Discharging disc for storing resin raw materials
By designing a structure that combines a fixed frame and a placement tray, the stability problem of multi-layered resin raw material placement trays was solved, ensuring the safety and convenient movement of the placement trays and preventing the resin raw materials from tilting or slipping.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGZHOU LIMENG RESIN CO LTD
- Filing Date
- 2025-06-24
- Publication Date
- 2026-05-12
AI Technical Summary
In the existing technology, there is no fixing system when resin raw materials are stacked on the feeding tray, which poses a certain danger, especially when another set is stacked on top of a full set of feeding trays, which is prone to tilting or slipping.
A feeding tray comprising a fixed frame and a feeding tray is designed. The fixed frame consists of a feeding base, a fixing rod, and a positioning ring. The feeding tray is equipped with an auxiliary mechanism and a roller structure. Through the cooperation of the positioning ring and the fixing ring and the locking function of the rollers, the stability and convenient movement of the feeding tray are ensured.
This effectively avoids the risk of tilting and slipping when resin raw material trays are stacked in multiple layers, ensuring the stability and safety of transportation and storage, and improving the load-bearing capacity and ease of movement of the trays.
Smart Images

Figure CN224225560U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of resin raw material storage, specifically a material feeding tray for storing resin raw materials. Background Technology
[0002] The raw materials for resins mainly fall into two categories: those from natural sources and those from artificial synthesis. Natural resins are usually derived from plant and animal secretions, such as rosin, shellac, and amber, while synthetic resins are obtained through chemical synthesis or modification of natural products.
[0003] Before making resin, it is necessary to prepare the raw materials for resin production. When storing the collected resin raw materials, they are usually placed on a feeding tray. The feeding tray is a material storage and conveying device widely used in the field of industrial automation. It is mainly used to store, sort and release various materials as needed. Its core function is to achieve efficient positioning, classified storage and automated supply of materials through structural design.
[0004] In the existing technology, resin raw materials are usually packaged in bags, and multiple sets of bags filled with resin raw materials are stacked together on a pallet for storage. When the resin raw materials are needed, the user usually drives a forklift to transport the entire pallet of resin raw materials. However, in order to store more resin raw materials, most warehouses currently place another pallet on top of the pallet that is already full of resin raw material bags, and continue to stack resin raw materials on this pallet. This storage method has no fixed system and is somewhat dangerous. Utility Model Content
[0005] Therefore, the purpose of this utility model is to provide a resin raw material storage tray to solve the technical problem that there is a certain degree of danger in the storage method of stacking another set of resin raw material storage trays on top of a storage tray full of resin raw material.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a resin raw material storage tray, comprising a fixed frame and a placement tray. The fixed frame includes placement seats, fixed rods, and positioning rings. Each pair of fixed rods is fixedly connected to multiple placement seats, and the bottom of each set of fixed rods is fixedly connected to the ground. The fixed rods serve to stabilize the entire fixed frame on the ground. The top of each set of placement seats is fixedly connected to two sets of positioning rings. The placement tray includes a placement plate, which is located on top of the placement seats. Each set of placement plates has multiple sets of auxiliary mechanisms installed on its top. The auxiliary mechanism includes a fixed ring, wherein the inner diameter of the fixed ring matches the outer diameter of the positioning ring, and the fixed ring, in cooperation with the positioning ring, stabilizes the placement tray on the fixed frame.
[0007] By adopting the above technical solution, this utility model, through the reinforced placement seat and positioning ring in the fixed frame, and the cooperation between the positioning ring and the fixing ring in the placement tray, can support multiple layers of placement trays filled with resin material. At the same time, the roller structure designed at the four corners of the auxiliary mechanism can not only ensure the convenience of moving a single tray, but also provide flexible movement during transportation through the locking function of the rollers and positioning ring, and ensure overall stability during storage. It effectively avoids the hidden danger of multiple sets of resin raw material bags easily tilting and slipping in the traditional stacking method, and solves the technical problem that there is a certain degree of danger in the storage method of stacking another set of resin raw material on top of a tray filled with resin raw material.
[0008] Furthermore, the placement tray also includes a fixing plate, wherein multiple sets of fixing plates are fixedly installed between two sets of placement plates. The placement tray also includes a movable cavity, wherein a movable cavity is formed between every two sets of fixing plates, and the movable cavity serves to allow the user to transport the placement tray using a forklift.
[0009] By adopting the above technical solution, bags filled with resin raw materials are stacked on the placement tray. After a certain number of bags are stacked, the user can use a forklift to transport the placement tray and resin raw materials together to the warehouse where the resin raw materials are stored through the movable cavity formed between the two sets of placement plates and multiple sets of fixed plates.
[0010] Furthermore, the fixed frame also includes reinforcing ribs, wherein multiple sets of reinforcing ribs are fixedly installed on the inner side of the placement seat, and the reinforcing ribs serve to increase the load-bearing capacity of the placement seat.
[0011] By adopting the above technical solution, multiple sets of placement seats are installed on the fixing rod, and multiple sets of reinforcing ribs are installed at the bottom of each placement seat, which can greatly improve the load-bearing capacity of the placement seat.
[0012] Furthermore, the auxiliary mechanism also includes a fixed shaft and a roller, wherein the fixed shaft is fixedly installed inside the fixed ring, the roller is rotatably connected to the fixed shaft, the roller is rotatably connected to the placement tray through the fixed shaft, and the roller plays the role of assisting the movement of the placement tray.
[0013] By adopting the above technical solution, the auxiliary mechanism is installed at the four corners of the placement plate. The fixing ring cooperates with the positioning ring to stabilize the placement plate. The rollers installed inside the fixing ring are mounted on the fixing ring through a fixing shaft. The height of the rollers is greater than the height of the fixing ring. Therefore, when the user needs to transport resin raw materials separately, multiple sets of rollers at the bottom of the placement plate will contact the ground, thereby reducing the friction between the placement plate and the ground. The user can easily move the placement plate with the help of tools.
[0014] In summary, this utility model has the following beneficial effects: Through the reinforced placement seat and positioning ring in the fixed frame, and with the cooperation of the positioning ring and the fixing ring in the placement tray, this utility model can support multiple layers of placement trays filled with resin material. Simultaneously, the roller structure designed at the four corners of the auxiliary mechanism ensures convenient movement of a single tray while providing flexible movement during transportation through the locking function of the rollers and positioning ring, ensuring overall stability during storage. This effectively avoids the hidden dangers of multiple sets of resin material bags easily tilting and slipping in traditional stacking methods, and solves the technical problem of the inherent danger of stacking another set of resin material-filled trays on top of a tray already filled with resin material. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0016] Figure 2 This is an exploded view of the present invention;
[0017] Figure 3 This is a cross-sectional view of a portion of the present invention;
[0018] Figure 4 This utility model Figure 3 Enlarged view of point A;
[0019] Figure 5 This is a schematic diagram of the fixed frame of this utility model.
[0020] In the diagram: 1. Fixed frame; 101. Placement seat; 102. Fixed rod; 103. Positioning ring; 104. Reinforcing rib; 2. Placement tray; 201. Placement plate; 202. Fixed plate; 203. Movable cavity; 3. Auxiliary mechanism; 301. Fixed ring; 302. Fixed shaft; 303. Roller. Detailed Implementation
[0021] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.
[0022] The embodiments of this utility model will be described below based on its overall structure.
[0023] A resin raw material storage tray, such as Figure 1-5As shown, the system includes a fixed frame 1 and a placement tray 2. The fixed frame 1 includes a placement base 101, a fixing rod 102, and a positioning ring 103. Each pair of fixing rods 102 is fixedly connected to multiple placement bases 101, and the bottom of each pair of fixing rods 102 is fixedly connected to the ground. The fixing rods 102 serve to stabilize the entire fixed frame 1 on the ground. The top of each placement base 101 is fixedly connected to two sets of positioning rings 103. The fixed frame 1 also includes reinforcing ribs 104, with multiple sets of reinforcing ribs 104 fixedly installed on the inner side of the placement base 101. The reinforcing ribs 104 serve to increase the load-bearing capacity of the placement base 101.
[0024] Multiple sets of placement seats 101 are installed on the fixed rod 102, and multiple sets of reinforcing ribs 104 are installed at the bottom of each placement seat 101, which can greatly improve the load-bearing capacity of the placement seat 101. Therefore, the placement seat 101 can be installed on the fixed rod 102 according to the capacity of the warehouse.
[0025] Furthermore, the placement tray 2 includes a placement plate 201, wherein the placement plate 201 is located on top of the placement base 101. Each set of placement plates 201 has multiple sets of auxiliary mechanisms 3 installed on its top. The auxiliary mechanism 3 includes a fixing ring 301, wherein the inner diameter of the fixing ring 301 matches the outer diameter of the positioning ring 103, and the fixing ring 301, in cooperation with the positioning ring 103, plays the role of stabilizing the placement tray 2 on the fixed frame 1.
[0026] The user can place the placement tray 2 onto the placement seat 101 using a forklift. The fixing ring 301 at the bottom of the placement tray 2 can be fitted onto the positioning ring 103 on the placement seat 101 to ensure that the placement tray 2 can be stably placed on the fixed frame 1.
[0027] In the example, the placement tray 2 also includes a fixing plate 202, wherein multiple sets of fixing plates 202 are fixedly installed between two sets of placement plates 201. The placement tray 2 also includes a movable cavity 203, wherein a movable cavity 203 is formed between every two sets of fixing plates 202, and the movable cavity 203 serves to allow the user to transport the placement tray 2 using a forklift.
[0028] In this process, bags filled with resin raw materials are stacked on the placement tray 2. After a certain number of bags are stacked, the user can use a forklift to transport the placement tray 2 and the resin raw materials together to the warehouse where the resin raw materials are stored through the movable cavity 203 formed between the two sets of placement plates 201 and the multiple sets of fixed plates 202.
[0029] In the example, the auxiliary mechanism 3 also includes a fixed shaft 302 and rollers 303. The fixed shaft 302 is fixedly installed inside the fixed ring 301. The rollers 303 are rotatably connected to the fixed shaft 302 and are rotatably connected to the placement tray 2 through the fixed shaft 302. The rollers 303 also assist in moving the placement tray 2. The auxiliary mechanism 3 is installed at the four corners of the placement plate 201. The fixed ring 301 cooperates with the positioning ring 103 to stabilize the placement tray 2. The rollers 303 installed inside the fixed ring 301 are mounted on the fixed ring 301 through the fixed shaft 302. The height of the rollers 303 is greater than the height of the fixed ring 301. Therefore, when the user needs to transport resin raw materials separately, multiple sets of rollers 303 will contact the ground at the bottom of the placement tray 2, thereby reducing the friction between the placement tray 2 and the ground. The user can easily move the placement tray 2 with the help of tools.
[0030] The working principle of this utility model is as follows: When in use, the user can first take out a set of placement trays 2, and then stack bags filled with resin raw materials on the placement trays 2. After stacking a certain number of bags, the user can use a forklift to transport the placement trays 2 and the resin raw materials together to the warehouse where the resin raw materials are stored through the movable cavity 203 formed between the two sets of placement plates 201 and the multiple sets of fixed plates 202.
[0031] In the warehouse, a fixed frame 1 is installed in advance, in which the bottom of the fixed rod 102 is fixedly installed to the bottom of the warehouse. At this time, the user can put the placement tray 2 into the placement seat 101 by using a forklift. The fixing ring 301 at the bottom of the placement tray 2 can be put into the positioning ring 103 on the placement seat 101 to ensure that the placement tray 2 can be stably placed on the fixed frame 1.
[0032] Multiple sets of placement seats 101 are installed on the fixed rod 102, and multiple sets of reinforcing ribs 104 are installed at the bottom of each set of placement seats 101, which can greatly improve the load-bearing capacity of the placement seats 101. Therefore, according to the capacity of the warehouse, placement seats 101 can be installed on the fixed rod 102. A set of placement trays 2 filled with resin raw material bags can be placed between every two sets of placement seats 101. Each set of placement trays 2 does not directly contact each other, thus avoiding the possibility that the placement plane at the bottom of the top placement tray 2 is not horizontal, so that each set of placement trays 2 can be stably placed in the fixed frame 1.
[0033] Multiple auxiliary mechanisms 3 are installed on the placement plate 201 inside the placement tray 2. The auxiliary mechanisms 3 are installed at the four corners of the placement plate 201. The fixing ring 301 cooperates with the positioning ring 103 to stabilize the placement tray 2. The rollers 303 installed inside the fixing ring 301 are mounted on the fixing ring 301 through the fixing shaft 302. The height of the rollers 303 is greater than the height of the fixing ring 301. Therefore, when the user needs to transport resin raw materials separately, the multiple rollers 303 at the bottom of the placement tray 2 will contact the ground, thereby reducing the friction between the placement tray 2 and the ground. The user can easily move the placement tray 2 with the help of tools.
[0034] Meanwhile, the placement tray 2, which is filled with resin raw material bags, has a fixed ring 301 at its bottom that matches the positioning ring 103. The roller 303 can only stay inside the positioning ring 103 and cannot move easily, thus ensuring the stability of the placement tray 2 during storage.
[0035] This solves the technical problem of the inherent danger of stacking another set of resin-filled trays on top of a tray already filled with resin raw materials.
[0036] Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the present invention and are not intended to limit the invention. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions, and variations to the embodiments as needed without departing from the principles and spirit of the present invention, but such modifications, substitutions, and variations are protected by patent law as long as they fall within the scope of the claims of the present invention.
Claims
1. A resin raw material storage tray, comprising a fixing frame (1) and a placement tray (2), characterized in that: The fixed frame (1) includes a placement base (101), fixing rods (102), and positioning rings (103). Each pair of fixing rods (102) is fixedly connected to multiple placement bases (101), and the bottom of each fixing rod (102) is fixedly connected to the ground. The fixing rods (102) stabilize the entire fixed frame (1) on the ground. The top of each placement base (101) is fixedly connected to two sets of positioning rings (103). The placement tray (2) The system includes a placement plate (201) located on top of a placement base (101). Each placement plate (201) has multiple auxiliary mechanisms (3) installed on its top. The auxiliary mechanism (3) includes a fixing ring (301). The inner diameter of the fixing ring (301) matches the outer diameter of the positioning ring (103). The fixing ring (301) and the positioning ring (103) work together to stabilize the placement plate (2) on the fixed frame (1).
2. The resin raw material storage tray according to claim 1, characterized in that: The placement tray (2) also includes a fixing plate (202), wherein multiple sets of fixing plates (202) are fixedly installed between two sets of placement plates (201).
3. The resin raw material storage tray according to claim 2, characterized in that: The placement tray (2) also includes a movable cavity (203), wherein a movable cavity (203) is formed between every two sets of fixed plates (202), and the movable cavity (203) serves to allow the user to transport the placement tray (2) using a forklift.
4. The resin raw material storage tray according to claim 1, characterized in that: The fixed frame (1) also includes reinforcing ribs (104), wherein multiple sets of reinforcing ribs (104) are fixedly installed on the inner side of the placement seat (101), and the reinforcing ribs (104) play the role of increasing the load-bearing capacity of the placement seat (101).
5. The resin raw material storage tray according to claim 1, characterized in that: The auxiliary mechanism (3) further includes a fixed shaft (302) and a roller (303), wherein the fixed shaft (302) is fixedly installed inside the fixed ring (301), and the roller (303) is rotatably connected to the fixed shaft (302).
6. The resin raw material storage tray according to claim 5, characterized in that: The roller (303) is rotatably connected to the placement tray (2) via a fixed shaft (302), and the roller (303) assists in the movement of the placement tray (2).