Moulding device for marmite
By introducing a driving and power mechanism into the casserole molding device and combining the hot gas introduction mechanism, the problem of uneven drying of ceramic parts is solved, and a uniform and efficient drying effect is achieved.
Patent Information
- Application Number
- CN202510886177.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-30
- Publication Date
- 2025-08-05
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing drying equipment does not dry uniformly on ceramic parts, affecting the drying quality.
A casserole molding device is adopted, which drives the rotation shaft and the power mechanism to drive the vertical reciprocating movement of the lifting block through the driving mechanism, and introduces hot air into the pipeline in combination with the introduction mechanism to achieve horizontal and vertical spraying of gas, expands the drying range and improves drying efficiency.
The uniform drying of the casserole is achieved, the drying efficiency is improved, and the quality consistency of the ceramic parts is ensured.
Smart Images

Figure CN120422342A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of drying, in particular to a casserole forming device. Background Art
[0002] Traditional clay pots are ceramic products made from quartz, feldspar, clay and other materials that are not easy to conduct heat. The production and molding process of clay pots involves a drying process. The traditional drying method is to dry them in the sun, but the traditional drying cycle is long and the drying efficiency is low. Moreover, if it rains or is cloudy, the drying cycle will be even longer.
[0003] In order to solve the above problems, there are now many drying devices on the market. The Chinese patent with announcement number CN217303367U discloses a drying equipment for ceramic blanks used in the production of ceramic parts, including a box body, the front side of the box body is movably connected to a box door by a hinge, the left side of the inner cavity of the box body is fixedly connected to a partition, the right side of the partition is fixedly connected to a limit plate, the top and bottom of the limit plate are fixedly connected to the inner wall of the box body, four through holes are opened on the left side of the limit plate, the top and bottom of the rear side of the inner cavity of the box body are fixedly connected to a windshield, the bottom of the inner cavity of the box body and the top of the partition are fixedly connected to a temperature sensor, and the right side of the inner cavity of the box body is fixedly connected to a heating device, and the heating device includes a heating box; the drying equipment can perform centralized and continuous drying treatment on ceramic parts according to demand, and has high drying efficiency.
[0004] The following problems exist during the actual use of the above-mentioned drying equipment: the ceramic parts are placed on the orifice plate, and the heated gas is allowed to enter the interior of the box from the through-hole to achieve drying of the ceramic parts; when multiple ceramic parts are placed on the orifice plate, since the direction of gas movement is from right to left, the ceramic parts on the right side of the orifice plate will block part of the gas from acting on the ceramic parts on the left side of the orifice plate, and the heat of the gas will gradually decrease from right to left, resulting in the ceramic parts on the right side of the orifice plate being dried better than the ceramic parts on the left side of the orifice plate, that is, there is a problem of uneven drying, which affects the drying quality of the ceramic parts. Summary of the Invention
[0005] The present invention aims to provide a casserole forming device to solve the problem of uneven drying of ceramic pieces by existing drying equipment.
[0006] To achieve the above-mentioned purpose, the present invention adopts the following technical scheme: a casserole forming device, comprising a box body, an opening is provided on the box body, a door panel is rotatably connected to the opening, an operating table is provided on the box body, a rotating shaft is rotatably connected to the operating table, and a placement mechanism is provided on both sides of the rotating shaft, and the placement mechanism includes a plurality of grids fixed to the rotating shaft along the axial direction of the rotating shaft; a fixed plate is provided on both sides of the rotating shaft in the box body, a lifting block is vertically slidably connected to the fixed plate, a pipe is provided on the lifting block, and a plurality of air holes are vertically provided on the side wall of the pipe, and the air holes are arranged in the direction of the rotating shaft; it also includes a driving mechanism for driving the rotating shaft to rotate, a power mechanism for simultaneously driving the two lifting blocks to move back and forth vertically, and an introduction mechanism for introducing hot air into the two pipes.
[0007] The principles and advantages of this solution are: 1. This solution introduces hot air into two pipes through an introduction mechanism, and sprays it horizontally to act on the outside of the casserole, thereby achieving drying of the outside of the casserole; compared with the existing technology, the driving mechanism drives the rotating shaft to rotate, and the rotating shaft drives multiple racks to rotate synchronously, thereby driving multiple casseroles to rotate, so that the gas ejected from the air holes can dry the casseroles at different positions, thereby expanding the drying range, enhancing the drying effect, and improving the drying efficiency; and, by drying the casseroles at different positions, multiple casseroles can be dried evenly.
[0008] 2. This solution can simultaneously drive the two lifting blocks to move back and forth vertically through the power mechanism. The lifting blocks drive the pipeline to move back and forth vertically, and then drive the multiple air holes on the pipeline to move back and forth vertically, so as to continuously change the positions of the multiple air holes in the vertical direction, so that the gas ejected from the air holes can dry the casseroles at different positions in the vertical direction, thereby expanding the drying range, enhancing the drying effect, and improving the drying efficiency; and, by drying the casseroles at different positions in the vertical direction, multiple casseroles can be dried evenly.
[0009] Furthermore, the driving mechanism includes an operating room opened in the operating table, a motor for driving the rotating shaft to rotate, the rotating shaft extends into the operating room, the motor is fixed in the operating room, and the output shaft of the motor is coaxially connected to the rotating shaft.
[0010] Through the above arrangement, the output shaft of the motor drives the rotating shaft to rotate.
[0011] Furthermore, the power mechanism includes side shafts rotatably connected to the operating table and located on both sides of the rotating shaft, and a power part that drives the two side shafts to rotate as the rotating shaft rotates. A cylindrical cam is coaxially connected to the side shaft, and a curved groove is provided on the cylindrical cam. An auxiliary block is slidably connected in the curved groove, and the auxiliary block is fixedly connected to the lifting block.
[0012] Through the above arrangement, during the rotation of the shaft, the power unit simultaneously drives the two side shafts to rotate, the side shafts drive the cylindrical cam to rotate, and the cylindrical cam drives the lifting block to vertically reciprocate through the curved groove and the auxiliary block.
[0013] Furthermore, the power unit is located in the chamber, and the side shaft extends into the chamber; the power unit includes a driving gear coaxially connected to the rotating shaft and a driven gear coaxially connected to the side shaft, and the driving gear is meshed with the driven gear.
[0014] Through the above arrangement, during the rotation of the rotating shaft, the rotating shaft drives the side shaft to rotate through the driving gear and the driven gear.
[0015] Furthermore, the introduction mechanism includes an introduction pipe fixed to the box body and a transfer box fixed to the inner wall of the box body. The introduction pipe passes through the box body, is fixed to the transfer box, and is communicated with the interior of the transfer box. Bottom pipes are provided on both sides of the bottom of the transfer box, the pipeline is located in the bottom pipe, and the pipeline is vertically slidably connected to the bottom pipe. First communicating holes are provided on both sides of the transfer box, and the first communicating holes are communicated with the bottom pipe.
[0016] Through the above arrangement, hot air with impact force is introduced into the inlet pipe, and the hot air enters the transfer box through the inlet pipe; when the transverse hole is connected with the first connecting hole, the hot air enters the pipeline through the top hole, the transverse hole, the first connecting hole, and the bottom pipe, so that the hot air is ejected horizontally from the air hole to act on the outside of the casserole, thereby achieving drying treatment of the outside of the casserole.
[0017] Furthermore, an axial hole is opened in the middle of the rotating shaft along the axial direction of the rotating shaft; a number of guide groups are provided on both sides of the rotating shaft, and the several guide groups and the several grid frames are arranged at intervals along the axial direction of the rotating shaft, and the guide groups are located above the grid frames; the guide groups include side holes opened on the side walls of the rotating shaft and guide plates fixed to the rotating shaft, the guide plates are located above the side holes, and the gas ejected from the side holes can act on the guide plates; a vertical tube is provided at the bottom of the transfer box, and the outer wall of the vertical tube is in friction contact with the axial hole; a second connecting hole is provided on both sides of the box body, and the second connecting hole is connected to the vertical tube; a movable plate is vertically slidably connected in the transfer box, and a top hole is provided on the top of the movable plate, and horizontal holes are provided on both sides of the movable plate, and the horizontal holes are connected to the top hole; the first connecting hole and the second connecting hole are located on the movement trajectory of the horizontal holes; vertical blocks are vertically slidably connected on both sides of the top of the transfer box, one end of the vertical block is fixed to the movable plate, and the other end of the vertical block is fixed to the lifting block.
[0018] With the above arrangement, during the vertical reciprocating motion of the lifting block, the lifting block also drives the vertical block to reciprocate vertically, and the vertical block drives the movable plate to reciprocate vertically, so that the transverse hole is intermittently connected to the first connecting hole and the second connecting hole.
[0019] When the transverse hole is connected to the first connecting hole, hot air enters the pipeline through the top hole, the transverse hole, the first connecting hole, and the bottom tube, so that the hot air is ejected laterally from the air hole to act on the outside of the casserole, thereby achieving the drying treatment of the outside of the casserole; when the transverse hole is connected to the second connecting hole, hot air is ejected from the side hole through the top hole, the transverse hole, the second connecting hole, the vertical tube, and the axial hole, so that the hot air acts on the guide plate, and the hot air enters the interior of the casserole under the guidance of the guide plate, thereby achieving the drying treatment of the inside of the casserole.
[0020] Furthermore, the width of the transverse hole is greater than the width of the end of the first communicating hole away from the bottom tube.
[0021] Through the above-mentioned setting, the communication time between the transverse hole and the first connecting hole is extended, thereby extending the time that the hot air is ejected horizontally from the air hole through the top hole, transverse hole, first connecting hole, bottom pipe, and pipeline to act on the outside of the casserole, thereby enhancing the drying effect and improving the drying efficiency.
[0022] Furthermore, guide tubes are provided on both sides of the rotating shaft on the operating table, and the guide tubes are U-shaped; one end of the guide tube is arranged toward the bottom of the grid, and the other end of the guide tube is located below the pipe; the pipe can move vertically in the guide tube, and a baffle is sleeved on the pipe for frictional contact with the inner wall of the guide tube, and the baffle slides with the inside of the guide tube.
[0023] Through the above arrangement, during the vertical reciprocating motion of the pipeline, when the pipeline moves downward, the pipeline drives the baffle to move downward, so that the pipeline and the baffle extend into the guide tube, so that the baffle is in frictional contact with the inner wall of the guide tube, and the hot air enters the guide tube through the air hole. The baffle can block the end of the guide tube close to the pipeline, so that the gas entering the guide tube is ejected from the end of the guide tube away from the pipeline, so that the gas acts on the bottom of the grid at the bottom of the vertical direction of the rotating shaft, and then the gas moves from bottom to top, thereby drying multiple casseroles in the vertical direction; during the upward movement of the pipeline, the pipeline drives the baffle to move upward, so that the pipeline and the baffle move out of the guide tube, so that the hot air acts horizontally on the casserole through the air hole for drying. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a structural schematic diagram of an embodiment of a casserole forming device of the present invention; Figure 2 for Figure 1 Partial cross-sectional view in the main viewing direction; Figure 3 for Figure 2 Enlarged view of point A in the middle; Figure 4 for Figure 2 Enlarged view of point B in the middle. DETAILED DESCRIPTION
[0025] The following is further described in detail through specific implementation methods: The figure marks in the drawings of the specification include: box body 10, opening 11, door panel 12, operating table 20, rotating shaft 21, grid 22, lifting block 23, pipe 24, air hole 25, operating room 30, motor 31, side shaft 32, cylindrical cam 33, auxiliary block 34, driving gear 35, driven gear 36, inlet pipe 40, transfer box 41, bottom pipe 42, first connecting hole 43, shaft hole 50, side hole 51, guide plate 52, vertical pipe 60, second connecting hole 61, movable plate 62, transverse hole 63, vertical block 64, guide pipe 70, baffle 71.
[0026] Example Basically as attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 , Attachment Figure 4 As shown: a casserole forming device includes a box body 10, an opening 11 is opened on the side wall of the box body 10, a vertical shaft is rotatably connected to the opening 11, and a door panel 12 for covering the opening 11 is sleeved on the vertical shaft.
[0027] An operating table 20 is fixedly attached to the housing 10. A rotating shaft 21 is rotatably connected to the operating table 20. A placement mechanism is provided on either side of the rotating shaft 21. The placement mechanism comprises a plurality of racks 22 connected to the rotating shaft 21 along its axial direction. Fixed plates are fixedly attached to the housing 10 on either side of the rotating shaft 21. Lifting blocks 23 are vertically slidably connected to the fixed plates. Pipes 24 are fixedly attached to the lifting blocks 23. The sidewalls of the pipes 24 are provided with a plurality of air holes 25 arranged horizontally and facing the rotating shaft 21.
[0028] It also includes a driving mechanism for driving the rotating shaft 21 to rotate. The driving mechanism includes an operating room 30 opened in the operating table 20 and a motor 31 for driving the rotating shaft 21 to rotate. The rotating shaft 21 extends into the operating room 30, and the motor 31 is fixed in the operating room 30. The output shaft of the motor 31 is coaxially connected to the rotating shaft 21.
[0029] It also includes a power mechanism for simultaneously driving the two lifting blocks 23 to move vertically back and forth, the power mechanism includes side shafts 32 rotatably connected to the operating table 20 on both sides of the rotating shaft 21 and a power unit that drives the two side shafts 32 to rotate as the rotating shaft 21 rotates, a cylindrical cam 33 is coaxially connected to the side shaft 32, a curved groove is opened on the cylindrical cam 33, an auxiliary block 34 is slidably connected in the curved groove, and the auxiliary block 34 is fixed to the lifting block 23; the power unit is located in the chamber, and the side shaft 32 extends into the chamber; the power unit includes a driving gear 35 coaxially connected to the rotating shaft 21, and a driven gear 36 coaxially connected to the side shaft 32, and the driving gear 35 is meshed with the driven gear 36.
[0030] It also includes an introduction mechanism for introducing hot air into the two pipes 24, the introduction mechanism includes an introduction pipe 40 fixed to the box body 10 and a transfer box 41 fixed to the inner wall of the box body 10, the introduction pipe 40 passes through the box body 10, the introduction pipe 40 is fixed to the transfer box 41, and the introduction pipe 40 is communicated with the interior of the transfer box 41; bottom pipes 42 are fixed to both sides of the bottom of the transfer box 41, the pipe 24 is located in the bottom pipe 42, the pipe 24 and the bottom pipe 42 are vertically slidably connected, and the outer wall of the pipe 24 is in friction contact with the inner wall of the bottom pipe 42; first connecting holes 43 are opened on both sides of the transfer box 41, and the first connecting holes 43 are communicated with the bottom pipe 42.
[0031] An axial hole 50 is opened in the middle of the rotating shaft 21 along the axial direction of the rotating shaft 21; a number of guide groups are provided on both sides of the rotating shaft 21, and the several guide groups and the several grids 22 are arranged at intervals along the axial direction of the rotating shaft 21, and the guide groups are located above the grids 22; the guide groups include side holes 51 opened on the side walls of the rotating shaft 21 and guide plates 52 fixed to the rotating shaft 21, and the guide plates 52 are located above the side holes 51. The gas ejected from the side holes 51 can act on the guide plates 52, and the guide plates 52 are arc-shaped. The guide plates 52 can guide the gas to act on the inside of the casserole.
[0032] A vertical tube 60 is fixed to the bottom of the transfer box 41, and the outer wall of the vertical tube 60 is in frictional contact with the shaft hole 50. A second connecting hole 61 is formed on both sides of the box body 10, connecting to the vertical tube 60. The upper end of the second connecting hole 61 is located below the first connecting hole 43. A movable plate 62 is vertically slidably connected to the transfer box 41, and the movable plate 62 is in frictional contact with the inner wall of the transfer box 41. A top hole is vertically formed at the top of the movable plate 62, and transverse holes 63 are formed on both sides of the movable plate 62, and the transverse holes 63 are connected to the top hole. The first and second connecting holes 43, 61 are located on the motion trajectory of the transverse holes 63, and the width of the transverse holes 63 is greater than the width of the end of the first connecting hole 43 away from the bottom tube 42. Vertical blocks 64 are vertically slidably connected to both sides of the top of the transfer box 41. One end of the vertical block 64 is fixed to the movable plate 62, and the other end is fixed to the lifting block 23.
[0033] A guide tube 70 is fixedly connected to both sides of the rotating shaft 21 on the operating table 20, and the guide tube 70 is U-shaped; one end of the guide tube 70 is arranged toward the bottom direction of the lowest grid 22 in the vertical direction of the rotating shaft 21, and the other end of the guide tube 70 is located below the pipe 24; the pipe 24 can move vertically in the guide tube 70, and a baffle 71 is sleeved on the pipe 24 for frictional contact with the inner wall of the guide tube 70, and the baffle 71 is slidably matched with the inside of the guide tube 70, that is, during the vertical movement of the baffle 71 in the guide tube 70, the baffle 71 is in frictional contact with the inner wall of the guide tube 70.
[0034] The specific implementation process is as follows: When in use, place multiple casseroles one by one on the grid 22 so that the top of the casserole is located below the guide plate 52, that is, the free end of the guide plate 52 faces the interior of the casserole; rotate the door panel 12 so that the door panel 12 covers the opening 11.
[0035] Hot air with impact force is introduced into the inlet pipe 40, and the hot air enters the transfer box 41 through the inlet pipe 40; when the transverse hole 63 is connected with the first connecting hole 43, the hot air enters the pipe 24 through the top hole, the transverse hole 63, the first connecting hole 43, and the bottom pipe 42, so that the hot air is ejected laterally from the air hole 25 to act on the outside of the casserole, thereby achieving drying treatment of the outside of the casserole; when the transverse hole 63 is connected with the second connecting hole 61, the hot air is ejected from the side hole 51 through the top hole, the transverse hole 63, the second connecting hole 61, the vertical pipe 60, and the axial hole 50, so that the hot air acts on the guide plate 52, and the hot air enters the interior of the casserole under the guidance of the guide plate 52, thereby achieving drying treatment of the inside of the casserole.
[0036] Start the motor 31, and the output shaft of the motor 31 drives the rotating shaft 21 to rotate slowly, so that the vertical tube 60 rotates relatively in the shaft hole 50, and the two are in friction contact; during the rotation of the rotating shaft 21, the rotating shaft 21 drives the multiple grids 22 to rotate synchronously, and then drives the multiple casseroles to rotate, so that the gas ejected from the air holes 25 can dry the casseroles at different positions, thereby expanding the drying range, enhancing the drying effect, and improving the drying efficiency; and, by drying the casseroles at different positions, multiple casseroles can be dried evenly.
[0037] During the rotation of the rotating shaft 21, the rotating shaft 21 drives the side shaft 32 to rotate through the driving gear 35 and the driven gear 36, and the side shaft 32 drives the cylindrical cam 33 to rotate. The cylindrical cam 33 drives the lifting block 23 to reciprocate vertically through the curved groove and the auxiliary block 34. The lifting block 23 drives the pipe 24 to reciprocate vertically in the bottom pipe 42, and the pipe 24 always moves vertically in the bottom pipe 42, that is, the pipe 24 will not separate from the inside of the bottom pipe 42; during the vertical reciprocating motion of the pipe 24, the multiple air holes 25 on the pipe 24 are driven to reciprocate vertically, thereby continuously changing the positions of the multiple air holes 25 in the vertical direction, so that the gas ejected from the air holes 25 can dry the casseroles at different positions in the vertical direction, thereby expanding the drying range, enhancing the drying effect, and improving the drying efficiency; and, by drying the casseroles at different positions in the vertical direction, multiple casseroles can be dried evenly.
[0038] During the vertical reciprocating motion of the pipe 24, when the pipe 24 moves downward, the pipe 24 drives the baffle 71 to move downward, so that the pipe 24 and the baffle 71 extend into the guide tube 70, so that the baffle 71 is in frictional contact with the inner wall of the guide tube 70, and the hot air enters the guide tube 70 through the air hole 25. The baffle 71 can block the end of the guide tube 70 close to the pipe 24, so that the gas entering the guide tube 70 is ejected from the end of the guide tube 70 away from the pipe 24, so that the gas acts on the bottom of the grid 22 at the bottom of the rotating shaft 21 in the vertical direction, and then the gas moves from bottom to top, thereby drying multiple casseroles in the vertical direction; during the upward movement of the pipe 24, the pipe 24 drives the baffle 71 to move upward, so that the pipe 24 and the baffle 71 move out of the guide tube 70, so that the hot air acts horizontally on the casserole through the air hole 25 for drying.
[0039] During the vertical reciprocating motion of the lifting block 23, the lifting block 23 will also drive the vertical block 64 to move back and forth vertically, and the vertical block 64 will drive the movable plate 62 to move back and forth vertically, so that the transverse hole 63 is intermittently connected with the first connecting hole 43 and the second connecting hole 61; and, during the period when the transverse hole 63 is connected with the first connecting hole 43 and the second connecting hole 61 respectively and the staggered switching, the diameter of the transverse hole 63 at the connection point with the first connecting hole 43 and the second connecting hole 61 respectively changes gradually, thereby changing the pressure of the gas entering the first connecting hole 43 and the second connecting hole 61, so that the range and force of the gas ejected from the air hole 25 and the side hole 51 change, so as to expand the drying range and enhance the drying intensity of the casserole.
[0040] Since the width of the transverse hole 63 is greater than the width of the end of the first connecting hole 43 away from the bottom tube 42, the communication time between the transverse hole 63 and the first connecting hole 43 is extended, thereby extending the time for the hot air to be laterally ejected from the air hole 25 through the top hole, transverse hole 63, first connecting hole 43, bottom tube 42, and pipeline 24 to act on the outside of the casserole, thereby enhancing the drying effect and improving the drying efficiency.
[0041] The above is only an embodiment of the present invention, and the common knowledge such as the specific technical solutions and / or characteristics in the solution are not described in detail here. It should be pointed out that for those skilled in the art, without departing from the technical solution of the present invention, several variations and improvements can be made, which should also be regarded as the scope of protection of the present invention, and these will not affect the effect of the implementation of the present invention and the practicality of the patent. The scope of protection required by this application shall be based on the content of its claims, and the specific implementation methods and other records in the description can be used to interpret the content of the claims.
Claims
1. A casserole forming device, comprising a box body, an opening provided on the box body, a door panel rotatably connected to the opening, characterized in that: An operating table is provided in the box, which is rotatably connected to a rotating shaft. A placement mechanism is provided on both sides of the rotating shaft, and the placement mechanism includes a number of grids fixed to the rotating shaft along the axial direction of the rotating shaft; a fixed plate is provided on both sides of the rotating shaft in the box, and a lifting block is vertically slidably connected to the fixed plate, and a pipe is provided on the lifting block, and a number of air holes are vertically provided on the side wall of the pipe, and the air holes are arranged in the direction of the rotating shaft; it also includes a driving mechanism for driving the rotating shaft to rotate, a power mechanism for simultaneously driving the two lifting blocks to move back and forth vertically, and an introduction mechanism for introducing hot air into the two pipes.
2. The casserole forming device according to claim 1, characterized in that: The driving mechanism includes an operating room set in the operating table, a motor for driving the rotating shaft to rotate, the rotating shaft extends into the operating room, the motor is fixed in the operating room, and the output shaft of the motor is coaxially connected to the rotating shaft.
3. The casserole forming device according to claim 2, characterized in that: The power mechanism includes side shafts rotatably connected to the operating table on both sides of the rotating shaft and a power part that drives the two side shafts to rotate as the rotating shaft rotates. A cylindrical cam is coaxially connected to the side shaft, and a curved groove is provided on the cylindrical cam. An auxiliary block is slidably connected in the curved groove, and the auxiliary block is fixedly connected to the lifting block.
4. The casserole forming device according to claim 3, characterized in that: The power unit is located in the chamber, and the side shaft extends into the chamber; the power unit includes a driving gear coaxially connected to the rotating shaft and a driven gear coaxially connected to the side shaft, and the driving gear is meshed with the driven gear.
5. The casserole forming device according to claim 4, characterized in that: The introduction mechanism includes an introduction pipe fixed to the box body and a transfer box fixed to the inner wall of the box body. The introduction pipe passes through the box body and is fixed to the transfer box. The introduction pipe is communicated with the interior of the transfer box. Bottom pipes are provided on both sides of the bottom of the transfer box. The pipeline is located in the bottom pipe, and the pipeline is vertically slidably connected to the bottom pipe. First communicating holes are provided on both sides of the transfer box, and the first communicating holes are communicated with the bottom pipe.
6. The casserole forming device according to claim 5, characterized in that: An axial hole is opened in the middle of the rotating shaft along the axial direction of the rotating shaft; a number of guide groups are provided on both sides of the rotating shaft, and the several guide groups and the several grid frames are arranged at intervals along the axial direction of the rotating shaft, and the guide group is located above the grid frame; the guide group includes a side hole opened on the side wall of the rotating shaft and a guide plate fixed to the rotating shaft, the guide plate is located above the side hole, and the gas ejected from the side hole can act on the guide plate; a vertical tube is provided at the bottom of the transfer box, and the outer wall of the vertical tube is in friction contact with the axial hole; a second connecting hole is provided on both sides of the box body, and the second connecting hole is connected with the vertical tube; a movable plate is vertically slidably connected in the transfer box, and a top hole is provided on the top of the movable plate, and horizontal holes are provided on both sides of the movable plate, and the horizontal holes are connected to the top hole; the first connecting hole and the second connecting hole are located on the movement trajectory of the horizontal hole; vertical blocks are vertically slidably connected on both sides of the top of the transfer box, one end of the vertical block is fixed to the movable plate, and the other end of the vertical block is fixed to the lifting block.
7. The casserole forming device according to claim 6, characterized in that: The width of the transverse hole is greater than the width of the end of the first communicating hole away from the bottom tube.
8. The casserole forming device according to claim 7, characterized in that: A U-shaped guide tube is provided on both sides of the rotating shaft on the operating table; one end of the guide tube is arranged toward the bottom of the grid, and the other end of the guide tube is located below the pipe; the pipe can move vertically inside the guide tube, and a baffle is sleeved on the pipe for frictional contact with the inner wall of the guide tube, and the baffle slides with the inside of the guide tube.
Citation Information
Patent Citations
Ceramic green body drying equipment for ceramic part production
CN217303367U