Silicon carbide coating curing system
By introducing a sliding mechanism and a transport mechanism into the silicon carbide coating curing system, the problem of removing large workpieces or workpieces with large temperature differences is solved, achieving efficient and convenient workpiece removal and improving processing efficiency.
Patent Information
- Application Number
- CN202520501158.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-03-20
AI Technical Summary
Existing silicon carbide coating processing equipment struggles to efficiently remove large workpieces from the curing equipment when handling workpieces with significant temperature differences, resulting in low processing efficiency.
A silicon carbide coating curing system was designed, comprising a curing oven, a container, a transport mechanism, and a sliding mechanism. By setting a sliding mechanism below the curing oven, the transport mechanism can be connected to the container and the container can be moved by the sliding mechanism to avoid contact with the container. Combined with the design of slider, ball, and abutment, the container can be moved out smoothly.
It improves the efficiency of removing workpieces from the curing equipment, saves physical labor, increases processing efficiency, adapts to containers of different sizes and shapes, and simplifies the operation process.
Smart Images

Figure CN223959942U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of silicon carbide coating processing equipment, and more particularly to a silicon carbide coating curing system. Background Technology
[0002] Silicon carbide coatings offer unique advantages in materials science, including high strength, high wear resistance, and high temperature resistance. In workpiece machining, applying a silicon carbide coating to the workpiece surface can effectively improve the workpiece's strength and service life.
[0003] Existing silicon carbide coatings can be achieved through techniques such as physical vapor deposition or chemical vapor deposition. By placing the workpiece in a curing device, a thin film of silicon carbide is formed on the surface of the workpiece, thereby achieving the effect of generating a silicon carbide coating on the surface of the workpiece.
[0004] The aforementioned technical solutions have the following drawbacks: when the workpiece is large or the temperature difference between the workpiece and room temperature is large after processing, it is difficult for the user to manually remove the workpiece from the curing equipment, resulting in low efficiency of the silicon carbide coating process. Utility Model Content
[0005] To improve the efficiency of users placing and removing workpieces from the curing equipment, this application provides a silicon carbide coating curing system.
[0006] The silicon carbide coating curing system provided in this application adopts the following technical solution:
[0007] A silicon carbide coating curing system includes a curing oven, a container, a transport mechanism, and a sliding mechanism. The curing oven has a cavity that is horizontally oriented. A door is rotatably connected to the curing oven. The sliding mechanism is located below the curing oven. The transport mechanism is detachably connected to the sliding mechanism. The container is placed inside the cavity. The transport mechanism is connected to the container and moves through the sliding mechanism.
[0008] By adopting the above technical solution, by setting a sliding mechanism on the curing oven, the conveying mechanism can be installed on the sliding mechanism. After the conveying mechanism is connected to the container in the curing oven, the container can be moved out of the oven cavity through the sliding mechanism. During the process of moving the container, contact with the container can be avoided, saving physical strength and improving processing efficiency.
[0009] Optionally, the conveying mechanism includes a frame, multiple brackets and connecting rods, with the brackets fixed to the frame and the connecting rods connected to the frame. The connecting rods are detachably connected to the sliding mechanism.
[0010] By adopting the above technical solution, a connecting rod is set on the frame, which can be installed on the sliding mechanism and support the frame. A bracket is set on the frame, which is perpendicular to the connecting rod, so that the bracket can move horizontally and be inserted under the convex edge of the container, thereby supporting and lifting the container. After the bracket lifts the container, the frame moves horizontally on the sliding mechanism, achieving the effect of moving the container.
[0011] Optionally, the bracket can be detachably connected to the frame.
[0012] By adopting the above technical solution, and by making the bracket detachably connected to the frame, the user can adjust the position of the bracket on the frame, thereby enabling the bracket to support containers of different sizes.
[0013] Optionally, the frame is provided with a plug rod, which is inserted into the end of the connecting rod. The connecting rod is provided with a fixing bolt, which passes through the connecting rod and is threadedly connected to the connecting rod. The fixing bolt is used to abut against the plug rod.
[0014] By adopting the above technical solution, insert rods are set on the frame and inserted into the end of the connecting rod, so that the insert rod and the connecting rod are slidably connected. The fixing bolts can abut against the insert rod, so that the insert rod is fixed relative to the connecting rod. This makes it convenient for users to adjust the height of the bracket, so that the bracket can support containers of different shapes.
[0015] Optionally, the sliding mechanism includes a slide rail and a slider. The slide rail is fixed on the curing oven, the slider is slidably connected to the slide rail, and the connecting rod is detachably connected to the slider.
[0016] By adopting the above technical solution, a sliding mechanism is set on the curing oven, which is fixed below the oven cavity and parallel to the oven cavity opening. After the user installs the connecting rod on the slider, the frame can slide along the length of the slide rail, thereby achieving the effect of conveniently moving the workpiece.
[0017] Optionally, a support rod is fixed on the slider, and a ball is provided at the end of the support rod. A kit is fitted on the ball, and the kit is detachably connected to the connecting rod. The kit is used to slide on the ball.
[0018] By adopting the above technical solution, a ball is set on the slider, and a connecting kit is slidably connected on the ball, so that the kit can rotate in different directions on the ball. When the connecting rod is connected to the kit, the user can control the connecting rod to rotate on the ball through the kit, thereby making the bracket tilt upward and lift the container, so as to achieve the effect of moving the container out of the furnace cavity.
[0019] Optionally, the kit is provided with a connecting pin, and a through hole is provided at the end of the connecting rod away from the insert rod, and the connecting pin is used to insert into the through hole.
[0020] By adopting the above technical solution, a connecting pin is set on the kit so that the connecting pin can be inserted into the connecting rod, thereby making it easy and quick to connect the connecting rod to the kit. After the user has finished moving the container, the handling mechanism can be removed from the slider, which makes it convenient for the user to open and close the furnace door.
[0021] Optionally, a stop member is detachably connected to the slide rail, and the stop member is located on the side of the slide rail near the curing oven.
[0022] By adopting the above technical solution, by setting a stopper on the slide rail, the stopper can stop the slider and prevent the slider from sliding further. When the bracket moves horizontally and is located below the convex edge of the container, the user can lift the frame by making the slider stop on the stopper, so that the bracket tilts upward and the container is moved out of the furnace cavity.
[0023] In summary, the beneficial technical effects of this application are as follows:
[0024] 1. By setting a sliding mechanism on the curing oven, the conveying mechanism can be installed on the sliding mechanism. After the conveying mechanism is connected to the container in the curing oven, the container can be moved out of the oven cavity through the sliding mechanism. During the process of moving the container, contact with the container can be avoided, saving physical strength and improving processing efficiency.
[0025] 2. By setting a sphere on the slider and sliding the connecting kit on the sphere, the kit can rotate in different directions on the sphere. When the connecting rod is connected to the kit, the user can control the connecting rod to rotate on the sphere through the kit, thereby making the bracket tilt upward and lift the container, achieving the effect of moving the container out of the furnace cavity.
[0026] 3. By setting a stop on the slide rail, the stop can abut against the slider, preventing the slider from sliding further. When the bracket moves horizontally and is located below the convex edge of the container, the user can lift the frame by making the slider abut against the stop, causing the bracket to tilt upwards and thus moving the container out of the furnace cavity. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application.
[0028] Figure 2 This is a schematic diagram showing the connection relationship between the transport mechanism and the sliding mechanism in an embodiment of this application.
[0029] Figure 3 This is a schematic diagram of the overall structure of the handling mechanism according to an embodiment of this application.
[0030] Figure 4 This is a schematic diagram of the overall structure of the sliding mechanism according to an embodiment of this application.
[0031] Reference numerals: 1. Curing oven; 11. Oven cavity; 12. Oven door; 2. Container; 3. Handling mechanism; 31. Frame; 32. Bracket; 321. Locking block; 33. Insert rod; 34. Connecting rod; 341. Fixing bolt; 4. Sliding mechanism; 41. Slide rail; 411. Abutment part; 42. Slider; 421. Ball; 422. Support rod; 423. Kit; 424. Connecting pin. Detailed Implementation
[0032] The present application will be further described in detail below with reference to the accompanying drawings.
[0033] This application discloses a silicon carbide coating curing system, referring to... Figure 1 and Figure 2 The system includes a curing oven 1, a container 2, a conveying mechanism 3, and a sliding mechanism 4. The curing oven 1 is fixedly installed on the ground and has a furnace cavity 11 with a horizontal opening. A furnace door 12 is rotatably connected to the curing oven 1, and the furnace door 12 is used to rotate and cover the opening of the furnace cavity 11. The container 2 is placed in the furnace cavity 11 and is used to hold the workpiece to be processed. The sliding mechanism 4 is located at the bottom of the curing oven 1. The conveying mechanism 3 is detachably connected to the sliding mechanism 4. The conveying mechanism 3 is used to engage the container 2. After the conveying mechanism 3 is connected to the container 2, it moves horizontally through the sliding mechanism 4 and is moved out of the curing oven 1, achieving the effect of moving workpieces with high temperature or large weight. After the workpiece is moved, the user removes the conveying mechanism 3 from the sliding mechanism 4, thus facilitating the opening and closing of the furnace door 12.
[0034] Reference Figure 2 and Figure 3 The handling mechanism 3 includes a frame 31, a bracket 32, an insert rod 33, and a connecting rod 34. The frame 31 and the insert rod 33 are fixedly connected, the insert rod 33 and the connecting rod 34 are connected, and the connecting rod 34 is detachably connected to the sliding mechanism 4. The bracket 32 is a rod structure and is detachably connected to the frame 31. When the connecting rod 34 is connected to the sliding mechanism 4, the connecting rod 34 can remain vertical. At this time, the bracket 32 is horizontally set, and the user can slide the frame 31 horizontally to allow the bracket 32 to enter the furnace cavity 11 horizontally. The outer ring of the container 2 is provided with a protruding edge, and the bracket 32 is set below the protruding edge to support the container 2.
[0035] Reference Figure 3 There are two brackets 32, which are detachably connected to the frame 31 by bolts. By adjusting the spacing between the brackets 32, the user can make the brackets 32 fit onto containers 2 of different sizes. The insertion rod 33 passes through one end of the connecting rod 34. The connecting rod 34 is provided with a fixing bolt 341, which is threadedly connected to the connecting rod 34. The fixing bolt 341 can adjust the height of the frame 31 off the ground by abutting against the insertion rod 33.
[0036] Reference Figure 4 The sliding mechanism 4 includes a slide rail 41 and a slider 42. The slide rail 41 is fixed below the curing oven 1, and its length direction is parallel to the opening direction of the oven cavity 11. The slider 42 is slidably connected in the slide rail 41. A support rod 422 is provided on the slider 42, and a ball 421 is fixed to the end of the support rod 422. A fitting 423 is fitted on the ball 421, and a semi-circular groove is provided on the fitting 423. The fitting 423 is engaged with and rotatably connected to the ball 421. A connecting pin 424 is provided on the fitting 423, and the connecting pin 424 can slide on the ball 421 in different directions. A through hole is provided on the end of the connecting rod 34 away from the insertion rod 33, and the connecting pin 424 is used to insert into the through hole of the insertion rod 33, so that the conveying mechanism 3 can slide relative to the sliding mechanism 4 in any direction. After the bracket 32 is engaged with the protruding edge of the container 2, the user can move the frame 31 to tilt the bracket 32 and lift the container 2. At this time, the user can pull the frame 31 to move the container 2 out of the curing oven 1 in an inclined state. The user can rotate the transport mechanism 3 around the connecting rod 34 as the axis, so that the container 2 can be moved to the workstation on one side of the slide rail 41. The bracket 32 is provided with multiple locking blocks 321, which are spaced apart along the length of the bracket 32. The locking blocks 321 are used to lock onto the protruding edge of the container 2, thereby reducing the probability of the container 2 slipping on the bracket 32. A detachable abutment 411 is detachably connected to the slide rail 41. The abutment 411 is located on the side of the slide rail 41 near the curing oven 1. The abutment 411 is used to hold the slider 42 in place, keeping the slider 42 fixed. When the user rotates the frame 31 and tilts the bracket 32, the abutment 411 supports the slider 42, allowing the frame 31 to tilt and tilt the bracket 32.
[0037] The implementation principle of this application embodiment is as follows: by setting a sliding mechanism 4 below the curing oven 1, the conveying mechanism 3 is detachably connected to the slider 42. The user can control the conveying mechanism 3 to move horizontally and rotate, so that the bracket 32 can be inserted into the oven cavity 11 and tilted, so that the bracket 32 can hold the container 2 and move the container 2 out of the curing oven 1. The user can adjust the position of the container 2 by rotating the frame 31, so that the container 2 can be moved to the workstations on both sides of the slide rail 41, thereby improving the efficiency of moving the workpiece.
[0038] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A silicon carbide coating solidification system, characterized by: The utility model relates to a solidification furnace, container, carrying mechanism and sliding mechanism, solidification furnace (1) is set up with the furnace cavity (11) on, the furnace cavity (11) is set up direction is horizontal direction, solidification furnace (1) is rotatably connected with the furnace door (12), sliding mechanism (4) sets up solidification furnace (1) below, carrying mechanism (3) is detachably connected in sliding mechanism (4), container (2) is used for setting in the furnace cavity (11), carrying mechanism (3) is used for with container (2) connection and moves through sliding mechanism (4).
2. A silicon carbide coating curing system as claimed in claim 1, wherein: The carrying mechanism (3) includes a frame body (31), a plurality of brackets (32), and a connecting rod (34), the brackets (32) are fixed on the frame body (31), and the connecting rod (34) is connected to the frame body (31), and the connecting rod (34) is detachably connected with the sliding mechanism (4).
3. A silicon carbide coating curing system as claimed in claim 2, wherein: The bracket (32) is detachably connected to the frame body (31).
4. A silicon carbide coating curing system as claimed in claim 3, wherein: The frame body (31) is provided with an insertion rod (33), the insertion rod (33) is inserted into the end of the connecting rod (34), the connecting rod (34) is provided with a fixing bolt (341), the fixing bolt (341) penetrates through the connecting rod (34) and is threadedly connected with the connecting rod (34), and the fixing bolt (341) is used for abutting on the insertion rod (33).
5. The silicon carbide coating solidification system of claim 1, wherein: The sliding mechanism (4) includes a sliding rail (41) and a sliding block (42), the sliding rail (41) is fixed on the solidification furnace (1), the sliding block (42) is slidably connected to the sliding rail (41), and the connecting rod (34) is detachably connected with the sliding block (42).
6. A silicon carbide coating curing system as claimed in claim 5, wherein: The sliding block (42) is fixed with a supporting rod (422), the supporting rod (422) is provided with a ball (421) at the end, the ball (421) is sleeved with a sleeve (423), the sleeve (423) is detachably connected with the connecting rod (34), and the sleeve (423) is used for sliding on the ball (421).
7. A silicon carbide coating curing system as claimed in claim 6, wherein: The sleeve (423) is provided with a connecting pin (424), one end of the connecting rod (34) away from the insertion rod (33) is provided with a through hole, and the connecting pin (424) is used for inserting into the through hole.
8. A silicon carbide coating curing system as claimed in claim 7, wherein: The sliding rail (41) is detachably connected with an abutting piece (411), and the abutting piece (411) is arranged on one side of the sliding rail (41) close to the solidification furnace (1).