connection together, and can realize every layer and dismantle alone.
Drawings
Fig. 1 is a schematic front view of the present invention.
Fig. 2 is a schematic left-side sectional structure of the present invention.
Fig. 3 is a schematic cross-sectional view of the fastening mechanism of the present invention.
Fig. 4 is a left enlarged structural schematic view of the buckle mechanism of the present invention.
Fig. 5 is a schematic cross-sectional view of a reinforcing layer according to the present invention.
Fig. 6 is an enlarged schematic view of the spring mechanism of the present invention.
In the drawings, the corresponding relationship between the component names and the reference numbers is as follows:
1. a main body; 101. an outer layer; 102. an outer buffer layer; 103. a reinforcement layer; 104. an inner buffer layer; 105. an inner layer; 2. a buckle mechanism; 201. inserting plates; 202. clamping a plate; 2021. an auxiliary sheet; 2022. a connecting plate; 2023. briquetting; 203. a spring shaft; 204. a first through hole; 3. an integration mechanism; 301. a top plate; 302. clamping a needle; 303. a base plate; 304. a second through hole; 4. a spring mechanism; 401. a button; 402. a spring post; 403. rotating the clamping column; 404. and (5) passively clamping the column.
Detailed Description
The embodiments of the present invention will be described in further detail with reference to the drawings and examples. The following examples are intended to illustrate the invention but are not intended to limit the scope of the invention.
In the description of the present invention, "a plurality" means two or more unless otherwise specified; the terms "upper", "lower", "left", "right", "inner", "outer", "front", "rear", "head", "tail", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are only for convenience in describing and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus, should not be construed as limiting the invention. Furthermore, the terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, e.g., as being fixed or detachable or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Example (b):
as shown in figures 1 to 6:
the invention provides a multi-layer textile apron structure capable of being independently disassembled, assembled and replaced, which comprises a main body 1; the left side and the right side of the main body 1 are fixedly clamped with the clamping and buckling mechanisms 2; the four buckling mechanisms 2 are divided into two groups, and the two groups are fixedly connected with the bottom of the integrating mechanism 3 through bolt assemblies; the bottom of the integration mechanism 3 is internally provided with a spring mechanism 4.
The main body 1 comprises an outer layer 101, an outer buffer layer 102, a reinforcing layer 103, an inner buffer layer 104 and an inner layer 105, wherein the outer buffer layer 102 is provided with three unidirectional moving upward clamping cone structures on two sides respectively, the inner buffer layer 104 is provided with three unidirectional moving downward clamping cone structures on two sides respectively, the reinforcing layer 103 is provided with three clamping groove structures in opposite directions on two sides respectively, and an inner ring of the outer layer 101 is provided with three clamping grooves in unidirectional upward clamping; the outer ring of the inner layer 105 is provided with three clamping grooves which are clamped downwards in a one-way mode, and the clamping grooves of the outer layer 101, the reinforcing layer 103 and the inner layer 105 are all larger than clamping cones of the outer buffer layer 102 and the inner buffer layer 104, so that the outer buffer layer 102 can be fixedly clamped with the outer layer 101 and the reinforcing layer 103, and the inner buffer layer 104 can be fixedly clamped with the inner layer 105 and the reinforcing layer 103.
Wherein, buckle mechanism 2 contains picture peg 201, cardboard 202, spring axle 203, first through-hole 204, and picture peg 201 is fixed to run through the buffer layer, and spring axle 203 swing joint cardboard 202 is passed through at the top to the bottom is equipped with first through-hole 204, and after picture peg 201 runs through the buffer layer, can be with buffer layer and inlayer 105 or outer 101 fixed joint through the rotation of spring axle 203 with cardboard 202.
Wherein, cardboard 202 contains supplementary piece 2021, connecting plate 2022, briquetting 2023, and supplementary piece 2021 fixed welding is at cardboard 202 outer end top, and cardboard 202 outer wall inboard fixed welding connecting plate 2022, connecting plate 2022 inboard fixed welding three group's briquetting 2023, and supplementary piece 2021 can make rotatory cardboard 202 more convenient, and briquetting 2023 can make inner layer 105 or outer 101 obtain the clamping of more compaction.
Wherein, integration mechanism 3 contains roof 301, card needle 302, bottom plate 303, second through-hole 304, and roof 301 fixed bonding is at the reinforcement layer 103 top, and card needle 302 runs through roof 301 and reinforcement layer 103 to the bottom activity joint is inside bottom plate 303, and bottom plate 303 is equipped with second through-hole 304, and second through-hole 304 can be run through by bolt assembly simultaneously with first through-hole 204, thereby realizes fixed connection buckle mechanism 2 and integration mechanism 3.
The spring mechanism 4 comprises a button 401, a spring column 402, a rotary clamping column 403 and a passive clamping column 404, the button 401 is fixedly connected with the bottom of the spring column 402, the top of the spring column 402 is fixedly connected to the center of the rotary clamping column 403, the rotary clamping column 403 is movably clamped with the passive clamping column 404, when the button 401 is pressed upwards, the spring column 402 moves upwards, the passive clamping column 404 is pushed to move upwards, the rotary clamping column 403 rotates simultaneously, the rotary clamping column 403 and the passive clamping column 404 are clamped with each other at a short clamping cone position, the clamping pin 302 is ejected upwards, and the reinforcing layer 103 can be replaced independently after the clamping pin 302 is pulled out.
The moving distance of the passive clamp column 404 is greater than the height of the clamp pin 302 in the bottom plate 303, and the long clamp cone of the passive clamp column 404 is smaller than the moving distance of the spring column 402, so that the moving distance of the spring column 402 can meet the requirement of the passive clamp column 404 on the ejection distance of the clamp pin 302.
When in use: the upward clamping cone of the outer buffer layer 102 is fixedly clamped with the clamping grooves of the outer layer 101 and the reinforcing layer 103, the downward clamping cone of the inner buffer layer 104 is fixedly clamped with the clamping grooves of the inner layer 105 and the reinforcing layer 103, the inserting plate 201 is inserted into the buffer layer, the clamping plate 202 is rotated downwards by the spring shaft 203 until the pressing block 2023 inside the clamping plate 202 compresses the buffer layer and the reinforcing layer 103, the clamping pin 302 penetrates through the reinforcing layer 103, and the first through hole 204 inside the clamping mechanism 2 and the second through hole 304 of the integrating mechanism 3 penetrate through and are fixedly connected by the bolt assembly, so that the installation work of the device is completed.
The embodiments of the present invention have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiment was chosen and described in order to best explain the principles of the invention and the practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.

Claims (6)

1. The utility model provides a weaving leather collar structure that multilayer dismouting was changed alone which characterized in that: comprises a main body (1); the left side and the right side of the main body (1) are fixedly clamped with the clamping buckle mechanisms (2); the four buckling mechanisms (2) are divided into two groups, and the two groups are fixedly connected with each other by penetrating through the bottom of the integration mechanism (3) through bolt assemblies; a spring mechanism (4) is arranged inside the bottom of the integration mechanism (3);
the main body (1) comprises an outer layer (101), an outer buffer layer (102), a reinforcing layer (103), an inner buffer layer (104) and an inner layer (105), wherein the outer buffer layer (102) is provided with three unidirectional moving upward clamping cone structures on two sides respectively, the inner buffer layer (104) is provided with three unidirectional moving downward clamping cone structures on two sides respectively, the reinforcing layer (103) is provided with three clamping groove structures in opposite directions on two sides respectively, and the inner ring of the outer layer (101) is provided with three unidirectional upward clamping grooves; the outer ring of the inner layer (105) is provided with three clamping grooves which are clamped downwards in a one-way mode, and the clamping grooves of the outer layer (101), the reinforcing layer (103) and the inner layer (105) are all larger than clamping cones of the outer buffer layer (102) and the inner buffer layer (104).
2. The multi-layer textile apron structure of claim 1, which can be individually removed and replaced, characterized in that: buckle mechanism (2) contain picture peg (201), cardboard (202), spring axle (203), first through-hole (204), and picture peg (201) is fixed to be run through the buffer layer, and top is through spring axle (203) swing joint cardboard (202) to the bottom is equipped with first through-hole (204).
3. The multi-layer textile apron structure of claim 2, which can be individually removed and replaced, characterized in that: the clamping plate (202) comprises an auxiliary sheet (2021), a connecting plate (2022) and pressing blocks (2023), the auxiliary sheet (2021) is fixedly welded at the top of the outer end of the clamping plate (202), the connecting plate (2022) is fixedly welded on the inner side of the outer wall of the clamping plate (202), and the three pressing blocks (2023) are fixedly welded on the inner side of the connecting plate (2022).
4. The multi-layer textile apron structure of claim 1, which can be individually removed and replaced, characterized in that: integration mechanism (3) contain roof (301), card needle (302), bottom plate (303), second through-hole (304), and roof (301) are fixed to be bonded at reinforced layer (103) top, and card needle (302) run through roof (301) and reinforced layer (103) to bottom activity joint is inside bottom plate (303), and bottom plate (303) are equipped with second through-hole (304).
5. The multi-layer textile apron structure of claim 1, which can be individually removed and replaced, characterized in that: spring mechanism (4) contain button (401), spring post (402), rotatory calorie of post (403), passive calorie of post (404), and button (401) fixed connection spring post (402)'s bottom, the top fixed connection of spring post (402) is in rotatory calorie of post (403) central authorities, and rotatory calorie of post (403) activity joint is passive calorie of post (404).
6. The multi-layer textile apron structure of claim 5, which can be individually replaced and disassembled, characterized in that: the moving distance of the passive clamping column (404) is greater than the height of the clamping pin (302) in the bottom plate (303), and the long clamping cone size of the passive clamping column (404) is smaller than the moving distance of the spring column (402).
CN202110186025.5A 2021-02-14 2021-02-14 Multilayer textile apron structure capable of being independently disassembled and assembled and replaced Active CN112981621B (en)

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CN202110186025.5A CN112981621B (en) 2021-02-14 2021-02-14 Multilayer textile apron structure capable of being independently disassembled and assembled and replaced

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CN202110186025.5A CN112981621B (en) 2021-02-14 2021-02-14 Multilayer textile apron structure capable of being independently disassembled and assembled and replaced

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CN112981621B true CN112981621B (en) 2022-03-25

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0949126A (en) * 1995-08-02 1997-02-18 Pobaale Kogyo Kk Apron sheet of comber
CN103726142A (en) * 2013-12-27 2014-04-16 吴江市振中纺织品有限公司 Weaving leather ring
CN207295011U (en) * 2017-06-29 2018-05-01 苏州市布意纺纺织有限公司 Textile leather collar
CN211595886U (en) * 2018-08-20 2020-09-29 李伟杰 Weaving leather collar with adjust auricle suddenly
CN211665228U (en) * 2019-11-30 2020-10-13 於金如 Multilayer textile apron structure capable of being independently disassembled and assembled and replaced

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0949126A (en) * 1995-08-02 1997-02-18 Pobaale Kogyo Kk Apron sheet of comber
CN103726142A (en) * 2013-12-27 2014-04-16 吴江市振中纺织品有限公司 Weaving leather ring
CN207295011U (en) * 2017-06-29 2018-05-01 苏州市布意纺纺织有限公司 Textile leather collar
CN211595886U (en) * 2018-08-20 2020-09-29 李伟杰 Weaving leather collar with adjust auricle suddenly
CN211665228U (en) * 2019-11-30 2020-10-13 於金如 Multilayer textile apron structure capable of being independently disassembled and assembled and replaced

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Address after: 317500 Guanzhuang Industrial Zone, RuoHeng Town, Wenling City, Taizhou City, Zhejiang Province

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Applicant before: Wang Jiewen

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