Ceramic material sintering furnace
By setting up a connecting mechanism and a moving mechanism on the ceramic material sintering furnace, and utilizing the sliding and rotation of the support rod and control rod, the problem of high-risk workpiece removal at high temperatures is solved, and safe and efficient workpiece movement is achieved.
Patent Information
- Application Number
- CN202520501122.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-20
AI Technical Summary
Existing ceramic material sintering furnaces pose a high risk and have low efficiency when removing high-temperature workpieces after processing.
A connecting mechanism and a moving mechanism are installed on the furnace body. Through the sliding and rotating connection of the support rod and the control rod, the workpiece can be moved and removed from the furnace body, avoiding direct contact between personnel and high-temperature workpieces.
It improves the safety and efficiency of the workpiece removal process, reduces the risk of workpiece burns, and facilitates the transfer and movement of high-temperature workpieces.
Smart Images

Figure CN223856136U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of sintering furnace, in particular to a ceramic material sintering furnace. BACKGROUND
[0002] The sintering furnace is a device for sintering powder into a fixed shape, and the sintered workpiece can have better physical and mechanical properties and is widely used in the field of ceramic material processing.
[0003] The existing sintering furnace includes a furnace body, the furnace body is arranged in a horizontal manner, the opening of the furnace cavity is horizontally arranged, a furnace door is rotatably connected to the furnace body, the furnace door is used to cover the opening of the furnace cavity, a heating device is arranged in the furnace body, and the heating device is used to heat the workpiece in the furnace cavity so that the workpiece is solidified and formed in the furnace cavity.
[0004] The related technical solutions in the above have the following defects: after the workpiece is processed, the workpiece needs to be taken out of the furnace body and placed into the workpiece blank for processing, the temperature in the furnace body is high, the surface temperature of the workpiece is high, and the process of taking out the workpiece by the user is dangerous and low in efficiency. CONTENT OF THE UTILITY MODEL
[0005] In order to improve the efficiency of the user in taking out the high-temperature workpiece, the present application provides a ceramic material sintering furnace.
[0006] The ceramic material sintering furnace provided by the present application adopts the following technical solutions:
[0007] The ceramic material sintering furnace includes a furnace body, a connecting mechanism and a moving mechanism, the furnace body is provided with a furnace cavity, the opening direction of the furnace cavity is horizontal, a furnace door is rotatably connected to the furnace body, the connecting mechanism is installed on the furnace body, the moving mechanism is detachably connected to the connecting mechanism, the moving mechanism includes a supporting rod and a control rod, the supporting rod is detachably connected to the connecting mechanism, the supporting rod is vertically arranged at the opening of the furnace cavity, the control rod is horizontally arranged and slidably connected to the upper end of the supporting rod, and the control rod is used to be inserted into the furnace cavity.
[0008] By adopting the above technical solutions, the connecting mechanism is arranged on the furnace body, so that the moving mechanism can be installed on one side of the opening of the furnace body, the control rod is slidably connected to the supporting rod, the user can set the control rod in a direction parallel to the length direction of the furnace body and insert the control rod into the furnace body, at this time, the user can move the workpiece in the furnace body through the control rod, and after moving the workpiece, the user can detach the moving mechanism from the connecting mechanism, so that the space in front of the opening of the furnace body is spacious, facilitating the transfer of materials, the user does not contact the workpiece when moving the workpiece, and the working efficiency can be improved.
[0009] Optionally, a sleeve is arranged on the top end of the supporting rod, the control rod is inserted into the sleeve and rotatably connected to the sleeve.
[0010] By adopting the technical scheme, the sleeve is arranged on the supporting rod, the control rod is inserted into the sleeve, the control rod can slide and rotate in the sleeve, and the end of the control rod can be moved flexibly.
[0011] Optionally, the sleeve is fixed with a shaft seat one, the shaft seat one is rotatably connected with a shaft seat two, the shaft seat two is fixed on the supporting rod, and the shaft seat one and the shaft seat two form a horizontal rotation axis.
[0012] By adopting the technical scheme, the shaft seat one is arranged on the sleeve, the sleeve is rotatably connected with the supporting rod, when the one end of the control rod is connected with the workpiece, the user can press the control rod to make the one end connected with the workpiece be raised, at this time, the control rod slides relative to the sleeve, the workpiece can be moved out of the furnace, and the supporting rod supports the control rod during the movement of the workpiece, so that the physical strength is saved and the workpiece with large weight is conveniently moved.
[0013] Optionally, the control rod comprises a sliding rod, a handle and a hook body, the sliding rod is inserted into the sleeve, the handle is fixed on one end of the sliding rod, and the hook body is fixed on the other end of the sliding rod.
[0014] By adopting the technical scheme, the handle and the hook body are arranged on the two ends of the sliding rod respectively, the user can hold the handle to control the hook body to move in the furnace, and the hook body can drive the workpiece to move in the furnace.
[0015] Optionally, the control rod comprises a sliding rod, a handle and a fork, the sliding rod is inserted into the sleeve, the handle is fixed on one end of the sliding rod, and the fork is fixed on the other end of the sliding rod.
[0016] By adopting the technical scheme, the fork is arranged on the end of the sliding rod, the fork can be inserted below the workpiece and lift the workpiece, the user can use different control rods to move the workpiece according to the shape of the workpiece, and the use is convenient.
[0017] Optionally, the connecting mechanism comprises a connecting block and a plug, the connecting block is fixed on the furnace body and located below the opening of the furnace cavity, the length direction of the connecting block is parallel to the length direction of the furnace body, the plug is detachably connected on the connecting block, and the supporting rod is installed on the plug.
[0018] By adopting the technical scheme, the plug is arranged on the connecting block, the supporting rod is fixed with the connecting block through the plug, the supporting rod can be kept relatively stationary with the furnace body when the workpiece is moved, the safety of moving the workpiece is improved, and the user can move the workpiece with large weight conveniently.
[0019] Optionally, the bracket lower bottom is provided with a rotating piece, the rotating piece is fixed on the plug, and the bracket is rotatably connected on the plug through the rotating piece.
[0020] By adopting the above technical scheme, the rotating member is arranged at the lower bottom of the supporting rod, so that the support can rotate around the supporting rod as the rotating shaft, and when the control rod is connected with the workpiece, the user can slide the control rod and make the control rod rotate around the supporting rod as the axis, so that the workpiece can be moved to other workstations, which is convenient to use.
[0021] Optionally, the insert includes a frame and a plurality of plugs, and the connecting block is provided with a plurality of insertion holes, and the frame is sleeved on the connecting block, and the plugs are used to be inserted into the insertion holes.
[0022] By adopting the above technical scheme, the frame can be sleeved on the connecting block and clamped with the connecting block by arranging a plurality of plugs on the frame, and the plugs can be inserted into the insertion holes, so that the sliding probability of the frame on the connecting block is reduced, and the supporting rod can be stably connected to the connecting block.
[0023] In summary, the beneficial technical effects of the present application are:
[0024] 1. By arranging the connecting mechanism on the furnace body, the moving mechanism can be installed on one side of the furnace body opening, the control rod can be slidably connected to the supporting rod, the user can set the control rod in a direction parallel to the length direction of the furnace body and make the control rod penetrate into the furnace body, at this time, the user can move the workpiece in the furnace body through the control rod, and after moving the workpiece, the user can dismount the moving mechanism from the connecting mechanism, so that the space in front of the furnace body opening is spacious, which facilitates the transfer of materials, and the user does not contact the workpiece when moving the workpiece, which can improve the work efficiency;
[0025] 2. By arranging the shaft seat one on the sleeve, the sleeve is rotatably connected with the supporting rod, when one end of the control rod is connected with the workpiece, the user can press the control rod, so that the end of the control rod connected with the workpiece is raised, at this time, the control rod slides relative to the sleeve, so that the workpiece can be moved out of the furnace body, and the supporting rod supports the control rod during the movement of the workpiece, which can save physical strength and facilitate the movement of heavy workpieces;
[0026] 3. By arranging the rotating member at the lower bottom of the supporting rod, the support can rotate around the supporting rod as the rotating shaft, when the control rod is connected with the workpiece, the user can slide the control rod and make the control rod rotate around the supporting rod as the axis, so that the workpiece can be moved to other workstations, which is convenient to use. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 is a whole structure schematic diagram of the embodiment of the present application.
[0028] Figure 2 is a structure schematic diagram of the moving mechanism of the embodiment of the present application. Figure One .
[0029] Figure 3 is a structure schematic diagram of the insert of the embodiment of the present application.
[0030] Figure 4 is a structure schematic of a moving mechanism of an embodiment of the present application Figure Two .
[0031] Reference signs: 1, furnace body; 11, furnace cavity; 12, furnace door; 2, connecting mechanism; 21, connecting block; 211, insertion hole; 22, insertion piece; 221, frame body; 222, insertion pin; 3, moving mechanism; 31, supporting rod; 311, rotating piece; 32, control rod; 321, sliding rod; 322, handle; 323, hook body; 324, supporting fork; 33, sleeve; 331, shaft seat one; 332, shaft seat two. DETAILED DESCRIPTION
[0032] The present application is further described in detail below with reference to the accompanying drawings.
[0033] An embodiment of the present application discloses a ceramic material sintering furnace, referring to Figure 1 and Figure 2 , comprising a furnace body 1, a connecting mechanism 2 and a moving mechanism 3, the furnace body 1 is arranged as a horizontal sintering furnace, a furnace cavity 11 is arranged in the furnace body 1, the opening direction of the furnace cavity 11 is horizontal, and a furnace door 12 is rotationally connected to the furnace body 1, and the furnace door 12 is used to cover the opening of the furnace cavity 11. The connecting mechanism 2 is arranged at the opening of the furnace body 1, the moving mechanism 3 is detachably connected with the connecting mechanism 2, the moving mechanism 3 comprises a supporting rod 31 and a control rod 32, the supporting rod 31 is vertically arranged on the connecting mechanism 2, and the control rod 32 is horizontally arranged and slidably connected with the supporting rod 31. A user can insert the control rod 32 into the furnace cavity 11 along the horizontal direction by arranging the control rod 32 on the connecting mechanism 2 and parallel to the length direction of the furnace body 1, so as to facilitate the user to move the workpiece in the furnace body 1 by the control rod 32, and achieve the effect of adjusting the position of the workpiece and taking out the workpiece. During the moving of the workpiece, the user does not need to enter the furnace cavity 11, thereby reducing the probability of scalding the user by the workpiece.
[0034] Referring to Figure 3 , the connecting mechanism 2 comprises a connecting block 21 and an insertion piece 22, the connecting block 21 is fixed on the end face of the furnace body 1 and located below the opening of the furnace cavity 11, the insertion piece 22 is detachably connected with the connecting block 21, and the supporting rod 31 is vertically fixed on the insertion piece 22. A user can detach the insertion piece 22 from the connecting block 21 after the moving of the workpiece is completed, thereby achieving the effect of saving space and facilitating the user to open and close the furnace door 12.
[0035] Referring to Figure 1 and Figure 3The connecting block 21 is cuboid, the length direction of the connecting block 21 is parallel to the opening direction of the furnace cavity 11, a plurality of insertion holes 211 are arranged on the upper top surface of the connecting block 21, the plug-in part 22 comprises a frame body 221 and a plurality of insertion pins 222, the frame body 221 is used for covering the connecting block 21, and the plurality of insertion pins 222 are fixed on the frame body 221 and used for being inserted into the insertion holes 211. When the user covers the plug-in part 22 on the connecting block 21, the insertion pins 222 are inserted into the insertion holes 211, so that the sliding and rotating probability of the plug-in part 22 on the connecting block 21 is reduced.
[0036] With reference to Figure 1 The lower end of the supporting rod 31 is connected with the plug-in part 22, and the upper end of the supporting rod 31 is provided with a sleeve 33, the sleeve 33 is horizontally arranged, and the control rod 32 is inserted into the sleeve 33. The control rod 32 can slide and rotate in the sleeve 33, and the flexibility of the movement of the control rod 32 is further improved.
[0037] With reference to Figure 2 The lower bottom end of the supporting rod 31 is provided with a rotating part 311, the rotating part 311 is installed on the plug-in part 22, and the supporting rod 31 is rotatably connected to the plug-in part 22 through the rotating part 311. The supporting rod 31 can rotate along the length direction of the supporting rod 31 as an axis, when the end of the control rod 32 is connected with the workpiece, the user can pull the workpiece out of the furnace body 1 through the control rod 32, the supporting rod 31 can be rotated on the plug-in part 22 by rotating the control rod 32, and then the workpiece can be conveniently moved to other workstations.
[0038] With reference to Figure 3 The control rod 32 comprises a sliding rod 321, a handle 322 and a hook body 323, the sliding rod 321 is inserted into the sleeve 33 and connected with the sleeve 33, the handle 322 is fixed on one end of the sliding rod 321, and the hook body 323 is fixed on the other end of the sliding rod 321. The user holds the handle 322, the control rod 32 can slide and rotate in the sleeve 33, and the workpiece in the furnace body 1 can be moved by controlling the hook body 323.
[0039] With reference to Figure 4 In other embodiments, the end of the sliding rod 321 is provided with a supporting fork 324, the supporting fork 324 is used for supporting and moving the workpiece. The user can install different control rods 32 on the connecting block 21, and can move the workpiece for multiple purposes.
[0040] With reference to Figure 3 The sleeve 33 is fixedly provided with an axis seat one 331, the axis seat one 331 is rotatably connected with an axis seat two 332, and the axis seat two 332 is fixed on the upper end of the supporting rod 31. The axis seat one 331 and the axis seat two 332 form a rotation shaft axis in the horizontal direction, the user can rotate the control rod 32 through the axis seat one 331 and the axis seat two 332, the end of the sliding rod 321 is raised or lowered, and the user can conveniently move the workpiece.
[0041] The implementation principle of this application embodiment is as follows: By setting a connecting block 21 on the furnace body 1, and a detachable connecting plug 22 on the connecting block 21, the moving mechanism 3 can be set at the opening of the furnace body 1 through the plug 22. The user can move the workpiece inside the furnace body 1 by moving the control rod 32. During the movement of the workpiece, the support rod 31 provides support for the control rod 32, thereby facilitating the user to move the workpiece with a large weight and saving physical strength. During the movement of the workpiece, the user is away from the furnace body 1 and the workpiece, which makes it convenient for the user to move the high-temperature workpiece.
[0042] 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 ceramic material sintering furnace, characterized by: The utility model relates to a portable stove, including stove body (1), connecting mechanism (2) and moving mechanism (3), stove body (1) is set up stove cavity (11) on, stove cavity (11) opening direction is horizontal direction, stove body (1) is rotatably connected with stove door (12), connecting mechanism (2) is installed on stove body (1), moving mechanism (3) is detachably connected with connecting mechanism (2), moving mechanism (3) includes support rod (31) and control rod (32), support rod (31) is detachably connected with connecting mechanism (2), and support rod (31) is vertically arranged at stove cavity (11) opening, and control rod (32) is horizontally arranged and is slidably connected on support rod (31) upper end, and control rod (32) is used for inserting into stove cavity (11).
2. The ceramic material sintering furnace according to claim 1, characterized in that: The upper end of the support rod (31) is provided with a sleeve (33), and the control rod (32) is inserted into the sleeve (33) and rotatably connected with the sleeve (33).
3. The sintering furnace for ceramic materials according to claim 2, characterized in that: The sleeve (33) is fixed with a shaft seat one (331), the shaft seat two (332) is rotatably connected on the shaft seat one (331), the shaft seat two (332) is fixed on the support rod (31), and the shaft seat one (331) and the shaft seat two (332) form a horizontal rotation axis.
4. The ceramic material sintering furnace according to claim 3, characterized in that: The control rod (32) includes a sliding rod (321), a handle (322), and a hook body (323). The sliding rod (321) is inserted into the sleeve (33). The handle (322) is fixed to one end of the sliding rod (321). The hook body (323) is fixed to the other end of the sliding rod (321).
5. The sintering furnace for ceramic materials according to claim 3, characterized in that: The control rod (32) includes a sliding rod (321), a handle (322), and a fork (324). The sliding rod (321) is inserted into the sleeve (33). The handle (322) is fixed to one end of the sliding rod (321). The fork (324) is fixed to the other end of the sliding rod (321).
6. The ceramic material sintering furnace according to claim 1, characterized in that: The connecting mechanism (2) includes a connecting block (21) and an insert (22). The connecting block (21) is fixed to the stove body (1) and located below the opening of the stove cavity (11). The length direction of the connecting block (21) is parallel to the length direction of the stove body (1). The insert (22) is detachably connected to the connecting block (21). The support rod (31) is installed on the insert (22).
7. The sintering furnace for ceramic materials according to claim 6, characterized in that: The lower bottom of the support rod (31) is provided with a rotating part (311), and the rotating part (311) is fixed to the insert (22). The support rod (31) is rotatably connected to the insert (22) through the rotating part (311).
8. The sintering furnace for ceramic materials according to claim 7, characterized in that: The insert (22) includes a frame (221) and a plurality of plugs (222). A plurality of plug holes (211) are formed in the connecting block (21). The frame (221) is sleeved on the connecting block (21). The plugs (222) are used to insert into the plug holes (211).