Glove tool and gum dipping production line

By setting up a connecting rod with rollers on the glove production line and cooperating with a non-linear track, the hand mold can swing and rotate, which solves the problems of uneven glue impregnation and glue dripping in the gloves. This achieves automatic and uniform glue impregnation without dripping, reduces costs, and improves equipment stability.

CN223948336UActive Publication Date: 2026-02-27SHANDONG DENGSHENG PROTECTIVE PRODUCTS CO LTD
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Patent Information

Application Number
CN202520002946.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-02
Publication Date
2026-02-27
Estimated Expiration
2035-01-02

AI Technical Summary

Technical Problem

In existing glove production lines, the glue layer on the fingers is thicker than on other parts during the glue dipping process, resulting in unevenness. Also, glue dripping occurs after dipping, affecting the feel. In addition, the machine needs to be stopped to adjust the position of the hand mold to achieve automatic glue dipping.

Method used

A glove tooling and adhesive dipping production line was designed. By setting a connecting rod with rollers on the mold rod, the hand mold can cooperate with a non-linear track to realize the swing and rotation of the hand mold. The surface tension of the adhesive liquid is used to achieve uniform adhesive dipping, and the machine can be automatically dipped without stopping through a simple mechanical structure.

Benefits of technology

It achieves uniform and drip-free adhesive layer on gloves, reduces costs, improves equipment operational stability, avoids the use of additional electrical control components and downtime adjustments, and simplifies the maintenance process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glove tool and a gum dipping production line, and belongs to the field of glove production, the glove tool comprises a mold rod, and a plurality of hand molds are arranged on the mold rod along the length direction of the mold rod at equal intervals; one end of the mold rod is rotationally connected with a first connecting block, and the first connecting block can be connected with a chain link of a conveying chain on one side; a connecting rod is arranged between the first connecting block and the adjacent hand mold, the connecting rod is connected to the side wall of the mold rod, the end part of the connecting rod is rotationally connected with a roller, and the center line of the roller is parallel to the length direction of the mold rod; the device further comprises a non-linear track, and the idler wheel at the end of the connecting rod can be matched with the non-linear track to drive the hand mold on the mold rod to swing. According to the structure, automatic impregnation can be realized, a production line does not need to be paused, and more importantly, continuous automatic impregnation can be realized without adding extra electric control devices.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of glove production, concretely relates to a glove tool and dip production line. BACKGROUND

[0002] The current glove production has realized automation, and the production of specific dip position is mostly realized by cooperation of the glove on the hand mold on the lifting dip tank and the mold rod to realize automatic dipping, but the above-mentioned action must require the mold rod to stay above the dip tank for a period of time, and after the completion of dipping, the production line can continue to act.

[0003] Although the current position adjustment of the chain by the variable chain wheel can adjust the position of the chain to achieve the purpose of adjusting the position of the hand mold to realize the automatic entering of the hand mold into the dip tank, most of the structures can only realize the dipping of the vertical hand mold, and the glue layer of the finger part of the glove after dipping is much thicker than that of other parts, and the overall glue layer thickness of the glove is uneven.

[0004] Of course, the angle of the specific hand mold can be adjusted by the connection direction of the mold rod and the chain, but since the mold rod on the production line also needs to drive the hand mold to rotate, the connection between the mold rod and the chain is usually rotary connection, which leads to the vertical state of the hand mold due to gravity under the action of no external force.

[0005] Since the glue solution in the dip tank has a certain surface tension, the current glove dipping does not effectively utilize this feature, which leads to the existence of glue drops formed by dripping glue after the current glove is dipped, which affects the hand feeling of the wearer in the later period.

[0006] In view of the above problems, the utility model designs and manufactures a glove tool and dip production line to overcome the above-mentioned defects. CONTENT OF THE UTILITY MODEL

[0007] For the problems existing in the prior art, the glove tool and dip production line provided by the utility model not only can realize automatic dipping, but also does not need to pause the production line, and more importantly, can meet the automatic dipping without stopping by adding no additional electric control device.

[0008] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme: a glove tool, comprising a mold rod, a plurality of hand molds are arranged on the mold rod at equal intervals along the length direction of the mold rod;

[0009] One end of the mold rod is rotatably connected with a first connecting block, and the first connecting block can be connected with the link of the one side conveying chain;

[0010] A connecting rod is arranged between the first connecting block and the adjacent hand mold, the connecting rod is connected to the side wall of the mold rod, a roller is rotatably connected to the end of the connecting rod, and the center line of the roller is parallel to the length direction of the mold rod.

[0011] Further comprising a non-linear track, the rollers at the ends of the connecting rods can cooperate with the non-linear track to drive the hand molds on the mold rod to swing.

[0012] Preferably, the other end of the mold rod is rotatably connected with a second connecting block, which can be connected with the links of the other conveying chain;

[0013] The second connecting block is provided with a gear between the adjacent hand molds, and the gear is fixedly connected to the mold rod;

[0014] Further comprising a rack meshing with the gear, when the gear cooperates with the rack, the rotation of the gear can drive the hand molds on the mold rod to rotate.

[0015] Preferably, the mold rod comprises a square tube and connecting columns detachably connected at both ends of the square tube, the first connecting block and the connecting rod are arranged on the connecting column at one end, and the second connecting block and the gear are arranged on the connecting column at the other end.

[0016] Preferably, the connecting rod is detachably connected to the side wall of the mold rod.

[0017] Preferably, the connecting rod is arranged as a crank arm, and the bending angle of the crank arm is greater than 90° and less than 180°.

[0018] Preferably, further comprising a linear track, which can cooperate with the rollers at the ends of the connecting rods to keep the hand molds on the mold rod at a certain angle.

[0019] A dipping production line, comprising a support and the above-mentioned glove tooling, one conveying chain is arranged on each side of the support;

[0020] The two ends of the above-mentioned glove tooling are connected with the links on the two conveying chains respectively;

[0021] Two first sprockets and one second sprocket are arranged on each side of the support respectively, the second sprocket is located between the two first sprockets, the lower end position of the second sprocket is lower than the lower end positions of the two first sprockets, and the conveying chain passes above one first sprocket, below the second sprocket, and above the other first sprocket in sequence;

[0022] A fixed dipping tank is arranged below the second sprocket, and the conveying chain can gradually immerse the hand molds on the mold rod into the dipping tank;

[0023] The non-linear track is connected to the support above the dipping tank, and the non-linear track is arranged as a concave arc-shaped track, which can drive the hand molds on the mold rod to be dipped from below the palm of the hand mold first, then gradually dipped to the palm and fingers of the hand mold, and finally gradually dipped off from the palm and fingers of the hand mold by cooperating with the rollers at the ends of the connecting rods.

[0024] Preferably, the input end of the non-linear track is provided with a first linear track, and the output end of the non-linear track is connected with a second linear track.

[0025] The first linear track cooperates with the roller at the end of the connecting rod to make the finger part of the hand mold face upward, and the second linear track cooperates with the roller at the end of the connecting rod to make the palm of the hand mold face downward.

[0026] Preferably, the first linear track is located above the conveying chain, and the second linear track is located below the conveying chain.

[0027] Preferably, a movable track is arranged between the first linear track and the non-linear track, one end of the movable track is hinged to the end of the first linear track, the other end of the movable track can abut against the non-linear track, and the connecting column connected with the first connecting block can be transferred to above the non-linear track through the movable track, and the non-linear track and the second linear track are smoothly connected.

[0028] The utility model has the advantages of:

[0029] 1. The utility model discloses a connecting rod with a roller at the end is arranged on the mold rod, so that the roller at the end of the connecting rod can cooperate with the non-linear track to drive the hand mold on the mold rod to swing, thereby meeting the needs of dipping, even glue distribution and the like, without additional electric control elements, only needs to utilize the simple mechanical structure, not only saves the cost of electric control elements, but also has low failure rate and stable operation.

[0030] 2. The utility model discloses a non-linear track is arranged at the dipping position, which can gradually change the dipping angle position of the hand mold during movement, thereby fully utilizing the surface tension of the glue solution to make the glue layer on the hand mold more uniform, especially the surface tension is more helpful for the peeling of the glue layer of the hand mold and the glue solution page in the dipping tank, and the gradual change of the dipping angle of the hand mold can avoid the influence of the glue solution surface skinning on the dipping process. In addition, compared with the traditional structure, the uniformity of dipping and the glue dropping during degumming are avoided, the shock glue structure is saved, the cost is reduced, and the consistency of dipping of all hand molds on the mold rod is ensured.

[0031] 3. The utility model discloses a mold rod is split into multiple parts, which is convenient for later maintenance and replacement.

[0032] 4. The utility model discloses a gear is arranged on the mold rod, which can drive the mold rod to rotate when meshing with the gear under the driving of the conveying chain, which is more conducive to the glue distribution after dipping, and the structure also does not need to be equipped with electric control elements, further reducing the cost, and the failure rate is low, and the equipment runs stably. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 It is a schematic view of a glove tooling;

[0034] Figure 2 It is a schematic view of the end of the mold rod at the first connecting block of the utility model;

[0035] Figure 3 It is a schematic view of the end of the mold rod at the second connecting block of the utility model;

[0036] Figure 4 It is a side view of the connecting rod of the utility model;

[0037] Figure 5 It is a schematic view of the end of the connecting rod of the utility model when the hand mold on the mold rod is swung by the cooperation of the roller and the non-linear track;

[0038] Figure 6 It is a schematic view of a dipping production line;

[0039] Figure 7 It is an enlarged view of a part of a dipping production line;

[0040] Figure 8 It is a partial schematic view of the movable track of the utility model abutting on the non-linear track;

[0041] Figure 9 It is a partial schematic view of the movable track of the utility model being pushed away by the connecting column.

[0042] In the figure: 1, mold rod; 2, hand mold; 3, connecting rod; 4, roller; 5, first connecting block; 6, conveying chain; 7, connecting column; 8, second connecting block; 9, non-linear track; 10, support; 11, first linear track; 12, second linear track; 13, second sprocket; 14, first sprocket; 15, dipping tank, 16, movable track. DETAILED DESCRIPTION

[0043] In order to facilitate those skilled in the art to understand, the utility model will be further described below in combination with the drawings.

[0044] As Figures 1 to 4 shown, a glove tooling, comprising a mold rod 1, the mold rod 1 can be moved under the drive of two conveying chains 6 of production line, a plurality of hand molds 2 are arranged on the mold rod 1 along the length direction of the mold rod 1 at equal intervals, and the number of specific hand molds 2 is reasonably set according to the strength of the mold rod 1 and relevant starting load accessories.

[0045] The first connecting block 5 is rotatably connected to one end of the mold rod 1, and the first connecting block 5 can be connected with the link of one side conveying chain 6 by screw.

[0046] The utility model discloses a connecting rod 3 is equipped with the roller 4 at the end between the first connecting block 5 and the adjacent hand mould 2, and the connecting rod 3 is connected on the side wall of mould bar 1, and the roller 4 at the end of connecting rod 3 can drive the hand mould 2 on mould bar 1 to swing by cooperating with the non-linear track 9.

[0047] The utility model discloses a connecting rod 3 is equipped with the roller 4 at the end between the first connecting block 5 and the adjacent hand mould 2, and the connecting rod 3 is connected on the side wall of mould bar 1, and the roller 4 at the end of connecting rod 3 can drive the hand mould 2 on mould bar 1 to swing by cooperating with the non-linear track 9.

[0048] The utility model discloses a connecting rod 3 is equipped with the roller 4 at the end between the first connecting block 5 and the adjacent hand mould 2, and the connecting rod 3 is connected on the side wall of mould bar 1, and the roller 4 at the end of connecting rod 3 can drive the hand mould 2 on mould bar 1 to swing by cooperating with the non-linear track 9.

[0049] The utility model discloses a connecting rod 3 is equipped with the roller 4 at the end between the first connecting block 5 and the adjacent hand mould 2, and the connecting rod 3 is connected on the side wall of mould bar 1, and the roller 4 at the end of connecting rod 3 can drive the hand mould 2 on mould bar 1 to swing by cooperating with the non-linear track 9.

[0050] The utility model discloses a connecting rod 3 is equipped with the roller 4 at the end between the first connecting block 5 and the adjacent hand mould 2, and the connecting rod 3 is connected on the side wall of mould bar 1, and the roller 4 at the end of connecting rod 3 can drive the hand mould 2 on mould bar 1 to swing by cooperating with the non-linear track 9.

[0051] The utility model discloses a connecting rod 3 is equipped with the roller 4 at the end between the first connecting block 5 and the adjacent hand mould 2, and the connecting rod 3 is connected on the side wall of mould bar 1, and the roller 4 at the end of connecting rod 3 can drive the hand mould 2 on mould bar 1 to swing by cooperating with the non-linear track 9.

[0052] The utility model discloses a connecting rod 3 is equipped with the roller 4 at the end between the first connecting block 5 and the adjacent hand mould 2, and the connecting rod 3 is connected on the side wall of mould bar 1, and the roller 4 at the end of connecting rod 3 can drive the hand mould 2 on mould bar 1 to swing by cooperating with the non-linear track 9.

[0053] As Figures 5 to 9As shown, the utility model also provides a kind of dip production line, including support 10 and above-mentioned glove tool, support 10 both sides are equipped with a conveying chain 6, and above-mentioned glove tool both ends are respectively connected with the link on two conveying chains 6.

[0054] Support 10 both sides are equipped with two first sprocket 14 and a second sprocket 13 respectively, second sprocket 13 is located between two first sprocket 14, the lower end position of second sprocket 13 is lower than the lower end position of two second sprocket 13, conveying chain 6 is in turn above one first sprocket 14, below second sprocket 13, above another first sprocket 14, below second sprocket 13 is equipped with fixed dip tank 15, and conveying chain 6 can drive the hand mould 2 on mould bar 1 gradually immerse into dip tank 15;

[0055] Non-linear track 9 is specifically connected on the support 10 above dip tank 15, and non-linear track 9 is specifically provided as concave arc track, and the concave arc track is driven by cooperating with the roller 4 at the end of connecting rod 3, so that the hand mould 2 on the mould bar 1 is first dipped from below the palm of the hand mould 2, then gradually dipped to the palm of the hand mould 2 and the finger part of the hand mould 2, and finally gradually peeled off from the palm of the hand mould 2 and the finger part of the hand mould 2.

[0056] The utility model sets up non-linear track 9 at dip position, so that the hand mould 2 gradually changes the dip angle position in the movement process, thereby fully utilizing the surface tension of glue solution, so that the glue layer on the hand mould 2 is more uniform, especially the surface tension is more helpful to the peeling of the glue layer of the hand mould 2 and the glue solution in the dip tank 15, and the gradually changing angle of the hand mould 2 can avoid the influence of the glue solution surface skinning on the dipping process. In addition, compared with the traditional structure, due to the uniformity of dipping and the absence of glue dripping in peeling, the shock glue structure is omitted, which not only reduces the cost, but also ensures the consistency of dipping of all hand moulds 2 on the mould bar 1.

[0057] The input end of non-linear track 9 is provided with first linear track 11, and the first linear track 11 is provided with movable track 16 between the non-linear track 9, one end of the movable track 16 is hinged with the end of the first linear track 11, and the other end of the movable track 16 can abut on the non-linear track 9, and the connecting column 7 connected with the first connecting block 5 can be transferred to the upper side of the non-linear track 9 through the movable track 16, and the output end of the non-linear track 9 is connected with the second linear track 12, and the non-linear track 9 and the second linear track 12 are smoothly connected.

[0058] The first linear track 11 cooperates with the roller 4 at the end of the connecting rod 3 to make the finger part of the hand mould 2 upward, so as to ensure that the hand mould 2 is first dipped from below the palm, and the second linear track 12 cooperates with the roller 4 at the end of the connecting rod 3 to make the palm of the hand mould 2 downward, so that the hand mould 2 can be quickly leveled when peeling off in vertical state, and the glue solution drips on the finger part of the hand mould 2.

[0059] Specifically, the first linear track 11 is located above the conveying chain 6, the other side of the support 10 corresponding to the input end of the first linear track 11 is provided with a hand mold overturning rack, a chain pressing plate is preferably arranged above the conveying chain 6 at the position of the hand mold overturning rack to prevent the conveying chain 6 from being buckled, the hand mold overturning rack cooperates with the gear at the end of the mold rod 1, so that when the glove tooling passes through the hand mold overturning rack, the finger part of the hand mold 2 on the glove tooling faces upward, the second linear track 12 is located below the conveying chain 6 to facilitate the cooperation of the end roller 4 of the connecting rod 3 to drive the hand mold 2 to adjust the angle.

[0060] It should be understood that the use of these embodiments is only for the purpose of illustrating the present application and is not intended to limit the protection scope of the present application. In addition, it should also be understood that after reading the technical content of the present application, those skilled in the art can make various modifications, modifications and / or variations to the present application, and all these equivalent forms also fall within the protection scope defined by the claims attached to the present application.

Claims

1. A glove garment, characterized in that, Includes a mold rod (1), on which a plurality of hand molds (2) are provided at equal intervals along the length direction of the mold rod (1); The mold rod (1) is rotatably connected to a first connecting block (5) at one end, and the first connecting block (5) can be connected to a link of a conveyor chain (6) on one side. A connecting rod (3) is provided between the first connecting block (5) and the adjacent hand mold (2). The connecting rod (3) is connected to the side wall of the mold rod (1). A roller (4) is rotatably connected to the end of the connecting rod (3). The center line of the roller (4) is parallel to the length direction of the mold rod (1). It also includes a non-linear track (9), and the roller (4) at the end of the connecting rod (3) can cooperate with the non-linear track (9) to drive the hand mold (2) on the mold rod (1) to swing.

2. The glove fixture according to claim 1, characterized in that, The other end of the mold rod (1) is rotatably connected to a second connecting block (8), which can be connected to a link of the conveyor chain (6) on the other side; A gear is provided between the second connecting block (8) and the adjacent hand mold (2), and the gear is fixedly connected to the mold rod (1); It also includes a rack that meshes with the gear. When the gear and the rack are engaged, the rotation of the gear can drive the hand mold (2) on the mold rod (1) to rotate.

3. The glove fixture according to claim 2, characterized in that, The mold rod (1) includes a square tube and connecting posts (7) detachably connected to both ends of the square tube. The first connecting block (5) and the connecting rod (3) are set on the connecting post (7) at one end, and the second connecting block (8) and the gear are set on the connecting post (7) at the other end.

4. The glove fixture according to claim 1, characterized in that, The connecting rod (3) is detachably connected to the side wall of the mold rod (1).

5. A glove fixture according to claim 1, characterized in that, The connecting rod (3) is configured as a crank arm, and the bending angle of the crank arm is greater than 90° and less than 180°.

6. A glove fixture according to claim 1, characterized in that, It also includes a linear track, which can cooperate with the roller (4) at the end of the connecting rod (3) so that the hand mold (2) on the mold rod (1) maintains a certain angle.

7. A resin impregnation production line, characterized in that, Includes a support (10) and a glove fixture as described in any one of claims 1 to 6, wherein a conveyor chain (6) is provided on each side of the support (10). The two ends of the aforementioned glove fixture are respectively connected to links on two conveyor chains (6); The bracket (10) is provided with two first sprockets (14) and one second sprocket (13) on each side. The second sprocket (13) is located between the two first sprockets (14). The lower end of the second sprocket (13) is lower than the lower end of the two second sprockets (13). The conveyor chain (6) passes above one first sprocket (14), below the second sprocket (13), and above the other first sprocket (14) in sequence. A fixed impregnation tank (15) is provided below the second sprocket (13), and the conveyor chain (6) can drive the hand mold (2) on the mold rod (1) to gradually immerse into the impregnation tank (15). The non-linear track (9) is connected to the support (10) above the impregnation tank (15). The non-linear track (9) is a concave arc track, and the concave arc track cooperates with the roller (4) at the end of the connecting rod (3).

8. The impregnation production line according to claim 7, characterized in that, The input end of the non-linear track (9) is provided with a first linear track (11), and the output end of the non-linear track (9) is connected to a second linear track (12). The first linear track (11) cooperates with the roller (4) at the end of the connecting rod (3) to make the fingers of the hand mold (2) face upward, and the second linear track (12) cooperates with the roller (4) at the end of the connecting rod (3) to make the palm of the hand mold (2) face downward.

9. The impregnation production line according to claim 8, characterized in that, The first linear track (11) is located above the conveyor chain (6), and the second linear track (12) is located below the conveyor chain (6).

10. A resin impregnation production line according to claim 8, characterized in that, A movable track (16) is provided between the first straight track (11) and the non-straight track (9). One end of the movable track (16) is hinged to the end of the first straight track (11), and the other end of the movable track (16) can abut against the non-straight track (9). The connecting column (7) connected to the first connecting block (5) can be transferred to the top of the non-straight track (9) through the movable track (16). The non-straight track (9) and the second straight track (12) have a smooth transition.