Taking-out device for buried neutrons

By designing a neutron embedding extraction device, which utilizes a combination of limiting side grooves, pre-embedded holes, pads, and pressure plates, the problem of complex and costly neutron mold disassembly is solved. This enables rapid disassembly, reduces manual labor input, and improves production efficiency and product quality.

CN223629460UActive Publication Date: 2025-12-05RYOBI DIE CASTING DALIAN CO LTD
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Patent Information

Application Number
CN202423018627.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-12-05
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

During the casting process, product residue in the mold leads to low production efficiency and affects product quality. Furthermore, removing the residue requires disassembling the entire neutron mold, which is a complex and costly process.

Method used

A neutron embedding removal device was designed. Through the combination of limiting side groove, pre-embedded hole, pad block and pressure plate, the device uses fasteners to realize the quick assembly and disassembly of neutron mold frame and neutron mold core, simplifying the disassembly process of neutron mold.

Benefits of technology

It enables rapid disassembly of neutron molds, reduces manual labor and equipment downtime, lowers costs, and improves production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of casting, and discloses a device for taking out buried neutrons, which comprises a neutron mold frame and a neutron mold core. An embedded hole is formed in one side of the neutron mold core, an embedded part is placed in the embedded hole, a cushion hole is formed in the position, corresponding to the embedded hole, of one side of the neutron mold frame, a cushion block is placed in the cushion hole, a pressing plate is arranged on the side, away from the embedded part, of the cushion block, and fixing pieces are installed among the embedded part, the cushion block and the pressing plate. According to the taking-out device for the neutron buried piece, the buried piece, the cushion block and the pressing plate can be rapidly assembled and disassembled through the fixing pieces, assembling and disassembling between the neutron mold frame and the neutron mold core can be completed, the complexity of assembling and disassembling between the neutron mold frame and the neutron mold core is reduced, rapid disassembling of the buried piece when products are left in the later period is facilitated, and the efficiency is improved. And therefore, products left in the embedded hole can be quickly removed, the use is convenient and quick, and the labor investment and the equipment stop time can be reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to foundry technology field especially relates to a take out device for middle neutron. BACKGROUND

[0002] In the foundry industry, the middle neutron embedding technology is widely used in the production process of complex shape and precision parts due to its unique advantages. However, in actual operation, the problem of product residue in the mold is often encountered, which not only affects the production efficiency and product quality, but also increases the difficulty and cost of subsequent cleaning work.

[0003] For the above and prior art related technology, the inventor believes that the following defects often exist: when using the middle neutron embedding technology for casting, if the product is left in the mold, the remaining product needs to be removed, otherwise the quality of the product will be affected. The remaining product is generally left in the embedding gap, and only the middle neutron can be disassembled to remove the remaining product. The process is complex and tedious, and during use, the casting machine needs to be stopped for a long time, and 4 people are needed to disassemble the middle neutron, which is costly.

[0004] Therefore, we propose a take-out device for middle neutron embedding. UTILITY MODEL CONTENT

[0005] In view of the above problems that the existing technology can only disassemble the middle neutron as a whole to remove the remaining product, the process is complex and tedious, and during use, the casting machine needs to be stopped for a long time, and 4 people are needed to disassemble the middle neutron, which is costly, the utility model is proposed.

[0006] Therefore, the utility model aims to provide a take-out device for middle neutron embedding, which aims to: through the quick disassembly structure, the middle neutron can be quickly disassembled, and the product remaining in the embedding gap can be taken out.

[0007] To solve the above technical problems, the utility model provides the following technical scheme: a take-out device for middle neutron embedding, comprising a middle neutron mold frame and a middle neutron mold core, the side of the middle neutron mold frame close to the middle neutron mold core is provided with a limiting edge groove for limiting the middle neutron mold core;

[0008] A pre-buried hole is formed on one side of the middle neutron mold core, a middle neutron is placed in the pre-buried hole, a pad hole is formed on one side of the middle neutron mold frame and corresponds to the position of the pre-buried hole, a pad block is placed in the pad hole, a pressing plate is arranged on the side away from the middle neutron of the pad block, and the pressing plate is attached to the side surface of the vertical end of the middle neutron mold frame. A fixing piece is installed between the middle neutron, the pad block and the pressing plate, and the middle neutron, the pad block and the pressing plate are fixed by clamping through the fixing piece.

[0009] As a preferred scheme of the utility model discloses a kind of neutron burying and taking out device for post, wherein: the one end of the post near pad is equipped with the connecting groove for placing the connecting end of fixed part, the both sides in the connecting groove are equipped with the clamping hole for being clamped with the connecting end of fixed part, the one side of the pad is equipped with the passageway for being passed through by fixed part, the one side of the pressing plate is equipped with the T-shaped cavity for placing the end of plug of fixed part.

[0010] As a preferred scheme of the utility model discloses a kind of neutron burying and taking out device for post, wherein: the fixed part includes the solid column passing through T-shaped cavity, passageway and the inside of clamping hole, the one end of the solid column is fixed with the plug block clamped in T-shaped cavity, the other end of the solid column is equipped with installation cavity, the inside of the installation cavity is slidably installed with two clamping blocks for being clamped with clamping hole, and the between of two clamping blocks is adjustable.

[0011] As a preferred scheme of the utility model discloses a kind of neutron burying and taking out device for post, wherein: the one side of the installation cavity away from the inside of plug block is fixed with slide rail one, the one side of the clamping block near slide rail one is installed with the sliding block one sliding on slide rail one.

[0012] As a preferred scheme of the utility model discloses a kind of neutron burying and taking out device for post, wherein: the inside of the installation cavity is slidably installed with translation strip, the both ends of the one side of translation strip near clamping block and the opposite ends of two clamping blocks are fixed with U-shaped frame, the same side two U-shaped frames are rotatably installed with linkage rod, the one end of the one side of the translation strip away from clamping block of the rod is welded with pull ring plate, the outer wall of the rod and the one side of the translation strip away from clamping block are sleeved with spring.

[0013] As a preferred scheme of the utility model discloses a kind of neutron burying and taking out device for post, wherein: the front and rear of the inside of the installation cavity are fixed with slide rail two, the one end of the translation strip near slide rail two is equipped with the sliding slot for sliding with slide rail two.

[0014] As a preferred scheme of the utility model discloses a kind of neutron burying and taking out device for post, wherein: the inside of the installation cavity and the one side of the translation strip away from clamping block are fixed with two limit posts.

[0015] As a preferred scheme of the utility model discloses a kind of neutron burying and taking out device for post, wherein: the one end of the post near connecting groove and the both sides of connecting groove, the one end of the pad and the both sides of passageway, and the one end of the pressing plate near pad and the both sides of T-shaped cavity are equipped with limit guide path.

[0016] The utility model discloses the beneficial effects:

[0017] 1. The utility model, the blocking of limit post to translation strip, make the outward bulging part of clamping block, when installing, make the bulging part of clamping block enter limit guide path, and the accurate and fast entering of clamping block is guided through limit guide path and is connected with the inside card hole, help to improve the convenience of fixing piece installation.

[0018] 2. The utility model, the quick assembly and disassembly of fixed part can be carried out between the buried part, the cushion block and the pressing plate, that is, the assembly and disassembly between the neutron mold frame and the neutron mold core can be completed, the cumbersome degree of assembly and disassembly between the neutron mold frame and the neutron mold core is reduced, and it is beneficial to the quick disassembly of the buried part when there is product residue in the later period, and then it is beneficial to the quick removal of the product remaining in the pre-buried hole, convenient and fast to use, can reduce the artificial investment and equipment downtime. DRAWINGS

[0019] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the drawings needed to be used in the embodiment description will be simply introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can obtain other drawings according to these drawings without creating labor intensity. Among them:

[0020] Figure 1 It is the overall structure schematic diagram of the utility model of a kind of neutron buried part take-out device.

[0021] Figure 2 It is the section structure schematic diagram of the buried part, cushion block and pressing plate of the utility model of a kind of neutron buried part take-out device.

[0022] Figure 3 It is the section structure schematic diagram of the solid column of the utility model of a kind of neutron buried part take-out device.

[0023] Figure 4 It is the utility model of a kind of neutron buried part take-out device Figure 3 The enlarged structure schematic diagram of place A.

[0024] Explanation of drawings:

[0025] 1, neutron mold frame;11, cushion hole;2, neutron mold core;21, pre-buried hole;3, buried part;31, card hole;32, connecting groove;4, cushion block;41, passageway;5, pressing plate;51, T-shaped cavity;6, fixed part;61, solid column;62, pull rod;63, plug;64, pull ring plate;65, installation cavity;66, clamping block;67, linkage rod;68, U-shaped frame;69, translation strip;610, limit post;611, spring. Specific implementation

[0026] In order to make the above-mentioned purposes, features and advantages of the utility model more apparent, comprehensible, the specific implementation manners of the utility model are explained in detail below by referring to the drawings in the specification.

[0027] Referring to Figures 1-4 For an embodiment of the utility model, a taking-out device for neutron embedding is provided, the taking-out device for neutron embedding comprises a neutron mold frame 1 and a neutron mold core 2, and a limiting edge groove for limiting the neutron mold core 2 is formed in the side of the neutron mold frame 1 close to the neutron mold core 2;

[0028] A pre-buried hole 21 is formed in the side of the neutron mold core 2, a buried part 3 is placed in the pre-buried hole 21, a pad hole 11 is formed in the side of the neutron mold frame 1 and corresponds to the position of the pre-buried hole 21, a pad 4 is placed in the pad hole 11, a pressing plate 5 is arranged on the side of the pad 4 away from the buried part 3, the pressing plate 5 is attached to the side surface of the vertical end of the neutron mold frame 1, a fixing part 6 is arranged between the buried part 3, the pad 4 and the pressing plate 5, and the buried part 3, the pad 4 and the pressing plate 5 are fixed by clamping through the fixing part 6.

[0029] The fixing part 6 can be quickly assembled and disassembled between the buried part 3, the pad 4 and the pressing plate 5, that is, the assembly and disassembly between the neutron mold frame 1 and the neutron mold core 2 can be completed, the complexity of the assembly and disassembly between the neutron mold frame 1 and the neutron mold core 2 is reduced, the buried part 3 can be quickly disassembled when there is residual product in the later period, and then the residual product in the pre-buried hole 21 can be quickly removed, so that the utility model is convenient and fast to use, can reduce the labor input and equipment downtime.

[0030] A connecting groove 32 for placing the clamping end of the fixing part 6 is formed in the end of the buried part 3 close to the pad 4, clamping holes 31 for clamping the clamping end of the fixing part 6 are formed in the two sides of the connecting groove 32, a channel 41 for the fixing part 6 to pass through is formed in the side of the pad 4, and a T-shaped cavity 51 for placing the plug end of the fixing part 6 is formed in the side of the pressing plate 5.

[0031] The fixing part 6 comprises a solid column 61 passing through the T-shaped cavity 51, the channel 41 and the clamping holes 31, a plug block 63 clamped in the T-shaped cavity 51 is fixed to one end of the solid column 61, an installation cavity 65 is formed in the other end of the solid column 61, two clamping blocks 66 clamped in the clamping holes 31 are slidably installed in the installation cavity 65, the two clamping blocks 66 can be adjusted, and a movable channel is formed in the solid column 61 for the clamping blocks 66 to pass through.

[0032] A slide rail one is fixed to the side of the installation cavity 65 away from the plug block 63, and a slide block one sliding on the slide rail one is installed on the side of the clamping block 66 close to the slide rail one.

[0033] The inside of the installation cavity 65 is slidably installed with a translation bar 69, both ends of the translation bar 69 close to one side of the clamping block 66 and opposite ends of the two clamping blocks 66 are fixed with U-shaped frames 68, the same side two U-shaped frames 68 are rotatably installed with a linkage rod 67, one side of the translation bar 69 away from the clamping block 66 is fixed with a pull rod 62, and the center part of one side of the solid column 61 is provided with a sliding hole in communication with the inside of the installation cavity 65, at the same time the pull rod 62 passes through the sliding hole into the inner cavity of the plug block 63, one end of the pull rod 62 in the inner cavity of the plug block 63 is welded with a pull ring plate 64, and the outer wall of the pull rod 62 and located on the side of the translation bar 69 away from the clamping block 66 is sleeved with a spring 611.

[0034] The front and rear of the inside of the installation cavity 65 are fixed with sliding rails two, and one end of the translation bar 69 close to the sliding rail two is provided with a sliding groove in sliding connection with the sliding rail two.

[0035] The use process of the fixing part 6 is as follows:

[0036] The pull ring plate 64 is pulled outward to pull the pull rod 62, the pull rod 62 drives the translation bar 69 to move to the side close to the limiting column 610, and the spring 611 is compressed, and when the translation bar 69 moves to the direction of the limiting column 610, the two clamping blocks 66 are pulled to the inside of the installation cavity 65 under the linkage action of the U-shaped frame 68 and the linkage rod 67.

[0037] When the translation bar 69 moves to the direction of the limiting column 610, the translation bar 69 cannot be pulled, so that the clamping block 66 cannot move to the inside of the installation cavity 65, and the outward protruding part of the clamping block 66 is inserted into the limiting guide channel, at this time the pressure applied to the pull ring plate 64 is released, and the clamping block 66 is in contact with the limiting guide channel, at this time the fixing part 6 is pushed to the direction of the dowel 3, the clamping block 66 passes through the inside of the T-shaped cavity 51 and the channel 41 in turn, and finally enters the inside of the clamping hole 31, when the fixing part 6 cannot be pushed, the clamping block 66 is opposite to the position of the clamping hole 31, at this time the clamping block 66 is out of contact with the limiting guide channel, and under the reverse reset of the spring 611, the two clamping blocks 66 are reset to protrude outward and enter the inside of the clamping hole 31 for clamping.

[0038] When it is needed to be disassembled, the pull ring plate 64 is pulled outward to make the clamping block 66 disengage from the clamping hole 31, at this time the fixing part 6 is pulled out outward to complete the disassembly.

[0039] The inside of the installation cavity 65 and the side of the translation strip 69 away from the clamping block 66 are fixed with two limiting columns 610, the limiting columns 610 block the translation strip 69, the outward protruding part of the clamping block 66, when installing, the protruding part of the clamping block 66 enters the limiting guide way, the clamping block 66 is accurately and quickly clamped into the inside of the clamping hole 31 through the guidance of the limiting guide way, which helps to improve the convenience of the installation of the fixing part 6.

[0040] The limiting guide way is arranged on the end of the dowel 3 close to the connecting groove 32 and located on both sides of the connecting groove 32, the end of the cushion block 4 close to the channel 41 and located on both sides of the channel 41, and the end of the pressing plate 5 close to the cushion block 4 and located on both sides of the T-shaped cavity 51, and the limiting guide way on the dowel 3 is in communication with the inside of the clamping hole 31, and the clamping block 66 moves through the inside of the limiting guide way.

[0041] In the use process, the process of fixing the neutron mold frame 1 and the neutron mold core 2 is as follows:

[0042] The dowel 3 is placed into the inside of the pre-buried hole 21, the side of the neutron mold core 2 enters the limiting side groove of the neutron mold frame 1, the cushion block 4 is placed into the inside of the cushion hole 11, then the pressing plate 5 is attached to the end of the cushion block 4 away from the dowel 3, the fixing part 6 is inserted into the inside of the dowel 3, the cushion block 4 and the pressing plate 5, and one end of the fixing part 6 is clamped into the inside of the dowel 3, and the other end of the fixing part 6 is in the inside of the pressing plate 5, so that the dowel 3, the cushion block 4 and the pressing plate 5 are fixed together through the fixing part 6, and the neutron mold frame 1 and the neutron mold core 2 are also fixed together.

[0043] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not limited. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application, and they should be covered in the scope of the claims of the present application.

Claims

1. A device for retrieving neutron implants, characterized in that: Including neutron mould frame (1) and neutron mould core (2), the side of neutron mould frame (1) is equipped with the limiting edge groove for the location of neutron mould core (2) near neutron mould core (2); The side of the neutron mould core (2) is provided with a pre-buried hole (21), and the pre-buried hole (21) is placed with a buried part (3). The side of the neutron mould frame (1) is provided with a pad hole (11) corresponding to the pre-buried hole (21), and the pad hole (11) is placed with a pad block (4). The side of the pad block (4) away from the buried part (3) is provided with a pressing plate (5), and the pressing plate (5) is attached to the side of the vertical end of the neutron mould frame (1). The buried part (3), the pad block (4) and the pressing plate (5) are installed with a fixing part (6), and the buried part (3), the pad block (4) and the pressing plate (5) are fixed by the fixing part (6).

2. The extraction device for a neutron capsule according to claim 1, characterized by: The end of the buried part (3) near the pad block (4) is provided with a connecting groove (32) for placing the clamping end of the fixing part (6). The two sides of the connecting groove (32) are provided with clamping holes (31) for clamping the clamping end of the fixing part (6). The side of the pad block (4) is provided with a channel (41) for the fixing part (6) to pass through. The side of the pressing plate (5) is provided with a T-shaped cavity (51) for placing the plug end of the fixing part (6).

3. The extraction device for a neutron capsule according to claim 2, characterized by: The fixing part (6) includes a solid column (61) passing through the T-shaped cavity (51), the channel (41) and the clamping hole (31). One end of the solid column (61) is fixed with a plug block (63) clamped in the T-shaped cavity (51). The other end of the solid column (61) is provided with an installation cavity (65). Two clamping blocks (66) are slidably installed in the installation cavity (65) and clamped in the clamping hole (31). The two clamping blocks (66) are adjustable.

4. The extraction device for a neutron capsule according to claim 3, characterized in that: The side of the installation cavity (65) away from the plug block (63) is fixed with a sliding rail one. The side of the clamping block (66) near the sliding rail one is installed with a sliding block one sliding on the sliding rail one.

5. The extraction device for a neutron capsule according to claim 4, characterized in that: The installation cavity (65) is slidably installed with a translation bar (69). The two ends of the translation bar (69) near the clamping block (66) and the opposite ends of the two clamping blocks (66) are fixed with U-shaped frames (68). A linkage rod (67) is rotatably installed between the two U-shaped frames (68) on the same side. The side of the translation bar (69) away from the clamping block (66) is fixed with a pull rod (62). One end of the pull rod (62) in the cavity of the plug block (63) is welded with a pull ring plate (64). The outer wall of the pull rod (62) and the side away from the clamping block (66) are sleeved with a spring (611).

6. The extraction device for a neutron capsule according to claim 5, characterized in that: The front and rear sides of the installation cavity (65) are fixed with sliding rails two. The end of the translation bar (69) near the sliding rail two is provided with a sliding groove sliding with the sliding rail two.

7. The extraction device for a neutron capsule according to claim 6, characterized in that: The installation cavity (65) is fixed with two limiting columns (610) on the side away from the clamping block (66).

8. The extraction device for a neutron capsule according to claim 7, characterized by: The end of the embedded part (3) near the connecting groove (32) and on both sides of the connecting groove (32), the end of the cushion block (4) near the channel (41) and on both sides of the channel (41), and the end of the pressing plate (5) near the cushion block (4) and on both sides of the T-shaped cavity (51) are provided with limiting guide channels.