Self-adaptive embossment stamping die

By introducing cleaning and heat dissipation mechanisms into the relief mold, the problems of concave mold pollution and inconvenience are solved, and efficient cleaning and safe relief operation is achieved.

CN223072202UActive Publication Date: 2025-07-08QINGDAO XINYUHE MOLD PROD CO LTD
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Patent Information

Application Number
CN202422514682.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-07-08
Estimated Expiration
2034-10-17

AI Technical Summary

Technical Problem

The existing embossing molds are susceptible to air dust and dirt contamination after use, and are inconvenient to clean, which affects the quality of the embossed parts.

Method used

The cleaning mechanism and a fast cooling mechanism are designed, including vacuum cleaning components, mobile adjustment components, limiting components, fast cooling components and driving blower components. The dust is removed through the vacuum cleaning components, and the rapid cooling components reduce the mold temperature to ensure the mold is clean and safe.

Benefits of technology

It improves the cleaning convenience and safety of the relief mold, ensures that the relief parts are not easy to adhere to dust before operation, and improves the relief quality and operation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a self-adaptive embossment stamping die which comprises an embossment stamping die body, the embossment stamping die body comprises a base, a lower female die is fixedly installed in the middle of the upper surface of the base, and a portal frame is fixedly installed at the top end of the upper surface of the base. An air cylinder is fixedly mounted at the top end in the portal frame through bolts; by designing the cleaning mechanism, before operation, when dust and dirt fall into the lower female die from the outside, a connecting pipe opening is connected with external dust collection equipment, a positive and negative rotation motor runs to drive a lead screw to rotate, the lead screw rotates to enable a moving head to be located on the outer surface of the lead screw, and when the moving head moves, a dust collection moving pipe is driven to move on the surface of the lower female die; and when the dust collection moving pipe stably moves, dust and dirt on the surface of the lower female die are subjected to dust collection treatment through the dust collection holes, cleaning treatment is convenient, dust and dirt are not prone to being attached to the embossed part when the embossed part is placed in the lower female die, and high-quality operation is achieved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of embossing and hot stamping molds, and particularly relates to an adaptive embossing and hot stamping mold. Background Technique

[0002] Embossing is a kind of carving. The image to be shaped is carved on a flat plate so that it is separated from the plane of the original material. And during embossing, it is usually operated through an embossing and hot stamping mold. The existing embossing and hot stamping mold is one of the devices used for carving and processing embossed parts. And the embossing and hot stamping mold is convenient for self-adaptive temperature operation during use, which is convenient for cleaning the lower die before operation for embossing operation, for high-quality embossing operation, and for improving the convenience of cleaning treatment of the main body of the embossing and hot stamping mold before operation;

[0003] After the existing embossing and hot stamping mold is used, the lower die is directly exposed to the outside world, and it is not convenient to protect the lower die during use. It is easy for dust and dirt in the air to fall into the inside of the lower die, and it is not convenient to clean the inside of the lower die when using it again. When operating under force, it is easy for dirt to adhere to the surface of the embossed part, reducing the quality of the embossed part and affecting the convenience of cleaning treatment of the embossing and hot stamping mold before operation. For this reason, the utility model proposes an adaptive embossing and hot stamping mold. Summary of the Utility Model

[0004] The purpose of the utility model is to provide an adaptive embossing and hot stamping mold to solve the problems put forward in the above background technique that after the embossing and hot stamping mold is used, the lower die is directly exposed to the outside world, and it is not convenient to protect the lower die during use. It is easy for dust and dirt in the air to fall into the inside of the lower die, and it is not convenient to clean the inside of the lower die when using it again. When operating under force, it is easy for dirt to adhere to the surface of the embossed part, reducing the quality of the embossed part.

[0005] To achieve the above purpose, the utility model provides the following technical solution: an adaptive embossing and hot stamping mold, including the main body of the embossing and hot stamping mold. The main body of the embossing and hot stamping mold includes a base. A lower die is fixedly installed at the middle position of the upper surface of the base. A gantry is fixedly installed at the top end of the upper surface of the base. A cylinder is fixedly installed at the inner top end of the gantry through bolts. The end of the cylinder is fixedly installed with an upper punch through bolts inside the gantry. The main body of the embossing and hot stamping mold is also provided with:

[0006] A cleaning mechanism, and this cleaning mechanism includes a dust suction and cleaning component arranged at the tail end of the lower die on the upper surface of the base. A moving and adjusting component is arranged at the bottom end of one side of the gantry. The end of the moving and adjusting component is fixedly connected with the end of the cleaning component through bolts. The other end of the cleaning component and the bottom end of the other side of the gantry are provided with a limiting component;

[0007] A fast heat dissipation mechanism, and the fast heat dissipation mechanism includes a fast heat dissipation component arranged at the inner bottom end of the lower die, and a driving air blowing component is arranged at the end of the fast heat dissipation component on the front surface of the lower die.

[0008] Preferably, two control chutes are opened on both sides inside the gantry. A control slider is arranged inside the control chute. The end of the control slider is fixedly installed on the side surface of the upper punch through a bolt. An electric heating plate is installed inside the lower die. An array of temperature sensors is arranged on the upper surface of the lower die. An array of electric control boxes is arranged on the side surface of the gantry. And both the temperature sensor and the electric heating plate are electrically connected to the electric control box through wires.

[0009] Preferably, the dust suction and cleaning component includes a dust suction moving pipe arranged on the upper surface of the base of the lower die. A connecting pipe orifice is arranged at the middle position of the rear surface of the dust suction moving pipe. Dust suction holes are equidistantly opened on the lower surface of the dust suction moving pipe.

[0010] Preferably, the moving and adjusting component includes a lead screw installed at the bottom end of one side of the gantry through a bearing. A forward and reverse motor is installed on the front surface of the gantry at the end of the lead screw. A moving head is arranged on the outer surface of the end of the lead screw. The end of the moving head is fixedly installed at one end of the dust suction moving pipe through a bolt.

[0011] Preferably, the limiting component includes a limiting chute opened at the bottom end of the other side of the gantry. A limiting slider is arranged on one side inside the limiting chute. The end of the limiting slider is fixedly installed at the other end of the dust suction moving pipe through a bolt.

[0012] Preferably, the fast heat dissipation component includes a heat dissipation channel opened at the inner bottom end of the lower die. One end of the heat dissipation channel is installed with a discharge hole on the rear surface of the lower die.

[0013] Preferably, the driving air blowing component includes an installation groove opened on the front surface of the lower die at the other end of the heat dissipation channel. A motor is installed inside the installation groove through a fixing frame. A fan blade is fixedly installed at the end of the motor through a screw. A protective mesh plate is installed on the surface of the lower die at the end of the installation groove.

[0014] Compared with the prior art, the beneficial effects of the present utility model are:

[0015] By designing a cleaning mechanism, when dust and dirt fall from the outside into the inside of the lower female die before operation, the connecting pipe opening is connected to an external dust suction device, the forward and reverse rotation of the motor drives the screw rod to rotate, and when the screw rod rotates to move the moving head on the outer surface of the screw rod, the dust suction moving pipe is driven to move on the surface of the lower female die. When the dust suction moving pipe moves stably, the dust and dirt on the surface of the lower female die are sucked and processed through the dust suction holes, which is convenient for cleaning. This makes it difficult for dust and dirt to adhere to the relief parts when they are placed inside the lower female die, ensuring high-quality operation and improving the convenience of cleaning the relief stamping die body before operation. Description of the Drawings

[0016] Figure 1 It is a schematic structural diagram of the present utility model;

[0017] Figure 2 It is a top view structural diagram of the base, lower female die and dust suction moving pipe of the present utility model;

[0018] Figure 3 It is a partial sectional structural diagram of the dust suction moving pipe, dust suction holes and connecting pipe opening of the present utility model;

[0019] Figure 4 It is a sectional structural diagram of the lower female die, heat dissipation channel and discharge hole of the present utility model;

[0020] Figure 5 For the present utility model Figure 4 The enlarged structural diagram of part A in it;

[0021] In the figure: 100, relief stamping die body; 101, base; 102, lower female die; 1021, heat dissipation channel; 1022, discharge hole; 1023, motor; 1024, fan blade; 1025, installation groove; 1026, protective net plate; 103, gantry; 1031, forward and reverse rotation motor; 1032, dust suction moving pipe; 1033, dust suction hole; 1034, connecting pipe opening; 1035, screw rod; 1036, moving head; 1037, limit slider; 1038, limit chute; 104, cylinder; 105, upper male die; 106, control chute; 107, control slider; 108, electric control box; 1081, temperature sensor; 109, electric heating plate. Detailed Embodiment

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0023] Please refer to Figures 1 to 5 , the present utility model provides a technical solution: an adaptive embossing and hot stamping die, including an embossing and hot stamping die main body 100. The embossing and hot stamping die main body 100 includes a base 101. At the middle position of the upper surface of the base 101, a lower female die 102 is fixedly installed. An electric heating plate 109 is installed inside the lower female die 102. On the upper surface of the lower female die 102, an array of temperature sensors 1081 is provided. On the side surface of the gantry 103, an array of electric control boxes 108 is provided. And both the temperature sensors 1081 and the electric heating plate 109 are electrically connected to the electric control box 108 through wires. After the embossing and hot stamping die main body 100 is placed, the electric heating plate 109 is powered on and heated through the electric control box 108, so as to heat the lower female die 102. At the same time of heating, the temperature of the lower female die 102 is sensed by the temperature sensors 1081. When the temperature sensors 1081 receive the temperature, an adaptive temperature operation for the lower female die 102 during processing is performed. When the temperature is too high, the heating is stopped. When the temperature is low, the heating continues. The embossing part to be processed is placed on the surface of the lower female die 102 and hot stamped. At the top end of the upper surface of the base 101, a gantry 103 is fixedly installed. At the inner top end of the gantry 103, a cylinder 104 is fixedly installed through bolts. At the end of the cylinder 104 inside the gantry 103, an upper male die 105 is fixedly installed through bolts. And when the cylinder 104 moves, it drives the upper male die 105 to move downwards. The upper male die 105 stably moves down to the surface of the lower female die 102 to perform embossing and hot stamping on the embossing part;

[0024] On both sides inside the gantry 103, two control chutes 106 are opened. Inside the control chutes 106, control sliders 107 are arranged. The end of the control slider 107 is fixedly installed with the side surface of the upper male die 105 through bolts. When the upper male die 105 moves downwards, it drives the control slider 107 to slide inside the control chutes 106 for control, so that the upper male die 105 stably moves down to the surface of the lower female die 102. The embossing and hot stamping die main body 100 is also provided with:

[0025] A cleaning mechanism, and this cleaning mechanism includes a dust suction and cleaning component arranged at the tail end of the lower female die 102 on the upper surface of the base 101. At the bottom end of one side of the gantry 103, a moving and adjusting component is arranged. The end of the moving and adjusting component is fixedly installed with the end of the cleaning component through bolts. The other end of the cleaning component and the bottom end of the other side of the gantry 103 are provided with a limiting component. Before the embossing and hot stamping die main body 100 operates, the surface of the lower female die 102 can be cleaned by moving the cleaning mechanism, which is convenient for cleaning. When the embossing part is placed inside the lower female die 102 for operation, it is not easy to adhere dust and dirt, ensuring high-quality operation and improving the convenience of the cleaning process before the operation of the embossing and hot stamping die main body 100.

[0026] In order to facilitate the dust suction treatment of the surface of the lower die 102 before the operation of the dust suction cleaning component and for high-quality embossing operation, in this embodiment, preferably, the dust suction cleaning component includes a dust suction moving pipe 1032 arranged on the upper surface of the lower die 102 located on the base 101. A connecting pipe orifice 1034 is arranged at the middle position of the rear surface of the dust suction moving pipe 1032. Dust suction holes 1033 are equidistantly arranged on the lower surface of the dust suction moving pipe 1032. After connecting to an external dust suction device through the connecting pipe orifice 1034, when the dust suction moving pipe 1032 moves, it sucks the dust on the surface of the lower die 102 through the dust suction holes 1033, which is convenient for dust suction and high-quality embossing operation.

[0027] In order to facilitate the dust suction cleaning treatment of the dust suction moving pipe 1032 moving on the surface of the lower die 102 through the moving adjustment component, in this embodiment, preferably, the moving adjustment component includes a lead screw 1035 installed at the bottom end of one side of the gantry 103 through a bearing. A forward and reverse motor 1031 is installed on the front surface of the gantry 103 at the end of the lead screw 1035. A moving head 1036 is arranged on the outer surface of the end of the lead screw 1035. One end of the moving head 1036 is fixedly connected to one end of the dust suction moving pipe 1032 through a bolt. When the forward and reverse motor 1031 operates to drive the lead screw 1035 to rotate, the lead screw 1035 rotates to move the moving head 1036 on the outer surface of the lead screw 1035, thereby driving the dust suction moving pipe 1032 to move for internal cleaning treatment of the lower die 102.

[0028] In order to facilitate the stable movement and dust suction treatment of the dust suction moving pipe 1032 through the limiting component, in this embodiment, preferably, the limiting component includes a limiting sliding groove 1038 opened at the bottom end of the other side of the gantry 103. A limiting sliding block 1037 is arranged on one side inside the limiting sliding groove 1038. One end of the limiting sliding block 1037 is fixedly connected to the other end of the dust suction moving pipe 1032 through a bolt. When the dust suction moving pipe 1032 moves, it drives the limiting sliding block 1037 to slide and control inside the limiting sliding groove 1038, which is easy for stable movement and dust suction treatment.

[0029] A rapid heat dissipation mechanism, and the rapid heat dissipation mechanism includes a rapid heat dissipation component arranged at the bottom end inside the lower die 102. A driving blowing component is arranged on the front surface of the lower die 102 at the end of the rapid heat dissipation component. After the embossing and hot stamping die body 100 is used and there is a large amount of heat inside the lower die 102, the rapid heat dissipation mechanism can rapidly dissipate the heat inside the lower die 102, which is convenient for heat dissipation and safely exposing the lower die 102 to the outside for placement.

[0030] In order to facilitate the safe placement of the lower female die 102 after use by quickly dissipating heat from the components, in this embodiment, preferably, the quick heat dissipation component includes a heat dissipation channel 1021 opened at the bottom end inside the lower female die 102. One end of the heat dissipation channel 1021 is provided with a discharge hole 1022 on the rear surface of the lower female die 102. After the lower female die 102 is used, the inside of the heat dissipation channel 1021 can be blown with air and discharged through the discharge hole 1022 to take away the internal heat, accelerating heat dissipation and safe placement.

[0031] In order to facilitate the blowing of air inside the heat dissipation channel 1021 by the driving blowing component to accelerate the heat dissipation process, in this embodiment, preferably, the driving blowing component includes a mounting groove 1025 opened at the other end of the heat dissipation channel 1021 on the front surface of the lower female die 102. A motor 1023 is installed inside the mounting groove 1025 through a fixing frame. A fan blade 1024 is fixedly installed at the end of the motor 1023 by screws. Inside the mounting groove 1025, the motor 1023 drives the fan blade 1024 to rotate and blow air into the heat dissipation channel 1021, facilitating the blowing of air to accelerate the heat dissipation process. A protective net plate 1026 is installed on the surface of the lower female die 102 at the tail end of the mounting groove 1025, and the protective net plate 1026 protects the end of the mounting groove 1025 during the blowing process.

[0032] In this utility model, the model of the motor 1023 is the 300 micro motor, and the model of the forward and reverse motor 1031 is WS-37GA520R.

[0033] The working principle and usage process of this utility model: When this kind of adaptive embossing and hot stamping die is in use, the embossing and hot stamping die body 100 is stably placed at the usage position by contacting the placement surface with the lower surface. After the embossing and hot stamping die body 100 is placed, the electric heating plate 109 is powered on and heated through the electric control box 108, thereby heating the lower female die 102. During the heating process, the temperature of the lower female die 102 is sensed by the temperature sensor 1081. When the temperature sensor 1081 receives the temperature, it performs an adaptive temperature operation on the lower female die 102 during processing. When the temperature is too high, the heating is stopped; when the temperature is low, the heating continues. The embossing part to be processed is placed on the surface of the lower female die 102 and hot stamped. The cylinder 104 moves to drive the upper male die 105 to move downward. The downward movement of the upper male die 105 drives the control slider 107 to slide and control inside the control chute 106, so that the upper male die 105 stably moves downward to the surface of the lower female die 102 to perform embossing and hot stamping processing on the embossing part;

[0034] Then, before the embossing and hot stamping die body 100 is used, when dust and dirt fall into the interior of the lower die 102 and are exposed to the outside world, connect the connecting pipe orifice 1034 to a dust suction device outside the world. The forward and reverse motor 1031 operates to drive the lead screw 1035 to rotate. When the lead screw 1035 rotates, the moving head 1036 moves on the outer surface of the lead screw 1035. When the moving head 1036 moves, it drives the dust suction moving pipe 1032 to move on the surface of the lower die 102. At the same time, the end drives the limit slider 1037 to slide and control inside the limit sliding groove 1038 until the dust suction moving pipe 1032 is stably moved. Then, the dust and dirt on the surface of the lower die 102 are sucked through the dust suction holes 1033. Moreover, it is convenient for dust suction and cleaning treatment before operation, and the cleaning treatment is convenient. This makes it not easy for dust and dirt to adhere when the embossed part is placed inside the lower die 102, enabling high-quality operation and improving the convenience of cleaning treatment of the embossing and hot stamping die body 100 before operation;

[0035] Finally, after the embossing and hot stamping die body 100 finishes processing and there is still a large amount of heat inside the lower die 102, the motor 1023 can be powered on to operate and drive the fan blade 1024 to rotate. When the fan blade 1024 rotates, it blows air into the interior of the heat dissipation channel 1021. When blowing air inside the heat dissipation channel 1021, the air is discharged to the outside world through the discharge holes 1022 and takes away the internal heat. This is convenient for the embossing and hot stamping die body 100 to accelerate the heat dissipation inside the lower die 102 after use, and it is not easy to be overheated and cause danger when exposed to the outside world during non-use, improving the convenience of quickly dissipating heat inside the lower die 102 after the embossing and hot stamping die body 100 finishes processing operations, and enabling safe placement.

[0036] Although the embodiments of the present invention have been shown and described (see the above detailed description), for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An adaptive embossing and hot stamping die, comprising an embossing and hot stamping die body (100). The embossing and hot stamping die body (100) includes a base (101). At the middle position of the upper surface of the base (101), a lower female die (102) is fixedly installed. At the top end of the upper surface of the base (101), a gantry (103) is fixedly installed. At the inner top end of the gantry (103), a cylinder (104) is fixedly installed by bolts. At the end of the cylinder (104) inside the gantry (103), an upper male die (105) is fixedly installed by bolts. It is characterized in that: The relief stamping die body (100) is further provided with: a cleaning mechanism, and the cleaning mechanism includes a dust suction and cleaning component arranged on the upper surface of the base (101) at the tail end of the lower die cavity (102). A moving and adjusting component is arranged at the bottom end of one side of the gantry (103). The end of the moving and adjusting component is fixedly connected to the end of the cleaning component by bolts. A limiting component is arranged between the other end of the cleaning component and the bottom end of the other side of the gantry (103); a rapid heat dissipation mechanism, and the rapid heat dissipation mechanism includes a rapid heat dissipation component arranged at the bottom end inside the lower die cavity (102). A driving and blowing component is arranged at the front surface of the end of the rapid heat dissipation component and located inside the lower die cavity (102).

2. The adaptive embossing and ironing die according to claim 1, wherein: Two control chutes (106) are opened on both inner sides of the gantry (103). A control slider (107) is arranged inside the control chute (106). The end of the control slider (107) is fixedly installed on the side surface of the upper punch (105) by bolts. An electric heating plate (109) is installed inside the lower die cavity (102). A temperature sensor (1081) is arranged on the upper surface of the lower die cavity (102) in an array. An electric control box (108) is arranged on the side surface of the gantry (103) in an array. The temperature sensor (1081) and the electric heating plate (109) are both electrically connected to the electric control box (108) through wires.

3. The adaptive embossing and pressing die according to claim 1, wherein: The dust suction and cleaning component includes a dust suction moving pipe (1032) arranged on the upper surface of the base (101) where the lower die cavity (102) is located. A connecting pipe orifice (1034) is arranged at the middle position of the rear surface of the dust suction moving pipe (1032). Dust suction holes (1033) are equidistantly opened on the lower surface of the dust suction moving pipe (1032).

4. The adaptive embossing and ironing die according to claim 3, wherein: The moving and adjusting component includes a lead screw (1035) installed at the bottom end of one side of the gantry (103) through a bearing. A forward and reverse motor (1031) is installed on the front surface of the gantry (103) at the end of the lead screw (1035). A moving head (1036) is arranged on the outer surface of the end of the lead screw (1035). The end of the moving head (1036) is fixedly connected to one end of the dust suction moving pipe (1032) by bolts.

5. The adaptive embossing and ironing die according to claim 3, wherein: The limiting component includes a limiting chute (1038) opened at the bottom end of the other side of the gantry (103). A limiting slider (1037) is arranged on one side inside the limiting chute (1038). The end of the limiting slider (1037) is fixedly connected to the other end of the dust suction moving pipe (1032) by bolts.

6. An adaptive embossing and pressing die according to claim 1, characterized in that: The rapid heat dissipation component includes a heat dissipation channel (1021) opened at the bottom end inside the lower die cavity (102). A discharge hole (1022) is installed at the rear surface of the lower die cavity (102) at one end of the heat dissipation channel (1021).

7. An adaptive embossing and ironing die according to claim 6, characterized in that: The driving and blowing assembly includes a mounting groove (1025) formed at the other end of the heat dissipation channel (1021) and located on the front surface of the lower female mold (102). A motor (1023) is installed inside the mounting groove (1025) through a fixing frame. A fan blade (1024) is fixedly installed at the end of the motor (1023) by screws. A protective net plate (1026) is installed on the surface of the lower female mold (102) at the tail end of the mounting groove (1025).