Automatic die feeding device and stamping die
Through the design of the automatic feeding device of the mold, the reciprocating movement of the upper mold seat and the lower mold seat, combined with the clamping mechanism and the material pushing mechanism, the automatic transportation of materials is realized, and the problems of low feeding efficiency and high cost in the prior art are solved, which improves feeding efficiency and saves costs.
Patent Information
- Application Number
- CN202422414634.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-09-30
AI Technical Summary
In the prior art, the mold feeding efficiency is low and the cost is high, and automatic feeding cannot be achieved.
An automatic mold feeding device is designed, including an upper mold seat, a lower mold seat, a feeding mechanism, a first pushing mechanism and a second pushing mechanism. Through the reciprocating separation and closing of the upper mold seat and the lower mold seat, the automatic step push of material is realized, and the elastic parts of the clamping mechanism, the feeding slider and the feeding slider are matched to realize the automatic conveying of material.
Improve feeding efficiency, reduce costs, and realize automatic feeding of molds.
Smart Images

Figure CN223222313U_ABST
Abstract
Description
Technical Field
[0001] This utility model patent relates to the technical field of molds, specifically, to an automatic mold feeding device and a stamping mold. Background Art
[0002] Molds are tools used to create shaped objects and are widely used in product manufacturing. During the mold manufacturing process, materials need to be fed into the mold for manufacturing.
[0003] In the prior art, materials in the form of material strips are generally fed by a feeder. For the feeding of a single material, manual feeding is often used, which has low feeding efficiency and high cost, and cannot achieve automated feeding. Utility Model Content
[0004] The purpose of the utility model is to provide an automatic feeding device for a mold, aiming to solve the problem of low feeding efficiency in the prior art due to manual feeding.
[0005] The utility model is realized in this way: an automatic mold feeding device comprises:
[0006] Upper die base, used for processing materials;
[0007] A lower die base, the lower die base being arranged opposite to the upper die base, and the lower die base being provided with a processing position for processing materials;
[0008] A feeding mechanism, wherein the feeding mechanism is arranged on the lower die base;
[0009] a first pushing mechanism, which is disposed on one side of the feeding mechanism and is slidably mounted on the lower die base, and separates the material in the feeding mechanism and pushes the material out of the feeding mechanism by abutting against the upper die base; and
[0010] The second pushing mechanism is slidably arranged at one end of the feeding mechanism and is arranged at one side of the processing position. The second pushing mechanism pushes the material pushed out by the first pushing mechanism into the processing position.
[0011] Furthermore, a clamping mechanism is provided on the peripheral side of the processing position, and the clamping mechanism clamps the material on the processing position to relatively fix the material on the processing position.
[0012] Furthermore, the clamping mechanism includes a clamping member, which is elastically movably arranged to elastically clamp and fix the material placed on the processing position.
[0013] Furthermore, the clamping member has a clamping surface that laterally abuts against the material on the processing position, and the clamping surface is provided with a roller that is arranged in a rolling manner and laterally abuts against the material on the processing position.
[0014] Furthermore, the feeding mechanism includes a feeding channel, the processing position is connected to the feeding channel, the feeding channel is connected to the feeding channel, and the feeding channel has a preset position connected to the feeding channel;
[0015] The first pushing mechanism includes a feed slider, which is arranged on one side of the feed channel and is slidably arranged on the lower mold base. The upper mold base supports the feed slider, drives the feed slider to slide, and pushes the material at the preset position into the feed channel.
[0016] Furthermore, the feed slider is connected to a feed elastic member that drives the feed slider to reset and move to exit the preset position. During the process of the feed slider entering the preset position, the feed elastic member is compressed.
[0017] Furthermore, the end of the feeding slide block is arranged at an angle, forming a feeding slope for squeezing the material in the preset position into the feeding channel.
[0018] Furthermore, the second pushing mechanism includes a feeding slider, which is slidably arranged on one side of the processing position, and the feeding slider pushes the material pushed out by the feeding slider into the processing position by sliding.
[0019] Furthermore, the feeding slider is connected to a feeding elastic member that drives the feeding slider to reset and move to enter the feeding channel. During the process of the feeding slider entering the feeding channel, the feeding elastic member is compressed.
[0020] Compared with the prior art, the automatic mold feeding device provided by the present invention has the following characteristics: when the upper mold base is separated from the lower mold base, the feeding slider enters the feeding channel, and the material in the feeding channel is sent to the processing position, and the feeding slider exits the preset position so that the material enters the preset position; when the upper mold base and the lower mold base are closed, the material in the processing position is processed, and the feeding slider exits the feeding channel, and the feeding slider enters the preset position, and the material in the preset position is sent to the feeding channel. In this way, during the process of reciprocating separation and closing of the upper mold base and the lower mold base, the material enters the preset position, the feeding channel and the processing position in steps, thereby realizing automatic feeding operation, high feeding efficiency and cost saving.
[0021] The utility model also provides a stamping die, comprising the above-mentioned automatic die feeding device, wherein the upper die seat is provided with a stamping head matched with the processing position, and the stamping head is provided with a protruding positioning pin.
[0022] Compared with the existing technology, the stamping die provided by the utility model enables the upper die base and the lower die base to enter the preset position, the feeding channel and the processing position in steps during the reciprocating separation and closing process, thereby realizing automatic feeding operation, high feeding efficiency and cost saving. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1It is a three-dimensional schematic diagram of the upper die base and the lower die base provided by the utility model in a separated state;
[0024] Figure 2 This is a three-dimensional schematic diagram of the lower die base provided by the utility model;
[0025] Figure 3 yes Figure 2 A is an enlarged schematic diagram;
[0026] Figure 4 This is a three-dimensional schematic diagram of the upper die base provided by the utility model;
[0027] In the figure: upper die base 100, feed plug 101, feed plug 102, punch head 103, positioning pin 104; lower die base 200; feed channel 300; material 400; feed slider 500, feed elastic member 501, feed boss 502; feed slider 600, feed inclined surface 601; clamping member 700, clamping surface 701, roller 702; processing position 800. DETAILED DESCRIPTION
[0028] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0029] The implementation of the present invention is described in detail below with reference to specific embodiments.
[0030] The same or similar numbers in the drawings of this embodiment correspond to the same or similar parts; in the description of this utility model, it should be understood that if there are terms such as "upper", "lower", "left", "right", etc. indicating directions or positional relationships, they are based on the directions or positional relationships shown in the drawings. This is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, the terms describing the positional relationship in the drawings are only used for illustrative purposes and cannot be understood as limiting this patent. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.
[0031] Reference Figure 1-4 The figure shows a preferred embodiment of the present invention.
[0032] The automatic mold feeding device includes a lower mold base 200 and an upper mold base 100. The mold here can be various types of molds, not only limited to stamping molds. The upper mold base 100 is arranged above the lower mold base 200. When the upper mold and the lower mold base 200 are merged toward each other, the material 400 is manufactured accordingly to form a corresponding product. When the upper mold base 100 and the lower mold base 200 are separated, the material 400 needs to be fed in.
[0033] Automatic mold feeding device, including:
[0034] Upper die base 100, used for processing material 400;
[0035] The lower die base 200 is arranged opposite to the upper die base 100, and the lower die base 200 is provided with a processing position 800 for processing the material 400;
[0036] Feeding mechanism, the feeding mechanism is arranged on the lower die base 200;
[0037] A first pushing mechanism is provided on one side of the feeding mechanism and is slidably provided on the lower die base 200 , and separates the material 400 in the feeding mechanism by abutting against the upper die base 100 and pushes the material 400 out of the feeding mechanism; and
[0038] The second pushing mechanism is slidably arranged at one end of the feeding mechanism and is arranged on one side of the processing position 800. The second pushing mechanism pushes the material 400 pushed out by the first pushing mechanism into the processing position 800.
[0039] In the above-mentioned automatic mold feeding device, the material 400 is placed on the feeding mechanism, the material on the feeding mechanism is separated by the first pushing mechanism, and the material 400 is pushed out of the feeding mechanism, and the material 400 pushed out of the feeding mechanism is pushed into the processing position 800 by the second pushing mechanism, thereby realizing automatic feeding operation, high feeding efficiency and cost saving.
[0040] In some embodiments, a clamping mechanism is provided on the peripheral side of the processing position 800 , and the clamping mechanism clamps the material 400 on the processing position 800 to relatively fix the material 400 on the processing position 800 , thereby facilitating the positioning of the material 400 on the processing position 800 .
[0041] Specifically, the clamping mechanism includes a clamping member 700, which is elastically movable and elastically clamps and secures the material 400 placed on the processing station 800. In this way, the material 400 on the processing station 800 can be clamped firmly and prevented from sliding past the processing station 800 due to inertia when the material 400 enters the processing station 800 from the feeding channel.
[0042] In addition, in order to ensure that the material 400 smoothly enters the processing position 800 from the feeding channel, the end of the clamping member 700 has a guide slope, which can guide the material 400 into the processing position 800, and when the material 400 passes the guide slope, the clamping member 700 begins to clamp the material 400.
[0043] In some embodiments, the clamping member 700 has a clamping surface 701 that laterally abuts the material 400 on the processing position 800. A roller 702 is provided on the clamping surface 701 that is arranged in a rolling manner and laterally abuts the material 400 on the processing position 800. The provision of the roller 702 can form a linear abutment between the clamping member 700 and the material 400, reducing the risk of surface wear of the material 400.
[0044] The feeding mechanism includes a feed channel 300, the processing position 800 is connected to the feed channel, the feed channel 300 is connected to the feed channel, and the feed channel 300 has a preset position connected to the feed channel; the first pushing mechanism includes a feed slider 600, the feed slider 600 is arranged on one side of the feed channel 300, and is slidably arranged on the lower mold base 200, the upper mold base 100 supports the feed slider 600, drives the feed slider 600 to slide, and pushes the material 400 at the preset position into the feed channel.
[0045] In some embodiments, the feed slider 600 is connected to a feed elastic member that drives the feed slider 600 to reset and exit the preset position. The feed elastic member is compressed during the process of the feed slider 600 entering the preset position. When the feed slider 600 is driven into the preset position, the feed elastic member is compressed. When the external force acting on the feed slider 600 is eliminated, the feed elastic member resets, driving the feed slider 600 to exit the preset position, thereby achieving automatic exit of the feed slider 600 from the preset position.
[0046] In some embodiments, the end of the feed slider 600 is arranged at an angle to form a feed slope 601 for squeezing the material 400 in the preset position into the feed channel. In this way, when the material 400 in the preset position needs to be fed into the feed channel, the feed slider 600 moves toward the preset position, and the feed slope 601 is used to press the material 400 in the preset position to squeeze the material 400 into the feed channel. The inclined pressure of the feed slope 601 can prevent the material 400 in the preset position from entering the feed channel and causing material jamming.
[0047] In some embodiments, the upper mold base 100 is provided with a feed plug 101 that presses the feed slider 600 to move into a preset position. When the upper mold base 100 and the lower mold base 200 are closed, the feed plug 101 presses the feed slider 600 to move, so that the feed slider 600 enters the preset position, and feeds the material 400 in the preset position into the feed channel, and the feed elastic part here is compressed. When the upper mold base 100 and the lower mold base 200 are separated, the feed elastic part is reset, driving the feed slider 600 to exit the preset position.
[0048] Of course, in order to achieve a smoother driving movement, an inclined surface pressing fit is adopted between the feed plug 101 and the feed slider 600 .
[0049] In some embodiments, the second pushing mechanism includes a feeding slider 500 , which is slidably arranged on one side of the processing position 800 . The feeding slider 500 pushes the material 400 pushed out by the feeding slider 600 into the processing position 800 by sliding.
[0050] In some embodiments, the feed slider 500 is connected to a feed elastic member 501 that drives the feed slider 500 to reset and move into the feed channel. During the process of the feed slider 500 entering the feed channel, the feed elastic member 501 is compressed. In this way, when the feed slider 500 is in an undriven state, the feed slider 500 enters the feed channel and restricts the material 400 from entering the feed channel. When the feed slider 500 is driven to exit the feed channel, the feed elastic member 501 is compressed. When the feed slider 500 is in an undriven state, the feed elastic member 501 resets and drives the feed slider 500 to enter the feed channel, thereby achieving automatic reset movement of the feed slider 500.
[0051] In some embodiments, a feeding plug 102 is provided on the upper mold base 100 to press the feeding module to move out of the feeding channel. When the upper mold base 100 and the lower mold base 200 are closed, the feeding slider 500 will press and drive the feeding slider 500 to move, so that the feeding slider 500 exits the feeding channel. At this time, the feeding slider 600 enters the feeding channel 300 and feeds the material 400 in the preset position into the feeding channel, thereby realizing the automatic operation of the material 400 entering the feeding channel from the preset position.
[0052] In order to facilitate the pressing fit between the feeding plug 102 and the feeding slider 500, a feeding boss 502 is provided on the feeding slider 500, and the feeding plug 102 directly abuts against the feeding boss 502 to move, thereby driving the movement of the entire feeding slider 500. Of course, in order to achieve a smoother driving movement, a bevel pressing fit is adopted between the feeding plug 102 and the feeding boss 502.
[0053] In some embodiments, the feed channel 300 is connected to the vibration plate, and the feed channel 300 is arranged in a strip shape. The preset position is formed at the end of the feed channel 300. The vibration of the vibration plate can automatically arrange the material 400 and arrange it in sequence along the feed channel 300. When the material 400 in the preset position is fed into the feed channel, the material 400 in the feed channel 300 is automatically replenished to the preset position through the action of the vibration plate.
[0054] When the upper die base 100 is separated from the lower die base 200, the feeding slider 500 enters the feeding channel and sends the material 400 in the feeding channel to the processing position 800, and the feeding slider 600 exits the preset position so that the material 400 enters the preset position; when the upper die base 100 and the lower die base 200 are closed, the material 400 in the processing position 800 is processed, and the feeding slider 500 exits the feeding channel, and the feeding slider 600 enters the preset position to send the material 400 in the preset position to the feeding channel. In this way, during the reciprocating separation and closing process of the upper die base 100 and the lower die base 200, the material 400 enters the preset position, the feeding channel and the processing position 800 in steps, thereby realizing automatic feeding operation, high feeding efficiency and cost saving.
[0055] When the upper die base 100 is separated from the lower die base 200, the feeding slider 500 enters the feeding channel and sends the material 400 in the feeding channel to the processing position 800, and the feeding slider 600 exits the preset position so that the material 400 enters the preset position; when the upper die base 100 and the lower die base 200 are closed, the material 400 in the processing position 800 is processed, and the feeding slider 500 exits the feeding channel, and the feeding slider 600 enters the preset position to send the material 400 in the preset position to the feeding channel. In this way, during the reciprocating separation and closing process of the upper die base 100 and the lower die base 200, the material 400 enters the preset position, the feeding channel and the processing position 800 in steps, thereby realizing automatic feeding operation, high feeding efficiency and cost saving.
[0056] Of course, when the upper die base 100 and the lower die base 200 are closed for the first time, there is no material 400 on the processing position 800. At this time, the material 400 is only sent to the feeding channel. When the upper die base 100 and the lower die base 200 are separated for the first time, the material 400 begins to enter the processing position 800. In this way, when the upper die base 100 and the lower die base 200 are closed next, the material 400 is kept on the processing position 800 through automatic feeding.
[0057] This embodiment also provides a stamping die, including the aforementioned automatic die feeding device. The upper die base 100 is provided with a punch head 103 that engages with the processing station 800. The punch head 103 is provided with a raised positioning pin 104. When the upper die base 100 and the lower die base 200 are closed, the punch head 103 engages with the processing station 800 to perform a stamping operation on the material 400 placed on the processing station 800. The positioning pin 104 here activates the stamping positioning function.
[0058] In the stamping die provided above, the upper die base 100 and the lower die base 200, during the reciprocating separation and closing process, enable the material 400 to enter the preset position, the feeding channel and the processing position 800 in steps, realizing automatic feeding operation, high feeding efficiency and cost saving.
[0059] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A mold automatic feeding device, characterized in that, include: An upper die base (100) for processing a material (400); A lower die base (200), the lower die base (200) being arranged opposite to the upper die base (100), the lower die base (200) being provided with a processing position (800) for processing a material (400); A feeding mechanism, the feeding mechanism being arranged on the lower die base (200); A first pushing mechanism, which is arranged on one side of the feeding mechanism and is slidably arranged on the lower die base (200), separates the material (400) in the feeding mechanism by abutting against the upper die base (100) and pushes the material (400) out of the feeding mechanism; as well as The second pushing mechanism is slidably arranged at one end of the feeding mechanism and is arranged on one side of the processing position (800). The second pushing mechanism pushes the material (400) pushed out by the first pushing mechanism into the processing position (800).
2. The automatic mold feeding device according to claim 1, characterized in that: A clamping mechanism is provided on the peripheral side of the processing position (800), and the clamping mechanism clamps the material (400) on the processing position (800) to relatively fix the material (400) on the processing position (800).
3. The automatic mold feeding device according to claim 2, characterized in that: The clamping mechanism comprises a clamping member (700), and the clamping member (700) is elastically movable and elastically clamps and fixes the material (400) placed on the processing position (800).
4. The automatic mold feeding device according to claim 3, characterized in that: The clamping member (700) has a clamping surface (701) that laterally abuts against the material (400) on the processing position (800), and a roller (702) is provided on the clamping surface (701) that is arranged in a rolling manner and laterally abuts against the material (400) on the processing position (800).
5. The automatic mold feeding device according to any one of claims 1 to 4, characterized in that: The feeding mechanism includes a feeding channel (300), the processing position (800) is connected to the feeding channel, the feeding channel (300) is connected to the feeding channel, and the feeding channel (300) has a preset position connected to the feeding channel; The first pushing mechanism includes a feed slider (600), which is arranged on one side of the feed channel (300) and is slidably arranged on the lower die base (200). The upper die base (100) abuts against the feed slider (600) and drives the feed slider (600) to slide, thereby pushing the material (400) at the preset position into the feed channel.
6. The automatic mold feeding device according to claim 5, characterized in that: The feed slider (600) is connected to a feed elastic member that drives the feed slider (600) to reset and move to exit the preset position. When the feed slider (600) enters the preset position, the feed elastic member is compressed.
7. The automatic mold feeding device according to claim 5, characterized in that: The end of the feeding slide block (600) is arranged in an inclined manner, forming a feeding slope (601) for squeezing the material (400) in the preset position into the feeding channel.
8. The automatic mold feeding device according to claim 5, characterized in that: The second pushing mechanism comprises a feeding slider (500), wherein the feeding slider (500) is slidingly arranged on one side of the processing position (800), and the feeding slider (500) pushes the material (400) pushed out by the feeding slider (600) into the processing position (800) by sliding.
9. The automatic mold feeding device according to claim 8, characterized in that: The feeding slide block (500) is connected to a feeding elastic member (501) that drives the feeding slide block (500) to reset and move so as to enter the feeding channel. During the process of the feeding slide block (500) entering the feeding channel, the feeding elastic member (501) is compressed.
10. Stamping die, characterized in that, The automatic mold feeding device comprises the one described in any one of claims 1 to 9, wherein the upper mold base (100) is provided with a punching head (103) cooperating with the processing position (800), and the punching head (103) is provided with a protruding positioning needle (104).