A beeswax solidification molding machine
By designing a beeswax condensation molding machine and utilizing a hydraulic system to control the pressing of the molding plate and the circulation of the cooling medium, the problems of long processing time and low efficiency in the beeswax molding process have been solved, achieving rapid and standardized beeswax condensation molding and efficient production.
Patent Information
- Application Number
- CN202310346317.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-03
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2043-04-03
AI Technical Summary
The existing beeswax molding process is time-consuming, difficult to control, space-consuming, and has low production efficiency.
Design a beeswax condensation molding machine, including a frame, a fixed plate, a molding plate, a cooling pipe, a pressing plate, pressing elements, a control system, and a hydraulic system. The hydraulic system controls the pressing of the molding plate and the circulation of the cooling medium to achieve rapid condensation molding of beeswax.
It enables rapid and standardized solidification and molding of beeswax, resulting in a variety of styles and high work efficiency.
Smart Images

Figure CN116214801B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of beeswax products, and specifically relates to a beeswax cold solidification molding machine. Background Technology
[0002] Beeswax is a purely biological product produced by bees and can be extracted after honey is extracted. Beeswax has wide applications in the food, pharmaceutical, cosmetic, and other industries. It is solid at room temperature with a melting point of 62°C-67°C. During extraction, beeswax often contains impurities such as honeycomb fragments. Before application, the beeswax needs to be heated to around 70°C, filtered using a separation and filtration device, and then the separated liquid beeswax is cooled and solidified to form flakes or blocks for commercial use. Currently, most beeswax molding processes involve pouring liquid beeswax into trays and allowing it to solidify naturally or in a cold storage room. The drawbacks of this method are that it is time-consuming, difficult to control, requires a large floor or space, and has low production efficiency. Summary of the Invention
[0003] To address the aforementioned problems in existing beeswax molding and solidification processes, this invention proposes a device capable of rapidly and systematically solidifying liquid beeswax. Specifically, the technical solution is a beeswax solidification molding machine, characterized in that: the solidification molding machine includes a frame, a fixed plate, molding plates, cooling pipes, cooling branch pipes, a pressing plate, pressing elements, a control system, and a hydraulic system; the frame is a welded structure and serves as the machine's supporting component; the fixed plate is mounted on the frame, connected to the frame, and capable of connecting the two sides of the frame to form a framework; multiple molding plates are mounted on the frame and pressed together to form multiple chambers; The cooling pipe is mounted on the frame and connected to the frame, and is also connected to the cooling medium supply source; the cooling branch pipe is installed between the cooling pipe and the individual forming plate, with one end communicating with the inner cavity of the cooling pipe and the other end connected to the cooling joint of the forming plate; the clamping plate is mounted on the frame and snapped into place, and can move horizontally along the frame; the clamping element is mounted on the frame and can push the clamping plate to move; the control system is mounted on or near the frame and can control the operating status of the machine; the hydraulic system is mounted on or near the frame and can provide hydraulic power and hydraulic control for the machine, and is connected to the control system.
[0004] Furthermore, there are two or more cooling pipes, one being an inlet pipe and the other an outlet pipe.
[0005] Furthermore, the cooling medium supply source is a device capable of supplying pressurized cooling medium to the cooling pipe, wherein the cooling medium is water, oil, or a solution containing water or oil.
[0006] Furthermore, the molding plate includes a handle, a template, and a cooling baffle; the template includes a frame and a cavity baffle; if a large piece of beeswax is required, the cavity baffle is not needed; the template is hollow, with a cooling baffle installed on the left or right side, and the other side of the cooling baffle is a cavity, forming an open cavity after contacting the back of the cooling baffle of another molding plate; the handle is installed on both sides of the frame and connected to the frame; the frame is set around the perimeter of the template, with an opening at the top; the cooling baffle is installed inside the frame and fits into the frame; after the cooling baffle is installed inside the frame, its outer side wall is flush with the same side surface of the frame; the cooling baffle includes a coolant baffle, a coolant inlet, a coolant outlet, a coolant connector, a left sealing plate, and a right sealing plate; the coolant baffle is installed between the left and right sealing plates and located inside the frame, with its two sides... Seal-shaped strips are connected to the left and right sealing plates respectively, forming a labyrinthine layout within the left and right sealing plates to create coolant channels. The coolant inlet is located at the lower end of the lower or side frame, communicating with the coolant channel formed by the coolant baffle, and connected to the inlet pipe of the cooling pipe via a cooling branch pipe. The coolant outlet is located on the opposite side of the frame from the coolant inlet, at the lower end of the lower or side frame, communicating with the coolant channel formed by the coolant baffle, and connected to the outlet pipe of the cooling pipe via a cooling branch pipe. Coolant connectors are installed on the coolant inlet and outlet for connecting the cooling branch pipes. The left sealing plate is installed on the left side of the frame, sealingly connected to the frame around its perimeter, and its inner surface, i.e., the surface located between the two sealing plates, is connected to the coolant baffle. The right sealing plate is installed on the left side of the frame, inside the frame (see attached image). Figure 4 (On the right side), the perimeter is sealed to the frame, and the inner side is connected to the coolant baffle.
[0007] Furthermore, the inner cavity of the template is circular, polygonal, or irregular in shape.
[0008] Furthermore, the left and right sealing plates are made of metal (which is beneficial for heat dissipation).
[0009] Beneficial effects
[0010] The beneficial effects of this invention are that it can quickly and accurately solidify beeswax into various shapes and has high work efficiency. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the external structure of the present invention.
[0012] Figure 2 This is the present invention. Figure 1 Cross-sectional structural diagram
[0013] Figure 3This is a schematic diagram of the cross-sectional structure of the forming plate located at the position of the cooling baffle.
[0014] Figure 4 This is a schematic diagram of the longitudinal cross-sectional structure of the molded plate.
[0015] 1. Frame, 2. Fixing plate, 3. Forming plate, 4. Cooling pipe, 5. Cooling branch pipe, 6. Pressing plate, 7. Pressing element, 8. Control system, 9. Hydraulic system, 31. Handle, 32. Frame, 33. Coolant partition, 34. Coolant connector, 35. Coolant outlet, 36. Coolant inlet, 37. Left sealing plate, 38. Right sealing plate, 39. Cavity opening. Detailed Implementation
[0016] To better illustrate the technical solution of the present invention, specific embodiments of the present invention will now be further described in conjunction with the accompanying drawings, such as... Figure 1-4 In this example, an industry-standard electrical control system is selected as the control system 8, and an industry-standard hydraulic system is selected as the hydraulic system 9. The handles 31 are installed on both sides of the frame 32 and connected to it. The frame 32 is positioned around the perimeter of the template, with an opening at the top. The cooling baffle 33 is installed inside the frame 32 and fitted onto it. After installation, the outer wall of the cooling baffle is flush with the same-side surface of the frame 32. The cooling baffle includes a coolant baffle 33, a coolant inlet 36, a coolant outlet 35, a coolant connector 34, a left sealing plate 37, and a right sealing plate 38. The coolant baffle 33 is installed between the left sealing plate 37 and the right sealing plate 38, located inside the frame 32, with its two sides respectively sealed to the left sealing plate 37 and the right sealing plate 38. It is strip-shaped and forms a labyrinth within the left sealing plate 37 and the right sealing plate 38. The layout forms a coolant channel; the coolant inlet 36 is located at the lower end of the lower frame or side frame, communicating with the coolant channel formed by the coolant baffle 33, and is connected to the liquid inlet pipe of the cooling pipe 4 through a cooling branch pipe; the coolant outlet 35 is located on the other side of the frame 32 opposite to the coolant inlet 36, at the lower end of the lower frame or side frame, communicating with the coolant channel formed by the coolant baffle 33, and is connected to the liquid outlet pipe of the cooling pipe 4 through a cooling branch pipe; the coolant connector 34 is installed on the coolant inlet 36 and the coolant outlet 35 for connecting the cooling branch pipe 5; the left sealing plate 37 is installed on the left side of the frame 32, sealing the periphery with the frame 32, and the inner surface, that is, the surface located between the two sealing plates, is connected to the coolant baffle 33; the right sealing plate 38 is installed on the left side of the frame 32, located inside the frame 32 (see attached image). Figure 4 The right side of the plate is sealed to the frame 32, and the inner side is connected to the coolant baffle 33, thus completing the implementation of the molding plate 3.
[0017] The fixing plate 2 is installed on the frame 1 and connected to the frame 1, and can connect the two sides of the frame 1 to form a frame; multiple forming plates 3 are installed on the frame 1 and pressed together to form multiple chambers; the cooling pipe 4 is installed on the frame 1 and connected to the frame 1, and is also connected to the cooling medium supply source; the cooling branch pipe 5 is installed between the cooling pipe 4 and a single forming plate 3, with one end communicating with the inner cavity of the cooling pipe and the other end connected to the cooling joint of the forming plate 3; the clamping plate 6 is installed on the frame 1 and snapped into the frame 1, and can move horizontally along the frame 1; the clamping element 7 is installed on the frame 1 and can push the clamping plate 6 to move; the control system 8 is installed on or near the frame 1 and can control the operating status of the machine; the hydraulic system 9 is installed on or near the frame 1 and can provide hydraulic power and hydraulic control for the machine, and is connected to the control system 8.
[0018] In application, the control system 8 instructs the hydraulic system 9 to press the dispersed molding plates 3 together and tightly stack them on the frame 1. Liquid beeswax is transported through pipes to the upper opening of the molding plates 3, thus entering the cavity. The cooling system is activated, and the coolant enters from a cooling pipe 4 into a cooling branch pipe 5, and then into the inner cavity of the cooling baffle, forming a circulation to cool the beeswax in contact with the cooling baffle. The temperature sensor of the control system 8 can measure the temperature of the coolant. When the temperature drops to the set temperature, the control system 8 instructs the machine to stop cooling and activates the hydraulic system 9 to separate the stacked molding plates 3. The molded beeswax is then removed from the cavity of the molding plates 3, thus completing the beeswax condensation molding process. By repeating the above process, rapid condensation molding of beeswax can be achieved.
Claims
1. A beeswax solidification molding machine, characterized in that: The aforementioned condensation molding machine includes a frame, a fixed plate, molding plates, cooling pipes, cooling branch pipes, a pressing plate, pressing elements, a control system, and a hydraulic system. The frame is a welded structure and serves as the machine's supporting component. The fixed plate is mounted on the frame, connected to it, and connects the two sides of the frame to form a framework. Multiple molding plates are mounted on the frame and pressed together to form multiple chambers. The cooling pipes are mounted on the frame, connected to it, and also connected to a cooling medium supply source. The cooling branch pipes are installed between the cooling pipes and individual molding plates, with one end communicating with the inner cavity of the cooling pipe and the other end connected to the cooling connector of the molding plate. The pressing plate is mounted on the frame, engaged with it, and can move horizontally along the frame. The aforementioned clamping element is mounted on the frame and can push the clamping plate to move; the aforementioned control system is mounted on the frame and can control the operating status of the machine; the aforementioned hydraulic system is mounted on and near the frame and can provide hydraulic power and hydraulic control for the machine, and is connected to the control system; the aforementioned cooling pipe has two or more parts, one being an inlet pipe and the other an outlet pipe; the aforementioned cooling medium supply source is a device capable of supplying pressurized cooling medium to the cooling pipe, and the cooling medium is water, oil, or a solution containing water or oil; the aforementioned forming plate includes a handle, a mold plate, and a cooling baffle; the aforementioned mold plate includes a frame and a cavity baffle; the aforementioned mold plate is hollow, with a cooling baffle installed on the left or right side, and the other side of the cooling baffle is a cavity, connected to another... The cooling baffle of the block molding plate forms an open cavity after contacting the back of the plate; the handle is installed on both sides of the frame and connected to the frame; the frame is set around the perimeter of the mold plate and has an opening at the top; the cooling baffle is installed inside the frame and fits into the frame; after the cooling baffle is installed inside the frame, its outer wall is flush with the same side surface of the frame; the cooling baffle includes a coolant baffle, a coolant inlet, a coolant outlet, a coolant connector, a left sealing plate, and a right sealing plate; the coolant baffle is installed between the left and right sealing plates and is located inside the frame, with its two sides sealing the left and right sealing plates respectively, and is strip-shaped, forming a labyrinthine layout within the left and right sealing plates to create coolant channels; the coolant inlet is located on the lower frame or side. The lower end of the frame is connected to the coolant channel formed by the coolant baffle, and is connected to the inlet pipe of the cooling pipe through a cooling branch pipe; the coolant outlet is located on the other side of the frame opposite the coolant inlet, at the lower end of the lower frame or side frame, connected to the coolant channel formed by the coolant baffle, and connected to the outlet pipe of the cooling pipe through a cooling branch pipe; the coolant connector is installed on the coolant inlet and coolant outlet for connecting the cooling branch pipe; the left sealing plate is installed on the left side of the frame, with its periphery sealed to the frame, and its inner surface, that is, the surface located between the two sealing plates, is connected to the coolant baffle; the right sealing plate is installed on the left side of the frame, located inside the frame, with its periphery sealed to the frame, and its inner side connected to the coolant baffle.The inner cavity of the mold plate is circular, polygonal, or irregular in shape; the left and right sealing plates are made of metal.
Citation Information
Patent Citations
Epoxy resin gel forming device
CN210082259U
Rapid cooling wax plate forming device in beewax production process
CN214491268U
Cooling device for liquid metal 3D printing
CN216325103U