Die transfer device for precision die production

By designing a mold transfer device with limiting blocks, separating components, mounting components, and clamping components, the problem of collision damage to molds during transfer is solved, achieving stable mold transportation and preventing damage.

CN224045247UActive Publication Date: 2026-03-27GUANGDONG JIUYI PRECISION MOLD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing mold transfer device lacks protective measures, which makes the mold easy to be damaged by collision during the transfer process, affecting the normal operation of the processing work.

Method used

A mold transfer device including a limiting block, a separating component, a mounting component, a driving component, and a clamping component was designed. The mold is clamped by the cooperation of the clamping plate with the inside of the machine body to avoid collision between molds caused by shaking.

Benefits of technology

It effectively prevents molds from colliding with each other during transportation, ensuring the normal transport of molds, preventing damage, and is suitable for widespread use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mold transfer, in particular to a mold transfer device for precise mold production, which comprises a machine body, four groups of limiting blocks arranged in the machine body, two groups of separation components arranged in the machine body and respectively positioned between the two groups of limiting blocks, and a mounting component arranged in the machine body, the mounting assembly comprises a mounting plate, a movable groove formed in the mounting plate, a driving assembly arranged in the mounting plate and four clamping assemblies arranged in the mounting plate. According to the mold transfer device for precise mold production, by arranging the clamping plates, after a mold is placed into the machine body, the movable clamping plates can be matched with the interior of the machine body to clamp and fix the mold, so that the mold can be stably installed in the machine body, and the situation that the molds collide with one another due to shaking is avoided when the molds are transported; and normal transportation work of the mold is guaranteed, damage to the mold is prevented, and the mold is suitable for popularization.
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Description

TECHNICAL FIELD

[0001] The utility model relates to mould transfer technical field, concretely is mould transfer device for precision mould production. BACKGROUND

[0002] It is known that in the existing industrial production, mould is often used industrial appliance, it can be used to with injection molding, blow molding, extrusion and pressure casting etc.

[0003] The existing production process needs to transfer the mould, and the existing mould transfer device is mostly a cart, but the structure of the cart is simple, lacks protection measures, so that a little shaking in the transfer process will make the mould collide with each other, so that the mould is damaged, which leads to the mould cannot continue to use, affected the normal progress of mould processing work, in order to solve the above problem, therefore, need mould transfer device for precision mould production. UTILITY MODEL CONTENT

[0004] Technical problem solved

[0005] In order to overcome the problem of the existing mould transfer device for precision mould production, the utility model provides a mould transfer device for precision mould production with effect.

[0006] Technical scheme

[0007] In order to achieve the above object, the utility model provides the following technical scheme: mould transfer device for precision mould production, including machine body and four groups of limiting blocks set in the machine body interior;

[0008] Two groups of separation assemblies are arranged in the machine body interior and are respectively located between two groups of limiting blocks;

[0009] The mounting assembly is arranged in the machine body interior, and the mounting assembly comprises a mounting plate and a movable slot arranged in the mounting plate;

[0010] The drive assembly is arranged in the mounting plate;And

[0011] Four groups of clamping assemblies are arranged in the mounting plate, the clamping assembly comprises a support plate slidingly arranged in the movable slot, one side of the support plate is provided with a protruding block, and the other side of the support plate is provided with two groups of connecting columns, one end of the two groups of connecting columns away from the support plate penetrates the mounting plate and is fixedly arranged with the clamping plate.

[0012] Preferably, the separating assembly comprises a separating plate arranged between the two groups of limiting blocks and a movable plate arranged outside the body, one side of the separating plate is provided with a fixing hole, one side of the movable plate is provided with a clamping rod arranged in parallel with the fixing hole, one side of the movable plate close to the clamping rod is provided with a first spring, and one end of the first spring away from the movable plate is fixedly arranged in the body.

[0013] Further, the driving assembly comprises a rotary motor arranged outside the mounting plate, the output end of the rotary motor is connected with a threaded pipe rotatably arranged in the movable slot, the outer side of the threaded pipe is screwed with a sleeve, the outer side of the sleeve is provided with two groups of sliding blocks, one side of the sliding blocks away from the sleeve is provided with a central shaft, and the outer side of the central shaft is rotatably provided with a pulley.

[0014] Still further, the inner wall of the movable slot is provided with two groups of balance rods, and the sliding blocks are slidingly arranged outside the balance rods.

[0015] Further, the outer side of the mounting plate is provided with a protective cover, and the protective cover is located outside the rotary motor.

[0016] On the basis of the foregoing scheme, one side of the clamping plate close to the connecting column is provided with four groups of second springs, and one side of the second springs away from the clamping plate is arranged in the interior of the mounting plate.

[0017] On the basis of the foregoing scheme, further, one side of the supporting plate close to the protruding block is provided with two groups of buffer pads, and the buffer pads are rubber buffer pads.

[0018] On the basis of the foregoing scheme, further, the protruding block is a semi-elliptical protruding block, and the outer side of the protruding block is in contact with the outer side of the pulley.

[0019] Beneficial effects

[0020] The mold transfer device for precision mold production can clamp and fix the mold in cooperation with the body interior by moving the clamping plate after the mold is placed in the body, so that the mold can be stably installed in the body, thereby avoiding the mutual collision of molds due to shaking during the transportation of the mold, ensuring the normal transportation work of the mold, preventing the damage of the mold, and being suitable for promotion. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a side view structure schematic diagram of the utility model;

[0022] Figure 2 It is a structure schematic diagram of the separating assembly of the utility model;

[0023] Figure 3 It is a structure schematic diagram of the driving assembly of the utility model;

[0024] Figure 4 It is structural exploded view of the driving assembly of the utility model;

[0025] Figure 5 It is structural schematic view of the clamping assembly of the utility model;

[0026] Figure 6 It is structural exploded view of the clamping assembly of the utility model.

[0027] In the drawing: 1, machine body; 2, limiting block; 3, separation assembly; 301, separation plate; 302, fixed hole; 303, clamping stick; 304, first spring; 305, movable plate; 306, handle; 4, mounting assembly; 401, mounting plate; 402, movable slot; 5, driving assembly; 501, protective cover; 502, rotary motor; 503, threaded tube; 504, sleeve; 505, balance bar; 506, sliding block; 507, center shaft; 508, pulley; 509, blocking plate; 6, clamping assembly; 601, clamping plate; 602, connecting column; 603, buffer pad; 604, support plate; 605, protruding block; 606, second spring. DETAILED DESCRIPTION

[0028] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0029] Referring to Figure 1 The mold transfer device for precision mold production includes a machine body 1, limiting blocks 2, a separation assembly 3, a mounting assembly 4, a driving assembly 5 and a clamping assembly 6.

[0030] The four groups of limiting blocks 2 are all arranged in the machine body 1, and the limiting blocks 2 are used for limiting the separation plate 301 so that the clamping stick 303 can be aligned with the fixed hole 302.

[0031] First, referring to Figures 1-2In the embodiment, the separating assembly 3 comprises a separating plate 301 arranged between the two groups of limiting blocks 2 and a movable plate 305 arranged outside the body 1. The separating plate 301 is used to separate the internal space of the body 1, so that the device can store different molds in a classified manner. One side of the separating plate 301 is provided with a fixing hole 302. One side of the movable plate 305 is provided with a clamping rod 303 arranged in parallel with the fixing hole 302. The side of the movable plate 305 close to the clamping rod 303 is provided with a first spring 304. The end of the first spring 304 away from the movable plate 305 is fixedly arranged in the body 1.

[0032] In order to facilitate the movement of the movable plate 305, a handle 306 is arranged on the side of the movable plate 305 away from the first spring 304. At this time, the movable plate 305 can be conveniently moved by pulling the handle 306.

[0033] When classification is not needed, the handle 306 can be pulled to drive the clamping rod 303 to move by driving the movable plate 305 to move. At this time, the clamping rod 303 will be separated from the fixing hole 302, so that the separating plate 301 is no longer fixed. At this time, the operator can conveniently take out the separating plate 301 and no longer perform the classification work.

[0034] Then, referring to Figure 1 、 Figure 3 and Figure 5 In the embodiment, the mounting assembly 4 arranged in the body 1 comprises a mounting plate 401 and a movable groove 402 arranged in the mounting plate 401. The mounting assembly 4 is used to carry the driving assembly 5 and the clamping assembly 6.

[0035] Secondly, referring to Figures 3-4 In the embodiment, the driving assembly 5 arranged in the mounting plate 401 comprises a rotary motor 502 arranged outside the mounting plate 401. The rotary motor 502 is a bidirectional motor. The output end of the rotary motor 502 can rotate in a forward direction or a reverse direction. The output end of the rotary motor 502 is in key connection with a threaded pipe 503 rotatably arranged in the movable groove 402. The outer side of the threaded pipe 503 is screwed with a sleeve 504. When the threaded pipe 503 rotates, the sleeve 504 will be driven to linearly displace. The operator can control the moving direction of the sleeve 504 by controlling the rotating direction of the output end of the rotary motor 502. The outer side of the sleeve 504 is provided with two groups of sliding blocks 506. The side of the sliding blocks 506 away from the sleeve 504 is provided with a central shaft 507. The outer side of the central shaft 507 is rotatably provided with a pulley 508. When the sleeve 504 displaces, the pulley 508 will displace accordingly.

[0036] At the same time, in order to avoid the dislocation of the pulley 508, two sets of blocking plates 509 are arranged outside the central shaft 507, and the two sets of blocking plates 509 are located on both sides of the pulley 508, so that the movement of the pulley 508 can be limited by the blocking plates 509, and the dislocation of the pulley 508 can be avoided to cause the device to fail.

[0037] Again, referring to Figures 3-4 In this embodiment, in order to avoid the rotation of the sleeve 504 with the threaded pipe 503, two sets of balance bars 505 are arranged on the inner wall of the movable groove 402, and the sliding block 506 is slidingly arranged outside the balance bar 505, so that on the one hand, the balance bar 505 keeps the balance of the sliding block 506 during movement, prevents the sliding block 506 from shaking due to imbalance during movement, and ensures the normal displacement of the sliding block 506, and on the other hand, the balance bar 505 limits the direction of the sliding block 506, so that the sliding block 506 cannot rotate, and the sleeve 504 connected with the sliding block 506 cannot rotate, avoiding the rotation of the sleeve 504 with the threaded pipe 503.

[0038] At the same time, in order to protect the rotary motor 502, a protective cover 501 is arranged outside the mounting plate 401, and the protective cover 501 is located outside the rotary motor 502, so that the rotary motor 502 can be protected by the protective cover 501, avoiding the damage of the rotary motor 502 during use.

[0039] In addition, referring to Figures 5-6 In this embodiment, in order to make the clamping plate 601 quickly return, four sets of second springs 606 are arranged on the side of the clamping plate 601 close to the connecting column 602, and the second spring 606 away from the clamping plate 601 is arranged inside the mounting plate 401, so that when the pulley 508 moves downward and pushes the protrusion 605, the second spring 606 will be stretched by the clamping plate 601, and when the pulley 508 returns and no longer pushes the protrusion 605, the second spring 606 will spring the clamping plate 601 to return, so that the clamping plate 601 can quickly return to the initial position and release the mold.

[0040] At the same time, in order to avoid the collision between the two sets of protrusions 605, two sets of buffer pads 603 are arranged on the side of the supporting plate 604 close to the protrusions 605, and the buffer pad 603 is a rubber buffer pad, so that the two sets of protrusions 605 can be separated by the buffer pad 603, avoiding the damage of the protrusions 605 during use.

[0041] Finally, referring to Figure 3 , Figure 5 and Figure 6In the embodiment, the protrusions 605 are semi-elliptical protrusions, the outer sides of the protrusions 605 are in contact with the outer sides of the pulleys 508, the outer sides of the protrusions 605 are arc-shaped, and thus the protrusions 605 will be pushed to move laterally when the pulleys 508 move downward, and the lateral movement of the protrusions 605 will drive the lateral movement of the clamping plates 601 and clamping of the molds.

[0042] The mold transfer device for precision mold production is capable of stably installing the molds in the machine body 1, avoids the collision between the molds due to shaking during the transportation of the molds, guarantees the normal transportation of the molds, prevents the damage of the molds, and is suitable for promotion.

[0043] Working principle:

[0044] The mold transfer device for precision mold production is capable of stably installing the molds in the machine body 1, avoids the collision between the molds due to shaking during the transportation of the molds, guarantees the normal transportation of the molds, prevents the damage of the molds, and is suitable for promotion.

[0045] Secondly, the position of the clamping plates 601 is changed, and the specific operation is that the pulleys 508 will push the two groups of protrusions 605 to move laterally when moving downward, and at this time, the two groups of protrusions 605 will drive the support plates 604 to move in opposite directions, and the movement of the support plates 604 will drive the clamping plates 601 to move by driving the connecting columns 602.

[0046] Finally, the clamping plates 601 clamp the molds, and the specific operation is that after the clamping plates 601 move, the molds will be fixed by the cooperation of the clamping plates 601 and the machine body 1, and at this moment, when the device is pushed to transfer the molds, the molds will be fixed in the machine body 1, and the collision between the molds will not occur.

[0047] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A mold transfer device for precision mold production, characterized by, The utility model relates to a four-group limit block (2) and two-group separation assembly (3) are arranged in the body (1) inside, and the installation assembly (4) is arranged in the body (1) inside, and the drive assembly (5) is arranged in the installation plate (401) inside, and four-group clamping assembly (6) is arranged in the installation plate (401) inside. The utility model relates to a four-group limit block (2) and two-group separation assembly (3) are arranged in the body (1) inside, and the installation assembly (4) is arranged in the body (1) inside, and the drive assembly (5) is arranged in the installation plate (401) inside, and four-group clamping assembly (6) is arranged in the installation plate (401) inside. The separation assembly (3) includes the separation plate (301) being arranged between the two-group limit block (2) and the movable plate (305) being arranged outside the body (1), one side of the separation plate (301) is provided with the fixed hole (302), one side of the movable plate (305) is provided with the clamping stick (303) being arranged in parallel with the fixed hole (302), one side of the movable plate (305) close to the clamping stick (303) is provided with the first spring (304), and one end of the first spring (304) away from the movable plate (305) is fixedly arranged in the body (1). The drive assembly (5) includes the rotary motor (502) being arranged outside the installation plate (401), the output end of the rotary motor (502) is connected with the threaded pipe (503) being rotatably arranged in the movable slot (402), the outer side of the threaded pipe (503) is screwed with the sleeve (504), the outer side of the sleeve (504) is provided with the two-group sliding block (506), one side of the sliding block (506) away from the sleeve (504) is provided with the central shaft (507), and the outer side of the central shaft (507) is rotatably provided with the pulley (508). The inner wall of the movable slot (402) is provided with the two-group balance bar (505), and the sliding block (506) is slidably arranged outside the balance bar (505). The outer side of the installation plate (401) is provided with the protective cover (501), and the protective cover (501) is located outside the rotary motor (502).

2. The mold transfer device for precision mold production according to claim 1, wherein One side of the clamping plate (601) close to the connecting column (602) is provided with the four-group second spring (606), and one side of the second spring (606) away from the clamping plate (601) is arranged in the interior of the installation plate (401).

3. The mold transfer device for precision mold production according to claim 2, characterized by One side of the support plate (604) close to the convex block (605) is provided with the two-group buffer pad (603), and the buffer pad (603) is a rubber buffer pad.

4. The mold transfer device for precision mold production according to claim 3, characterized by The convex block (605) is a semi-elliptical convex block, and the outer side of the convex block (605) contacts the outer side of the pulley (508).

5. The mold transfer device for precision mold production according to claim 4, wherein ​ 6. The mold transfer device for precision mold production according to claim 5, wherein ​ 7. The mold transfer device for precision mold production according to claim 6, wherein ​ 8. The mold transfer device for precision mold production according to claim 7, wherein ​