A palm-shaped sleeve rod for processing a glove core

By designing a palm-shaped sleeve rod with a reinforced fixing and wear-resistant anti-slip mechanism, the problem of unstable sleeve rod fixing during glove core processing was solved, achieving stable installation and wear-resistant anti-slip effects, and improving the stability and ease of replacement of glove core processing.

CN223568757UActive Publication Date: 2025-11-21JIANGSU YUESHENG PROTECTIVE PRODUCTS CO LTD
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Patent Information

Application Number
CN202423319894.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-21
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing palm-shaped sleeve rod, when processing and producing glove cores, is not easy to reinforce and install after being fixed by rotating the threaded column. During long-term transmission and processing of the glove core, it is easy to loosen, affecting the stability of use.

Method used

A glove core processing hand-shaped sleeve rod was designed, which includes a reinforced fixing mechanism and a wear-resistant and anti-slip mechanism. The hand-shaped sleeve rod is stably installed by the cooperation of an external threaded fixing post, a screw-in pushing component and a compression reinforcement component, and the anti-slip performance during use is improved by the wear-resistant and anti-slip component.

Benefits of technology

It improves the fixation and stability of the palm-shaped sleeve bar during the production of glove core, reduces loosening, and the wear-resistant and anti-slip components are easy to disassemble and replace, reducing replacement costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a palm shape sleeve pole for glove core processing, including palm shape sleeve pole main part, palm shape sleeve pole main part includes main palm shape sleeve pole, the bottom end of main palm shape sleeve pole is integrally provided with outer thread fixed column, can through the palm shape sleeve pole main part fixed installation of outer thread fixed column, will rotate into the threaded rod rotation drive push block is in the inside limit of mobile control groove and moves down, when push block limit moves down, by the surface of extruding reinforced head extruding movement of ball rolling extrusion contact extruding reinforced head extrusion, until the end of extruding reinforced head extrusion contact installation inner surface, convenient for strengthening fixed installation, make the palm shape sleeve pole main part not easy to loosen when installing glove core and conveying use stress, improve the strengthening fixed nature of palm shape sleeve pole main part installation when glove core processing production.
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Description

Technical Field

[0001] This utility model belongs to the technical field of glove core processing palm-shaped sleeve rod, specifically relating to a glove core processing palm-shaped sleeve rod. Background Technology

[0002] The glove core is an important component of cut-resistant gloves. Its main function is to increase the toughness of cut-resistant gloves, thereby achieving the effect of cut protection. During the manufacturing process, the glove core needs to be fitted and supported. It is usually installed by fitting and installing it with a palm-shaped sleeve rod. The existing palm-shaped sleeve rod is the processing part used in the manufacturing of glove cores. It is convenient to rotate and fix the glove core directly for use.

[0003] Existing palm-shaped sleeve rods are directly rotated and installed on the conveying equipment using external threaded fixing posts during the processing and production of glove cores. This direct rotational installation makes it difficult to reinforce the fixation, and prolonged use during the conveying and processing of glove cores can easily cause loosening, leading to instability and affecting the reinforcement and fixation of the palm-shaped sleeve rod during glove core processing. Therefore, this utility model proposes a palm-shaped sleeve rod for glove core processing. Utility Model Content

[0004] The purpose of this utility model is to provide a palm-shaped sleeve rod for processing glove cores, so as to solve the problem mentioned in the background art that when the palm-shaped sleeve rod is used to process and produce glove cores, it is not easy to strengthen the fixed installation after rotation and installation, and it is easy to loosen when the glove core is subjected to force for a long time, causing instability in use.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a palm-shaped sleeve rod for processing glove cores, comprising a palm-shaped sleeve rod body, wherein the palm-shaped sleeve rod body includes a main palm-shaped sleeve rod, and the bottom end of the main palm-shaped sleeve rod is integrally provided with an externally threaded fixing post; the palm-shaped sleeve rod body is also provided with:

[0006] The reinforced fixing mechanism includes a protective adjustment component located at the bottom of the main palm-shaped sleeve rod. A screw-in pushing component is provided at the connection between the inner bottom end of the protective adjustment component and the external threaded fixing post. Compression reinforcement components are provided on both sides of the end of the screw-in pushing component.

[0007] A wear-resistant and anti-slip mechanism is provided, and the wear-resistant and anti-slip mechanism includes a wear-resistant and anti-slip component disposed on the outer surface of the main palm-shaped sleeve, and a fixing and mounting component is provided at the connection between the bottom end of the wear-resistant and anti-slip component and the surface of the main palm-shaped sleeve.

[0008] Preferably, the protection adjusting assembly comprises an internally threaded adjusting hole formed in the bottom end of the main palm-shaped sleeve rod, and an externally threaded cover is screwed on the surface of the internally threaded adjusting hole.

[0009] Preferably, the screwing pushing assembly comprises a moving control groove formed at the connecting position between the bottom end of the main palm-shaped sleeve rod and the externally threaded fixing column, a pushing block is limited in the moving control groove, an internally threaded screwing rod is screwed in the internally threaded adjusting hole, the bottom end of the internally threaded screwing rod is connected with the inside of the pushing block through a bearing, and ball bearings are arranged on the lower surface of the pushing block.

[0010] Preferably, the extruding reinforcing assembly comprises a limiting adjusting groove formed at the bottom end of the moving control groove and located on both sides of the externally threaded fixing column, and an extruding reinforcing head is arranged in the limiting adjusting groove.

[0011] Preferably, the end portions of the extruding reinforcing head are in rolling contact with the side surface of the pushing block through the ball bearings, and a reset elastic strip is arranged at the connecting position between the end portions of the two extruding reinforcing heads.

[0012] Preferably, the wear-resistant and anti-skid assembly comprises an outer mounting groove integrally formed on the outer surface of the main palm-shaped sleeve rod, a wear-resistant sleeve is mounted on the outer surface of the main palm-shaped sleeve rod in a sleeved manner in the outer mounting groove, and a wear-resistant protrusion is integrally arranged on the surface of the wear-resistant sleeve.

[0013] Preferably, the fixed mounting assembly comprises a fixing bolt screwed on the bottom edge of the wear-resistant sleeve, an internally threaded hole is formed in the inner bottom edge of the outer mounting groove, and the end portion of the fixing bolt is screw-connected with the inside of the internally threaded hole.

[0014] Compared with the prior art, the utility model has the advantages that:

[0015] By designing the reinforcing fixing mechanism, the palm-shaped sleeve rod body can be fixedly mounted through the externally threaded fixing column, the pushing block is driven to move downward in the moving control groove by rotating the screwing threaded rod, the pushing block is extruded and moved by the ball bearings when moving downward, the end portion of the extruding reinforcing head is extruded and contacted with the inner surface of the mounting position, the palm-shaped sleeve rod body is not prone to loosening when the glove core is installed and used, and the reinforcing fixing property of the palm-shaped sleeve rod body during the glove core processing and production is improved. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 The utility model discloses a structure schematic view;

[0017] Figure 2The utility model discloses a main palm shape sleeve pole and outer thread fixed post partial section structure schematic view of the utility model discloses a palm shape sleeve pole main body 100, and the palm shape sleeve pole main body 100 includes main palm shape sleeve pole 101, and the bottom end of main palm shape sleeve pole 101 is integrally provided with outer thread fixed post 102, and the palm shape sleeve pole main body 100 still is provided with:

[0018] Figure 3 The utility model discloses a screw in threaded rod, push block and extrusion reinforcing head structure schematic view,

[0019] Figure 4 The utility model discloses a wear -resistant cover, wear -resistant convex and main palm shape sleeve pole structure schematic view,

[0020] Figure 5 The utility model discloses Figure 4 A portion of the utility model discloses a main palm shape sleeve pole and outer thread fixed post partial section structure schematic view,

[0021] In the drawing: 100, palm shape sleeve pole main body;101, main palm shape sleeve pole;1011, outer installation groove;1012, wear -resistant cover;1013, wear -resistant convex;1014, fixed bolt;1015, internal thread hole;102, outer thread fixed post;1021, internal thread adjusting hole;1022, outer thread cover;1023, screw in threaded rod;1024, movement control groove;1025, push block;1026, ball;1027, extrusion reinforcing head;1028, limit block;1029, limit adjusting groove;1020, reset elastic strip. Specific implementation

[0022] The technical scheme in the embodiments of the utility model will be apparently and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.

[0023] Please refer to Figures 1 to 5 The utility model provides a kind of technical scheme: a palm shape sleeve pole for glove core processing, including palm shape sleeve pole main body 100, palm shape sleeve pole main body 100 includes main palm shape sleeve pole 101, the bottom end of main palm shape sleeve pole 101 is integrally provided with outer thread fixed post 102, and palm shape sleeve pole main body 100 is also provided with:

[0024] Strengthening fixed mechanism, and the strengthening fixed mechanism includes the protection adjusting assembly of being arranged at the bottom end of main palm shape sleeve pole 101, the inside bottom end of protection adjusting assembly is provided with screw in push assembly at the junction of outer thread fixed post 102, and the end portion both sides of screw in push assembly are provided with extrusion reinforcing assembly, can install palm shape sleeve pole main body 100 on conveying equipment and use, by strengthening fixed mechanism to strengthen fixed installation, it is convenient to fixed installation stable use.

[0025] In order to facilitate the adjustment of the screwing-in threaded rod 1023 through the protection adjustment assembly, and to protect the use after adjustment, in this embodiment, preferably, the protection adjustment assembly comprises an internally threaded adjustment hole 1021 opened at the bottom end of the main palm-shaped sleeve rod 101, and an externally threaded cover 1022 is threaded on the surface of the internally threaded adjustment hole 1021, which can be rotated inside the internally threaded adjustment hole 1021 to adjust the use of the screwing-in threaded rod 1023, and after rotation adjustment, the externally threaded cover 1022 is rotated to protect the use of the internally threaded adjustment hole 1021.

[0026] In order to facilitate the simultaneous extrusion of the two extrusion reinforcing heads 1027 through the screwing-in pushing assembly, in this embodiment, preferably, the screwing-in pushing assembly comprises a moving control groove 1024 opened at the connection between the bottom end of the main palm-shaped sleeve rod 101 and the externally threaded fixed column 102, a pushing block 1025 is limited inside the moving control groove 1024, an internally threaded adjustment hole 1021 is threaded with a screwing-in threaded rod 1023 inside, and the bottom end of the screwing-in threaded rod 1023 is connected with the inside of the pushing block 1025 through a bearing, which facilitates the wrench to be engaged on the outer surface of the screwing-in threaded rod 1023 to drive the screwing-in threaded rod 1023 to screw in and adjust, and the pushing block 1025 is moved downward under the limitation of the inside of the moving control groove 1024 when the screwing-in threaded rod 1023 is screwed in and adjusted, and the lower surface of the pushing block 1025 is rolled with a ball 1026 on both sides, and the pushing block 1025 moves downward by contacting the surface of the extrusion reinforcing head 1027 through the ball 1026 to extrude and move the extrusion reinforcing head 1027.

[0027] In order to facilitate the fixed installation and reinforcement of the externally threaded fixed column 102 through the extrusion reinforcing assembly, in this embodiment, preferably, the extrusion reinforcing assembly comprises a limiting adjustment groove 1029 opened at the bottom end of the moving control groove 1024 and located on both sides of the externally threaded fixed column 102, and the extrusion reinforcing head 1027 is arranged inside the limiting adjustment groove 1029, the lower surface of the extrusion reinforcing head 1027 is provided with a limiting block 1028, and the limiting block 1028 is limited to slide with the inside bottom end of the limiting adjustment groove 1029, so that after the externally threaded fixed column 102 is installed, the extrusion reinforcing head 1027 is moved and extruded on the inner surface of the installation hole through the limiting block 1028 to reinforce the installation, which facilitates the reinforcement, and the end connection of the two extrusion reinforcing heads 1027 is provided with a reset elastic strip 1020, and when it needs to be disassembled, the extrusion reinforcing head 1027 is loosened, and the reset elastic strip 1020 is deformed and reset to the inside of the limiting adjustment groove 1029, which can be conveniently disassembled.

[0028] The wear-resistant and anti-skid mechanism is provided on the outer surface of the main palm-shaped sleeve rod 101, and the bottom end of the wear-resistant and anti-skid component is connected with the surface of the main palm-shaped sleeve rod 101, and a fixed mounting component is arranged at the connecting position, so that the palm-shaped sleeve rod body 100 can be stably processed and used after being fixedly mounted, and the outer surface of the palm-shaped sleeve rod body 100 is treated by the wear-resistant and anti-skid mechanism, so that the palm-shaped sleeve rod body 100 is stably processed and used, and the palm-shaped sleeve rod body 100 is conveniently disassembled, replaced and used at low cost.

[0029] In order to facilitate the wear-resistant and anti-skid treatment of the outer surface of the main palm-shaped sleeve rod 101 during processing and use by the wear-resistant and anti-skid component, in the embodiment, preferably, the wear-resistant and anti-skid component comprises an outer mounting groove 1011 integrally formed on the outer surface of the main palm-shaped sleeve rod 101, a wear-resistant sleeve 1012 is mounted in the outer mounting groove 1011 on the outer surface of the main palm-shaped sleeve rod 101, and a wear-resistant protrusion 1013 is integrally arranged on the surface of the wear-resistant sleeve 1012, so that the main palm-shaped sleeve rod 101 is protected by the wear-resistant sleeve 1012 during use, and the wear-resistant protrusion 1013 is contacted after the glove is mounted to prevent slipping.

[0030] In order to facilitate the wear-resistant and anti-skid treatment of the outer surface of the main palm-shaped sleeve rod 101 during processing and use by the wear-resistant and anti-skid component, in the embodiment, preferably, the wear-resistant and anti-skid component comprises an outer mounting groove 1011 integrally formed on the outer surface of the main palm-shaped sleeve rod 101, a wear-resistant sleeve 1012 is mounted in the outer mounting groove 1011 on the outer surface of the main palm-shaped sleeve rod 101, and a wear-resistant protrusion 1013 is integrally arranged on the surface of the wear-resistant sleeve 1012, so that the main palm-shaped sleeve rod 101 is protected by the wear-resistant sleeve 1012 during use, and the wear-resistant protrusion 1013 is contacted after the glove is mounted to prevent slipping.

[0031] The working principle and use process of the utility model are as follows: the palm-shaped sleeve rod is fixedly installed first when in use, the palm-shaped sleeve rod main body 100 can be rotatably fixed at the position installed on the conveying equipment through the outer thread fixing column 102, and after rotatable fixing, the spanner is embedded in the inner thread adjusting hole 1021 and clamped on the outer surface of the screwing thread rod 1023 to drive the screwing thread rod 1023 to rotate, the screwing thread rod 1023 drives the push block 1025 to move downward in the inner limiting of the moving control groove 1024 when rotating, the push block 1025 is extruded and moved by the extrusion and reinforcement head 1027 through the rolling and extruding contact of the ball 1026 when moving downward, the extrusion and reinforcement head 1027 is moved stably through the limiting block 1028 in the inner limiting adjusting groove 1029, until the end of the extrusion and reinforcement head 1027 is extruded and contacted with the inner surface of the installation position, so that the palm-shaped sleeve rod main body 100 is not prone to loosening when installing the glove core and conveying and using stress, and the fixing strength of the palm-shaped sleeve rod main body 100 during glove core processing and production is improved.

[0032] Then when the palm-shaped sleeve rod main body 100 is used, the wear-resistant outer cover 1012 is matched with the outer surface of the main palm-shaped sleeve rod 101 and the inner structure of the outer installation groove 1011, the wear-resistant outer cover 1012 is fixedly installed by embedding the rotation fixing bolt 1014 in the inner thread hole 1015, so that the palm-shaped sleeve rod main body 100 is installed and used, the wear-resistant outer cover 1012 is used for wear-resistant protection when the main palm-shaped sleeve rod 101 is sleeved with the glove core, and the wear-resistant convex 1013 is used for anti-skid protection after sleeving and installation, so that stable installation and processing production are facilitated, the wear-resistant outer cover 1012 and the wear-resistant convex 1013 are convenient to disassemble and replace when they are seriously worn after long-time use, the disassembly and replacement are convenient, the replacement cost is reduced, and the wear-resistant and anti-skid effect of the palm-shaped sleeve rod main body 100 during glove core processing and production is improved.

[0033] Although the embodiments of the utility model have been shown and described (detailed in the foregoing detailed description), it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A glove core processing method using a palm-shaped sleeve rod, comprising a palm-shaped sleeve rod body (100), wherein the palm-shaped sleeve rod body (100) includes a main palm-shaped sleeve rod (101), and the bottom end of the main palm-shaped sleeve rod (101) is integrally provided with an externally threaded fixing post (102), characterized in that: The palm-shaped sleeve body (100) is also provided with: The strengthening and fixing mechanism includes a protective adjustment component at the bottom of the main palm-shaped sleeve (101), and a screw-in pushing component is provided at the connection between the inner bottom end of the protective adjustment component and the external threaded fixing post (102). The screw-in pushing component is provided with compression reinforcement components on both sides of its end. The wear-resistant and anti-slip mechanism includes a wear-resistant and anti-slip component disposed on the outer surface of the main palm-shaped sleeve (101), and a fixed installation component is provided at the connection between the bottom end of the wear-resistant and anti-slip component and the surface of the main palm-shaped sleeve (101).

2. The method for processing a glove core using a palm-shaped sleeve rod according to claim 1, characterized in that: The protective adjustment assembly includes an internal threaded adjustment hole (1021) opened at the bottom end of the main palm-shaped sleeve (101), and the surface of the internal threaded adjustment hole (1021) is rotatably covered with an external threaded cap (1022).

3. The method for processing a glove core using a palm-shaped sleeve according to claim 2, characterized in that: The screw-in push assembly includes a movable control groove (1024) located at the bottom of the main palm-shaped sleeve (101) and the connection point with the external threaded fixed post (102). The movable control groove (1024) has a push block (1025) inside it. The internal thread of the internal threaded adjustment hole (1021) has a screw-in thread rod (1023) rotating inside it. The bottom end of the screw-in thread rod (1023) is connected to the inside of the push block (1025) by a bearing. Both sides of the lower surface of the push block (1025) have rolling balls (1026).

4. The method for processing a glove core using a palm-shaped sleeve rod according to claim 3, characterized in that: The compression reinforcement assembly includes a limiting adjustment groove (1029) located at the bottom of the movement control groove (1024) on both sides of the external threaded fixing post (102). The limiting adjustment groove (1029) is provided with a compression reinforcement head (1027). The lower surface of the compression reinforcement head (1027) is provided with a limiting block (1028), and the limiting block (1028) slides with the bottom of the limiting adjustment groove (1029).

5. The method for processing a glove core using a palm-shaped sleeve rod according to claim 4, characterized in that: The end of the compression reinforcing head (1027) and the side of the push block (1025) are in rolling contact through the ball (1026), and a reset elastic strip (1020) is provided at the connection of the ends of the two compression reinforcing heads (1027).

6. The method for processing a glove core using a palm-shaped sleeve rod according to claim 1, characterized in that: The wear-resistant and anti-slip component includes an outer mounting groove (1011) integrally formed on the outer surface of the main palm-shaped sleeve (101). A wear-resistant outer sleeve (1012) is fitted inside the outer mounting groove (1011) on the outer surface of the main palm-shaped sleeve (101). A wear-resistant protrusion (1013) is integrally provided on the surface of the wear-resistant outer sleeve (1012).

7. A glove core processing method using a palm-shaped sleeve rod according to claim 6, characterized in that: The fixed mounting assembly includes a fixing bolt (1014) that is threaded and rotates at the bottom edge of the wear-resistant outer sleeve (1012). An internal threaded hole (1015) is provided at the bottom edge of the inner side of the outer mounting groove (1011), and the end of the fixing bolt (1014) is rotatably connected to the internal thread of the internal threaded hole (1015).