Embedded volume detection device for die-casting die

Through the embedded volume detection device, the water transport and recycling in the die-casting mold cavity is automatically completed by using the motor and pump system, solving the problems of waste and safety risks of water resources after detection in the prior art, and achieving efficient and safe volume detection and water resource recycling.

CN223129304UActive Publication Date: 2025-07-22ZHAOQING XINXING MOULD MFG CO LTD
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Patent Information

Application Number
CN202422390392.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-22
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

After the volume inspection of existing die-casting molds, the mold needs to be turned over and removed from the inspection water inside the mold cavity, which poses safety risks and is difficult to recycle, resulting in waste of water resources.

Method used

Design an embedded volume detection device for die-casting molds. By embedding motor control studs and water pump system, the automatic transportation and recycling of detection water is realized, and the need to remove water from the flip mold is avoided.

Benefits of technology

It improves the degree of automation of volume detection, reduces the safety risks of the detection process, and realizes the recycling of inspection water, reducing water waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of volume detection equipment, and discloses an embedded volume detection device for a die-casting die, which comprises a supporting plate and an electronic platform scale platform, the electronic platform scale platform is positioned on the upper side of the supporting plate, and a die-casting die body is movably arranged at the top end of the electronic platform scale platform. A vertical box is fixed to the top wall of the supporting plate located on one side of a weighing platform of the electronic platform scale, a side hole is formed in the side wall of the vertical box located on the upper side of the die-casting die body, a water tank without a top wall is fixed to the outer side wall of the vertical box located on the upper side of the side hole, and a vertical stud is rotationally connected to the middle position of the top wall of the vertical box through a bearing. The automation degree of volume detection is high, the volume detection efficiency can be improved, detection water in a die cavity does not need to be removed by turning over the die-casting die after volume detection is completed, the detection water in the die cavity can be automatically pumped out, the safety in the using process is high, the detection water can be recycled, and the cost is low. And the waste of water for detection is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of volume detection equipment, in particular to an embedded volume detection device for a die-casting mold. Background Technique

[0002] A die-casting mold is a tool for casting metal parts, a tool for completing the die-casting process on a special die-casting forging machine. In the production process of a die-casting mold, in order to ensure that the volume of the die-casting mold meets the product requirements, it is necessary to detect the volume of the mold cavity of the die-casting mold.

[0003] In the patent document with the publication number CN219551625U that has been published, a mold detection device is disclosed, belonging to the technical field of detection equipment, for a more convenient mold detection device, including a pair of symmetric brackets, a carrier plate is movably connected between the two brackets, and a driving mechanism is arranged on at least one of the brackets for controlling the rotation or stillness of the carrier plate relative to the bracket. The center of the upper surface of the carrier plate has a positioning table, a pressure sensor is arranged on the top surface of the positioning table, and clamping mechanisms extending upward are arranged at the corners of the carrier plate. Through the design of a rotatable carrier table structure, a pressure sensor is arranged on the carrier table, and the volume data of the mold can be easily obtained through the pressure detection data after the three steps of placing the mold, pressing the mold, and injecting water, and it can also detect whether the mold has cracks and leaks, greatly reducing the detection time.

[0004] After the volume detection of the above device is completed, it is necessary to flip the die-casting mold to remove the detection water inside the mold cavity. The risk during the use process is relatively high, and it will cause a large amount of waste of the detection water, and it is difficult to recycle the detection water. Therefore, an embedded volume detection device for a die-casting mold is needed to solve the above problems. Content of the Utility Model

[0005] The purpose of the utility model is to provide an embedded volume detection device for a die-casting mold, which solves the problems raised in the background technique.

[0006] An embedded volume detection device for a die-casting mold is provided in an embodiment of the present application, including a support plate and an electronic platform scale table. The electronic platform scale table is located above the support plate, and a die-casting mold body is movably arranged at the top end of the electronic platform scale table. A vertical box is fixed on the top wall of the support plate on one side of the electronic platform scale table. A side hole is opened on the side wall of the vertical box above the die-casting mold body. A water tank without a top wall is fixed on the outer side wall of the vertical box above the side hole. A vertical stud is rotatably connected to the middle position of the top wall of the vertical box through a bearing. An embedded motor is installed above the vertical box through a motor bracket. The top end of the stud is fixed to the output end of the embedded motor. A vertical sleeve is threadedly sleeved on the outer circle of the stud inside the vertical box. A horizontal connecting rod is fixed to the side end of the vertical sleeve. The connecting rod is movably arranged inside the side hole. The side end of the connecting rod extending out of the vertical box is fixed with a vertical connecting sleeve. A water pump is installed on the outer side wall of the water tank. The water pumping end of the water pump is connected with a T-shaped adapter pipe. The bottom end of the adapter pipe is connected with an embedded pipe. The connecting sleeve is fixedly sleeved on the outer circle of the middle section of the adapter pipe.

[0007] Optionally, bases are fixed at the four corners of the bottom wall of the support plate. Platform scale support feet are fixed at the four corners of the bottom end of the electronic platform scale table. The platform scale support feet are movably arranged on the top wall of the support plate. Stable rings are fixed at the four corners of the top wall of the support plate. The bottom parts of the four platform scale support feet are respectively movably arranged inside the inner circles of the four stable rings.

[0008] By adopting the above technical solution, it is stably supported on the ground through the four bases.

[0009] Optionally, the size of the inner circle of the stable ring is adapted to the size of the bottom of the platform scale support foot.

[0010] By adopting the above technical solution, the electronic platform scale table can be prevented from shaking.

[0011] Optionally, a platform scale bracket is arranged at the side end of the electronic platform scale table. A meter head is arranged at the top end of the platform scale bracket. A display screen and a plurality of control buttons are arranged at the top end of the meter head.

[0012] By adopting the above technical solution, the weighing data of the electronic platform scale table can be displayed through the display screen of the meter head.

[0013] Optionally, a mold cavity body is opened at the top of the die-casting mold body. The embedded pipe is located above the mold cavity body. The embedded pipe is a telescopic hose.

[0014] By adopting the above technical solution, the bottom end of the embedded pipe can enter the inside of the mold cavity body.

[0015] Optionally, the bottom of the stud is rotatably connected to the inner bottom wall of the vertical box through a bearing. A vertical sliding groove is formed in the inner side wall of the vertical box along the height direction. A sliding block is fixed to the side end of the vertical sleeve away from the connecting rod. The sliding block is slidably connected to the vertical sliding groove.

[0016] By adopting the above technical solution, the vertical sleeve, the connecting rod and the connecting sleeve can be lifted and lowered stably.

[0017] Optionally, an L-shaped bottom pipe is connected to and communicated with the bottom wall of the water tank. An electric valve is installed at the side end of the bottom pipe. The side end of the adapter pipe is connected to the side end of the electric valve.

[0018] By adopting the above technical solution, the detection water inside the water tank can be conveyed to the inside of the cavity body through the bottom pipe, the electric valve, the adapter pipe and the embedded pipe.

[0019] Optionally, an L-shaped top pipe is connected to and communicated with the side wall at the top of the water tank. The bottom end of the top pipe is connected to the water outlet end of the water pump.

[0020] By adopting the above technical solution, when the bottom end of the embedded pipe enters the inside of the cavity body, through the operation of the water pump, the detection water inside the cavity body can be conveyed to the inside of the water tank through the embedded pipe, the adapter pipe, the water pump and the top pipe.

[0021] Compared with the prior art, the beneficial effects of the technical solution of the present application are as follows:

[0022] For an embedded volume detection device for a die-casting mold proposed in the present application, if it is necessary to detect the volume of the cavity of the die-casting mold, add water to the inside of the water tank, place the die-casting mold body on the top of the weighing platform of the electronic weighing scale, and then the die-casting mold body can be weighed by the weighing platform of the electronic weighing scale. Then open the electric valve, and the detection water can be conveyed to the inside of the cavity body until the cavity body is filled with the detection water. Close the electric valve, and the mass of the detection water inside the cavity body can be obtained. According to the volume calculation formula, the volume of the detection water inside the cavity body can be obtained, and then the volume of the cavity body can be obtained, and the volume detection can be completed. The automation degree of the volume detection is relatively high, and the efficiency of the volume detection can be improved.

[0023] An embedded volume detection device for a die-casting mold proposed in this application. After the volume detection is completed, if it is necessary to remove the detection water inside the mold cavity, by operating the embedded motor, the bottom end of the embedded pipe can enter the inside of the mold cavity body. Then, through the operation of the water pump, the detection water inside the mold cavity body can be transported to the inside of the water tank, and the automatic removal of the detection water inside the mold cavity can be completed. The detection water inside the water tank can be recycled. After the volume detection is completed, it is not necessary to flip the die-casting mold to remove the detection water inside the mold cavity. The detection water inside the mold cavity can be automatically removed, and the safety during the use process is relatively high. The detection water can be recycled, reducing the waste of detection water. Description of the Drawings

[0024] Figure 1 It is a schematic structural diagram of an embedded volume detection device for a die-casting mold of the present utility model;

[0025] Figure 2 It is a side view of an embedded volume detection device for a die-casting mold of the present utility model;

[0026] Figure 3 It is a schematic cross-sectional structure diagram of the vertical box of an embedded volume detection device for a die-casting mold of the present utility model;

[0027] Figure 4 It is of an embedded volume detection device for a die-casting mold of the present utility model Figure 3 The enlarged schematic structure diagram of part A in.

[0028] In the figure: 1, support plate; 2, stabilizing ring; 3, platform scale support foot; 4, electronic platform scale table; 5, platform scale support; 6, meter head; 7, die-casting mold body; 8, vertical box; 9, water tank; 10, embedded motor; 11, stud; 12, bottom pipe; 13, embedded pipe; 14, side hole; 15, connecting rod; 16, connecting sleeve; 17, adapter pipe; 18, water pump; 19, top pipe; 20, mold cavity body; 21, electric valve; 22, vertical sleeve; 23, vertical sliding groove; 24, slider. Detailed Embodiment

[0029] Please refer to Figures 1-4, the present utility model provides a technical solution: an embedded volume detection device for a die-casting mold, including a support plate 1 and an electronic platform scale platform 4. Four corners of the bottom wall of the support plate 1 are fixedly provided with bases, and the support plate 1 is stably supported on the ground through the four bases, so that the stability of the support plate 1 is relatively high. The electronic platform scale platform 4 is located above the support plate 1, and a die-casting mold body 7 is movably arranged at the top end of the electronic platform scale platform 4. A vertical box 8 is fixedly arranged on the top wall of the support plate 1 on one side of the electronic platform scale platform 4. A side hole 14 is opened on the side wall of the vertical box 8 above the die-casting mold body 7. A water tank 9 without a top wall is fixedly arranged on the outer side wall of the vertical box 8 above the side hole 14. The middle position of the top wall of the vertical box 8 is rotatably connected with a vertical screw rod 11 through a bearing. An embedding motor 10 is installed above the vertical box 8 through a motor bracket. The forward or reverse operation of the embedding motor 10 can be controlled through the controller of the embedding motor 10. The top end of the screw rod 11 is fixedly arranged at the output end of the embedding motor 10. An upright sleeve 22 is threadedly sleeved on the outer circle of the screw rod 11 inside the vertical box 8. A horizontal connecting rod 15 is fixedly arranged at the side end of the upright sleeve 22. The connecting rod 15 is movably arranged inside the side hole 14. The side end of the connecting rod 15 extending out of the vertical box 8 is fixedly provided with a vertical connecting sleeve 16. A water pump 18 is installed on the outer side wall of the water tank 9. The water pumping end of the water pump 18 is connected with a T-shaped adapter pipe 17. The bottom end of the adapter pipe 17 is connected with an embedding pipe 13. The connecting sleeve 16 is fixedly sleeved on the outer circle of the middle section of the adapter pipe 17.

[0030] In some technical solutions, such as Figure 1 and Figure 2 shown, four corners of the bottom end of the electronic platform scale platform 4 are fixedly provided with platform scale support feet 3. The platform scale support feet 3 are movably arranged on the top wall of the support plate 1. Four corners of the top wall of the support plate 1 are fixedly provided with stabilizing rings 2. The bottom parts of the four platform scale support feet 3 are respectively movably arranged inside the inner circles of the four stabilizing rings 2. The size of the inner circle of the stabilizing ring 2 is adapted to the size of the bottom part of the platform scale support foot 3. The bottom parts of the four platform scale support feet 3 are respectively inserted into the inner circles of the four stabilizing rings 2, which can prevent the electronic platform scale platform 4 from shaking.

[0031] In some technical solutions, such as Figure 1 and Figure 3 shown, a platform scale support 5 is arranged at the side end of the electronic platform scale platform 4. A meter head 6 is arranged at the top end of the platform scale support 5. A display screen and a plurality of control buttons are arranged at the top end of the meter head 6. By weighing the die-casting mold body 7 through the electronic platform scale platform 4, the mass data of the die-casting mold body 7 can be displayed through the display screen of the meter head 6.

[0032] In some technical solutions, such as Figure 1 and Figure 3As shown, a mold cavity body 20 is provided at the top of the die-casting mold body 7. The embedding pipe 13 is located above the mold cavity body 20. The embedding pipe 13 is a telescopic hose, enabling the embedding pipe 13 to extend or contract, so that the bottom end of the embedding pipe 13 can enter the interior of the mold cavity body 20.

[0033] In some technical solutions, such as Figure 3 and Figure 4 As shown, the bottom of the stud 11 is rotatably connected to the inner bottom wall of the vertical box 8 through a bearing, enabling the stud 11 to rotate stably. A vertical sliding groove 23 is provided on the inner side wall of the vertical box 8 in the height direction. A slider 24 is fixed to the side end of the vertical sleeve 22 away from the connecting rod 15. The slider 24 is slidably connected to the vertical sliding groove 23, enabling the vertical sleeve 22, the connecting rod 15, and the connecting sleeve 16 to move up and down stably.

[0034] In some technical solutions, such as Figure 2 As shown, an L-shaped bottom pipe 12 is connected and communicated to the bottom wall of the water tank 9. An electric valve 21 is installed at the side end of the bottom pipe 12. The side end of the adapter pipe 17 is connected to the side end of the electric valve 21. The detection water inside the water tank 9 can be conveyed to the interior of the mold cavity body 20 through the bottom pipe 12, the electric valve 21, the adapter pipe 17, and the embedding pipe 13.

[0035] In some technical solutions, such as Figure 1 and Figure 3 As shown, an L-shaped top pipe 19 is connected and communicated to the side wall at the top of the water tank 9. The bottom end of the top pipe 19 is connected to the water outlet end of the water pump 18. When the bottom end of the embedding pipe 13 enters the interior of the mold cavity body 20, through the operation of the water pump 18, the detection water inside the mold cavity body 20 can be conveyed to the interior of the water tank 9 through the embedding pipe 13, the adapter pipe 17, the water pump 18, and the top pipe 19.

[0036] During use, when it is necessary to detect the volume of the cavity of the die-casting mold, water is added to the inside of the water tank 9, and the die-casting mold body 7 is placed on the top of the weighing platform 4 of the electronic weighing scale. Then, the die-casting mold body 7 can be weighed by the weighing platform 4 of the electronic weighing scale, and the quality data of the die-casting mold body 7 can be displayed on the display screen of the meter head 6. Next, the electric valve 21 is opened, and the detection water inside the water tank 9 can be conveyed to the inside of the cavity body 20 through the bottom pipe 12, the electric valve 21, the adapter pipe 17 and the insertion pipe 13 until the cavity body 20 is filled with the detection water. Then, the electric valve 21 is closed, and the die-casting mold body 7 and the detection water inside the cavity body 20 are weighed by the weighing platform 4 of the electronic weighing scale. The total quality data of the die-casting mold body 7 and the detection water inside the cavity body 20 can be displayed on the display screen of the meter head 6. Thus, the quality of the detection water inside the cavity body 20 can be obtained. According to the volume calculation formula (V = m / ρ), dividing the quality of the detection water by the density of water can obtain the volume of the detection water inside the cavity body 20, and then the volume of the cavity body 20 can be obtained, completing the volume detection. The degree of automation of the volume detection is relatively high, which can improve the efficiency of the volume detection. After the volume detection is completed, when it is necessary to remove the detection water inside the cavity, by the forward rotation of the insertion motor 10, the stud 11 can be driven to rotate clockwise. Through the threaded transmission between the stud 11 and the vertical sleeve 22, the vertical sleeve 22, the connecting rod 15 and the connecting sleeve 16 can be lowered, the insertion pipe 13 can be extended, and the bottom end of the insertion pipe 13 can enter the inside of the cavity body 20. Then, through the operation of the water pump 18, the detection water inside the cavity body 20 can be conveyed to the inside of the water tank 9 through the insertion pipe 13, the adapter pipe 17, the water pump 18 and the top pipe 19. Then, by the reverse rotation of the insertion motor 10, the stud 11 can be driven to rotate counterclockwise. Through the threaded transmission between the stud 11 and the vertical sleeve 22, the vertical sleeve 22, the connecting rod 15 and the connecting sleeve 16 can be raised, the insertion pipe 13 can be shortened, and the bottom end of the insertion pipe 13 can rise above the die-casting mold body 7, completing the automatic removal of the detection water inside the cavity. The detection water inside the water tank 9 can be recycled. After the volume detection is completed, it is not necessary to remove the detection water inside the cavity by flipping the die-casting mold. The detection water inside the cavity can be automatically removed. The safety during the use process is relatively high, the detection water can be recycled, and the waste of the detection water is reduced.

Claims

1. An embedded volume detection device for a die-casting mold, comprising a support plate (1) and an electronic platform scale table (4), characterized in that, The weighing platform (4) of the electronic platform scale is located on the upper side of the support plate (1). A die-casting mold body (7) is movably arranged at the top end of the weighing platform (4) of the electronic platform scale. A vertical box (8) is fixed on the top wall of the support plate (1) on one side of the weighing platform (4) of the electronic platform scale. A side hole (14) is formed on the side wall of the vertical box (8) located on the upper side of the die-casting mold body (7). A water tank (9) without a top wall is fixed on the outer side wall of the vertical box (8) located on the upper side of the side hole (14). A vertical stud (11) is rotatably connected to the middle position of the top wall of the vertical box (8) through a bearing. An embedded motor (10) is installed on the upper side of the vertical box (8) through a motor bracket. The top end of the stud (11) is fixed to the output end of the embedded motor (10). An upright sleeve (22) is threadedly sleeved on the outer circle of the stud (11) located inside the vertical box (8). A horizontal connecting rod (15) is fixed to the side end of the upright sleeve (22). The connecting rod (15) is movably arranged inside the side hole (14). The connecting rod (15) extends out of the side end of the vertical box (8) and is fixed with a vertical connecting sleeve (16). A water pump (18) is installed on the outer side wall of the water tank (9). The water pumping end of the water pump (18) is connected with a T-shaped rotating connecting pipe (17). The bottom end of the rotating connecting pipe (17) is connected with an embedded pipe (13). The connecting sleeve (16) is fixedly sleeved on the outer circle of the middle section of the rotating connecting pipe (17).

2. The embedded volume detection device for a die-casting mold according to claim 1, characterized in that, Bases are fixed at the four corners of the bottom wall of the support plate (1). Platform scale support feet (3) are fixed at the four corners of the bottom end of the weighing platform (4) of the electronic platform scale. The platform scale support feet (3) are movably arranged on the top wall of the support plate (1). Stable rings (2) are fixed at the four corners of the top wall of the support plate (1). The bottom parts of the four platform scale support feet (3) are respectively movably arranged inside the inner circles of the four stable rings (2).

3. An embedded volume detection device for a die-casting mold according to claim 2, characterized in that, The size of the inner circle of the stable ring (2) is adapted to the size of the bottom part of the platform scale support foot (3).

4. An embedded volume detection device for a die-casting mold according to claim 1, characterized in that, A platform scale bracket (5) is arranged at the side end of the weighing platform (4) of the electronic platform scale. A meter head (6) is arranged at the top end of the platform scale bracket (5). A display screen and a plurality of control buttons are arranged at the top end of the meter head (6).

5. An embedded volume detection device for a die-casting mold according to claim 1, characterized in that, A mold cavity body (20) is formed at the top of the die-casting mold body (7). The embedded pipe (13) is located on the upper side of the mold cavity body (20). The embedded pipe (13) is a telescopic hose.

6. The embedded volume detection device for a die-casting mold according to claim 1, characterized in that, The bottom end of the stud (11) is rotatably connected to the inner bottom wall of the vertical box (8) through a bearing. A vertical sliding groove (23) is formed on the inner side wall of the vertical box (8) along the height direction. A sliding block (24) is fixed to the side end of the upright sleeve (22) away from the connecting rod (15). The sliding block (24) is slidably connected with the vertical sliding groove (23).

7. An embedded volume detection device for a die-casting mold according to claim 1, characterized in that, An L-shaped bottom pipe (12) is connected and communicated with the bottom wall of the water tank (9). An electric valve (21) is installed at the side end of the bottom pipe (12). The side end of the rotating connecting pipe (17) is connected to the side end of the electric valve (21).

8. An embedded volume detection device for a die-casting mold according to claim 1, characterized in that, A top pipe (19) in an L shape is connected and communicated on a side wall at the top of the water tank (9), and a bottom end of the top pipe (19) is connected to a water outlet end of the water pump (18).

Citation Information

Patent Citations

  • Die detection device

    CN219551625U