Charging tray for drying chip inductors
By designing the tray support component and the heat exchange hole structure, the problems of tray detachment and gapless stacking were solved, achieving stable tray stacking and uniform drying effect, thus improving the efficiency and quality of material drying.
Patent Information
- Application Number
- CN202422474312.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-10-14
AI Technical Summary
Existing material trays are prone to detachment when stacked in multiple layers, affecting the drying effect of the material and potentially damaging the material in the lower layers. In addition, the lack of gaps when stacked affects the drying effect of the lower layers.
A tray support component was designed, including an upper frame plate and a lower frame plate. The support component is connected by a side frame plate. The support part and the anti-detachment part are trapezoidal structures, which work together to provide stability. A gap is left between the trays to improve the drying effect. Heat passage holes are provided on the bottom plate and the side plates to enhance the heat conduction performance.
It improves the stability of the stacked trays, prevents them from falling off, enhances the drying effect of the lower layer of materials, and improves drying efficiency and uniformity through improved structure and hole design.
Smart Images

Figure CN223538029U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of electronic component drying equipment, and specifically relates to a tray for drying surface mount inductors. Background Technology
[0002] In the production process of surface mount inductors, the materials need to go through steps such as coating and cleaning. After these steps, the materials need to be dried. The material tray is an important tool used in the material drying process, and it has a significant impact on the drying effect and efficiency of the materials.
[0003] During drying, material trays are often placed in tunnel drying ovens in multiple stacks. However, the edges of existing material trays are relatively thin. When stacked in multiple layers, the upper trays may detach from the edges of the lower trays due to equipment vibration and improper placement. This can cause the upper trays to press down on the lower material, affecting the drying effect and potentially damaging the lower material. Furthermore, if there are no gaps between the upper and lower trays during stacking, the drying effect of the lower material will also be affected. Utility Model Content
[0004] To overcome the shortcomings and problems of existing technologies, improve the stacking stability of material trays, and enhance the drying effect of materials in the lower trays, this utility model provides a material tray for drying surface mount inductors.
[0005] This utility model is achieved through the following technical solution:
[0006] A tray for drying surface mount inductors includes a tray body with support members at both ends. Each support member includes an upper frame plate and a lower frame plate. The upper frame plate has a support portion, and the lower frame plate has an anti-detachment portion that cooperates with the support portion. The upper frame plate is higher than the tray body. The tray body includes a bottom plate and side plates. Multiple heat exchange holes are evenly distributed on the bottom plate and side plates. Two of the support members are connected to two opposite side plates.
[0007] Both the support and the anti-detachment parts are upward-convex trapezoidal structures.
[0008] The two ends of the upper frame plate and the lower frame plate are connected by side frame plates.
[0009] The support member is also provided with connecting plates at both ends, and the disc body is riveted to the connecting plates.
[0010] The side plate is provided with heat-conducting perforations.
[0011] In this invention, the support and anti-detachment parts can cooperate with each other. When the trays are stacked, the support of the upper tray can cooperate with the support of the lower tray to improve the stability of the trays during stacking. Simultaneously, in this invention, the upper frame plate of the support is higher than the tray body, allowing a gap to be left between the two trays when the upper tray is placed on top of the lower tray, thus improving the drying effect of the lower tray. Attached Figure Description
[0012] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0013] Figure 2 This is a schematic diagram of the stacking state of this utility model;
[0014] Figure 3 This is a schematic diagram of the disassembly state of this utility model.
[0015] In the diagram: 100-plate, 110-base plate, 111-heating hole, 120-side plate, 121-heating strip hole, 200-support component, 210-upper frame plate, 211-support part, 220-lower frame plate, 221-anti-detachment part, 230-side frame plate, 240-connecting plate. Detailed Implementation
[0016] To facilitate understanding by those skilled in the art, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0017] like Figure 1 , 3 As shown, a tray for drying surface mount inductors includes a tray body 100. Support members 200 are provided at both ends of the tray body 100. The support members 200 provide support for the tray when multiple trays are stacked. Each support member 200 includes an upper frame plate 210 and a lower frame plate 220, with their ends connected by side frame plates 230. The upper frame plate 210 has a support portion 211, and the lower frame plate 220 has an anti-detachment portion 221 that cooperates with the support portion 211. Both the support portion 211 and the anti-detachment portion 221 are upwardly convex trapezoidal structures. When an upper tray is placed on a lower tray, the support portion 211 of the upper tray and the anti-detachment portion 221 of the lower tray engage in a concave-convex fit, providing a limit for the upper tray and preventing it from falling off due to displacement. After the material is dried, the temperature of the tray is high. The support part 211 can also be used as a handle to facilitate the operator to pick up and put down the tray, and prevent it from slipping out and causing danger.
[0018] like Figure 2As shown, the upper frame plate 210 is higher than the tray body 100. When the upper tray is placed, the upper frame plate 210 of the lower tray can provide a certain elevation, leaving a gap between the upper and lower trays, improving the drying effect of the lower tray and preventing the stacking of trays from affecting the drying effect of the lower tray. The tray body 100 includes a bottom plate 110 and a side plate 120. The support member 200 is also provided with connecting plates 240 at both ends. The side plate 120 is riveted to the connecting plate 240. The riveting connection method has better stability and can avoid the loosening problem caused by thermal expansion and contraction that occurs with threaded connections. The bottom plate 110 and side plate 120 are evenly provided with multiple heat-conducting holes 121, which are used to improve the ventilation and heat conduction performance of the material trays and improve the drying effect. The side plate 120 is provided with heat-conducting strip holes 121, which can improve the ventilation and heat conduction effect when multiple material trays are close together. In conjunction with the raising function of the support member 200, the drying uniformity between the material trays can be improved. The bottom surface of this utility model is flat, and it can be applied to tunnel drying ovens that use various conveying methods such as conveyor belts or conveyor rollers.
[0019] The above embodiments are preferred implementations of this utility model and are not intended to limit this utility model. Any obvious substitutions are within the protection scope of this utility model without departing from its inventive concept.
Claims
1. A tray for drying surface mount inductors, comprising a tray body (100), characterized in that: The disc body (100) is provided with support members (200) at both ends. The support member (200) includes an upper frame plate (210) and a lower frame plate (220). The upper frame plate (210) is provided with a support part (211), and the lower frame plate (220) is provided with an anti-detachment part (221) that cooperates with the support part (211). The upper frame plate (210) is higher than the disc body (100). The disc body (100) includes a bottom plate (110) and a side plate (120). The bottom plate (110) and the side plate (120) are provided with a plurality of heat-venting holes (111). The two support members (200) are connected to the two opposite side plates (120).
2. The tray for drying surface mount inductors according to claim 1, characterized in that: Both the support part (211) and the anti-detachment part (221) are upwardly convex trapezoidal structures.
3. The tray for drying surface mount inductors according to claim 2, characterized in that: The two ends of the upper frame plate (210) and the lower frame plate (220) are connected by the side frame plate (230).
4. A tray for drying surface mount inductors according to claim 3, characterized in that: The support member (200) is also provided with connecting plates (240) at both ends, and the disc body (100) is riveted to the connecting plates (240).
5. A tray for drying surface mount inductors according to any one of claims 1-4, characterized in that: The side plate (120) is provided with heat-conducting holes (121).