Anti-slip tool for slope casting sand box

By using anti-slip fixtures in the inclined casting sand box and using L-shaped structure and screw and nut fixation, the problem of slipping in the inclined sand box is solved and the quality of castings is ensured.

CN223368153UActive Publication Date: 2025-09-23TONGYU HEAVY IND
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Patent Information

Application Number
CN202422640683.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-09-23
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

Traditional inclined sand boxes are prone to box slip during use, affecting the quality of casting production.

Method used

An anti-slip fixture for an inclined casting sand box is designed. The fixture body is connected to the box cover and the bottom box body through an L-shaped structure, and is fixed with screws and nuts. Combined with a supporting structure, it prevents the box cover from sliding down the inclined surface.

Benefits of technology

It effectively prevents the box cover from sliding down the slope under the action of gravity, ensuring the production quality of castings.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-slip tool for a slope casting sand box, which belongs to the technical field of sand box casting and comprises a tool body, one end of the tool body is abutted against a box cover, and the other end of the tool body is connected with a bottom box body. The end, connected with the bottom box body, of the tool body is further provided with a supporting structure abutting against the bottom box body. According to the anti-slip tool for the inclined plane casting sand box, the upper box cover and the lower box body are fixed on the end sides, so that the box cover can be prevented from sliding down along the inclined plane under the action of gravity, and the quality of a casting is ensured.
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Description

Technical Field

[0001] The utility model belongs to the technical field of sand box casting, and particularly relates to an anti-slip tooling for an inclined casting sand box. Background Art

[0002] The statements herein merely provide background art related to the present invention and do not necessarily constitute prior art.

[0003] Sand boxes are widely used in casting production. They are typically quadrilateral structures, divided into an upper and lower flask, which function as a single unit when combined. Traditional sand boxes typically have a horizontal parting plane, preventing the upper and lower flasks from sliding due to gravity.

[0004] With the development of the foundry industry, some products have an inclined structure at a certain angle. Conventional flat sand boxes are not convenient for producing castings with inclined surfaces, and the production quality of castings cannot be guaranteed.

[0005] In order to ensure the production quality of castings with inclined structures, an inclined sand box is designed. Currently, the inclined sand box is prone to slipping along the slope during use. Once slipping occurs, it will seriously affect the production quality of the casting. Therefore, how to avoid slipping during the use of the inclined sand box is one of the problems that need to be urgently solved in the current sand box casting technology field. Utility Model Content

[0006] The purpose of the utility model is to provide an anti-slip tooling for an inclined casting sand box, by which the upper box cover and the lower box body are fixed at the end side, so as to prevent the box cover from sliding down the inclined surface under the action of gravity and ensure the quality of castings.

[0007] In order to achieve the above purpose, the present invention is implemented through the following technical solutions:

[0008] In the first aspect, an embodiment of the present invention provides an anti-slip tooling for an inclined casting sand box, comprising a tooling body, one end of which abuts the box cover, and the other end is connected to the bottom box body; the end of the tooling body connected to the bottom box body is also provided with a support structure abutting the bottom box body.

[0009] As a further technical solution, the tooling body is arranged in an L-shaped structure, and the inner right angle of the L-shaped structure is arranged close to the sand box.

[0010] As a further technical solution, a connecting hole is provided at one end of the tool body that abuts against the box cover, a screw is provided in the connecting hole, and the screw abuts against the box cover.

[0011] As a further technical solution, a nut is provided at one end of the screw rod close to the box cover, and the screw rod is fixed to the tooling body through the nut.

[0012] As a further technical solution, there are multiple connecting holes, which are evenly distributed along the vertical direction at one end of the tool body abutting the box cover; and there are multiple screws, which are respectively connected to the connecting holes.

[0013] As a further technical solution, a plurality of screws are arranged parallel to each other.

[0014] As a further technical solution, a card slot is provided at one end of the tool body connected to the bottom box body, and the card slot is connected to the bottom box body.

[0015] As a further technical solution, through holes are provided on both sides of the card slot, connecting pieces are provided in the through holes, and tooling reserved holes are provided at the connection between the bottom box body and the tooling body. The connecting pieces pass through the through holes and the tooling reserved holes to connect the tooling body and the bottom box body.

[0016] As a further technical solution, the through holes are provided in a plurality and evenly distributed in the horizontal direction at one end of the tooling body connected to the bottom box; the tooling reserved holes are provided in a plurality; and the connecting parts are provided in a plurality and respectively connected to the through holes and the tooling reserved holes.

[0017] As a further technical solution, one end of the support structure is fixedly connected to the tool body, and a side of the support structure close to the bottom box body is parallel to and abuts against the bottom box body.

[0018] The beneficial effects of the above embodiments of the present invention are as follows:

[0019] The utility model provides an anti-slip tooling for an inclined casting sand box, by which the upper box cover and the lower box body are fixed at the end sides, thereby preventing the box cover from sliding down the inclined surface under the action of gravity, thereby ensuring the quality of castings. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The drawings in the specification, which constitute a part of the present invention, are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation on the present invention.

[0021] Figure 1 This is a schematic diagram of the overall structure of the sloped sandbox provided in Example 1 of the present utility model;

[0022] Figure 2 This is a schematic diagram of the overall structure of the inclined casting sand box with anti-slip tooling provided in Example 1 of the present utility model;

[0023] Figure 3This is an enlarged schematic diagram of the structure of the anti-slip tooling and the inclined casting sand box provided in Example 1 of the present utility model;

[0024] Figure 4 This is a schematic diagram of the main structure of the anti-slip tooling provided in Example 1 of the present utility model;

[0025] Figure 5 This is a schematic diagram of the overall structure of the anti-slip tooling assembly provided in Example 1 of the present utility model.

[0026] The diagram is for illustrative purposes only;

[0027] Among them, 1. Box cover; 2. Bottom box body; 3. Tooling reserved holes; 4. Tooling body; 5. Connectors; 6. Nuts; 7. Connecting holes; 8. Screws; 9. Support structure. DETAILED DESCRIPTION

[0028] It should be noted that the following detailed descriptions are exemplary and are intended to provide further explanation of the present invention. Unless otherwise specified, all technical and scientific terms used in the present invention have the same meanings as those commonly understood by those skilled in the art to which the present invention belongs.

[0029] Example 1

[0030] In a typical embodiment of the present invention, Figure 1 As shown, an anti-slip tooling for an inclined casting sand box is provided, comprising a tooling body 4, one end of the tooling body 4 abuts against the box cover 1, and the other end is connected to the bottom box body 2; the end of the tooling body 4 connected to the bottom box body 2 is also provided with a support structure 9 abutting against the bottom box body 2.

[0031] In this embodiment, the surface of the inclined flask is provided with horizontal and vertical ribs. The tooling body 4 abuts against the vertical ribs of the upper cover 1 of the inclined flask. The vertical ribs of the bottom box 2 are provided with tooling holes 3 for connecting the other end of the tooling body 4. A support structure 9 is provided at the bottom of the tooling body 4 and abuts against the vertical ribs of the bottom box 2.

[0032] Furthermore, the tool body 4 is arranged in an L-shaped structure, and the inner right angle of the L-shaped structure is arranged close to the sand box. In this embodiment, the joint seam of the inclined box body is located at the inner right angle of the L-shaped structure of the tool body 4.

[0033] Furthermore, a connection hole 7 is provided at one end of the tool body 4 that abuts against the box cover 1. A screw 8 is provided in the connection hole 7, and the screw 8 abuts against the box cover 1. In this embodiment, the end face of the screw 8 abuts against the vertical edge plate of the box cover 1.

[0034] Furthermore, a nut 6 is provided at one end of the screw rod 8 close to the box cover 1, and the screw rod 8 is fixed to the tool body 4 by the nut 6. This allows the screw rod 8 to stably abut the box cover 1, thereby ensuring the stability of the abutment of the tool body 4.

[0035] Furthermore, multiple connection holes 7 are provided, evenly distributed along the vertical direction at the end of the tooling body 4 that abuts the box cover 1; multiple screws 8 are provided, each connected to the connection holes 7. The multiple screws 8 are arranged parallel to each other. In this embodiment, the upper end of the L-shaped tooling body 4 is provided with three connection holes 7 along the vertical direction. Two screws 8 are installed in the upper two connection holes 7 to abut the box cover 1. It is understood that the size of the tooling body 4 can be adjusted according to actual conditions, and the number of screws 8 and connection holes 7 can also be adjusted according to actual conditions to ensure stable abutment between the tooling body 4 and the box cover 1.

[0036] Furthermore, a slot is provided at one end of the tool body 4 connected to the bottom box 2, and the slot is connected to the bottom box 2. In this embodiment, the size of the slot matches the vertical edge plate of the bottom box 2, and the vertical edge plate is inserted into the slot.

[0037] Furthermore, through holes are provided on both sides of the slot, and connectors 5 are provided in the through holes. A tooling hole 3 is provided at the connection between the bottom box 2 and the tooling body 4. The connectors 5 pass through the through holes and the tooling hole 3 to connect the tooling body 4 to the bottom box 2. In this embodiment, the through holes are circular through holes, and the connectors 5 are steel columns. The lower end of the tooling body 4 is engaged with the vertical edge plate of the bottom box 2 by the slot, and the steel column passes through the through holes and the tooling hole 3 to stably connect the lower end of the tooling body 4 to the bottom box 2.

[0038] Furthermore, multiple through holes are evenly distributed horizontally at the end of the tooling body 4 connected to the bottom box 2; multiple tooling pre-holes 3 are provided; and multiple connecting members 5 are provided, each connected to the through holes and the tooling pre-holes 3. In this embodiment, two through holes are provided horizontally, two tooling pre-holes 3 are provided corresponding to the positions of the through holes, and two steel columns are provided to connect the through holes and the tooling pre-holes 3, and the two steel columns are arranged in parallel directions.

[0039] Furthermore, one end of the support structure 9 is fixedly connected to the tooling body 4, and the side of the support structure 9 close to the bottom box body 2 is parallel to the bottom box body 2. In this embodiment, the support structure 9 is configured as a rectangular plate structure and is fixedly connected to the lower end of the L-shaped tooling body 4. At the same time, the support structure 9 is parallel to the vertical edge plate of the bottom box body 2. This configuration ensures that the tooling body 4 is stably connected to the bottom box body 2, and can also offset the downward sliding of the upper box cover 1 due to gravity through the tooling body 4. In other embodiments of the present invention, the support structure 9 can be configured as a triangular plate or other structure that can achieve stable contact with the bottom box body 2 according to actual usage.

[0040] The anti-slip fixture provided by the present invention can be provided with multiple pieces according to the specific structure of the inclined flask used to ensure the anti-slip effect. In this embodiment, two anti-slip fixtures are provided, which are symmetrically arranged at the ends of the inclined flask on the side prone to slipping to prevent the box cover 1 from sliding down.

[0041] In this embodiment, the upper end of the L-shaped tooling body 4 is arranged parallel to the vertical edge of the inclined sand box, and the lower end of the L-shaped tooling body 4 is arranged parallel to the horizontal edge of the bottom box body 2 and fits on the horizontal edge to ensure the stability of the tooling connection.

[0042] The utility model provides an anti-slip tooling for an inclined casting sand box, which fixes an upper box cover and a lower box body at the end side, thereby preventing the box cover from sliding down the inclined surface under the action of gravity, thereby ensuring the quality of castings.

[0043] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. An anti-slip tooling for inclined casting sand box, characterized in that: It comprises a tooling body arranged at the connection between the box body and the box cover, one end of the tooling body abuts the box cover, and the other end is connected to the bottom box body; the end of the tooling body connected to the bottom box body is also provided with a support structure abutting the bottom box body.

2. The anti-slip tooling for an inclined casting sand box according to claim 1, characterized in that: The tool body is arranged in an L-shaped structure, and the inner right angle of the L-shaped structure is arranged close to the sand box.

3. The anti-slip tooling for an inclined casting sand box according to claim 1, characterized in that: A connecting hole is provided at one end of the tool body abutting against the box cover. A screw is provided in the connecting hole, and the screw abuts against the box cover.

4. The anti-slip tooling for an inclined casting sand box according to claim 3, characterized in that: A nut is provided at one end of the screw rod close to the box cover, and the screw rod is fixed to the tooling body through the nut.

5. The anti-slip tool for an inclined casting sand box according to claim 3, characterized in that: There are multiple connecting holes, which are evenly distributed along the vertical direction at one end of the tool body abutting the box cover; there are multiple screws, which are respectively connected to the connecting holes.

6. The anti-slip tooling for an inclined casting sand box according to claim 5, characterized in that: The multiple screws are arranged parallel to each other.

7. The anti-slip tool for an inclined casting sand box according to claim 1, characterized in that: One end of the tool body connected to the bottom box body is provided with a card slot, and the card slot is connected to the bottom box body.

8. The anti-slip tooling for an inclined casting sand box according to claim 7, characterized in that: Through holes are provided on both sides of the card slot, connecting pieces are provided in the through holes, and tooling reserved holes are provided at the connection between the bottom box body and the tooling body. The connecting pieces pass through the through holes and the tooling reserved holes to connect the tooling body and the bottom box body.

9. The anti-slip tool for an inclined casting sand box according to claim 8, characterized in that: The through holes are uniformly distributed in the horizontal direction at one end of the tool body connected to the bottom box; the tool reserved holes are multiple; and the connecting pieces are respectively connected to the through holes and the tool reserved holes.

10. The anti-slip tool for an inclined casting sand box according to claim 1, characterized in that: One end of the support structure is fixedly connected to the tool body, and a side of the support structure close to the bottom box body is parallel to and abuts against the bottom box body.