Ceramic ball granulator with angle-adjustable pot
By adjusting the pot angle and airflow control, the problem of poor particle separation in the ceramic ball granulator was solved, enabling continuous molding and efficient production of ceramic balls, and improving the quality of finished products and production efficiency.
Patent Information
- Application Number
- CN202511445971.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-11
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2045-10-11
AI Technical Summary
Existing ceramic ball granulators lack an efficient particle separation mechanism during the molding process. Qualified ceramic balls tend to stay in the granulator for too long, resulting in excessive diameter. Small particles are difficult to sieve back, and powder tends to stick to the particle surface, leading to low finished product qualification rate and limited production efficiency.
A ceramic ball granulator with an adjustable pot angle was designed. The rotation of the round pot drives the secondary wheel and impeller to rotate. Qualified particles are extracted by airflow, and the particles are extracted and screened in a timely manner by the reciprocating swing and vibration of the lifting frame. Combined with airflow blowing, powder sticking is prevented, which can meet the needs of different molding stages.
This technology enables continuous molding of ceramic spheres, avoiding the problem of excessive diameter caused by over-molding, improving finished product quality and production efficiency, and reducing equipment costs and energy consumption.
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Figure CN120919900B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the field of construction equipment, in particular to a ceramic ball granulator facilitating adjustment of the angle of a pot body. BACKGROUND
[0002] As core equipment for preparing ceramic ball particles in the fields of building materials and chemical engineering, the working efficiency and product quality of the ceramic ball granulator directly depend on the regulation of the inclination angle of a round pot, and the inclination angle of the round pot determines the material residence time, and further influences the particle forming diameter. However, the existing ceramic ball granulator lacks an efficient qualified particle separation mechanism in the forming process, and qualified ceramic balls are prone to excessive residence in the round pot and exceed the diameter standard, and small particles that do not meet the standard are difficult to quickly screen back into the pot for continuous forming, resulting in waste of raw materials. In addition, the existing equipment also has the problem that the particle surface is prone to powder adhesion, and a purification device needs to be additionally added, which not only increases the equipment cost and energy consumption, but also easily interrupts the continuous process of granulation. These problems jointly cause the low qualified rate of the product of the existing granulator and the limited production efficiency, and it is difficult to meet the needs of industrialized production for the stability of particle quality and the continuity of the process. Therefore, the application provides a ceramic ball granulator facilitating adjustment of the angle of a pot body to solve the above-mentioned problems. SUMMARY
[0003] The application aims to solve the problems in the background art and provides a ceramic ball granulator facilitating adjustment of the angle of a pot body.
[0004] To achieve the above-mentioned purposes, the application adopts the technical scheme of a ceramic ball granulator facilitating adjustment of the angle of a pot body, which comprises a rack, a rotary table is arranged on the top of the rack, a fixing frame is arranged on the top end of the rotary table close to one side of a round pot, a main frame is arranged on the top end of the fixing frame, a scraper is arranged on the end of the main frame away from the fixing frame, a fixed shaft is arranged on the front lower part of the scraper, a rotating sleeve and a rotating sleeve are rotatably connected to the front and rear parts of the outer periphery of the fixed shaft, respectively, an impeller two is arranged on the rear part of the outer periphery of the rotating sleeve, a rotating bin two is arranged on the outer periphery of the impeller two, a guide pipe is arranged on the top of the rotating bin two, the rotating bin two is rotatably connected to the rotating sleeve, a driving gear is arranged on the front part of the rotating bin two, a driven gear is meshingly connected to the bottom of the driving gear, the driven gear is rotatably connected to the front lower part of the rotating bin two, a limiting rod is arranged on the front end of the driven gear, a top frame is fixedly connected to the bottom of the rotating sleeve, a limiting groove is arranged on the rear middle part of the top frame, the limiting rod is slidably connected to the inner side of the limiting groove, a sliding rod is fixedly connected to the front and rear sides of the bottom of the top frame, a connecting seat is slidably connected to the bottom of the sliding rod, a lifting frame is arranged on the bottom of the connecting seat, and the lifting frame is arranged on the inner lower part of the round pot.
[0005] Preferably, a connecting frame is arranged on the front bottom of the fixed shaft, a guide plate is arranged on the bottom of the connecting frame, and guide grooves are arranged on the front and rear sides of the guide plate.
[0006] Preferably, the guide groove is provided with a clamping column on the inner side wall, and the guide column is slidably connected to the inner side of the guide groove, and the connecting seat is fixedly connected to the guide column, and the connecting seat is fixedly connected with evenly distributed spray pipes on one side.
[0007] Preferably, the connecting seat is fixedly connected with a hose on the top front side, and the end of the hose away from the connecting seat is fixedly connected with a fixed shaft, and the fixed shaft is fixedly connected with side pipes on both sides of the middle part, and the end of the side pipe away from the fixed shaft is fixedly connected with the second rotating bin.
[0008] Preferably, the motor is installed on one side of the top end of the rotating table, the motor is provided with a speed reducer on one side, the motor driving end is connected with the input end of the speed reducer through a transmission assembly, the output end of the speed reducer is installed with a connecting disc, and the connecting disc is installed with a round pot at the end.
[0009] Preferably, the speed reducer is installed in the middle of the top end of the rotating table, the rotating table is installed with a rotating rod in the middle of the side close to the round pot, the end of the rotating rod is rotatably connected with a bearing seat, and the bearing seat is installed on the top of the rack.
[0010] Preferably, the hydraulic rod is rotatably connected to one side of the bottom of the rotating table, and the bottom of the hydraulic rod is rotatably connected to one side of the bottom of the rack.
[0011] Preferably, the impeller one is connected to the outer periphery of the top of the main frame, the impeller one is installed with a secondary wheel at the rear end, the secondary wheel is in contact with the outer periphery of the round pot at the bottom, and the secondary wheel is provided with evenly distributed openings in the middle.
[0012] Preferably, the impeller one is provided with a wheel bin one on the outer periphery, the wheel bin one is fixedly connected with a guide pipe on both sides of the front end, the guide pipe is installed with a valve body in the middle, and the guide pipe is installed on both sides of the main frame through a fixing piece.
[0013] Preferably, the main frame is installed with a material extraction pipe on the rear upper side, the material extraction pipe is installed with a suction head at the end, the suction head is arranged on one side of the main frame, and the end of the material extraction pipe away from the suction head is used for connecting a material extraction pump.
[0014] Compared with the prior art, the present application has the following advantages:
[0015] In the granulating and forming process, the rotation of the round pot drives the rotation of the auxiliary wheel in contact with the top, the auxiliary wheel drives the impeller to extract the air flow, the air flow drives the impeller II to rotate through the conduit, and then the rotating sleeve drives the driven gear meshing with the bottom to rotate, the limiting rod in front of the driven gear can drive the top frame and the bottom frame to reciprocating swing, so that the frame can lift the ceramic ball particles in the forming process against the rotation direction of the round pot and close to the suction head on one side, the ceramic ball particles in the frame can be extracted through the work of the material extraction pump, the continuous lifting of the forming particles can realize the timely extraction of the qualified ceramic ball particles in the forming process, avoid the ceramic ball in the round pot for too long to cause the diameter of the formed ceramic ball to be too large, realize the direct material taking in the forming process, realize the continuous forming work without stopping, and improve the product quality.
[0016] In the process of moving the connecting seat and the frame along the guide groove, the clamping column in the guide groove can continuously collide with the guide column, so that the connecting seat and the frame can continuously vibrate, so that the ceramic ball particles with small diameter just formed can be screened out and returned to the round pot for continuous forming work, so that the forming work can be stably carried out. In actual use, the flow capacity of the valve bodies on the two conduits is adjusted to adjust the amount of air flow entering from both sides, so that the speed of impeller II can be adjusted without changing the rotation speed of the round pot, so that the swing speed of the connecting seat can be changed. In the initial stage of granulation, slow or stagnation can be realized, and in the later stage of forming, the speed of the frame swing and lifting can be increased. It is suitable for different forming stages of the granulator and is convenient for actual use.
[0017] In the actual forming process, the air flow entering the rotating bin II is discharged through the side pipe into the fixed shaft, and the air flow is further discharged through the hose, so that it is discharged through the spray pipe. The air flow discharged can blow the ceramic ball particles and powder in the inside of the frame, so that too much powder adhered to the particles is not taken away, and the air flow continuously blown can blow the accumulated ceramic particles lifted in the frame, so that the smaller particles can be blown off, avoiding incomplete forming, and being convenient for actual use. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a front view of the three-dimensional structure of the ceramic ball granulator convenient for adjusting the angle of the pot body;
[0019] Figure 2 It is a side view of the three-dimensional structure of the ceramic ball granulator convenient for adjusting the angle of the pot body;
[0020] Figure 3 It is a side view of the three-dimensional structure of the ceramic ball granulator convenient for adjusting the angle of the pot body;
[0021] Figure 4 Figure 1 is a schematic view of the inner part of the round pot of the ceramic ball granulator according to the present application;
[0022] Figure 5 Figure 2 is a schematic view of the main frame and the material extraction pipe of the ceramic ball granulator according to the present application;
[0023] Figure 6 Figure 3 is another schematic view of the main frame and the material extraction pipe of the ceramic ball granulator according to the present application;
[0024] Figure 7 Figure 4 is a schematic view of the spray pipe of the ceramic ball granulator according to the present application;
[0025] Figure 8 Figure 5 is a schematic view of the guide plate of the ceramic ball granulator according to the present application;
[0026] Figure 9 Figure 6 is a schematic view of the connecting seat of the ceramic ball granulator according to the present application.
[0027] 101, frame; 102, hydraulic rod; 103, round pot; 104, main frame; 105, wheel bin one; 106, auxiliary wheel; 107, material extraction pipe; 108, suction head; 109, motor; 110, transmission assembly; 111, speed reducer; 112, fixed frame; 113, connecting disc; 114, opening; 115, guide pipe; 116, rotating rod; 117, rotating table; 118, rotating bin two; 119, scraper; 120, driving gear; 121, rotating sleeve; 122, fixed shaft; 123, lifting frame; 124, spray pipe; 125, impeller one; 126, side pipe; 127, hose; 128, connecting seat; 129, guide groove; 130, guide plate; 131, sliding rod; 132, top frame; 133, driven gear; 134, limiting rod; 135, limiting groove; 136, clamping column; 137, guide column; 138, connecting frame; 139, impeller two; 140, rotating sleeve. DETAILED DESCRIPTION
[0028] The following description is provided to enable any person skilled in the art to practice the present application. The preferred embodiments disclosed herein are only examples of the present application and various modifications can be made by those skilled in the art.
[0029] As Figures 1-9The ceramic ball granulator shown is convenient to adjust the angle of the pot body, which comprises a rack 101, the top of which is provided with a rotary table 117, the top end of which is installed on one side of a motor 109, the side of which is provided with a speed reducer 111, the driving end of which is connected with the input end of the speed reducer 111 through a transmission assembly 110, the output end of which is installed with a connecting disc 113, the end of which is installed with a round pot 103, the top end of the rotary table 117 is installed on one side close to the round pot 103, the top end of the fixed frame 112 is installed with a main frame 104, the end of which is installed with a scraper 119, the speed reducer 111 is installed in the middle of the top end of the rotary table 117, the middle of one side of the rotary table 117 close to the round pot 103 is installed with a rotating rod 116, the end of which is rotatably connected with a bearing seat, the bearing seat is installed on the top of the rack 101, the bottom end of the rotary table 117 is rotatably connected with a hydraulic rod 102, the bottom of which is rotatably connected with the bottom of the rack 101, the outer periphery of the top of the wheel bin 105 is connected with the impeller 125, the rear end of which is installed with a sub-wheel 106, the bottom of which is in contact with the outer periphery of the round pot 103, the middle of which is provided with evenly distributed openings 114, the outer periphery of the impeller 125 is sleeved with the wheel bin 105, the front end of which is fixedly connected with the duct 115 on both sides, the middle of which is installed with a valve body, the duct 115 is installed on both sides of the main frame 104 through the fixed part;
[0030] Further, in specific implementation, people can realize the manufacture of ceramic ball particles through the granulator, in work, people can first introduce ceramic powder into the inside of the round pot 103, then spray the binder to the powder through the spray frame set on one side, then start the motor 109, which can drive the speed reducer 111 to work through the transmission assembly 110, which can drive the round pot 103 to rotate through the connecting disc 113, which can drive the inside wet powder to rotate through the round pot 103, in this process, the powder will move under the action of centrifugal force, and the gravity will make it roll down along the pot wall, repeatedly collide and rub to form a ball core, so as to form ceramic ball particles, the inside of the round pot 103 can be cleaned continuously through the scraper 119 installed in the inside of the round pot 103 during the rotation of the round pot 103, to prevent the material from sticking to the middle of the pot wall, and to promote the uniform forming of the particles, during the forming and granulating process, the end of the rotary table 117 can be deflected around the rotating rod 116 through the extension and retraction of the hydraulic rod 102, so that the equipment on the top of the rotary table 117 and the round pot 103 on one side can be deflected synchronously, to adjust the inclination angle of the round pot 103, the greater the inclination angle of the round pot 103, the greater the forming diameter, the smaller the inclination angle of the round pot 103, the smaller the forming diameter, the size of the particles after forming can be adjusted by adjusting the inclination angle.
[0031] The fixed shaft 122 is arranged on the lower part of the front side of the scraper 119, the rotating sleeve 121 and the rotating sleeve 140 are rotatably connected to the outer circumferential front and rear parts of the fixed shaft 122 respectively, the impeller two 139 is arranged on the outer circumferential rear part of the rotating sleeve 140, the rotating sleeve 140 is rotatably connected to the rotating sleeve 140, the driving gear 120 is arranged on the outer circumferential front part of the rotating sleeve 140, the driving gear 120 is arranged on the front part of the rotating sleeve 140, the driving gear 120 is rotatably connected to the driving gear 133, the driving gear 133 is rotatably connected to the front side of the rotating sleeve 118, the limiting rod 134 is arranged on one side of the middle part of the front end of the driving gear 133, the top frame 132 is fixedly connected to the bottom of the rotating sleeve 121, the limiting groove 135 is arranged on the rear side of the top frame 132, the limiting rod 134 is slidably connected to the inner side of the limiting groove 135, the sliding rod 131 is fixedly connected to the bottom of the top frame 132, the connecting seat 128 is slidably connected to the bottom of the sliding rod 131, and the scraper 123 is arranged on the bottom of the connecting seat 128.
[0032] Further, in the granulation forming process, the rotation of the round pot 103 drives the auxiliary wheel 106 in contact with the top to rotate, the auxiliary wheel 106 drives the impeller one 125 to rotate synchronously, the impeller one 125 rotates to draw air flow through the opening 114, the air flow is guided out through the guide pipe 115, and the guided air flow enters the inside of the rotating sleeve two 118 to drive the inside impeller two 139 to rotate. The driving gear 120 is driven to rotate by the rotating sleeve 140, and the driving gear 133 is driven to rotate by the driving gear 120. In the rotating process of the driving gear 133, the limiting rod 134 on the front part of the driving gear 133 can cooperate with the limiting groove 135 on the top frame 132, so as to drive the top frame 132 and the scraper 123 on the bottom to reciprocatingly swing. In this process, the guide groove 129 on the guide plate 130 can cooperate with the guide column 137 to realize the guidance and limiting of the moving track of the bottom connecting seat 128 and the scraper 123 in the swing, so that the scraper 123 can lift the ceramic ball particles in the forming process against the rotation direction of the round pot 103, and the ceramic ball particles in the scraper 123 can be drawn by the work of the suction pump. The continuous lifting of the formed particles can realize the timely drawing of the qualified ceramic ball particles in the forming process, avoid the ceramic ball in the round pot 103 for too long to cause the diameter of the formed ceramic ball to be too large, and be beneficial to improving the quality of the finished product.
[0033] The connecting frame 138 is installed at the bottom of the front side of the fixed shaft 122, the guide plate 130 is installed at the bottom of the connecting frame 138, the guide grooves 129 are formed at the front and rear sides of the guide plate 130, the clamping columns 136 are formed in the inner side walls of the guide grooves 129, the guide columns 137 are slidably connected to the inner sides of the guide grooves 129, the guide columns 137 are fixedly connected with the connecting seat 128, the evenly distributed spray pipes 124 are fixedly connected to one side of the connecting seat 128, the hose 127 is fixedly connected to the top front side of the connecting seat 128, one end of the hose 127 away from the connecting seat 128 is fixedly connected with the fixed shaft 122, the side pipes 126 are fixedly connected to both sides of the middle part of the fixed shaft 122, one end of the side pipes 126 away from the fixed shaft 122 is fixedly connected with the second rotating bin 118, the material suction pipe 107 is installed at the rear upper side of the main frame 104, the suction head 108 is installed at the end of the material suction pipe 107, the suction head 108 is arranged at one side of the copying frame 123, and one end of the material suction pipe 107 away from the suction head 108 is used for connecting a material suction pump;
[0034] Further, in the process of moving the connecting seat 128 and the copying frame 123 along the guide grooves 129, the clamping columns 136 in the guide grooves 129 can continuously collide with the guide columns 137, so that the connecting seat 128 and the copying frame 123 can continuously vibrate, so that the ceramic ball particles with a small diameter just formed can be screened out and returned to the circular pot 103 for continue forming work, so that the forming work can be stably carried out. Further, in the actual forming process, the airflow entering the second rotating bin 118 can be discharged through the side pipes 126 into the fixed shaft 122, and the airflow can be further discharged through the hose 127, so that it is discharged through the spray pipes 124. The airflow discharged can blow the ceramic ball particles and powder in the copying frame 123, so that too much powder adhered to the particles is prevented from being taken away, and the ceramic particles accumulated in the copying frame 123 can be blown by the continuous airflow, so that the smaller particles can be blown off, the forming is not in place, and the actual use is facilitated.
[0035] Working principle:
[0036] In actual use, people can realize the manufacture of ceramic ball particles through the granulator. In work, people can first introduce ceramic powder into the round pot 103, then spray the powder with adhesive through the spray frame set on one side, then start the motor 109, drive the speed reducer 111 through the transmission assembly 110, drive the round pot 103 to rotate through the connecting disc 113, drive the wet powder inside to rotate through the round pot 103, in this process, the powder moves under the action of centrifugal force, and gravity makes it roll along the wall and collide and rub repeatedly to form a ball core, so as to form a ceramic ball particle. In the process of rotating the round pot 103, the scraper 119 installed inside the round pot 103 can realize continuous cleaning of the inside of the round pot 103, prevent the material from sticking to the middle of the wall, and promote uniform particle formation. In the process of forming and granulating, the extension of the hydraulic rod 102 can drive the end of the turntable 117 to deflect around the rotating rod 116, so that the equipment on the top of the turntable 117 and the round pot 103 on one side can deflect synchronously, realizing the adjustment of the inclination angle of the round pot 103. The greater the inclination angle of the round pot 103, the greater the forming diameter. The smaller the inclination angle of the round pot 103, the smaller the forming diameter. By adjusting the inclination angle, the size of the formed particles can be adjusted. In the process of granulation and molding, the rotation of the round pot 103 will drive the secondary wheel 106 in contact with the top to rotate, which will drive the impeller one 125 to rotate synchronously. When the impeller one 125 rotates, it will draw air through the opening 114. The air will be guided out through the conduit 115. The guided air will enter the inside of the rotating bin two 118, thereby driving the inside impeller two 139 to rotate. The impeller two 139 will drive the driving gear 120 to rotate through the rotating sleeve 140. The driving gear 120 will drive the driven gear 133 meshed at the bottom to rotate. In the process of rotating the driven gear 133, the limiting rod 134 in front of the driven gear 133 can cooperate with the limiting groove 135 on the top frame 132, thereby driving the top frame 132 and the bottom frame 123 to reciprocate. In this process, the guide groove 129 on the guide plate 130 can cooperate with the guide column 137 to guide and limit the movement track of the bottom connecting seat 128 and the frame 123 in the swing, so that the frame 123 can lift the forming ceramic ball particles against the rotation direction of the round pot 103 and lift them close to the suction head 108 on one side. The ceramic ball particles in the frame 123 can be extracted through the work of the material pump. By continuously lifting the formed particles, the timely extraction of the qualified ceramic ball particles in the molding process can be realized, which avoids the diameter of the ceramic ball being too large after molding due to being in the round pot 103 for too long, and is helpful to improve the quality of finished products. At the same time, in the process of moving the connecting seat 128 and the frame 123 along the guide groove 129, the clamping column 136 inside the guide groove 129 can continuously collide with the guide column 137,Thus, the connecting seat 128 and the arch 123 can continuously vibrate, so that the ceramic particles with small forming diameters can be screened out and returned to the pot 103 for further forming, so that the forming work can be stably carried out. Further, in the actual forming process, the airflow entering the second rotating bin 118 can be discharged through the side pipe 126, enter the fixed shaft 122, and be further discharged through the hose 127, so that the airflow can be discharged through the spray pipe 124. The discharged airflow can blow the ceramic particles and powder in the arch 123, so that too much powder adhered to the particles can be prevented from being taken away. At the same time, the airflow can blow the accumulated ceramic particles in the arch 123, so that the smaller particles can be blown off, the forming can be completed, and the actual use is facilitated.
[0037] The above shows and describes the basic principles, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, and the above-mentioned embodiments and descriptions in the specification are only the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A ceramic ball granulator facilitating adjustment of the angle of the pot body, comprising a rack (101), characterized in that: The rack (101) top is provided with a rotary table (117), the rotary table (117) top end is close to the side of the round pot (103) and is installed with a fixed frame (112), the fixed frame (112) top end middle part is installed with a main frame (104), the main frame (104) is installed with a scraper (119) away from the fixed frame (112) one end, the scraper (119) front side lower part is installed with a fixed shaft (122), the fixed shaft (122) outer periphery front and back parts are rotatably connected with a rotating sleeve (121) and a rotating sleeve (140) respectively, the rotating sleeve (140) outer periphery rear part is installed with an impeller two (139), the impeller two (139) outer periphery is provided with a rotating bin two (118), the rotating bin two (118) top is installed with a guide pipe (115), the rotating bin two (118) is rotatably connected with the rotating sleeve (140), the rotating sleeve (140) outer periphery front part is installed with a driving gear (120), the driving gear (120) is arranged in the rotating bin two (118) front part, the driving gear (120) bottom is engagedly connected with a driven gear (133), the driven gear (133) is rotatably connected in the rotating bin two (118) front side lower part, the driven gear (133) front end middle part one side is installed with a limiting rod (134), the rotating sleeve (121) bottom is fixedly connected with a top frame (132), the top frame (132) rear side middle part is provided with a limiting slot (135), the limiting rod (134) is slidably connected in the limiting slot (135) inner side, the top frame (132) bottom front and back sides are fixedly connected with a sliding rod (131), the sliding rod (131) bottom is slidably connected with a connecting seat (128), the connecting seat (128) bottom is installed with a scoop frame (123), the scoop frame (123) is arranged in the round pot (103) inner side lower part.
2. The ceramic ball granulator with the angle-adjustable kettle according to claim 1, characterized in that: The fixed shaft (122) front side bottom is installed with a connecting frame (138), the connecting frame (138) bottom is installed with a guide plate (130), the guide plate (130) front and back sides are provided with a guide slot (129).
3. The ceramic ball granulator with the angle-adjustable kettle according to claim 2, characterized in that: The guide slot (129) inner side wall is provided with a clamping column (136), the guide slot (129) inner side is slidably connected with a guide column (137), the guide column (137) is fixedly connected with the connecting seat (128), the connecting seat (128) one side is fixedly connected with evenly distributed spray pipes (124).
4. The ceramic ball granulator with the angle-adjustable kettle according to claim 3, characterized in that: The connecting seat (128) top front side is fixedly connected with a hose (127), the hose (127) one end away from the connecting seat (128) is fixedly connected with the fixed shaft (122), the fixed shaft (122) middle part both sides are fixedly connected with side pipes (126), the side pipes (126) one end away from the fixed shaft (122) are fixedly connected with the rotating bin two (118).
5. The ceramic ball granulator with the angle-adjustable kettle according to claim 1, characterized in that: The top end side of the rotating platform (117) is provided with a motor (109), one side of the motor (109) is provided with a speed reducer (111), the driving end of the motor (109) is connected with the input end of the speed reducer (111) through a transmission assembly (110), and the output end of the speed reducer (111) is provided with a connecting disc (113), and the end of the connecting disc (113) is provided with a round pot (103).
6. The ceramic ball granulator with the angle-adjustable kettle according to claim 5, characterized in that: The speed reducer (111) is installed in the middle of the top end of the rotating platform (117), the rotating platform (117) is provided with a rotating rod (116) in the middle of one side close to the round pot (103), the rotating rod (116) is rotatably connected with a bearing seat at the end, and the bearing seat is installed on the top of the rack (101).
7. The ceramic ball granulator with the angle-adjustable kettle according to claim 6, characterized in that: The bottom end side of the rotating platform (117) is rotatably connected with a hydraulic rod (102), and the bottom of the hydraulic rod (102) is rotatably connected on one side of the bottom of the rack (101).
8. The ceramic ball granulator with the angle-adjustable kettle according to claim 1, characterized in that: The outer periphery of the top of the main frame (104) is connected with a impeller one (125), the rear end of the impeller one (125) is provided with a secondary wheel (106), the bottom of the secondary wheel (106) is in contact with the outer periphery of the round pot (103), and the middle of the secondary wheel (106) is provided with uniformly distributed openings (114).
9. The ceramic ball granulator with the angle-adjustable kettle according to claim 8, characterized in that: The outer periphery of the impeller one (125) is provided with a wheel bin one (105), the front end of the wheel bin one (105) is fixedly connected with a conduit (115) on both sides, the middle of the conduit (115) is provided with a valve body, and the conduit (115) is installed on both sides of the main frame (104) through a fixing piece.
10. The ceramic ball granulator with the angle-adjustable kettle according to claim 9, characterized in that: The rear part of the main frame (104) is provided with a material suction pipe (107), the end of the material suction pipe (107) is provided with a suction head (108), the suction head (108) is arranged on one side of the rack (123), and the end of the material suction pipe (107) away from the suction head (108) is used for connecting a material suction pump.
Citation Information
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