Sock positioning structure in sock tension detection equipment

By introducing a positioning frame and positioning component structure into the sock tension testing equipment, and using a driving component to drive the tension rod to automatically open the sock, the problems of accuracy and efficiency caused by manual stretching are solved, and efficient and accurate automated testing is achieved.

CN223637227UActive Publication Date: 2025-12-05ZHUJI MINCHUANG SOCKS CO LTD
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Patent Information

Application Number
CN202421739869.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-12-05
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

Existing sock tension testing equipment relies on manual stretching, resulting in low accuracy and efficiency.

Method used

The socks are automatically stretched by using a positioning frame and positioning components, including a support base, a fixing plate, and a sleeve column. The tension rod is driven by a drive component to slide horizontally and expand the socks.

Benefits of technology

It improves the accuracy and efficiency of sock tension detection, ensures that socks are put on in an orderly manner and reduces manual operation, realizing a convenient automated detection process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the related technical field of sock tension detection, and discloses a sock positioning structure in sock tension detection equipment, which comprises a positioning frame, the positioning frame comprises a supporting seat and a fixing plate which are connected with each other, one side of the fixing plate is sequentially provided with a plurality of positioning pieces from top to bottom, and the positioning pieces are connected with the supporting seat. And the positioning piece comprises a sleeve column which is fixedly arranged on the fixing plate and is used for inserting and sleeving a sock leg. According to the sock tension detection device, the positioning piece can be in a stable arrangement state through the arrangement of the supporting seat and the fixing plate in the positioning frame, socks can be sleeved in order through the arrangement of the sleeve column in the positioning piece, and the two tension rods are opened outwards along with the operation of the driving piece, so that the purpose of detecting the tension of the socks is achieved; and in the sleeving stage, the tension rod and the sleeving column form a whole, sleeving of the socks is more convenient, and the purpose that the whole detection process is more convenient and accurate is achieved through automatic stretching.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a sock tension detection related technical field especially a positioning structure of sock in sock tension detection equipment. BACKGROUND

[0002] Sock tension detection is the process of performance detection after sock production, which helps to screen socks of poor quality.

[0003] Most of the existing sock tension detection equipment usually needs to fix and stretch the socks during the detection process, and the existing process is mostly stretched by human, which leads to low detection accuracy and poor efficiency. In order to solve this problem, a positioning structure of sock in sock tension detection equipment is proposed. UTILITY MODEL CONTENT

[0004] The utility model provides a positioning structure of sock in sock tension detection equipment, which solves the problems in the above background technology.

[0005] The utility model solves the technical problem by adopting the following technical scheme:

[0006] A positioning structure of sock in sock tension detection equipment, including positioning frame, the positioning frame includes support seat and fixed plate who are connected with each other, a plurality of positioning pieces are sequentially arranged from top to bottom on one side of the fixed plate, the positioning piece includes sleeve column which is fixed on the fixed plate for inserting sock tube, the both sides of the sleeve column are concave to form containing groove, and the containing groove is provided with tension rod which slides horizontally along the containing groove to approach or away, the side of the tension rod close to the fixed plate is provided with driving piece for driving the tension rod to slide horizontally for supporting the socks.

[0007] Preferably, a plurality of guide sliding grooves are arranged on the fixed plate along the horizontal sliding direction of the tension rod, a support arm is arranged on the side of the tension rod close to the guide sliding groove and extends outward, and the support arm extends into the guide sliding groove and slides horizontally along the guide sliding groove.

[0008] Preferably, the driving piece includes a double-acting telescopic cylinder arranged on the side of the fixed plate away from the sleeve column, and the output ends of the double-acting telescopic cylinder are arranged on the support arm for driving the support arm to slide horizontally.

[0009] Preferably, guide sliding rods are vertically and crossly arranged in the support arm, and the support arm passes through the guide sliding rods and slides horizontally along the guide sliding rods in order.

[0010] Preferably, a protective pad is arranged on the outer periphery of the tension rod for protecting the inner wall of the sock.

[0011] Preferably, the support arm is integrally arranged with the tension rod.

[0012] The utility model discloses the advantages and positive effect are: through the setting of the support seat and fixed plate in the positioning frame can reach make the positioning piece is in stable setting state, and through the setting of the sleeve column in the positioning piece can reach make the sock can be orderly put into, and with the operation of driving piece makes two tension rods open outwards, to realize the purpose of sock tension detection, and in the stage of putting in, the tension rod and sleeve column form an organic whole, more convenient sock's putting in, also through the automatic stretching to reach make the whole detection process more convenient, accurate purpose. BRIEF DESCRIPTION OF DRAWINGS

[0013] The utility model is further illustrated below in connection with the drawings and examples.

[0014] Figure 1 It is the structural schematic diagram of the utility model;

[0015] Figure 2 It is Figure 1 The top view of 1;

[0016] The marks in the drawings are described as follows:

[0017] 1, positioning frame;11, support seat;12, fixed plate;121, guide sliding groove;

[0018] 2, positioning piece;21, sleeve column;211, tension rod;22, support arm;23, driving piece;231, two-way telescopic cylinder;24, guide sliding rod. DETAILED DESCRIPTION

[0019] The utility model will be further explained in detail in connection with the drawings. These drawings are all simplified schematic diagrams, just with the schematic way to illustrate the basic structure of the utility model, so it just shows the structure related with the utility model.

[0020] The utility model embodiment is further illustrated below in connection with the drawings:

[0021] Refer to Figure 1 And Figure 2The sock tension detection is a process of performance detection of the sock after production, which helps to screen the socks with poor quality. Most of the existing sock tension detection equipment usually needs to fix and stretch the sock during the detection process. The existing process is mostly stretched by human, which leads to low detection accuracy and poor efficiency. In order to solve such problems, a positioning structure of the sock in a sock tension detection equipment is provided, which comprises a positioning frame 1. The positioning frame 1 comprises a support seat 11 and a fixed plate 12 connected with each other. A plurality of positioning members 2 are sequentially arranged on one side of the fixed plate 12 from top to bottom. The positioning member 2 comprises a sleeve column 21 fixedly arranged on the fixed plate 12 for sleeving a sock tube. The two sides of the sleeve column 21 are concave to form a containing groove. A tension rod 211 is arranged in the containing groove and can slide horizontally along the containing groove to approach or move away. A driving member 23 is arranged on one side of the tension rod 211 close to the fixed plate 12 for driving the tension rod 211 to slide horizontally and separate the socks. The support seat 11 and the fixed plate 12 in the positioning frame 1 can be arranged in a stable state. The sleeve column 21 in the positioning member 2 can be arranged to allow the sock to be sleeved in order. The two tension rods 211 can be expanded outwardly by the driving member 23, so as to realize the purpose of detecting the tension of the sock. In the sleeving stage, the tension rod 211 and the sleeve column 21 form an integral whole, which is more convenient for the sock to be sleeved. The automatic stretching can make the whole detection process more convenient and accurate.

[0022] It should be noted that the positioning members 2 in the embodiment are arranged to facilitate the synchronous detection of the socks in the same batch. This arrangement can greatly improve the overall detection efficiency.

[0023] Further, the sock is sleeved in the sleeve column 21 by human, and the whole process is automatic. When the tension rod 211 is not expanded outwardly, it is contained in the sleeve column 21, so that the sleeve column 21 forms a cylindrical shape. This is more convenient for the inner tube of the sock to be sleeved in the sleeve column 21, thereby facilitating the positioning of the sock.

[0024] It should be noted that, in order to indirectly connect the tension rod 211 and the driving member 23 to realize horizontal sliding, a plurality of guide sliding grooves 121 are arranged on the fixed plate 12 along the horizontal sliding direction of the tension rod 211. A support arm 22 is arranged on one side of the tension rod 211 close to the guide sliding groove 121 and extends outwardly. The support arm 22 extends into the guide sliding groove 121 and slides horizontally along the guide sliding groove 121. The support arm 22 can be arranged to drive the tension rod 211 to expand outwardly, thereby realizing the purpose of detecting the tension of the sock.

[0025] It also needs to be explained that the setting of the guide sliding groove 121 is to ensure that the tension rod 211 is relatively stable and orderly during the expansion process.

[0026] Further, when the socks are orderly put on, the driving member 23 operates at this time, and specifically, the structure of the driving member 23 is that the driving member 23 comprises a bidirectional telescopic cylinder 231 arranged on the side of the fixed plate 12 away from the sleeve column 21, and the two output ends of the bidirectional telescopic cylinder 231 are arranged on the support arms 22 for driving the support arms 22 to slide horizontally.

[0027] In addition, the plurality of positioning members 2 can be driven by a bidirectional telescopic cylinder 231, and the specific driving direction needs to ensure that the support arms 22 in the plurality of positioning members 2 slide in the same direction and are connected by a linkage rod, or a bidirectional telescopic cylinder 231 is arranged in each of the plurality of positioning members 2 to drive, and the setting of the above two can achieve the purpose of driving the support arms 22.

[0028] It is worth mentioning that in order to ensure that the support arm 22 has a relative support point during sliding, in the embodiment, the support arm 22 is vertically crossed with a guide sliding rod 24, the support arm 22 passes through the guide sliding rod 24 and slides along the guide sliding rod 24 in a horizontal and orderly manner.

[0029] Correspondingly, the support arm 22 and the tension rod 211 are integrally arranged, which can ensure that the support arm 22 and the tension rod 211 are relatively stable.

[0030] Further, since the tension rod 211 will expand the socks during the expansion process, in order to avoid damaging the socks, in the embodiment, a protective pad for protecting the inner wall of the socks is arranged on the outer periphery of the tension rod 211.

[0031] It should be emphasized that the embodiments of the utility model are illustrative rather than limiting, and therefore the utility model is not limited to the embodiments described in the specific embodiments, and any other embodiments derived from the technical solution of the utility model by those skilled in the art also belong to the scope of protection of the utility model.

Claims

1. A positioning structure of a sock in a sock tension detecting apparatus, comprising a positioning frame (1), characterized in that: The positioning frame (1) comprises a support base (11) and a fixing plate (12) connected with each other, a plurality of positioning members (2) are sequentially arranged on one side of the fixing plate (12) from top to bottom, the positioning member (2) comprises a sleeve column (21) fixedly arranged on the fixing plate (12) and used for sleeving a sock, the sleeve column (21) is concave on both sides to form an accommodating groove, and a tension rod (211) is arranged in the accommodating groove and is capable of sliding horizontally along the accommodating groove to approach or move away from the fixing plate (12), and a driving member (23) is arranged on one side of the tension rod (211) close to the fixing plate (12) and is used for driving the tension rod (211) to slide horizontally and separate the sock.

2. The positioning structure of a sock in a sock tension detection apparatus according to claim 1, characterized in that: A plurality of guide sliding grooves (121) are formed in the fixing plate (12) along the horizontal sliding direction of the tension rod (211), and a support arm (22) is arranged on one side of the tension rod (211) close to the guide sliding groove (121) and extends outward, the support arm (22) extends into the guide sliding groove (121) and slides horizontally along the guide sliding groove (121).

3. The positioning structure of a sock in a sock tension detection apparatus according to claim 2, characterized in that: The driving member (23) comprises a bidirectional telescopic cylinder (231) arranged on the side of the fixing plate (12) away from the sleeve column (21), and output ends of the two sides of the bidirectional telescopic cylinder (231) are arranged on the support arm (22) and used for driving the support arm (22) to slide horizontally.

4. The positioning structure of a sock in a sock tension detection apparatus according to claim 3, characterized in that: The support arm (22) is vertically crossed with guide sliding rods (24) arranged in the support arm (22), and the support arm (22) passes through the guide sliding rods (24) and slides horizontally along the guide sliding rods (24) in an orderly manner.

5. The positioning structure of a sock in a sock tension detection apparatus according to claim 4, characterized in that: A protective pad is arranged on the outer periphery of the tension rod (211) and is used for protecting the inner wall of the sock.

6. The positioning structure of a sock in a sock tension detection apparatus according to claim 5, wherein: The support arm (22) and the tension rod (211) are integrally arranged.