Terminal heat shrinkage processing machine

CN224733276UActive Publication Date: 2026-09-08WENZHOU MORGAN ELECTRIC CO LTD
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Patent Information

Application Number
CN202522198455.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-17
Publication Date
2026-09-08
Estimated Expiration
2035-10-17

AI Technical Summary

Technical Problem

[0003]部分端子上通常会设置一个塑料管包裹用于绝缘或者防水,这种端子加工时需要将塑料管套在端子上合适的位置进行热缩处理使其包裹在端子上,目前这种端子的加工都是通过工人手动拿烘枪对着套上塑料管的端子吹进行烘干,效率低,烘干不均匀,烘干效果不好

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Abstract

The utility model relates to a kind of terminal heat shrinkage processing machine, including processing platform, processing turntable, rotating part, drying assembly and rotating component, the processing platform controls the processing turntable rotates on the processing platform, the rotating part is equipped with several, the rotating part is rotatably connected between the processing turntable, several rotating parts are arranged in annular on the processing turntable, the rotating component controls the rotating part rotates on the processing turntable, the drying assembly is towards the processing turntable setting.The utility model provides a kind of terminal heat shrinkage processing machine that can automatically dry the plastic tube on terminal evenly.
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Description

Technical Field

[0001] This utility model relates to the field of electrical component technology, specifically to a terminal heat shrink processing machine. Background Technology

[0002] Terminals are wiring terminals used in electrical connections to transmit electrical signals or conduct electricity. They are commonly used in the connection of batteries, wires, and equipment. According to their structure, they can be divided into single-hole, double-hole, plug, hook, and other types. The materials cover copper, aluminum, iron, and their alloy plating (such as silver-plated copper and zinc-plated copper). Their core function is to realize circuit connection. Stability is ensured by screw fixing, welding, or crimping processes. They are widely used in home appliances, automobiles, power equipment, and new energy fields.

[0003] Some terminals are usually wrapped with a plastic tube for insulation or waterproofing. When processing these terminals, the plastic tube needs to be placed on the appropriate position on the terminal and heat-shrinked to wrap the terminal. Currently, the processing of these terminals is done by workers manually blowing a drying gun on the terminal with the plastic tube on it to dry it. This is inefficient, the drying is uneven, and the drying effect is not good. Utility Model Content

[0004] In summary, to overcome the shortcomings of the prior art, this utility model provides a terminal heat shrinking processing machine that can automatically and uniformly dry the plastic tube on the terminal.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a terminal heat shrinking processing machine, comprising a processing table, a processing turntable, rotating components, a drying assembly, and a rotating assembly. The processing table controls the rotation of the processing turntable on the processing table. Several rotating components are provided and are rotatably connected to the processing turntable. The several rotating components are arranged in a ring on the processing turntable. The rotating assembly controls the rotation of the rotating components on the processing turntable. The drying assembly is positioned facing the processing turntable.

[0006] With this setup, the terminal is first inserted into the rotating component, and then the plastic tube is placed over the terminal. The processing turntable is then rotated, moving the rotating component to the position of the drying assembly. The drying assembly then aligns with the connection between the plastic tube and the terminal for heat shrinking. During the drying process, the rotating component rotates on the processing turntable, ensuring that the terminal is dried evenly throughout its rotation. This results in more uniform heating and better heat shrinking. The drying process does not require manual operation to change direction, making it more efficient. Even the feeding process can be automated.

[0007] Furthermore, the rotating assembly is located between the drying assembly and the processing turntable, and the rotating component is driven to rotate by the rotating assembly when it moves to the position of the rotating assembly.

[0008] With this configuration, the rotating component will only drive the rotating part that is being dried to rotate, reducing the waste of output force and requiring less output force from the rotating component.

[0009] Furthermore, the rotating assembly includes a rotating motor and a drive gear, and the rotating component is provided with a rotating gear adapted to the drive gear.

[0010] With this setup, the rotating motor will continuously rotate the drive gear. When the rotating part is not in contact with the drive gear, it will only be moved by the machining turntable and will not rotate on its own. When it moves to the position of the drive gear, the rotating gear will mesh with the drive gear and then it will be rotated on its own. The structure is simple and the rotation is stable. The connection position between the rotating part and the machining turntable can be set with rotating bearings or other parts to reduce friction.

[0011] Furthermore, the rotating gear is located at the bottom of the machining turntable.

[0012] With this configuration, the rotation and meshing of the gears occur at the bottom of the machining turntable, reducing the possibility of accidental contact by workers and making it safer.

[0013] Furthermore, the rotating component is detachably connected to the rotating gear.

[0014] With this setup, the rotating component can be installed after the rotating gear has been inserted into the rotating position from the bottom of the machining turntable. The diameter of the rotating component can be set to be larger than the insertion position, or a shim with a larger diameter than the insertion position can be used, which makes the rotation more stable after installation.

[0015] Furthermore, the top of the rotating component is provided with a mounting rod, and the mounting rod is detachably connected to the rotating component.

[0016] With this setup, the terminals will be mounted on the mounting rod for processing, and the mounting rod can be removed and replaced to fit different styles and sizes of terminals, making it more versatile.

[0017] Furthermore, the top of the rotating component is provided with a mounting groove that is adapted to the mounting rod, and the rotating component is provided with a locking bolt that penetrates the outer wall of the mounting groove and is threadedly connected to the rotating component.

[0018] With this setup, installation can be done by inserting the mounting rod into the mounting slot and then tightening the locking bolt to hold it in place. Installation is convenient. The bottom of the mounting rod can be equipped with a large-diameter disc or a stepped shaft to accommodate a washer for easy terminal installation. The detachable connection between the rotating part and the rotating gear can also be set in the same way, with a plug at the top of the rotating gear inserted into the mounting slot at the bottom of the rotating part and then tightened with a locking bolt.

[0019] Furthermore, the processing table is driven by a stepper motor to rotate the processing turntable.

[0020] With this setup, a stepper motor will be installed inside the processing table. After the stepper motor is used, the processing turntable will pause for a period of time each time it rotates, which facilitates the drying components to dry the components and also facilitates the loading of terminals and plastic tubes.

[0021] Furthermore, the drying assembly includes a drying gun and a support frame, the support frame being provided with a mounting ring adapted to the drying gun.

[0022] With this setup, the drying unit can be installed by inserting the drying gun into the mounting ring on the support frame. The structure is simple, and the support frame can also be fitted with bolts at the mounting ring position to lock the drying gun in place.

[0023] Furthermore, the drying assembly also includes a fixing frame, the support frame having a strip-shaped hole, and the support frame being connected to the fixing frame by bolts passing through the strip-shaped hole.

[0024] With this setup, the height of the support frame on the fixed frame can be changed by using the slotted holes and bolts, thereby changing the height of the drying gun to align with the terminals and plastic tube. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the structure of an embodiment of the present utility model. Figure 1 .

[0026] Figure 2 This is a schematic diagram of the structure of an embodiment of the present utility model. Figure 2 .

[0027] Figure 3 This is an exploded view of the rotating component according to an embodiment of the present invention.

[0028] The labels in the diagram mean: 1. Processing table, 2. Processing turntable, 3. Rotating component, 301. Mounting rod, 302. Mounting groove, 303. Locking bolt, 4. Drying assembly, 401. Drying gun, 402. Support frame, 4021. Mounting ring, 4022. Strip hole, 403. Fixing frame, 5. Rotating assembly, 501. Rotating motor, 502. Drive gear, 6. Rotating gear. Detailed Implementation

[0029] This specific embodiment is merely an explanation of the present embodiment and is not intended to limit the present embodiment. After reading this specification, those skilled in the art can make modifications to the present embodiment without contributing any inventive step, but such modifications are protected by patent law as long as they fall within the scope of the claims of the present embodiment.

[0030] Referring to the accompanying drawings, this utility model provides the following technical solution: a terminal heat shrinking processing machine, including a processing table 1, a processing turntable 2, rotating components 3, a drying assembly 4, and a rotating assembly 5. The processing table 1 controls the rotation of the processing turntable 2 on the processing table 1. Several rotating components 3 are provided, and the rotating components 3 are rotatably connected to the processing turntable 2. Several rotating components 3 are arranged in a ring on the processing turntable 2. The rotating assembly 5 controls the rotation of the rotating components 3 on the processing turntable 2. The drying assembly 4 is arranged facing the processing turntable 2.

[0031] With this setup, the terminal is first inserted into the rotating part 3, and then the plastic tube is placed on the terminal. The processing unit then controls the processing turntable 2 to rotate, moving the rotating part 3 to the position of the drying component 4. The drying component 4 then aligns with the connection between the plastic tube and the terminal to perform heat shrinking and drying. During the drying process, the rotating part 5 carries the rotating part 3 to rotate on the processing turntable 2. This ensures that the terminal rotates in a circle during drying, allowing it to be dried by the drying component 4 all the way around, resulting in more even heating and better heat shrinking. The drying process does not require manual operation to change direction, making it more efficient. Even the feeding process can be automated.

[0032] In this preferred embodiment, the rotating component 5 is located between the drying component 4 and the processing turntable 2, and the rotating part 3 is driven to rotate when it moves to the position of the rotating component 5.

[0033] With this configuration, the rotating component 5 will only drive the rotating part 3 that is being dried to rotate, reducing the waste of output force and requiring less output force from the rotating component 5.

[0034] In a preferred embodiment, the rotating component 5 includes a rotating motor 501 and a drive gear 502, and the rotating part 3 is provided with a rotating gear 6 adapted to the drive gear 502.

[0035] With this configuration, the rotating motor 501 will continuously rotate the drive gear 502. When the rotating gear 6 is not in contact with the drive gear 502, the rotating part 3 will only be moved by the processing turntable 2 and will not rotate on its own. When it moves to the position of the drive gear 502, the rotating gear 6 will mesh with the drive gear 502 and then be rotated on its own. The structure is simple and the rotation is stable. The connection position between the rotating part 3 and the processing turntable 2 can be set with rotating bearings and other parts to reduce friction.

[0036] In this preferred embodiment, the rotating gear 6 is located at the bottom of the processing turntable 2.

[0037] With this configuration, the rotation and meshing of the rotating gear 6 occur at the bottom of the machining turntable 2, reducing the possibility of accidental contact by workers and making it safer.

[0038] In this preferred embodiment, the rotating component 3 and the rotating gear 6 are detachably connected.

[0039] With this setup, the rotating gear 6 can be inserted into the rotating position from the bottom of the machining turntable 2 before the rotating component 3 is installed. The diameter of the rotating component 3 can be set to be larger than the insertion position, or a shim with a larger diameter than the insertion position can be used, so that the rotation is more stable after installation.

[0040] In this preferred embodiment, the top of the rotating component 3 is provided with a mounting rod 301, and the mounting rod 301 is detachably connected to the rotating component 3.

[0041] With this setup, the terminals will be mounted on the mounting rod 301 for processing, and the mounting rod 301 can be removed and replaced to fit different styles and sizes of terminals, making it more versatile.

[0042] In this preferred embodiment, the top of the rotating component 3 is provided with a mounting groove 302 that is adapted to the mounting rod 301, and the rotating component 3 is provided with a locking bolt 303 that passes through the outer wall of the mounting groove 302 and is threadedly connected to the rotating component 3.

[0043] With this configuration, installation can be performed by inserting the mounting rod 301 into the mounting slot 302 and then screwing in the locking bolt 303 to hold it in place. This method is convenient for installation. The bottom of the mounting rod 301 can be equipped with a large-diameter disc or a stepped shaft to accommodate a washer, which facilitates the installation of the terminal. The detachable connection between the rotating part 3 and the rotating gear 6 can also be configured in the same way, with a plug at the top of the rotating gear 6 inserted into the mounting slot 302 at the bottom of the rotating part 3 and then the locking bolt 303 screwed in.

[0044] In this preferred embodiment, the processing table 1 is driven by a stepper motor to rotate the processing turntable 2.

[0045] With this setup, a stepper motor will be installed inside the processing table 1. After the stepper motor is used, the processing turntable 2 will pause for a period of time each time it rotates, which is convenient for the drying component 4 to dry the parts and for the terminals and plastic tubes to be fed.

[0046] In this preferred embodiment, the drying assembly 4 includes a drying gun 401 and a support frame 402, and the support frame 402 is provided with a mounting ring 4021 adapted to the drying gun 401.

[0047] With this configuration, the drying assembly 4 can be installed by inserting the drying gun 401 into the mounting ring 4021 on the support frame 402. The structure is simple, and the support frame 402 can also be equipped with bolts at the position of the mounting ring 4021 to lock the drying gun 401.

[0048] In a preferred embodiment, the drying assembly 4 further includes a fixing frame 403, and the support frame 402 is provided with a strip hole 4022. The support frame 402 is connected to the fixing frame 403 by bolts passing through the strip hole 4022.

[0049] With this configuration, the support frame 402 can change its height on the fixed frame 403 by using the slot 4022 and bolts, thereby changing the height of the drying gun 401 to align the terminal and the plastic tube.

[0050] Although the present invention has been described in detail with reference to the foregoing embodiments, the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be included within the scope of protection of the present invention.

Claims

1. A terminal heat shrinking processing machine, characterized in that: The device includes a processing table, a processing turntable, rotating components, a drying assembly, and a rotating component. The processing table controls the rotation of the processing turntable on the processing table. Several rotating components are provided and are rotatably connected to the processing turntable. The rotating components are arranged in a ring on the processing turntable. The rotating assembly controls the rotation of the rotating components on the processing turntable. The drying assembly is positioned facing the processing turntable.

2. The terminal heat shrinking processing machine according to claim 1, characterized in that: The rotating assembly is located between the drying assembly and the processing turntable, and the rotating component is driven to rotate when it moves to the position of the rotating assembly.

3. A terminal heat shrinking processing machine according to claim 2, characterized in that: The rotating assembly includes a rotating motor and a drive gear, and the rotating component is provided with a rotating gear adapted to the drive gear.

4. A terminal heat shrinking processing machine according to claim 3, characterized in that: The rotating gear is located at the bottom of the machining turntable.

5. A terminal heat shrinking processing machine according to claim 4, characterized in that: The rotating component is detachably connected to the rotating gear.

6. A terminal heat shrinking processing machine according to claim 1, characterized in that: The rotating component is provided with a mounting rod at its top, and the mounting rod is detachably connected to the rotating component.

7. A terminal heat shrinking processing machine according to claim 6, characterized in that: The top of the rotating component is provided with a mounting groove that is adapted to the mounting rod, and the rotating component is provided with a locking bolt that passes through the outer wall of the mounting groove and is threadedly connected to the rotating component.

8. A terminal heat shrinking processing machine according to claim 1, characterized in that: The processing table is driven by a stepper motor to rotate the processing turntable.

9. A terminal heat shrinking processing machine according to claim 1, characterized in that: The drying assembly includes a drying gun and a support frame, the support frame being provided with a mounting ring adapted to the drying gun.

10. A terminal heat shrinking processing machine according to claim 9, characterized in that: The drying assembly also includes a fixing frame, which has a strip-shaped hole and is connected to the fixing frame by bolts passing through the strip-shaped hole.