Temporary storage device for cultivated diamond synthesis blocks integrated with air cooling structure
By integrating an air-cooled cooling structure into the temporary storage device for synthetic diamond blocks, and using a cooling fan to actively cool the storage plate, the problem of long traditional passive cooling time is solved, thus improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-04-03
AI Technical Summary
Traditional storage devices for lab-grown diamond blocks rely on passive cooling, resulting in long cooling times and requiring additional fans, which impacts production efficiency.
The design integrates an air-cooled cooling structure, using a cooling fan to actively cool the temporary storage plate, shortening the cooling time, eliminating reliance on fans, and improving integration.
By integrating an air-cooling structure, the cooling time of lab-grown diamond synthesis blocks is shortened, thus improving production efficiency.
Smart Images

Figure CN224072014U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of artificial diamond production technology, specifically to a temporary storage device for lab-grown diamond synthetic blocks with an integrated air-cooling structure. Background Technology
[0002] Lab-grown diamonds, also known as laboratory-synthesized diamonds, are produced by artificially simulating the high-temperature, high-pressure environment in a laboratory where natural diamonds form. This process creates diamonds with the same physical, chemical, and optical properties as natural diamonds. The high-temperature, high-pressure (HTHP) method is a technique that simulates the conditions under which natural diamonds form deep within the Earth. Its core principle is to convert carbon sources into diamond crystals through a high-temperature, high-pressure environment. After the lab-grown diamond blocks have undergone six-sided press processing, they need to be placed in a temporary storage device for storage and cooling. Traditional temporary storage devices passively cool the lab-grown diamond blocks by placing them in a cool, shaded area. This method has a long cooling time, requires a fan on one side of the storage device for cooling, has low integration, and affects production efficiency. Utility Model Content
[0003] The purpose of this invention is to provide a temporary storage device for cultured diamond synthesis blocks with an integrated air-cooling structure, in order to solve the problems mentioned in the background art. Traditional temporary storage devices passively cool the cultured diamond synthesis blocks by placing them in a cool place. This method has a long cooling time, requires a fan to be installed on one side of the temporary storage device for cooling, has a low degree of integration, and affects production efficiency.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a temporary storage device for cultured diamond synthesis blocks with an integrated air-cooled cooling structure, comprising a main frame, a temporary storage plate at the upper inner end of the main frame, a second temporary storage plate at the inner end of the main frame and below the first temporary storage plate, a cooling fan at the inner end of the main frame and below the second temporary storage plate, a protective plate at the lower inner end of the main frame corresponding to the cooling fan, a high protective plate at the upper outer edge of the first temporary storage plate on the side of the main frame, and a low protective plate at the upper outer edge of the second temporary storage plate on the side of the main frame.
[0005] Preferably, fixing rods are welded to the sides of the main frame at positions corresponding to the first-layer temporary storage plate, the second-layer temporary storage plate, and the protective plate, and the first-layer temporary storage plate, the second-layer temporary storage plate, and the protective plate are fixedly connected to the main frame through the fixing rods.
[0006] Preferably, mounting rods are provided at the front and rear of the main frame corresponding to the positions of the cooling fan, and the cooling fan is fixedly connected to the main frame by bolts passing through the mounting rods.
[0007] Preferably, both the first-layer temporary storage plate and the second-layer temporary storage plate are provided with through slots, and the density of the through slots provided on the first-layer temporary storage plate is less than the density of the through slots provided on the second-layer temporary storage plate.
[0008] Preferably, handles are provided on the upper ends of the left and right sides of the main frame, handle fixing rods are provided on the left and right sides of the main frame at positions corresponding to the handles, and casters are provided at the four corners of the lower end of the main frame.
[0009] Compared with the prior art, the beneficial effects of this utility model are: based on the traditional temporary storage device that places the synthetic diamond blocks in a cool place for passive cooling, a cooling fan structure is set up. The cooling fan blows air to cool the first and second temporary storage plates, shortening the cooling time. It is no longer necessary to set up a fan on one side of the temporary storage device for cooling. The overall equipment is more integrated and ensures production efficiency. Attached Figure Description
[0010] Figure 1 This is an isometric sectional view of the main structure of this utility model;
[0011] Figure 2 This is an isometric view of the main structure of this utility model;
[0012] Figure 3 This is a front view schematic diagram of the main structure of this utility model;
[0013] Figure 4 This is a left-side view of the main structure of this utility model;
[0014] Figure 5 This is a top view of the main structure of this utility model.
[0015] In the diagram: 1-Main frame, 2-First-layer temporary storage plate, 3-Second-layer temporary storage plate, 4-Cooling fan, 5-Protective plate, 6-High protective plate, 7-Low protective plate, 8-Fixing rod, 9-Mounting rod, 10-Through groove, 11-Handle, 12-Handle fixing rod, 13-Wheel caster. Detailed Implementation
[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0017] Please see Figure 1-5This utility model provides a temporary storage device for cultured diamond synthesis blocks with an integrated air-cooled cooling structure, including a main frame 1. The upper part of the main frame 1 is provided with a temporary storage plate 2. The main frame 1 is provided with a second temporary storage plate 3 below the first temporary storage plate 2. The main frame 1 is provided with a cooling fan 4 below the second temporary storage plate 3. The lower part of the main frame 1 is provided with a protective plate 5 corresponding to the cooling fan 4. The side of the main frame 1 is provided with a high protective plate 6 at the upper outer edge of the first temporary storage plate 2. The side of the main frame 1 is provided with a low protective plate 7 at the upper outer edge of the second temporary storage plate 3.
[0018] In use, a first-layer storage plate 2 and a second-layer storage plate 3 are sequentially installed from top to bottom inside the main frame 1. Different batches of diamond synthesis blocks are stored through these storage plates. A cooling fan 4 is installed at the lower end of the main frame 1, and a protective plate 5 is installed below the cooling fan 4 to protect the lower part of the cooling fan 4 and prevent it from blowing dust from the lower part of the main frame 1 onto the diamond synthesis blocks. Cooling air is blown from the cooling fan 4 to the bottom of the first-layer storage plate 2 and the second-layer storage plate 3. Both the first-layer temporary storage plate 2 and the second-layer temporary storage plate 3 are grid plate structures. A high guard plate 6 is installed on the first-layer temporary storage plate 2 to protect the outer edge of the first-layer temporary storage plate 2. A low guard plate 7 is installed on the second-layer temporary storage plate 3 to protect the outer edge of the second-layer temporary storage plate 3, preventing the diamond synthesis block from falling from the first-layer temporary storage plate 2 and the second-layer temporary storage plate 3. Cooling air is blown upward through the first-layer temporary storage plate 2 and the second-layer temporary storage plate 3 to cool down the diamond synthesis block stored on the first-layer temporary storage plate 2 and the second-layer temporary storage plate 3, thereby increasing the cooling speed of the diamond synthesis block.
[0019] Fixing rods 8 are welded to the sides of the main frame 1 at positions corresponding to the first-layer temporary storage plate 2, the second-layer temporary storage plate 3, and the protective plate 5. The first-layer temporary storage plate 2, the second-layer temporary storage plate 3, and the protective plate 5 are fixedly connected to the main frame 1 through the fixing rods 8. The fixing rods 8 fix the first-layer temporary storage plate 2, the second-layer temporary storage plate 3, and the protective plate 5 to the inside of the main frame 1 to ensure connection strength.
[0020] Mounting rods 9 are provided at the front and rear of the main frame 1, corresponding to the cooling fan 4. The cooling fan 4 is fixedly connected to the main frame 1 by bolts passing through the mounting rods 9. Mounting rods 9 are provided inside the main frame 1, and the cooling fan 4 is fixedly connected to the mounting rods 9 by bolts.
[0021] Both the first-layer temporary storage plate 2 and the second-layer temporary storage plate 3 are provided with through slots 10. The density of the through slots 10 provided on the first-layer temporary storage plate 2 is less than that of the through slots 10 provided on the second-layer temporary storage plate 3. By providing through slots 10 on both the first-layer temporary storage plate 2 and the second-layer temporary storage plate 3, and by using through slots 10 of different sizes, it is ensured that cooling air flows from the second-layer temporary storage plate 3 to the first-layer temporary storage plate 2.
[0022] The main frame 1 has handles 11 on the upper left and right sides, and handle fixing rods 12 on the left and right sides corresponding to the handles 11. The main frame 1 has casters 13 at the four corners of the lower end. The handles 11 on both sides of the main frame 1 are provided with handles 11 through the handle fixing rods 12 to facilitate the workers to push the main frame 1. The casters 13 at the lower end of the main frame 1 facilitate the sliding of the entire structure on the ground.
[0023] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A temporary storage device for a synthetic diamond growth block with integrated air cooling, characterized in that: The utility model provides a kind of cooling device, including main frame (1), the inside upper end of the main frame (1) is equipped with a layer of temporary storage plate (2), the inside of the main frame (1) and below the temporary storage plate (2) of the layer is equipped with two temporary storage plate (3), the inside of the main frame (1) and below the temporary storage plate (3) of the two is equipped with cooling fan (4), the inside lower end of the main frame (1) and the position corresponding with cooling fan (4) is equipped with protective plate (5), the side of the main frame (1) and at the upper end outer edge of the temporary storage plate (2) of the layer is equipped with high guard plate (6), the side of the main frame (1) and at the upper end outer edge of the temporary storage plate (3) of the two is equipped with short guard plate (7).
2. The integrated air-cooled cooling structure's incubation diamond synthesis block temporary storage device according to claim 1, characterized in that: The side of the main frame (1) and the position corresponding with the temporary storage plate (2), the temporary storage plate (3) and the protective plate (5) are welded with fixed rod (8), and the temporary storage plate (2), the temporary storage plate (3) and the protective plate (5) are fixedly connected with the main frame (1) by the fixed rod (8).
3. The integrated air-cooled cooling structure's incubation diamond synthesis block temporary storage device according to claim 1, characterized in that: The front and back of the main frame (1) and the position corresponding with the cooling fan (4) are equipped with mounting rod (9), and the cooling fan (4) is fixedly connected with the main frame (1) by bolt penetrating the mounting rod (9).
4. The integrated air-cooled cooling structure's incubation diamond synthesis block temporary storage device according to claim 1, characterized in that: The temporary storage plate (2) and the temporary storage plate (3) are both provided with through slot (10), and the density of the through slot (10) provided on the temporary storage plate (2) is less than that of the temporary storage plate (3).
5. The integrated air-cooled cooling structure's incubation diamond synthesis block temporary storage device according to claim 1, characterized in that: The left and right sides of the main frame (1) are provided with handle (11) on the upper end, the left and right sides of the main frame (1) are provided with handle fixing rod (12) at the position corresponding with the handle (11), and the lower end of the main frame (1) is provided with universal wheel (13) at the four corners.