Bearing device structure
By designing a specific structure for the support device, the problem of residual dirt particles on the pallet during water spraying or sandblasting was solved, enabling rapid discharge of dirt particles or water droplets and simplifying the processing procedure.
Patent Information
- Application Number
- CN202423057129.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-11
AI Technical Summary
Existing pallets are difficult to effectively remove powder or water droplets during water spraying or sandblasting, resulting in residual dirt particles and increasing the difficulty and complexity of the processing procedure.
A carrier device is designed, comprising a carrier container, a carrier element, and a sample. The carrier container has an opening, a bottom, and a side with a sloping angle. The side has a side hole, and the carrier element has a hole. These structures allow dirt particles or water droplets to be discharged through the hole and the side hole.
It enables the rapid removal of dirt particles or water droplets, avoiding residues and simplifying the difficulty and complexity of subsequent processing procedures.
Smart Images

Figure CN223495041U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a bearing device, and more particularly to a bearing device structure that can prevent dirt particles or water droplets from remaining on a bearing member. Background Technology
[0002] Today, thanks to technological advancements and the development of industry, machinery has gradually replaced traditional manual labor. Take conveyor belts, commonly used in factories and production lines, for example. A conveyor belt and at least two rotating rollers drive the conveyor belt, which usually carries pallets. The items to be transported are placed on the pallets, and the conveyor belt transports the pallets from the starting point to the ending point, completing the goods transport operation. Conveyor belts can move a large number of items quickly over a long period of time, saving hard labor, limited time, and effectively controlling storage space. However, pallets are usually inconspicuous plates or dishes. If the transported items need to be cleaned with water or sandblasted, ordinary pallets usually cannot drain water or remove powder or abrasive particles, which greatly hinders the process of performing this operation. Utility Model Content
[0003] The main objective of this invention is to provide a support device structure that allows dirt particles or water droplets generated after processing to fall into the side or bottom through holes. The support device includes: a support container, a support member, and at least one sample. The support container has an opening at one end and a bottom at the other end opposite the opening. A bottom hole is formed on the bottom. The support container has a side portion with a sloping angle, which gradually narrows from top to bottom and has a plurality of side holes. The support member is disposed at the opening and has a plurality of holes. The sample is disposed on the support member.
[0004] In this way, after the sample undergoes the processing procedure, some dirt particles or water droplets will be generated. These dirt particles or water droplets can fall into the side or bottom through the plurality of holes. Since the side is a sloping shape that gradually narrows from top to bottom, the dirt particles or water droplets falling into the side will slowly slide into the plurality of side holes and be discharged out. Alternatively, the dirt particles or water droplets will eventually concentrate in the bottom and be discharged out through the bottom hole. By using the plurality of holes, the plurality of side holes, and the bottom hole on the bearing device, the dirt particles or water droplets can be prevented from remaining on the bearing, thus avoiding increasing the difficulty and complexity of the processing procedure, and quickly discharging the dirt particles or water droplets out. Attached Figure Description
[0005] Figure 1 This is a three-dimensional view of the present invention.
[0006] Figure 2 This is an exploded perspective view of the present invention.
[0007] Figure 3 This is a cross-sectional view of the present invention.
[0008] Figure 4 This is a schematic diagram of a preferred embodiment of the present invention.
[0009] In the picture:
[0010] Bearing device 1
[0011] Carrier Container 2
[0012] Opening 21
[0013] Bottom 22
[0014] Bottom hole 221
[0015] Side 23
[0016] Side hole 231
[0017] Bearing component 3
[0018] Hole 31
[0019] Sample 4. Detailed Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, so that those skilled in the art can better understand and implement the present invention. However, the embodiments are not intended to limit the present invention.
[0021] Please also refer to Figures 1 to 4 The figures shown are a perspective view, an exploded perspective view, a sectional view, and a schematic diagram of a preferred embodiment of the present invention. As can be clearly seen from the figures, the supporting device 1 has:
[0022] A carrying container 2 has an opening 21 at one end and a bottom 22 at the other end opposite to the opening 21. A bottom hole 221 is formed on the bottom 22. The carrying container 2 has a side portion 23 with a slope angle at the side edge, and a plurality of side holes 231 are formed on the side portion 23.
[0023] A support member 3 is disposed at the opening 21, and a plurality of holes 31 are formed on the support member 3;
[0024] At least one sample 4 is disposed on the carrier 3;
[0025] The side portion 23 gradually narrows from the opening 21 toward the bottom 22;
[0026] The main features are as follows: the carrier 2 has an opening 21 at one end and a bottom 22 at the other end opposite the opening 21, with a bottom hole 221 formed on the bottom 22; the carrier 2 has a side portion 23 with a sloping angle formed on its side, and a plurality of side holes 231 formed on the side portion 23; the side portion 23 gradually tapers from the opening 21 towards the bottom 22; the carrier 3 is disposed at the opening 21, and a plurality of holes 31 are formed on the carrier 3; the sample 4 is disposed on the carrier 3; after the sample 4 undergoes processing, some dirt particles or water droplets will remain on the carrier 3; these remaining dirt particles or water droplets can fall into the side portion 23 or the bottom 22 through the plurality of holes 31. The opening 21 gradually narrows towards the bottom 22, meaning that the side portion 23 is a shape with a sloping angle that gradually narrows from top to bottom. Dirt particles or water droplets falling onto the side portion 23 will slowly slide into the plurality of side holes 231 and be discharged outside the support container 2, or the dirt particles or water droplets will eventually concentrate in the bottom 22 and be discharged outside the support container 2 through the bottom hole 221. In this way, the support device 1 first uses the plurality of holes 31 to let the dirt particles or water droplets fall into the plurality of side holes 231 and the bottom hole 221 and be discharged outside the support container 2, which can prevent the dirt particles or water droplets from remaining on the support member 3, avoid increasing the difficulty and complexity of subsequent processing procedures, and quickly discharge the dirt particles or water droplets outside the support container 2.
[0027] The supporting device 1 of this utility model comprises: a supporting container 2, a supporting member 3, and at least one sample 4. The supporting container 2 has an opening 21 at one end and a bottom 22 at the other end opposite the opening 21. A side portion 23 with a sloping angle is formed on the side, and the side portion 23 gradually tapers from the opening 21 towards the bottom 22. The sample 4 is placed on the supporting member 3, which is positioned at the opening 21. Therefore, when the sample 4 undergoes processing, some dirt particles or water droplets will be generated. These dirt particles or water droplets can fall into the side portion 23 or the bottom portion 22 through the plurality of holes 31 on the supporting member 3. In part 22, since the side part 23 gradually narrows towards the bottom 22 with a slope angle, dirt particles or water droplets will slowly slide into the plurality of side holes 231 on the side part 23 and be discharged outside the support container 2, or the dirt particles or water droplets will be discharged outside the support container 2 through the bottom hole 221 of the bottom 22. By using the plurality of holes 31, the plurality of side holes 231 and the bottom hole 221 on the support device 1, dirt particles or water droplets can be prevented from remaining on the support member 3, thus avoiding increasing the difficulty and complexity of subsequent processing procedures, and the dirt particles or water droplets can be quickly discharged outside the support container 2.
[0028] The above embodiments are merely preferred embodiments provided to fully illustrate the present utility model, and the protection scope of the present utility model is not limited thereto. Equivalent substitutions or modifications made by those skilled in the art based on the present utility model are all within the protection scope of the present utility model.
Claims
1. A support device structure, characterized in that, include: A carrier container has an opening at one end and a bottom at the other end opposite the opening, a bottom hole is formed on the bottom, and a side portion with a slope angle is formed on the side portion, and a plurality of side holes are formed on the side portion. A support member is disposed at the opening, and a plurality of holes are formed on the support member; At least one sample is disposed on the carrier.
2. The bearing device structure as described in claim 1, characterized in that, The side portion tapers towards the bottom from the opening.