High-temperature-resistant dynamic and static high-bearing combined material frame

By designing a high-temperature resistant, dynamic and static, high-load-bearing composite material frame, the problems of poor permeability and low load-bearing capacity of the composite material frame are solved, and the high efficiency and cost control of parts heat treatment are achieved.

CN223458345UActive Publication Date: 2025-10-21XINGHUA JIANDA CASTING CO LTD
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Patent Information

Application Number
CN202422784668.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-10-21
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

The existing combined material frame has poor permeability and low load-bearing capacity, which affects the quality of heat treatment of parts and is easy to damage, increasing costs.

Method used

A high-temperature resistant, dynamic and static, high-load-bearing combined material frame is designed, which adopts a material frame, support column and partition column structure. The material frame is provided with a hollow and U-shaped bend design. The support column is separated from the chassis for easy replacement. The partition column is matched with the support column to enhance permeability and load-bearing capacity.

Benefits of technology

It improves the permeability and load-bearing capacity of parts during heat treatment, reduces the damage rate and transportation costs, and improves the quality of heat treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a high temperature resistant dynamic and static high bearing combined material frame, including material frame, support pillar and partition pillar, the material frame is rectangular, the upper and lower surfaces of the material frame four corners are respectively provided with a groove, the center of the bottom of the groove is provided with a through hole 1, the through hole 1 passes through the bottom of the upper and lower grooves, the aperture of the through hole 1 is smaller than the inner diameter of the groove, and the partition pillar is provided with a through hole 2. A first through hole is formed in the supporting column, the hole diameter of the first through hole is matched with the outer diameter of the supporting column, the outer diameter of the partition column is matched with the inner diameter of the groove, a second through hole is formed in the partition column, the hole diameter of the second through hole is matched with the outer diameter of the supporting column, and a base plate is fixed to the lower end of the supporting column. And the outer diameter of the chassis is matched with the inner diameter of the groove. According to the utility model, the permeability of parts during heat treatment is enhanced, the bearing capacity is improved, and the parts can be selected and combined according to specific production requirements and environments.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of heat treatment frock especially relates to a high temperature resistant dynamic static high loadability combined material frame. BACKGROUND

[0002] At present, many parts in industry need to be heat treated to obtain desired use performance. In the heat treatment industry, the parts needing heat treatment are generally loaded into a heat treatment frock, and then the heat treatment frock loaded with the parts is put into a heat treatment furnace for high-temperature treatment. The heat treatment frock generally has a material frame, a material tray, a material rack, a combination of the material frame and the material rack, etc. However, most of the combined material frames are generally arranged closely, have poor permeability, the parts are not heat treated properly, and the product quality is affected. At the same time, the combined material frames have low loadability, are inconvenient to install, disassemble and transport when the material frame enters the field, and if the bottom plate of the material frame is damaged, the entire material frame cannot be used, increasing the cost. SUMMARY

[0003] In view of the above problems, the utility model provides a high temperature resistant dynamic static high loadability combined material frame.

[0004] To achieve the above purpose, the utility model adopts the following technical scheme: a high temperature resistant dynamic static high loadability combined material frame, comprising a material frame, a support column and a partition column, the material frame is rectangular, each of the four corners of the material frame is provided with a groove on the upper and lower surfaces, a through hole one is arranged at the center of the bottom of the groove, the through hole one penetrates the upper and lower grooves, the diameter of the through hole one is smaller than the inner diameter of the groove, the diameter of the through hole one matches the outer diameter of the support column, the outer diameter of the partition column matches the inner diameter of the groove, the partition column is internally provided with a through hole two, the diameter of the through hole two matches the outer diameter of the support column, the lower end of the support column is fixedly connected with a bottom plate, and the outer diameter of the bottom plate matches the inner diameter of the groove.

[0005] Preferably, the interior of the material frame has a plurality of horizontal strips and vertical strips to form a hollow shape, the horizontal strips are perpendicular to the vertical strips, the intersection of the horizontal strips and the vertical strips is designed as a diamond-shaped connection, and a round hole is arranged at the center of the diamond-shaped connection.

[0006] Preferably, each of the four corners of the material frame is designed as a rounded corner, and the frame of the material frame is provided with a U-shaped bend recessed inward.

[0007] Preferably, the material frame, the support column and the partition column are all made of heat-resistant steel material.

[0008] Preferably, the height of the partition column is greater than the thickness of the material frame.

[0009] Preferably, the diameter of the through hole one is equal to the diameter of the through hole two.

[0010] Preferably, the thickness of the chassis is equal to the depth of the groove.

[0011] Preferably, the area of the circular hole is less than the area of the hollow formed by the plurality of horizontal and vertical bars.

[0012] Compared with the prior art, the utility model has the beneficial effects that: the utility model sets up the hollow formed by the plurality of circular holes and the plurality of horizontal and vertical bars, which helps to enhance the permeability, and the frame of the material frame is provided with the U-shaped bend that is concave inward, which helps to improve the bearing capacity; the utility model separates the support column from the chassis, when the bottom material frame is damaged, other material frame can be replaced, then used, reduces the cost, also convenient transportation and storage, satisfies the dynamic and static demand of the material frame; the partition column is sleeved on the support column in the layered interval with the material frame, the upper and lower ends of the partition column are clamped in the groove, the partition column separates the plurality of material frames, places the parts that need heat treatment on the material frame, can enhance the permeability when heat treating, improves the heat treatment quality of the parts. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a structural schematic diagram of a high-temperature-resistant dynamic and static high-bearing combined material frame.

[0014] Figure 2 It is a top view of a high-temperature-resistant dynamic and static high-bearing combined material frame.

[0015] Figure 3 It is an A-A section view of a high-temperature-resistant dynamic and static high-bearing combined material frame.

[0016] Figure 4 It is a support column structural schematic diagram of a high-temperature-resistant dynamic and static high-bearing combined material frame.

[0017] Figure 5 It is a partition column structural schematic diagram of a high-temperature-resistant dynamic and static high-bearing combined material frame.

[0018] BRIEF DESCRIPTION OF DRAWINGS: 1. material frame, 11. horizontal bar, 12. vertical bar, 13. circular hole, 14. through hole one, 15. groove, 16. U-shaped bend, 17. rhombus connection, 2. support column, 21. chassis, 3. partition column, 31. through hole two. DETAILED DESCRIPTION

[0019] In order to further understand the purpose, structure, features and functions of the utility model, the following detailed description is made in conjunction with the embodiments.

[0020] Please refer to Figures 1-5The utility model discloses an embodiment of a kind of high-temperature-resistant dynamic and static high load-bearing combined material frame, including material frame 1, support column 2 and partition column 3, the material frame 1 is rectangular, the material frame 1 upper and lower surface of four corners is equipped with a recess 15, the recess 15 bottom center is equipped with through hole one 14, the through hole one 14 penetrates the recess 15 bottom, the aperture of the through hole one 14 is less than the inner diameter of recess 15, the aperture of the through hole one 14 is matched with the outer diameter of support column 2, the outer diameter of the partition column 3 is matched with the inner diameter of the recess 15, the partition column 3 inside is equipped with through hole two 31, the aperture of the through hole two 31 is matched with the outer diameter of support column 2, the support column 2 lower end fixed platen 21, the outer diameter of the platen 21 is matched with the inner diameter of the recess 15.

[0021] In an embodiment, as shown in Figure 2 The inside of the material frame 1 has a plurality of horizontal bars 11 and vertical bars 12 forming a hollow shape, the horizontal bars 11 are perpendicular to the vertical bars 12, the intersection of the horizontal bars 11 and the vertical bars 12 is designed as a diamond-shaped connection 17, and a round hole 13 is arranged at the center of the diamond-shaped connection 17. This can reduce thermal expansion and contraction of the material basket during work, disperse stress at the connection between the horizontal bars 11 and the vertical bars 12, and prevent breakage at the connection end.

[0022] In an embodiment, as shown in Figure 2 The four corners of the material frame 1 are designed as rounded corners, and the frame of the material frame is provided with a U-shaped bend 16 inwardly recessed. This can improve load-bearing capacity and prolong service life.

[0023] In an embodiment, the material frame 1, the support column 2 and the partition column 3 are all made of heat-resistant steel material. This can improve the service life of the combined material frame and reduce use cost.

[0024] In an embodiment, as shown in Figure 3 The height of the partition column 3 is greater than the thickness of the material frame 1.

[0025] In an embodiment, as shown in Figure 3 The aperture of the through hole one 14 is equal to the aperture of the through hole two 31.

[0026] In an embodiment, as shown in Figure 3 The thickness of the platen 21 is equal to the depth of the recess 15, so that the platen 21 of the support column 2 and the recess 15 can be matched.

[0027] In an embodiment, as shown in Figure 2 The area of the round hole 13 is less than the area of the hollow shape formed by the plurality of horizontal bars 11 and vertical bars 12.

[0028] Usage: combined with Figures 1-5As shown, the material frame 1 is provided with multiple circular holes 13 and multiple horizontal strips 11 and vertical strips 12 to form a hollow shape, which is helpful to enhance the permeability, the frame of the material frame 1 is provided with a U-shaped bending 16 which is concave inward, which is helpful to improve the carrying capacity, the partition column 3 and the material frame 1 are layered and spaced to be arranged on the support column 2, the parts which need to be heat treated are placed on the material frame 3, the permeability during heat treatment can be enhanced, and the heat treatment quality of the parts is improved.

[0029] The utility model has been described by the above related embodiment, however the above embodiment is only the example of implementation of the utility model. Must point out is, the disclosed embodiment does not limit the scope of the utility model. On the contrary, the change and the decoration made within the spirit and the scope of the utility model do not deviate from the patent protection scope of the utility model.

Claims

1. A high temperature resistant, dynamic and static, high load-bearing composite frame, characterized by: Including material frame (1), support column (2) and partition column (3), the material frame (1) is rectangular, the material frame (1) is provided with a recess (15) on the four corners upper and lower surface, the recess (15) bottom center is provided with through hole one (14), the through hole one (14) penetrates the recess (15) bottom, the aperture of the through hole one (14) is less than the inner diameter of the recess (15), the aperture of the through hole one (14) matches the outer diameter of the support column (2), the outer diameter of the partition column (3) matches the inner diameter of the recess (15), the partition column (3) is provided with through hole two (31) inside, the aperture of the through hole two (31) matches the outer diameter of the support column (2), the support column (2) lower end is fixed bottom disc (21), the outer diameter of the bottom disc (21) matches the inner diameter of the recess (15).

2. A high temperature resistant dynamic and static high load capacity combined frame as claimed in claim 1, characterized in that: The inside of the material frame (1) has a plurality of horizontal bars (11) and vertical bars (12) formed hollow, the horizontal bar (11) is perpendicular to the vertical bar (12), the intersection of the horizontal bar (11) and the vertical bar (12) is designed as a diamond connection (17), the center of the diamond connection (17) is provided with a round hole (13).

3. The high temperature resistant dynamic and static high load capacity combined frame of claim 1, wherein: The four corners of the material frame (1) are designed as round corners, and the frame of the material frame is provided with a U-shaped bend (16) inwardly recessed.

4. The high temperature resistant dynamic and static high load capacity combined frame of claim 1, wherein: The material frame (1), the support column (2) and the partition column (3) are made of heat-resistant steel material.

5. A high temperature resistant dynamic and static high load capacity combined frame as claimed in claim 1, wherein: The height of the partition column (3) is greater than the thickness of the material frame (1).

6. A high temperature resistant dynamic and static high load capacity combined frame as claimed in claim 1, wherein: The aperture of the through hole one (14) is equal to the aperture of the through hole two (31).

7. A high temperature resistant dynamic and static high load capacity combined frame as claimed in claim 1, wherein: The thickness of the bottom disc (21) is equal to the depth of the recess (15).

8. A high temperature resistant dynamic and static high load capacity combined frame as claimed in claim 2, wherein: The area of the round hole (13) is less than the area of the plurality of horizontal bars (11) and vertical bars (12) formed hollow.