Self-separation discharging die and forming equipment

By designing an automatic discharge mold that separates finished products from waste materials, and utilizing elastic pressing components and discharge components, the problem of difficult separation of finished products and waste materials in the production of hardware accessories has been solved, achieving automatic separation and cost reduction.

CN223916427UActive Publication Date: 2026-02-17HUIZHOU SHENGUANG ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202423319200.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-17
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

In the existing technology, finished products and waste materials are mixed together during the production of hardware accessories, which makes separation difficult and increases labor costs.

Method used

Design a self-separating discharge mold, including an upper mold base, a lower mold base, an elastic pressing component, and a discharge component. The elastic reset component drives the rotation of the pressing base, and combined with the cutting section and the extrusion section, the finished product and waste material are automatically separated.

Benefits of technology

It enables automatic separation of finished products and waste materials, reduces manual separation costs, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a self-separation discharging die and forming equipment. The self-separation discharging die comprises an upper die base, a lower die base, an elastic pressing assembly and a discharging assembly, a fixing base of the elastic pressing assembly is installed on the upper die base, an elastic reset piece is arranged on the fixing base, a material pressing base is movably arranged on the fixing base, the first end of the elastic reset piece abuts against the fixing base, and the second end of the elastic reset piece abuts against the material pressing base. The discharging assembly comprises a finished product sliding way and a waste sliding way, the waste sliding way is arranged below the finished product sliding way, the finished product sliding way and the waste sliding way are both installed at the discharging port, the finished product sliding way is provided with a finished product sliding part, waste inlets are formed in the two sides of the finished product sliding part respectively, and the waste inlets communicate with the waste sliding way. Two extrusion parts are arranged on the face, facing the lower die base, of the pressing base, correspond to the waste inlets in a one-to-one mode and press waste into the waste sliding ways from the waste inlets. The discharging die ensures automatic separation of finished products and waste materials, and the labor cost is reduced.
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Description

Technical Field

[0001] This disclosure relates to the technical field of molding dies, and in particular to self-separating discharge dies and molding equipment. Background Technology

[0002] Currently, hardware accessories are an indispensable and important component of various mechanical equipment, electronic products, and household products. During the production process, hardware accessories are generally made by stamping strips through forming equipment to form finished products. However, waste material often adheres to the periphery of the finished products, causing the waste material generated during the stamping process to fall into the finished product frame along with the finished products. This results in the waste material and finished products being mixed together, making it difficult to separate the waste material from the finished products. Furthermore, it requires workers to sort and separate the waste material, increasing labor costs. Utility Model Content

[0003] The purpose of this disclosure is to overcome the shortcomings of the prior art and provide a self-separating discharge mold and forming equipment that automatically separates finished products and waste materials, avoids difficulties in separating finished products and waste materials, and reduces labor costs.

[0004] The purpose of this disclosure is achieved through the following technical solution:

[0005] A self-separating discharge mold includes an upper mold base and a lower mold base, wherein the upper mold base and the lower mold base are disposed opposite to each other, and the self-separating discharge mold further includes:

[0006] An elastic pressing assembly includes a fixed base, an elastic reset member, and a pressure seat. The fixed base is fixedly installed on the upper mold base. The elastic reset member is disposed on the fixed base. The pressure seat is movably disposed on the fixed base. A first end of the elastic reset member abuts against the fixed base, and a second end of the elastic reset member abuts against the pressure seat, allowing the pressure seat to elastically rotate on the fixed base. The fixed base has a cutting part facing the discharge port of the lower mold base, which is used to cut and separate waste material and material strip.

[0007] The discharge assembly includes a finished product chute and a waste material chute. The finished product chute is connected to the finished product box, and the waste material chute is located below the finished product chute and is connected to the waste material box. Both the finished product chute and the waste material chute are fixedly installed at the discharge port. The finished product chute is provided with a finished product falling section, and a waste material inlet is formed on each side of the finished product falling section. The waste material inlet is connected to the waste material chute. The pressure base is provided with two extrusion sections on the side facing the lower die base. The extrusion sections are arranged one-to-one with the waste material inlets, and the extrusion sections are used to press waste material from the waste material inlets into the waste material chute.

[0008] In one embodiment, the fixing seat has a mounting groove, and the elastic reset member includes a first fixing shaft and a reset spring. The first fixing shaft is fixedly installed in the mounting groove, and the reset spring is sleeved on the first fixing shaft. A second fixing shaft is fixedly installed in the mounting groove, and the second fixing shaft is located below the first fixing shaft. The pressure seat is rotatably sleeved on the second fixing shaft so that the first end of the reset spring abuts against the fixing seat, and the second end of the reset spring abuts against the pressure seat.

[0009] In one embodiment, the return spring is a torsion spring structure.

[0010] In one embodiment, the length of the waste chute is less than the length of the finished product chute.

[0011] In one embodiment, the finished product chute includes a receiving slide frame and a main slide frame that are connected to each other. The receiving slide frame is inclined at the discharge port. The receiving slide frame includes a finished product sliding part and a guide slide part that are connected to each other. A waste inlet is formed on each side of the finished product sliding part, and the length of the waste inlet extends from near the discharge port toward the guide slide part.

[0012] In one embodiment, the main slide frame includes a sliding section and two opposing abutment sections disposed on the sliding section. The guide section abuts against the sliding section and is located above the sliding section. The sliding section is used to communicate with the finished product box so that the finished product slides from the finished product drop section through the guide section to the sliding section. The abutment sections are used to prevent the finished product from falling out of the sliding section.

[0013] In one embodiment, a connecting part is provided at each of the two ends of the waste chute. The connecting parts are parallel to the sliding part, and each connecting part is welded to the bottom of the sliding part so that the waste chute and the sliding part form a waste channel. The waste channel is connected to the waste inlet and is used to communicate with the waste bin.

[0014] In one embodiment, a plurality of cleaning grooves are formed on the sidewall of the waste chute adjacent to the sliding part. The plurality of cleaning grooves are spaced apart along the length direction of the waste chute, and each cleaning groove is connected to the waste channel.

[0015] In one embodiment, the self-separating discharge mold further includes a support fixing body, which is located on the outside of the blocking part and is used to support and fix the finished product slide.

[0016] A molding device, comprising the self-separating discharge mold described in any of the above embodiments.

[0017] Compared with the prior art, this disclosure has at least the following advantages:

[0018] 1) In the self-separating discharge mold disclosed herein, since the fixed base is fixedly installed on the upper mold base, the elastic reset member is provided on the fixed base, and the pressure seat is movably provided on the fixed base, and the first end of the elastic reset member abuts against the fixed base, and the second end of the elastic reset member abuts against the pressure seat, the pressure seat can be elastically rotated on the fixed base under the action of the elastic reset member. That is, when the upper mold base and the lower mold base are closed, the elastic reset member is tightened and compressed, so that the pressure seat is in the first preset position. When the upper mold base and the lower mold base are opened, the elastic reset member automatically resets, so that the pressure seat is in the second preset position. Furthermore, since the fixed base is provided with a cutting part facing the discharge port of the lower mold base, it ensures that the waste material and the material strip are cut off and separated when the upper mold base is pressed down, so as to obtain the adhered finished product and waste material, and ensure that the adhered finished product and waste material enter the subsequent separation.

[0019] 2) The self-separating discharge mold disclosed herein has two extrusion sections on the side of the pressure seat facing the lower mold seat. Each extrusion section corresponds to a waste inlet. When the upper and lower mold seats are closed, the pressure seat is in the first preset position, that is, the extrusion section presses the waste into the waste inlet, thereby separating the finished product from the waste. This ensures that the waste falls smoothly into the waste chute and slides into the waste box, while the finished product slides down into the finished product chute and slides into the finished product box. This achieves automatic separation of the finished product from the waste. Furthermore, when the upper and lower mold seats are opened, the pressure seat is in the second preset position, that is, one separation of waste and finished product is completed. This cycle is repeated to ensure automatic separation of finished product and waste, avoid the situation where waste and finished product are mixed and separation becomes difficult, and reduce labor costs. Attached Figure Description

[0020] To more clearly illustrate the technical solutions of the embodiments of this disclosure, the accompanying drawings used in the embodiments will be briefly described below. It should be understood that the following drawings only show some embodiments of this disclosure and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 This is a schematic diagram of the opening structure of a self-separating discharge mold according to an embodiment of the present disclosure;

[0022] Figure 2 for Figure 1 The enlarged view shown at point A in the middle;

[0023] Figure 3 for Figure 1 The diagram shows the structure of the elastic pressing assembly.

[0024] Figure 4 for Figure 1 The diagram shows a structural schematic of the discharge assembly in one direction.

[0025] Figure 5 for Figure 4 A schematic diagram of the discharge assembly from another direction is shown.

[0026] Figure 6 for Figure 1 The diagram shows the structure of the self-separating discharge mold.

[0027] Reference numerals: 10, self-separating discharge mold; 100, upper mold base; 200, lower mold base; 201, discharge port; 300, elastic pressing assembly; 310, fixed base; 311, cutting part; 312, mounting groove; 312a, second fixed shaft; 320, elastic reset element; 321, first fixed shaft; 322, reset spring; 330, pressure plate base; 331, extrusion part; 400, discharge assembly Components; 410, Finished product slide; 411, Receiving slide frame; 411a, Finished product sliding part; 4110, Waste material inlet; 411b, Guide slide part; 412, Main slide frame; 412a, Sliding part; 412b, Blocking part; 420, Waste material slide; 421, Fixing part; 422, Waste material channel; 423, Cleaning trough; 500, Support fixing body; 20, Material strip; 21, Finished product; 22, Waste material. Detailed Implementation

[0028] To facilitate understanding of this disclosure, a more complete description will be given below with reference to the accompanying drawings, which illustrate preferred embodiments of the present disclosure. However, this disclosure can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure.

[0029] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.

[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this disclosure. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0031] To better understand the technical solutions and beneficial effects of this disclosure, the following detailed description is provided in conjunction with specific embodiments:

[0032] Please refer to the following: Figures 1 to 3 and Figure 6 In one embodiment, the self-separating discharge mold 10 includes an upper mold base 100, a lower mold base 200, an elastic pressing assembly 300, and a discharge assembly 400. The upper mold base 100 and the lower mold base 200 are disposed opposite to each other. The elastic pressing assembly 300 includes a fixed base 310, an elastic reset member 320, and a pressing base 330. The fixed base 310 is fixedly installed on the upper mold base 100. The elastic reset member 320 is disposed on the fixed base 310. The pressing base 330 is movably disposed on the fixed base 310. The first end of the elastic reset member 320 abuts against the fixed base 310, and the second end of the elastic reset member 320 abuts against the pressing base 330, so that the pressing base 330 can elastically rotate on the fixed base 310. The fixed base 310 is provided with a cutting part 311 facing the discharge port 201 of the lower mold base 200. The cutting part 311 is used to cut and separate the waste material 22 and the material strip 20.

[0033] It is understandable that, since the fixed base 310 is fixedly installed on the upper mold base 100, the elastic reset member 320 is disposed on the fixed base 310, and the pressure plate 330 is movably disposed on the fixed base 310, with the first end of the elastic reset member 320 abutting against the fixed base 310 and the second end of the elastic reset member 320 abutting against the pressure plate 330, the pressure plate 330 can elastically rotate on the fixed base 310 under the action of the elastic reset member 320. That is, when the upper mold base 100 and the lower mold base 200 are closed, the elastic reset member 320... Tightening and compression cause the pressure seat 330 to be in the first preset position. When the upper mold seat 100 and the lower mold seat 200 open the mold, the elastic reset member 320 automatically resets, causing the pressure seat 330 to be in the second preset position. Since the fixed seat 310 is provided with a cutting part 311 facing the discharge port 201 of the lower mold seat 200, it ensures that the waste material 22 and the material strip 20 are cut off and separated when the upper mold seat 100 is pressed down, resulting in the adhered finished product 21 and waste material 22, ensuring that the adhered finished product 21 and waste material 22 enter the subsequent separation.

[0034] Furthermore, such as Figures 3 to 5As shown, the discharge assembly 400 includes a finished product chute 410 and a waste material chute 420. The finished product chute 410 is used to communicate with the finished product box, and the waste material chute 420 is located below the finished product chute 410 and is used to communicate with the waste material box. Both the finished product chute 410 and the waste material chute 420 are fixedly installed at the discharge port 201. The finished product chute 410 is provided with a finished product sliding part 411a. A waste material inlet 4110 is formed on each side of the finished product sliding part 411a. The waste material inlet 4110 is connected to the waste material chute 420. The pressure seat 330 is provided with two extrusion parts 331 on the side facing the lower die seat 200. The extrusion parts 331 are provided one-to-one with the waste material inlets 4110. The extrusion parts 331 are used to press the waste material 22 from the waste material inlet 4110 into the waste material chute 420.

[0035] It is understandable that, since the pressure seat 330 has two extrusion sections 331 on the side facing the lower die holder 200, and the extrusion sections 331 are arranged one-to-one with the waste inlet 4110, when the upper die holder 100 and the lower die holder 200 are closed, the pressure seat 330 is in the first preset position, that is, the extrusion section 331 presses the waste 22 into the waste inlet 4110, realizing the separation of the finished product 21 and the waste 22, ensuring that the waste 22 falls smoothly into the waste slide 420 and slides into the waste box, and the finished product 21... The finished product 21 falls into the finished product slide 410 along the finished product slide part 411a and slides into the finished product box, thereby realizing the automatic separation of finished product 21 and waste material 22. Furthermore, when the upper mold base 100 and the lower mold base 200 open the mold, the pressure seat 330 is in the second preset position, that is, the separation of waste material 22 and finished product 21 is completed once. This cycle is repeated to ensure the automatic separation of finished product 21 and waste material 22, avoid the situation where waste material 22 and finished product 21 are mixed and separation is difficult, and reduce labor costs.

[0036] like Figures 1 to 3As shown, in one embodiment, the fixed base 310 has a mounting groove 312, and the elastic reset member 320 includes a first fixed shaft 321 and a reset spring 322. The first fixed shaft 321 is fixedly installed in the mounting groove 312, and the reset spring 322 is sleeved on the first fixed shaft 321. A second fixed shaft 312a is fixedly installed in the mounting groove 312, and the second fixed shaft 312a is located below the first fixed shaft 321. The pressure seat 330 is rotatably sleeved on the second fixed shaft 312a, so that the first end of the reset spring 322 abuts against the fixed base 310, and the second end of the reset spring 322 abuts against the pressure seat 330. In this embodiment, since the fixing seat 310 has a mounting groove 312, it ensures that a mounting space is provided for the first fixing shaft 321 and the second fixing shaft 312a. Furthermore, since the return spring 322 is sleeved on the first fixing shaft 321 and the pressure seat 330 is rotatably sleeved on the second fixing shaft 312a, and the first end of the return spring 322 abuts against the fixing seat 310, and the second end of the return spring 322 abuts against the pressure seat 330, the first end of the return spring 322 and the return spring 312a... The second end of 22 is located on the same side. When the upper mold base 100 and the lower mold base 200 are closed, the tightening and compression of the return spring 322 causes the pressure seat 330 to be in the first preset position, ensuring that the extrusion part 331 of the pressure seat 330 can press the waste material 22 into the waste inlet 4110, ensuring the separation of the waste material 22 from the finished product 21. When the upper mold base 100 and the lower mold base 200 are opened, the return spring 322 automatically resets under the action of elastic force, causing the pressure seat 330 to be in the second preset position. Further, in one embodiment, the return spring 322 is a torsion spring structure.

[0037] like Figure 4 and Figure 5 As shown, in one embodiment, the length of the waste chute 420 is less than the length of the finished product chute 410. In this embodiment, since the waste chute 420 is connected to the waste bin and the finished product chute 410 is connected to the finished product bin, the waste bin and the finished product bin are effectively prevented from being located in the same position, ensuring the effective separation of the finished product 21 and the waste 22.

[0038] like Figure 2 , Figure 4 and Figure 5As shown, in one embodiment, the finished product slide 410 includes a receiving slide frame 411 and a main slide frame 412 that are connected to each other. The receiving slide frame 411 is inclinedly disposed at the discharge port 201. The receiving slide frame 411 includes a finished product sliding part 411a and a guide slide part 411b that are connected to each other. A waste inlet 4110 is formed on each side of the finished product sliding part 411a, and the length of the waste inlet 4110 extends from the direction close to the discharge port 201 to the guide slide part 411b. In this embodiment, since the receiving slide frame 411 is inclined at the discharge port 201, when the finished product 21 slides out of the discharge port 201, it can be ensured that the finished product 21 slides out sequentially along the finished product sliding part 411a and the guide part 411b, and finally slides towards the main slide frame 412. Since a waste inlet 4110 is formed on each side of the finished product sliding part 411a, and the length of the waste inlet 4110 extends from the direction close to the discharge port 201 to the guide part 411b, it is ensured that after the finished product 21 and the waste 22 are separated, the waste 22 can enter the waste slide 420 from the waste inlet 4110, thus ensuring the effective separation of the finished product 21 and the waste 22.

[0039] like Figures 3 to 5 As shown, in one embodiment, the main slide frame 412 includes a sliding part 412a and two opposing blocking parts 412b disposed on the sliding part 412a. The guide part 411b abuts against the sliding part 412a and is located above the sliding part 412a. The sliding part 412a is used to communicate with the finished product box so that the finished product 21 slides from the finished product sliding part 411a through the guide part 411b to the sliding part 412a. The blocking parts 412b are used to prevent the finished product 21 from falling out of the sliding part 412a. In this embodiment, since the guide slide 411b and the sliding part 412a abut against each other, and the guide slide 411b is located above the sliding part 412a, the finished product 21 slides smoothly into the finished product box from the discharge port 201, the finished product sliding part 411a, the guide slide 411b and the sliding part 412a in sequence. The added blocking part 412b prevents the finished product 21 from sliding away from the sliding part 412a, ensuring that the finished product 21 smoothly enters the finished product box.

[0040] like Figure 4 and Figure 5As shown, in one embodiment, a connecting part 421 is provided at each of the two ends of the waste chute 420. The connecting parts 421 are parallel to the sliding part 412a, and each connecting part 421 is welded to the bottom of the sliding part 412a, so that the waste chute 420 and the sliding part 412a form a waste channel 422. The waste channel 422 is connected to the waste inlet 4110, and the waste channel 422 is used to communicate with the waste bin. In this embodiment, since the fixed part 421 and the sliding part 412a are parallel to each other, the fit of the bottom welding of the fixed part 421 and the sliding part 412a is ensured, and the connection between the waste slide 420 and the finished product slide 410 is guaranteed. Since the waste slide 420 and the sliding part 412a form a waste channel 422, and the waste channel 422 is connected to the waste inlet 4110, the waste 22 can slide smoothly into the waste box from the waste channel 422.

[0041] Furthermore, such as Figure 4 As shown, in one embodiment, a plurality of cleaning grooves 423 are formed on the side wall of the waste chute 420 adjacent to the sliding portion 412a. The plurality of cleaning grooves 423 are spaced apart along the length direction of the waste chute 420, and each cleaning groove 423 is connected to the waste channel 422. In this embodiment, the plurality of cleaning grooves 423 formed on the side wall of the waste chute 420 effectively prevents the waste 22 from blocking the waste channel 422. Workers can clean the accumulated material inside the waste chute 423 in a timely manner according to the discharge situation of the waste chute 420, effectively preventing the waste channel 422 from being blocked.

[0042] like Figure 1 , Figure 2 and Figure 6 As shown, in one embodiment, the self-separating discharge mold 10 further includes a support and fixing body 500, which is disposed on the outside of the blocking part 412b and is used to support and fix the finished product slide 410. In this embodiment, the added support and fixing body 500 plays a supporting and fixing role for the finished product slide 410 and the waste slide 420, preventing the finished product slide 410 and the waste slide 420 from collapsing accidentally during use.

[0043] This disclosure also provides a molding apparatus, including the self-separating discharge mold 10 described in any of the above embodiments.

[0044] Compared with the prior art, this disclosure has at least the following advantages:

[0045] 1) In the self-separating discharge mold 10 of this disclosure, since the fixed base 310 is fixedly installed on the upper mold base 100, the elastic reset member 320 is disposed on the fixed base 310, and the pressure seat 330 is movably disposed on the fixed base 310, and the first end of the elastic reset member 320 abuts against the fixed base 310, and the second end of the elastic reset member 320 abuts against the pressure seat 330, the pressure seat 330 can elastically rotate on the fixed base 310 under the action of the elastic reset member 320, that is, when the upper mold base 100 and the lower mold base 200 are closed, the elastic... The resetting member 320 is tightened and compressed, so that the pressure seat 330 is in the first preset position. When the upper mold seat 100 and the lower mold seat 200 open the mold, the elastic resetting member 320 automatically resets, so that the pressure seat 330 is in the second preset position. Since the fixed seat 310 is provided with a cutting part 311 facing the discharge port 201 of the lower mold seat 200, it ensures that the waste material 22 and the material strip 20 are cut off and separated when the upper mold seat 100 is pressed down, so as to obtain the adhered finished product 21 and waste material 22, and ensure that the adhered finished product 21 and waste material 22 enter the subsequent separation.

[0046] 2) In the self-separating discharge mold 10 of this disclosure, since the pressure seat 330 facing the lower mold base 200 is provided with two extrusion sections 331, and the extrusion sections 331 are arranged one-to-one with the waste inlet 4110, when the upper mold base 100 and the lower mold base 200 are closed, the pressure seat 330 is in the first preset position, that is, the extrusion section 331 presses the waste 22 into the waste inlet 4110, realizing the separation of the finished product 21 and the waste 22, ensuring that the waste 22 falls smoothly into the waste slide 420 and slides into the waste box. Furthermore, the finished product 21 falls into the finished product slide 410 along the finished product slide part 411a and slides into the finished product box, thereby realizing the automatic separation of the finished product 21 and the waste material 22. In addition, when the upper mold base 100 and the lower mold base 200 open the mold, the pressure plate 330 is in the second preset position, that is, the separation of the waste material 22 and the finished product 21 is completed once. This cycle is repeated to ensure the automatic separation of the finished product 21 and the waste material 22, avoid the situation where the waste material 22 and the finished product 21 are mixed and the separation is difficult, and reduce labor costs.

[0047] The embodiments described above are merely illustrative of several implementations of this disclosure, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this disclosure, and these all fall within the protection scope of this disclosure. Therefore, the protection scope of this patent should be determined by the appended claims.

Claims

1. A self-separating discharge mold, comprising an upper mold base and a lower mold base, wherein the upper mold base and the lower mold base are disposed opposite to each other, characterized in that, The self-separating discharge mold also includes: An elastic pressing assembly includes a fixed base, an elastic reset member, and a pressure seat. The fixed base is fixedly installed on the upper mold base. The elastic reset member is disposed on the fixed base. The pressure seat is movably disposed on the fixed base. A first end of the elastic reset member abuts against the fixed base, and a second end of the elastic reset member abuts against the pressure seat, allowing the pressure seat to elastically rotate on the fixed base. The fixed base has a cutting part facing the discharge port of the lower mold base, which is used to cut and separate waste material and material strip. The discharge assembly includes a finished product chute and a waste material chute. The finished product chute is connected to the finished product box, and the waste material chute is located below the finished product chute and is connected to the waste material box. Both the finished product chute and the waste material chute are fixedly installed at the discharge port. The finished product chute is provided with a finished product falling section, and a waste material inlet is formed on each side of the finished product falling section. The waste material inlet is connected to the waste material chute. The pressure base is provided with two extrusion sections on the side facing the lower die base. The extrusion sections are arranged one-to-one with the waste material inlets, and the extrusion sections are used to press waste material from the waste material inlets into the waste material chute.

2. The self-separating discharge mold according to claim 1, characterized in that, The fixed base has an installation groove. The elastic reset member includes a first fixed shaft and a reset spring. The first fixed shaft is fixedly installed in the installation groove. The reset spring is sleeved on the first fixed shaft. A second fixed shaft is fixedly installed in the installation groove and is located below the first fixed shaft. The pressure seat is rotatably sleeved on the second fixed shaft so that the first end of the reset spring abuts against the fixed base and the second end of the reset spring abuts against the pressure seat.

3. The self-separating discharge mold according to claim 2, characterized in that, The return spring is a torsion spring structure.

4. The self-separating discharge mold according to claim 1, characterized in that, The length of the waste material chute is less than the length of the finished product chute.

5. The self-separating discharge mold according to claim 1, characterized in that, The finished product chute includes a receiving slide frame and a main slide frame that are connected to each other. The receiving slide frame is inclined at the discharge port. The receiving slide frame includes a finished product sliding part and a guide slide part that are connected to each other. A waste inlet is formed on each side of the finished product sliding part, and the length of the waste inlet extends from the direction close to the discharge port toward the guide slide part.

6. The self-separating discharge mold according to claim 5, characterized in that, The main slide frame includes a sliding section and two opposing blocking sections disposed on the sliding section. The guide section abuts against the sliding section and is located above the sliding section. The sliding section is used to communicate with the finished product box so that the finished product slides from the finished product drop section through the guide section to the sliding section. The blocking sections are used to prevent the finished product from falling out of the sliding section.

7. The self-separating discharge mold according to claim 6, characterized in that, A fixed connection part is provided at each of the two ends of the waste chute. The fixed connection parts are parallel to the sliding part, and each fixed connection part is welded to the bottom of the sliding part so that the waste chute and the sliding part form a waste channel. The waste channel is connected to the waste inlet and is used to communicate with the waste bin.

8. The self-separating discharge mold according to claim 7, characterized in that, The sidewall of the waste chute is provided with a plurality of cleaning troughs adjacent to the sliding section. The plurality of cleaning troughs are spaced apart along the length of the waste chute, and each cleaning trough is connected to the waste channel.

9. The self-separating discharge mold according to claim 6, characterized in that, The self-separating discharge mold also includes a support and fixing body, which is located on the outside of the blocking part and is used to support and fix the finished product slide.

10. A molding device, characterized in that, The self-separating discharge mold includes any one of claims 1 to 9.