Hot iron tool for removing process slitter edges

By combining the heating and driving components of the hot stamping fixture, the problems of low efficiency and poor precision in removing waste edges in existing technologies are solved, achieving efficient and precise waste edge removal, which is suitable for complex-shaped products and automated production.

CN224130280UActive Publication Date: 2026-04-17NINGBO LONGXUN ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-21
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing methods for removing process waste are inefficient, have poor accuracy, and are prone to damaging the product.

Method used

The hot stamping fixture includes a base, positioning components, working components, a heating system, and a drive component. The heating system heats the working head to a set temperature, and the drive component drives the working component to move downward. The hot stamping part of the hot stamping head is heated to melt the waste edge of the product.

Benefits of technology

It improves the efficiency of removing waste edges, has higher precision and is less likely to damage products. It is suitable for complex-shaped products, has wide applicability, and is suitable for automated production lines.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a blanching tool for removing process slitter edges, relates to the technical field of blanching tools, and aims to solve the technical problems that in the prior art, a traditional slitter edge removing method is low in efficiency and poor in precision, and products are prone to being damaged. A blanching tool for removing process slitter edges comprises a base, a positioning assembly, a working assembly, a heating system and a driving assembly, and the positioning assembly is connected to the base and used for fixing a product; the working assembly is slidably connected to the base in the vertical direction and located above the positioning assembly, the working assembly comprises a working ironing head, the working ironing head comprises a plurality of hot ironing parts, and the multiple hot ironing parts correspond to the multiple waste edges on the product in a one-to-one mode; the heating system is used for heating the working ironing head; the driving assembly is connected to the working assembly and drives the working assembly to vertically move; the waste edge removing device is high in waste edge removing working efficiency, the hot ironing parts of the working ironing head are arranged according to the positions of waste edges of products, precision is higher, and the products are not prone to being damaged.
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Description

Technical Field

[0001] This utility model relates to the field of hot stamping fixture technology, specifically to a hot stamping fixture for removing process waste edges. Background Technology

[0002] Electronic detonators, also known as digital electronic detonators, digital detonators, or industrial digital electronic detonators, are electric detonators that use electronic control modules to control the detonation process. The function of the wire clamp connector used in electronic detonators is to connect and conduct the corresponding wires in the two cables, that is, to connect the two wires of the sub-line A to the corresponding two wires of the main line B to achieve conduction.

[0003] Currently, most wire clips on the market use a design where the upper and lower covers are connected at one end by a rotating shaft, and the other end is fixed by a snap-fit ​​connection. The upper and lower covers are mostly injection molded. In industrial production, many products generate waste edges during the molding process, such as plastic and rubber products. The upper and lower covers of wire clips also generate waste edges after injection molding. Traditional methods for removing waste edges typically involve mechanical cutting or manual trimming, which suffer from low efficiency, poor precision, and the potential to damage the product. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a hot stamping fixture for removing process waste edges, so as to solve the technical problems of low efficiency, poor accuracy and easy damage to products in the traditional waste edge removal methods of the existing technology.

[0005] To solve the above-mentioned technical problems, this utility model provides a hot stamping fixture for removing process waste edges, comprising:

[0006] Base;

[0007] Positioning components, attached to the base and used to secure the product;

[0008] The working component is vertically slidably connected to the base and located above the positioning component. It includes a working iron head, which includes several hot ironing parts, each of which corresponds to a number of waste edges on the product.

[0009] The heating system is used to heat the working hot iron head;

[0010] The driving component is connected to the working component and drives the working component to move vertically.

[0011] With the above structure, the hot stamping fixture for removing process waste edges of this utility model has the following advantages: the heating system heats the working hot stamping head to a set temperature, the product with process waste edges is fixed on the positioning component, and the driving component drives the working component to move downward, causing the working hot stamping head to descend. Since each hot stamping part on the working hot stamping head corresponds to each waste edge of the product, each hot stamping part heats each waste edge of the product separately, using heat to soften / melt the waste edge, thereby removing the waste edge. The working efficiency is high, and the hot stamping parts of the working hot stamping head are set according to the position of the waste edge of the product, resulting in higher precision and less likelihood of damaging the product.

[0012] As an improvement, the positioning component includes a backing plate with a positioning groove formed at one end of the backing plate. The positioning groove is used to snap the product in place. With this structure, the product can be directly snapped into the positioning groove for fixation, which is simple to operate and easy to fix.

[0013] As an improvement, the positioning component also includes a base, which is connected to the base, and the support template is detachably connected to the base. With this structure, the support template and the base are detachably connected, and different support templates can be replaced according to different products, making it more applicable.

[0014] As an improvement, the positioning groove includes a positioning part and a guide part that are interconnected. The guide part has an opening at one end away from the positioning part. The width of the positioning part matches the product. The two opposite sidewalls of the guide part are both inclined surfaces, so that the width of the guide part gradually increases towards the opening. With this structure, the guide part has a larger width than the positioning part and plays a guiding role during the product placement process, so that the product can be accurately inserted into the positioning part.

[0015] As an improvement, the heating system includes an electric heating element, a temperature control device, and a temperature sensor. The electric heating element, temperature control device, and temperature sensor are electrically connected. The electric heating element is used to heat the working iron head. With this structure, the working iron head is heated by the electric heating element, and the temperature sensor monitors the heating temperature, so that the working iron head is heated to the set temperature.

[0016] As an improvement, the working assembly also includes an ironing head fixing plate and a first connecting plate. The ironing head fixing plate is connected to the bottom of the first connecting plate, and the working ironing head is connected to the first connecting plate and passes through the ironing head fixing plate so that all the hot ironing parts are located below the ironing head fixing plate. The working ironing head is in contact with the ironing head fixing plate. The ironing head fixing plate is made of a heat-conducting material. The heating tube in the heating system is connected to the ironing head fixing plate, and the drive assembly is connected to the first connecting plate. With this structure, the heating tube heats the ironing head fixing plate, and the ironing head fixing plate conducts heat to the working ironing head.

[0017] As an improvement, a heat insulation layer is provided between the bottom end of the first connecting plate and the ironing head fixing plate; this structure prevents the heat from the ironing head fixing plate from being conducted to the first connecting plate, which could cause damage to part of the drive assembly connected to the first connecting plate due to high temperature.

[0018] As an improvement, the working iron head is detachably connected to the first connecting plate; with this structure, different working iron heads can be replaced to adapt to different products, making it more versatile.

[0019] As an improvement, the drive assembly includes a cylinder fixedly connected to the base, with the cylinder piston rod connected to the first connecting plate; with this structure, the cylinder drives the first connecting plate, thereby causing the working hot iron head to move vertically.

[0020] As an improvement, the drive assembly also includes a guide rail and a slider. The guide rail is vertically connected to the base, and the slider is slidably connected to the guide rail. The first connecting plate is connected to the slider. This structure makes the vertical sliding of the first connecting plate more stable. Attached Figure Description

[0021] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0022] Figure 2 This is a three-dimensional structural diagram of the positioning component in this utility model.

[0023] Figure 3 This is a three-dimensional structural diagram of the working component and the driving component in this utility model.

[0024] Figure 4 This is an exploded structural diagram of the working component part in this utility model.

[0025] Reference numerals: 1. Base; 2. Positioning component; 21. Template; 22. Base; 3. Working component; 31. Working iron head; 311. Hot ironing part; 32. Iron head fixing plate; 33. First connecting plate; 4. Driving component; 41. Cylinder; 42. Guide rail; 43. Slider; 5. Positioning groove; 51. Positioning part; 52. Guide part; 6. Heating element. Detailed Implementation

[0026] The following is a detailed description of a hot stamping fixture for removing process waste edges according to the present invention, with reference to the accompanying drawings.

[0027] like Figures 1 to 4As shown, a hot stamping fixture for removing process waste edges includes a base 1, a positioning component 2, a working component 3, a heating system, and a driving component 4. The positioning component 2 is connected to the base 1 and is used to fix the product. The working component 3 is slidably connected to the base 1 vertically and is located above the positioning component 2. The working component 3 includes a working hot stamping head 31, which includes a plurality of hot stamping parts 311, each of which corresponds to a plurality of waste edges on the product. The heating system is used to heat the working hot stamping head 31. The driving component 4 is connected to the working component 3 and drives the working component 3 to move vertically.

[0028] The heating system heats the working head 31 to a set temperature, and the product with process waste edges is fixed on the positioning component 2. The driving component 4 drives the working component 3 to move downward, causing the working head 31 to descend. Since each heating part 311 on the working head 31 corresponds to each waste edge of the product, each heating part 311 heats each waste edge of the product, using heat to soften / melt the waste edge, thereby removing the waste edge. The working efficiency is high, and the heating parts 311 of the working head 31 are set according to the position of the waste edge of the product, resulting in higher precision and less risk of damaging the product.

[0029] In this embodiment, the product is a wire clip bottom cover, and the waste edge is mainly at the wire groove of the wire clip bottom cover. The structure of the working heating head 31 is as follows: Figure 4 As shown, each of the heat-pressing parts 311 in this embodiment is independent of each other. The bottom shape of the heat-pressing part 311 matches the wire groove of the wire card cover. Specifically, the cross-section of the heat-pressing part 311 is a triangle with rounded corners at the bottom.

[0030] The base 1 has an overall L-shaped structure, such as Figure 1 and Figure 2 As shown, the positioning component 2 includes a backing template 21 and a base 22. The backing template 21 is provided with a positioning groove 5 with an opening at one end. The positioning groove 5 is used to snap the product in place. The base 22 is connected to the base 1. The backing template 21 is detachably connected to the base 22. The backing template 21 and the base 22 are fixedly connected by bolts.

[0031] like Figure 2 As shown, the positioning groove 5 includes a positioning part 51 and a guide part 52 that are interconnected. The guide part 52 has an opening at one end away from the positioning part 51. The width of the positioning part 51 matches the product. The two opposite sidewalls of the guide part 52 are both inclined surfaces, so that the width of the guide part 52 gradually increases towards the opening. During the process of inserting the product into the positioning groove 5, the two inclined sidewalls of the guide part 52 guide the product, so that the product is inserted into the positioning part 51.

[0032] The heating system includes an electric heating tube 6, a temperature control device, and a temperature sensor. The electric heating tube 6, the temperature control device, and the temperature sensor are electrically connected. The electric heating tube 6 is used to heat the working iron head 31. The specific structure and working principle of the temperature control device are existing technologies and will not be described in detail here.

[0033] like Figure 3 As shown, the working component 3 also includes an ironing head fixing plate 32 and a first connecting plate 33. The ironing head fixing plate 32 is connected to the bottom of the first connecting plate 33. The working ironing head 31 is connected to the first connecting plate 33 and passes through the ironing head fixing plate 32 so that all the hot ironing parts 311 are located below the ironing head fixing plate 32. The working ironing head 31 is in contact with the ironing head fixing plate 32. The ironing head fixing plate 32 is made of heat-conducting material. The heating tube 6 in the heating system is connected to the ironing head fixing plate 32. The driving component 4 is connected to the first connecting plate 33.

[0034] Furthermore, the temperature sensor in the heating system is also connected to the ironing head fixing plate 32, so as to directly detect the temperature of the ironing head fixing plate 32, which is more accurate. In this embodiment, the temperature sensor and the two heating tubes 6 are all inserted into the ironing head fixing plate 32.

[0035] The working iron head 31 is detachably connected to the first connecting plate 33. Specifically, each heating part 311 of the working iron head 31 is independent of each other. Therefore, each heating part 311 is fixedly connected to the first connecting plate 33 by bolts. The outer peripheral sidewall of the part of each heating part 311 located in the iron head fixing plate 32 is in contact with the iron head fixing plate 32 for heat conduction.

[0036] like Figure 3 As shown, the drive assembly 4 includes a cylinder 41 fixedly connected to the base 1, and the piston rod of the cylinder 41 is connected to the first connecting plate 33; the drive assembly 4 also includes a guide rail 42 and a slider 43, the guide rail 42 is vertically connected to the base 1, the slider 43 is slidably connected to the guide rail 42, and the first connecting plate 33 is connected to the slider 43. Specifically, in this embodiment, the first connecting plate 33 is connected to the slider 43 through a second connecting plate.

[0037] In this embodiment, the working heating head 31 is made of brass, and the first connecting plate 33 is made of a high-temperature resistant material, such as copper alloy or stainless steel. A heat insulation layer is provided between the bottom end of the first connecting plate 33 and the heating head fixing plate 32 to prevent damage to the sealing ring on the cylinder 41. The heat insulation layer is preferably Teflon high-temperature resistant tape. The set temperature range of the working heating head 31 is 150 degrees Celsius to 300 degrees Celsius.

[0038] This invention can assist in removing waste edges through the synergistic effect of the mechanical pressure exerted by the cylinder 41. The efficiency of waste edge removal is 3-5 times higher than that of manual trimming, and the processing effect is more uniform. It is also suitable for waste edge processing of complex shaped products and can be integrated into automated production lines. Furthermore, the surface of the working head 31 is coated with a Teflon coating to prevent the molten waste edge plastic from sticking to the working head 31.

[0039] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above-described embodiment. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

Claims

1. A hot ironing tool for removing process waste edges, characterized in that, include: Base (1); Positioning component (2), connected to the base (1) and used to fix the product; The working component (3) is slidably connected to the base (1) in the vertical direction and located above the positioning component (2), including a working iron head (31). The working iron head (31) includes a plurality of hot ironing parts (311), and the plurality of hot ironing parts (311) correspond one-to-one with a plurality of waste edges on the product. A heating system for heating the working hothead (31); The drive component (4) is connected to the working component (3) and drives the working component (3) to move vertically.

2. The hot stripping tool for removing process waste edges according to claim 1, characterized in that, The positioning component (2) includes a backing template (21), on which a positioning groove (5) is provided with an opening at one end of the backing template (21), and the positioning groove (5) is used to snap the product in place.

3. The hot stripping tool for removing process waste edges according to claim 2, characterized in that, The positioning component (2) also includes a base (22), which is connected to the base (1), and the template (21) is detachably connected to the base (22).

4. The hot stripping tool for removing process waste edges according to claim 2, wherein The positioning groove (5) includes a positioning part (51) and a guide part (52) that are connected to each other. The guide part (52) has an opening at one end away from the positioning part (51). The width of the positioning part (51) matches the product. The two opposite sidewalls of the guide part (52) are both inclined surfaces, so that the width of the guide part (52) gradually increases towards the opening.

5. The deburring apparatus of claim 1, wherein, The heating system includes an electric heating tube (6), a temperature control device and a temperature sensor. The electric heating tube (6), the temperature control device and the temperature sensor are electrically connected. The electric heating tube (6) is used to heat the working hot iron (31).

6. The deburring apparatus of claim 1, wherein, The working component (3) further includes a hairpin fixing plate (32) and a first connecting plate (33). The hairpin fixing plate (32) is connected to the bottom end of the first connecting plate (33). The working hairpin (31) is connected to the first connecting plate (33) and passes through the hairpin fixing plate (32) so that all the hot hairpin parts (311) are located below the hairpin fixing plate (32). The working hairpin (31) is in contact with the hairpin fixing plate (32). The hairpin fixing plate (32) is made of thermally conductive material. The heating tube (6) in the heating system is connected to the hairpin fixing plate (32). The driving component (4) is connected to the first connecting plate (33).

7. The hot stripping tool for removing process waste edges according to claim 6, characterized in that A heat insulation layer is provided between the bottom end of the first connecting plate (33) and the ironing head fixing plate (32).

8. The hot stripping tool for removing process waste edges according to claim 6, wherein The working heating head (31) is detachably connected to the first connecting plate (33).

9. The hot stamping fixture for removing process waste edges according to claim 6, characterized in that, The drive assembly (4) includes a cylinder (41) fixedly connected to the base (1), and the piston rod of the cylinder (41) is connected to the first connecting plate (33).

10. The hot stripping tool for removing process scrap edges of claim 9, wherein, The drive assembly (4) further includes a guide rail (42) and a slider (43). The guide rail (42) is vertically connected to the base (1), and the slider (43) is slidably connected to the guide rail (42). The first connecting plate (33) is connected to the slider (43).