Stable wear-resistant high-temperature tray

By setting upper and lower mating grooves and anti-slip structures on the main structure of the material tray, the problems of unstable position and poor wear resistance of existing material trays during high-temperature processing are solved, achieving efficient and uniform heating and precise positioning of parts, thus extending the service life of the material tray.

CN224262225UActive Publication Date: 2026-05-19JIANGSU DONGSHENG SPECIAL FIRE DOOR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU DONGSHENG SPECIAL FIRE DOOR CO LTD
Filing Date
2025-06-11
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing material trays are difficult to guarantee the positional stability and wear resistance of parts during high-temperature processing, and have low heating efficiency, making parts prone to collision damage.

Method used

A stable, wear-resistant, high-temperature feed tray is designed. By setting up upper and lower matching placement grooves and anti-slip structures on the main structure of the feed tray, the heat distribution and component position stability are ensured. Anti-slip and stable mating bosses are cast to improve wear resistance.

Benefits of technology

It achieves efficient and uniform heating, improves the positional stability and safety of components in the high-temperature furnace, and extends the service life of the material tray.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of trays, in particular to a stable wear-resistant and high-temperature-resistant tray. According to the technical scheme, the material tray comprises a main body supporting and placing material tray, the lower end of the main body supporting and placing material tray is provided with ventilation receding safety matching grooves which are evenly distributed in the left-right direction and penetrate through the whole length direction, and the upper ends of the ventilation receding safety matching grooves are provided with matching transition connecting grooves distributed in a rectangular array mode; the width of the matching transition connecting groove is larger than that of the ventilation receding safety matching groove, and the matching transition connecting groove is located over the ventilation receding safety matching groove. The heating device has the advantages that heat in the vertical direction can be more uniform, heating is more efficient, the anti-skid structure is arranged on the upper end face, the stability of the positions for placing parts can be effectively guaranteed, and the positions for placing products in the heating process and the overall taking and moving process are more accurate.
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Description

Technical Field

[0001] This utility model relates to the field of material tray technology, and in particular to a stable, wear-resistant, high-temperature material tray. Background Technology

[0002] In the production and processing of mechanical parts, it is often necessary to perform high-temperature treatment on the parts. This is done by placing them on a tray for high-temperature heating. Most existing trays are square in structure, which makes it difficult to ensure the positional stability when placing multiple parts. Furthermore, it is difficult to achieve efficient heating coordination at the bottom during the heating process. Over time, the surface of the tray is prone to wear. The positional stability of the heated parts cannot be guaranteed when the whole assembly moves, which can easily lead to displacement. In severe cases, the parts may collide with each other and cause damage. Utility Model Content

[0003] The purpose of this invention is to provide a stable, wear-resistant, high-temperature material tray. By setting up placement grooves that are distributed vertically on the main structure of the tray, it can ensure higher heating efficiency when placing parts in a high-temperature furnace, making the heat distribution more uniform and efficient. The anti-slip structure on the upper surface can effectively ensure the positional stability of the placed parts, making the placement of products more precise during heating and overall handling and movement, improving the safety of placement, and providing better wear resistance and a longer service life.

[0004] The technical solution of this utility model is as follows:

[0005] A stable, wear-resistant, high-temperature material tray, characterized in that: it includes a main support tray; the lower end of the main support tray has ventilation and safety grooves evenly distributed to the left and right and extending through the entire length; the upper end of the ventilation and safety grooves has a rectangular array of transition grooves; the width of the transition grooves is greater than the width of the ventilation and safety grooves; the transition grooves are located directly above the ventilation and safety grooves; the left and right sides of the intersection of the transition grooves and the ventilation and safety grooves form a stable support surface; the upper end of the main support tray has anti-slip and stable engagement bosses distributed in a crisscross pattern; the anti-slip and stable engagement bosses are integrally formed with the main support tray by casting; and each transition groove has a ring of anti-slip and stable engagement bosses on its outer side.

[0006] Furthermore, the cross-section of the anti-slip stabilizing boss is a square structure.

[0007] Furthermore, the height of the anti-slip stabilizing boss is less than 5mm.

[0008] Furthermore, the upper surface of the anti-slip stabilizing boss is provided with an anti-slip stabilizing groove.

[0009] Furthermore, the inner edge of the mating transition groove is provided with a transition connection mating rounded corner structure.

[0010] The beneficial effects of this utility model are:

[0011] This invention features placement slots arranged vertically on the main structure of the material tray. This design ensures higher heating efficiency for parts placed in a high-temperature furnace, resulting in more uniform heat distribution and more efficient heating. The anti-slip structure on the upper surface effectively ensures the stability of the placed parts, making the placement more precise during heating and handling, enhancing safety, improving wear resistance, and extending service life. Attached Figure Description

[0012] Figure 1 This is a top view of the present invention;

[0013] Figure 2 This is a cross-sectional view of position AA of this utility model;

[0014] Figure 3 This is a cross-sectional view of the BB position of this utility model;

[0015] In the diagram: 1. Main support for placing the material tray; 2. Ventilation and safety clearance groove; 3. Transition connection groove; 4. Anti-slip and stable boss. Detailed Implementation

[0016] like Figures 1 to 3As shown, a stable, wear-resistant, high-temperature material tray includes a main support tray 1. The lower end of the main support tray 1 has ventilation and safety grooves 2 evenly distributed left and right and running through its entire length, ensuring more space at the bottom. It can be placed on a support frame of a heating furnace as needed, and also ensures better vertical heat flow during use. The upper end of the ventilation and safety grooves 2 has a rectangular array of transition grooves 3. The width of the transition grooves 3 is greater than the width of the ventilation and safety grooves 2. This position ensures better structural strength and can also be used as a positioning structure for placing mechanical products (mechanical parts), allowing for rapid upward heat flow from the bottom during heating. The transition grooves 3 are located directly above the ventilation and safety grooves 2. The left and right sides of the intersection of the transition grooves 3 and the ventilation and safety grooves 2 form a stable support surface, resulting in better flatness and more space during placement, while also ensuring higher overall structural strength of the material tray. The upper end of the main support tray 1 features crisscrossing anti-slip and stabilizing bosses 4, which provide better anti-slip protection for the placed products during use. This ensures better positioning accuracy and safety of the products to be heated when the tray is moved as a whole. The anti-slip and stabilizing bosses 4 are integrally formed with the main support tray 1 through casting. Each outer area of ​​the mating transition groove 3 is provided with a ring of these anti-slip and stabilizing bosses 4, ensuring better overall heating uniformity and higher heating efficiency. This novel structural design, with its vertically and horizontally distributed placement grooves on the main structure of the tray, ensures higher efficiency in heating components within the high-temperature furnace. It achieves more uniform heat distribution in the vertical direction, resulting in more efficient heating. The anti-slip structure on the upper surface effectively ensures the positional stability of the placed components, making the product placement more precise during heating and handling, enhancing placement safety, improving overall wear resistance, and extending service life.

[0017] Preferably, the anti-slip stabilizing boss 4 has a square cross-section, which improves the structural support strength, extends the service life, and enhances wear resistance during use.

[0018] Preferably, the height of the anti-slip stabilizing boss 4 is less than 5mm, which makes it easier to form during production and processing, and also occupies less space during use. It is best to set it to 2mm during production, which can make the anti-slip effect more reliable, the production cost is relatively low, and the space occupied is also smaller.

[0019] Preferably, the upper surface of the anti-slip stabilizing boss 4 is provided with an anti-slip stabilizing groove, which can further improve the anti-slip effect when the product is placed in this position.

[0020] Preferably, the inner edge of the mating transition groove 3 is provided with a transitional mating rounded corner structure, which improves the strength of the internal structure and makes it easier to form during production and processing.

[0021] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements or substitutions can be made without departing from the principle of this utility model, and these improvements or substitutions should also be considered within the protection scope of this utility model.

Claims

1. A stable, wear resistant, high temperature tray characterized by: The device includes a main support tray (1), with ventilation and safety grooves (2) evenly distributed on the left and right sides and running through the entire length direction at the lower end of the main support tray (1). The upper end of the ventilation and safety grooves (2) is provided with a rectangular array of transition grooves (3). The width of the transition grooves (3) is greater than the width of the ventilation and safety grooves (2). The transition grooves (3) are located directly above the ventilation and safety grooves (2). The left and right sides of the intersection of the transition grooves (3) and the ventilation and safety grooves (2) form a safe and stable support surface. The upper end of the main support tray (1) is provided with anti-slip and stable engagement bosses (4) arranged in a crisscross pattern. The anti-slip and stable engagement bosses (4) are integrally formed with the main support tray (1) by casting. Each transition groove (3) has a ring of anti-slip and stable engagement bosses (4) on its outer side.

2. The stable wear resistant high temperature tray according to claim 1, wherein: The cross-section of the anti-slip stabilizing boss (4) is square.

3. The stable wear resistant high temperature tray as claimed in claim 1, wherein: The height of the anti-slip stabilizing boss (4) is less than 5mm.

4. The stable wear resistant high temperature tray according to claim 1, wherein: The upper surface of the anti-slip stabilizing boss (4) is provided with an anti-slip stabilizing groove.

5. The stable wear resistant high temperature tray according to claim 1, wherein: The inner edge of the transition groove (3) is provided with a transition connection rounded corner structure.