Quartz rocking crusher
By introducing sealing, oscillation, screening, and installation mechanisms into the quartz oscillating crusher, the problem of inconvenient screening in quartz crushing is solved, achieving efficient quartz crushing and screening, and improving crushing quality and efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2026-04-07
AI Technical Summary
Existing oscillating crushers are not convenient for screening when crushing quartz, resulting in low quartz crushing quality, and are not convenient for automatic oscillation, which reduces their practicality.
A quartz oscillating pulverizer was designed, which includes crushing, sealing, oscillating, screening, installation, and auxiliary mechanisms. The crushing mechanism crushes the quartz, the sealing mechanism seals quickly, the oscillating mechanism oscillates, the screening mechanism screens the quartz, the installation mechanism fixes the quartz, and the auxiliary mechanism shakes the quartz, thereby improving the crushing quality and efficiency.
It achieves efficient crushing and screening of quartz, improves crushing quality and efficiency, and enhances the practicality of the equipment.
Smart Images

Figure CN224086899U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of quartz oscillating crushers, and in particular to a quartz oscillating crusher. Background Technology
[0002] A gyratory pulverizer, also known as a gyratory mill, is a device that uses high-speed rotating pulverizing blades to achieve general pulverization of dry materials. It is suitable for pulverizing a variety of small batches of materials in industries such as pharmaceuticals, agriculture, food, chemicals, alloys, metallurgy, geology, and scientific research, including traditional Chinese medicine, precious medicinal materials, ores, and chemical raw materials.
[0003] Existing oscillating crushers, such as the prior art with application number CN202220166430.0, include a crushing chamber cover, rubber feet, a crushing chamber, a hexagonal nut, an upper crushing blade, a middle crushing blade, a lower crushing blade, a silicone pad, a chamber cover handle, an intermediate seat, a first bearing, a rotor, a second bearing, and a bearing sleeve. By arranging the upper crushing blade, the middle crushing blade, and the lower crushing blade sequentially from top to bottom, the material can be crushed more thoroughly. Furthermore, the machine casing and the crushing chamber can oscillate left and right during crushing, which can concentrate the material at the edge to the center of the crushing chamber, making the crushing more thorough and convenient to use.
[0004] However, existing technology is not convenient for sieving the crushed quartz powder, resulting in low quartz powder quality. Furthermore, existing technology is not convenient for automatic oscillation, which reduces its practicality. Utility Model Content
[0005] To solve the above-mentioned technical problems, this utility model provides a quartz oscillating pulverizer that facilitates the screening of pulverized quartz and improves the quality of quartz pulverization.
[0006] This utility model discloses a quartz oscillating pulverizer, including a pulverizing mechanism; it also includes a sealing mechanism, an oscillating mechanism, a screening mechanism, an installation mechanism, and an auxiliary mechanism. The sealing mechanism is installed on the pulverizing mechanism, the oscillating mechanism is installed on the pulverizing mechanism, the screening mechanism is installed inside the pulverizing mechanism, the installation mechanism is installed on the screening mechanism, and the auxiliary mechanism is installed on the pulverizing mechanism. The pulverizing mechanism facilitates the pulverization of quartz, the sealing mechanism facilitates rapid sealing of the pulverizing mechanism, the oscillating mechanism facilitates oscillating of the pulverizing mechanism, the screening mechanism facilitates screening of the pulverized quartz, improving the quality of quartz pulverization, the installation mechanism facilitates installation and fixation of the screening mechanism, improving convenience, and the auxiliary mechanism facilitates oscillation of the pulverizing mechanism, improving screening efficiency.
[0007] Preferably, the crushing mechanism includes a base plate support, a sliding frame, a first rotating shaft, a drive cylinder, a crushing cylinder, a sealing cover, a rotating crushing blade, and a crushing motor. The sliding frame is slidably mounted on the base plate support, the first rotating shaft is rotatably mounted on the sliding frame, the drive cylinder is mounted on the first rotating shaft, the crushing cylinder is mounted on the drive cylinder, the sealing cover is mounted on the crushing cylinder through a sealing mechanism, the rotating crushing blade is rotatably mounted inside the crushing cylinder, and the crushing motor is mounted inside the drive cylinder. The output end of the crushing motor is connected to the rotating crushing blade. First, quartz is added to the crushing cylinder, and then the sealing cover is sealed on the crushing cylinder through the sealing mechanism. The crushing motor is turned on to drive the rotating crushing blade to rotate, and the quartz is crushed by the rotation of the rotating crushing blade.
[0008] Preferably, the sealing mechanism includes a mounting plate, a rotating ball bearing, a threaded rod, and a nut. The mounting plate is installed on the outer wall of the crushing cylinder. Both the mounting plate and the sealing cover are provided with fixing grooves. The rotating ball bearing is rotatably installed in the fixing groove of the mounting plate. The threaded rod is installed on the rotating ball bearing, and the nut is installed on the threaded rod through a threaded connection. First, quartz is added into the crushing cylinder. Then, by rotating the rotating ball bearing, the threaded rod passes through the fixing grooves of the mounting plate and the sealing cover. Then, by rotating the nut, the threaded connection causes the nut to press the sealing cover onto the mounting plate, thereby completing the sealing of the crushing cylinder by the turntable. By turning on the crushing motor, the rotating crushing blade is driven to rotate, and the quartz is crushed by the rotation of the rotating crushing blade.
[0009] Preferably, the oscillating mechanism includes a drive umbrella plate, a telescopic frame, a drive disc, an eccentric drive rod, and an oscillating motor. The drive umbrella plate is mounted on the first rotating shaft, and a guide groove is provided on the drive umbrella plate. The telescopic frame is mounted on the side wall of the sliding frame, and a motor frame is provided at the other end of the telescopic frame. The drive disc is rotatably mounted on the motor frame, and the eccentric drive rod is eccentrically mounted on the drive disc and slidably mounted in the guide groove. The oscillating motor is mounted on the motor frame, and the output end of the oscillating motor is connected to the drive disc. By turning on the oscillating motor, the drive disc is driven to rotate, which in turn drives the eccentric drive rod to rotate eccentrically. The eccentric drive rod slides in the guide groove, causing the drive umbrella plate to oscillate back and forth, which in turn drives the first rotating shaft to rotate back and forth, thereby causing the crushing cylinder to slide back and forth, improving the quality and efficiency of quartz crushing. The telescopic frame has a telescopic function, which facilitates the discharge and screening of quartz.
[0010] Preferably, the screening mechanism includes an mounting ring and a screen plate. A mounting platform is provided on the inner wall of the crushing cylinder, and the screen plate is installed on the mounting ring. The mounting ring can be installed on the mounting platform on the inner wall of the crushing cylinder. After the quartz is crushed, the sealing cover is opened, and the mounting ring is locked onto the mounting platform on the inner wall of the crushing cylinder. The mounting ring is fixed by the installation mechanism. The telescopic frame is opened to allow the eccentric drive rod to be pulled out of the guide groove. Then, the first rotating shaft is rotated to reverse the crushing cylinder, and the crushed quartz in the crushing cylinder is screened by the screen plate.
[0011] Preferably, the mounting mechanism includes a drive box, a guide tube, a locking pin, a second rotating shaft, a turntable, a first connecting rod, and a spiral spring. The drive box is mounted on the sieve plate, the guide tube is mounted on the sieve plate, the locking pin is slidably mounted inside the guide tube, the second rotating shaft is rotatably mounted inside the drive box, the turntable is mounted on the second rotating shaft, one end of the first connecting rod is rotatably mounted on the locking pin, and the other end of the first connecting rod is eccentrically mounted on the bottom end of the turntable. One end of the spiral spring is mounted on the second rotating shaft, and the other end of the spiral spring is mounted on the inner wall of the drive box. A locking hole is provided on the inner wall of the crushing cylinder. When the mounting ring needs to be fixed, the second rotating shaft is rotated, causing the spiral spring to contract, which in turn drives the turntable to rotate. Under the drive of the first connecting rod, the locking pin is pulled into the guide tube. When the locking pin aligns with the locking hole on the inner wall of the crushing cylinder, the second rotating shaft is released. The elasticity of the spiral spring drives the second rotating shaft to rotate, which in turn pushes the locking pin to slide inside the guide tube through the first connecting rod, thus allowing the locking pin to enter the locking hole on the inner wall of the crushing cylinder, thereby completing the fixing of the mounting ring.
[0012] Preferably, the auxiliary mechanism includes a turntable, an eccentric shaft, a second connecting rod, and an auxiliary motor. The turntable is rotatably mounted on the base plate support, the eccentric shaft is eccentrically mounted on the turntable, one end of the second connecting rod is rotatably mounted on the eccentric shaft, and the other end of the second connecting rod is rotatably mounted on the sliding frame. The auxiliary motor is mounted at the bottom of the first part, and the output end of the auxiliary motor is connected to the turntable. By turning on the auxiliary motor, the turntable is driven to rotate, which in turn drives the sliding frame to slide back and forth on the base plate support through the second connecting rod, thereby improving the quality of quartz screening.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: the crushing mechanism facilitates the crushing of quartz, the sealing mechanism facilitates the rapid sealing of the crushing mechanism, the swinging mechanism facilitates the swinging of the crushing mechanism, thereby improving the quality and efficiency of crushing, the screening mechanism facilitates the screening of the crushed quartz, thereby improving the quality of quartz crushing, the installation mechanism facilitates the installation and fixing of the screening mechanism, thereby improving convenience, and the auxiliary mechanism facilitates the shaking of the crushing mechanism, thereby improving the screening efficiency. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the first isometric structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the second isometric structure of this utility model;
[0016] Figure 3 This is a schematic diagram of the third isometric structure of this utility model;
[0017] Figure 4 This is a schematic diagram of the fourth isometric structure of this utility model;
[0018] Figure 5 This is a side view sectional isometric structural schematic diagram of this utility model;
[0019] Figure 6 This is a front cross-sectional structural diagram of the present invention;
[0020] Figure 7 This is a bottom-view cross-sectional isometric structural schematic diagram of this utility model;
[0021] Figure 8 This is a front view sectional isometric structural schematic diagram of this utility model;
[0022] Figure 9 This is the utility model Figure 2 Enlarged structural diagram at point A;
[0023] Figure 10 This is the utility model Figure 8 Enlarged structural diagram at point B;
[0024] The attached diagram is labeled as follows: 01, Crushing mechanism; 11, Base plate support; 12, Sliding frame; 13, First rotating shaft; 14, Drive cylinder; 15, Crushing cylinder; 16, Sealing cover plate; 17, Rotating crushing blade; 18, Crushing motor; 02, Sealing mechanism; 21, Mounting plate; 22, Rotating ball bearing; 23, Threaded rod; 24, Nut; 03, Swinging mechanism; 31, Drive umbrella plate; 32, Guide groove; 33, Telescopic frame; 34, Drive disc; 35, Eccentric drive rod; 36, Swing motor; 04, Screening mechanism; 41, Mounting ring; 42, Screen plate; 05, Mounting mechanism; 51, Drive box; 52, Guide tube; 53, Locking pin; 54, Second rotating shaft; 55, Turntable; 56, First connecting rod; 57, Vortex spring; 06, Auxiliary mechanism; 61, Turntable; 62, Eccentric shaft; 63, Second connecting rod; 64, Auxiliary motor. Detailed Implementation
[0025] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete.
[0026] Example 1
[0027] like Figures 1 to 5 and Figure 9 As shown, a quartz oscillating pulverizer includes a pulverizing mechanism 01, a sealing mechanism 02, an oscillating mechanism 03, a screening mechanism 04, an installation mechanism 05, and an auxiliary mechanism 06. The sealing mechanism 02 is installed on the pulverizing mechanism 01, the oscillating mechanism 03 is installed on the pulverizing mechanism 01, the screening mechanism 04 is installed inside the pulverizing mechanism 01, the installation mechanism 05 is installed on the screening mechanism 04, and the auxiliary mechanism 06 is installed on the pulverizing mechanism 01.
[0028] The crushing mechanism 01 facilitates the crushing of quartz, the sealing mechanism 02 facilitates the quick sealing of the crushing mechanism 01, the swinging mechanism 03 facilitates the swinging of the crushing mechanism 01, the screening mechanism 04 facilitates the screening of the crushed quartz, the installation mechanism 05 facilitates the installation and fixing of the screening mechanism 04, improving convenience, and the auxiliary mechanism 06 facilitates the shaking of the crushing mechanism 01.
[0029] The crushing mechanism 01 includes a base plate support 11, a sliding frame 12, a first rotating shaft 13, a drive cylinder 14, a crushing cylinder 15, a sealing cover 16, a rotating crushing blade 17, and a crushing motor 18. The sliding frame 12 is slidably mounted on the base plate support 11, the first rotating shaft 13 is rotatably mounted on the sliding frame 12, the drive cylinder 14 is mounted on the first rotating shaft 13, the crushing cylinder 15 is mounted on the drive cylinder 14, the sealing cover 16 is mounted on the crushing cylinder 15 through a sealing mechanism 02, the rotating crushing blade 17 is rotatably mounted inside the crushing cylinder 15, and the crushing motor 18 is mounted inside the drive cylinder 14. The output end of the crushing motor 18 is connected to the rotating crushing blade 17.
[0030] The sealing mechanism 02 includes a mounting plate 21, a rotating ball 22, a threaded rod 23, and a nut 24. The mounting plate 21 is installed on the outer wall of the crushing cylinder 15. Both the mounting plate 21 and the sealing cover plate 16 are provided with fixing grooves. The rotating ball 22 is rotatably installed in the fixing groove of the mounting plate 21. The threaded rod 23 is installed on the rotating ball 22. The nut 24 is installed on the threaded rod 23 through a threaded relationship.
[0031] The swing mechanism 03 includes a drive umbrella plate 31, a telescopic frame 33, a drive disk 34, an eccentric drive rod 35, and a swing motor 36. The drive umbrella plate 31 is mounted on the first rotating shaft 13, and a guide groove 32 is provided on the drive umbrella plate 31. The telescopic frame 33 is mounted on the side wall of the sliding frame 12, and a motor frame is provided at the other end of the telescopic frame 33. The drive disk 34 is rotatably mounted on the motor frame, and the eccentric drive rod 35 is eccentrically mounted on the drive disk 34 and slidably mounted in the guide groove 32. The swing motor 36 is mounted on the motor frame, and the output end of the swing motor 36 is connected to the drive disk 34.
[0032] First, quartz is added into the crushing cylinder 15. Then, by rotating the ball bearing 22, the threaded rod 23 passes through the fixing groove of the mounting plate 21 and the sealing cover plate 16. Next, the nut 24 is rotated, and through the threaded relationship, the nut 24 presses the sealing cover plate 16 tightly onto the mounting plate 21, thereby completing the sealing of the crushing cylinder 15 by the turntable 61. By turning on the crushing motor 18, the crushing blade 17 is rotated, and the quartz is crushed by the rotation of the crushing blade 17. By turning on the swing motor 36, the drive plate 34 is rotated, which in turn drives the eccentric drive rod 35 to rotate eccentrically. The eccentric drive rod 35 slides within the guide groove 32, causing the drive umbrella plate 31 to reciprocate and rotate, which in turn causes the first rotating shaft 13 to rotate reciprocally. This causes the crushing cylinder 15 to slide reciprocally, improving the quality and efficiency of quartz crushing. The telescopic frame 33 has a telescopic function, which facilitates the discharge and screening of quartz. The screening mechanism 04 facilitates the screening of crushed quartz, improving the quality of quartz crushing. The installation mechanism 05 facilitates the installation and fixing of the screening mechanism 04, improving convenience. The auxiliary mechanism 06 facilitates the shaking of the crushing mechanism 01, improving the screening efficiency.
[0033] Example 2
[0034] like Figure 2 , Figure 4 , Figure 5 , Figure 7 and Figure 10 As shown, a quartz oscillating pulverizer includes a pulverizing mechanism 01, a sealing mechanism 02, an oscillating mechanism 03, a screening mechanism 04, an installation mechanism 05, and an auxiliary mechanism 06. The sealing mechanism 02 is installed on the pulverizing mechanism 01, the oscillating mechanism 03 is installed on the pulverizing mechanism 01, the screening mechanism 04 is installed inside the pulverizing mechanism 01, the installation mechanism 05 is installed on the screening mechanism 04, and the auxiliary mechanism 06 is installed on the pulverizing mechanism 01.
[0035] The crushing mechanism 01 facilitates the crushing of quartz, the sealing mechanism 02 facilitates the quick sealing of the crushing mechanism 01, the swinging mechanism 03 facilitates the swinging of the crushing mechanism 01, the screening mechanism 04 facilitates the screening of the crushed quartz, the installation mechanism 05 facilitates the installation and fixing of the screening mechanism 04, improving convenience, and the auxiliary mechanism 06 facilitates the shaking of the crushing mechanism 01.
[0036] The screening mechanism 04 includes a mounting ring 41 and a screen plate 42. A clamping platform is provided on the inner wall of the crushing cylinder 15. The screen plate 42 is mounted on the mounting ring 41. The mounting ring 41 can be mounted on the clamping platform on the inner wall of the crushing cylinder 15.
[0037] The mounting mechanism 05 includes a drive box 51, a guide tube 52, a locking pin 53, a second rotating shaft 54, a turntable 55, a first connecting rod 56, and a spiral spring 57. The drive box 51 is mounted on the sieve plate 42, the guide tube 52 is mounted on the sieve plate 42, the locking pin 53 is slidably mounted inside the guide tube 52, the second rotating shaft 54 is rotatably mounted inside the drive box 51, the turntable 55 is mounted on the second rotating shaft 54, one end of the first connecting rod 56 is rotatably mounted on the locking pin 53, and the other end of the first connecting rod 56 is eccentrically mounted on the bottom end of the turntable 55. One end of the spiral spring 57 is mounted on the second rotating shaft 54, and the other end of the spiral spring 57 is mounted on the inner wall of the drive box 51. A locking hole is provided on the inner wall of the crushing cylinder 15.
[0038] The auxiliary mechanism 06 includes a turntable 61, an eccentric shaft 62, a second connecting rod 63, and an auxiliary motor 64. The turntable 61 is rotatably mounted on the base plate bracket 11, the eccentric shaft 62 is eccentrically mounted on the turntable 61, one end of the second connecting rod 63 is rotatably mounted on the eccentric shaft 62, and the other end of the second connecting rod 63 is rotatably mounted on the sliding frame 12. The auxiliary motor 64 is mounted at the bottom of 1, and the output end of the auxiliary motor 64 is connected to the turntable 61.
[0039] The crushing mechanism 01 facilitates the crushing of quartz, the sealing mechanism 02 facilitates the rapid sealing of the crushing mechanism 01, and the swinging mechanism 03 facilitates the swinging of the crushing mechanism 01, improving the quality and efficiency of crushing. After the quartz is crushed, the sealing cover plate 16 is opened, and the mounting ring 41 is clamped onto the clamping platform on the inner wall of the crushing cylinder 15. When the mounting ring 41 needs to be fixed, the second rotating shaft 54 is rotated, causing the spiral spring 57 to contract, which in turn drives the turntable 55 to rotate. Under the action of the first connecting rod 56, the locking pin 53 is pulled into the guide tube 52. When the locking pin 53 aligns with the locking hole on the inner wall of the crushing cylinder 15, the second rotating shaft 54 is released. The second rotating shaft 54 is driven to rotate by the elasticity of the spiral spring 57, which in turn pushes the locking pin 53 to slide in the guide tube 52 through the first connecting rod 56, so that the locking pin 53 enters the locking hole in the inner wall of the crushing cylinder 15, thereby completing the fixation of the mounting ring 41. By opening the telescopic frame 33, the eccentric drive rod 35 is pulled out of the guide groove 32. Then, the first rotating shaft 13 is rotated to reverse the crushing cylinder 15. The quartz crushed in the crushing cylinder 15 is screened by the sieve plate 42. By opening the auxiliary motor 64, the turntable 61 is driven to rotate, which in turn drives the sliding frame 12 to slide back and forth on the base plate support 11 through the second connecting rod 63, thereby improving the quality of quartz screening.
[0040] like Figures 1 to 10As shown, this utility model discloses a quartz oscillating pulverizer. During operation, quartz is first added to the pulverizing cylinder 15. Then, rotating the ball bearing 22 causes the threaded rod 23 to pass through the fixing grooves of the mounting plate 21 and the sealing cover plate 16. Next, rotating the nut 24, through the threaded connection, causes the sealing cover plate 16 to press tightly onto the mounting plate 21, thus sealing the pulverizing cylinder 15 with the turntable 61. Turning on the pulverizing motor 18 drives the rotating pulverizing blade 17 to pulverize the quartz. Turning on the oscillating motor 36 drives the drive disc 34 to rotate, which in turn drives the eccentric drive rod 35 to rotate eccentrically. The eccentric drive rod 35 slides within the guide groove 32, causing the drive umbrella plate 31 to oscillate back and forth, which in turn drives the first rotating shaft 13 to rotate back and forth, thus causing the pulverizing cylinder 15 to slide back and forth, improving the quality and efficiency of quartz pulverization. The telescopic frame 33 has a telescopic function, facilitating the discharge and screening of quartz. After the quartz is pulverized, the sealing cover plate 16 is opened, and the mounting ring 4... 1. The mounting ring 41 is secured on the mounting plate inside the crushing cylinder 15. When fixing the mounting ring 41, the second rotating shaft 54 is rotated, causing the spiral spring 57 to contract, which in turn drives the turntable 55 to rotate. Under the action of the first connecting rod 56, the locking pin 53 is pulled into the guide tube 52. When the locking pin 53 aligns with the locking hole on the inner wall of the crushing cylinder 15, the second rotating shaft 54 is released. The elasticity of the spiral spring 57 drives the second rotating shaft 54 to rotate, which in turn pushes the locking pin 53 to slide within the guide tube 52 via the first connecting rod 56. This allows the locking pin 53 to enter the locking hole in the inner wall of the crushing cylinder 15, thereby fixing the mounting ring 41. By opening the telescopic frame 33, the eccentric drive rod 35 is pulled out of the guide groove 32. Then, the first rotating shaft 13 is rotated to reverse the crushing cylinder 15. The quartz crushed in the crushing cylinder 15 is screened by the sieve plate 42. By turning on the auxiliary motor 64, the turntable 61 is rotated. Then, the sliding frame 12 is driven to slide back and forth on the bottom plate support 11 by the second connecting rod 63, thereby improving the quality of quartz screening.
[0041] The crushing motor 18, the swing motor 36, and the auxiliary motor 64 of this utility model are commercially available. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.
[0042] The main function of this invention is to facilitate the screening of pulverized quartz during the operation of the quartz oscillating pulverizer, thereby improving the quality of quartz pulverization.
[0043] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A quartz oscillating pulverizer, comprising a pulverizing mechanism (01); characterized in that, It also includes a sealing mechanism (02), a swing mechanism (03), a screening mechanism (04), an installation mechanism (05), and an auxiliary mechanism (06). The sealing mechanism (02) is installed on the crushing mechanism (01), the swing mechanism (03) is installed on the crushing mechanism (01), the screening mechanism (04) is installed inside the crushing mechanism (01), the installation mechanism (05) is installed on the screening mechanism (04), and the auxiliary mechanism (06) is installed on the crushing mechanism (01). The crushing mechanism (01) facilitates the crushing of quartz, the sealing mechanism (02) facilitates the quick sealing of the crushing mechanism (01), the swinging mechanism (03) facilitates the swinging of the crushing mechanism (01), the sieving mechanism (04) facilitates the sieving of the crushed quartz, the installation mechanism (05) facilitates the installation and fixing of the sieving mechanism (04) to improve convenience, and the auxiliary mechanism (06) facilitates the shaking of the crushing mechanism (01).
2. A quartz vibrating pulverizer as described in claim 1, characterized in that, The crushing mechanism (01) includes a base plate support (11), a sliding frame (12), a first rotating shaft (13), a drive cylinder (14), a crushing cylinder (15), a sealing cover plate (16), a rotating crushing blade (17), and a crushing motor (18). The sliding frame (12) is slidably mounted on the base plate support (11), the first rotating shaft (13) is rotatably mounted on the sliding frame (12), the drive cylinder (14) is mounted on the first rotating shaft (13), the crushing cylinder (15) is mounted on the drive cylinder (14), the sealing cover plate (16) is mounted on the crushing cylinder (15) through a sealing mechanism (02), the rotating crushing blade (17) is rotatably mounted inside the crushing cylinder (15), and the crushing motor (18) is mounted inside the drive cylinder (14). The output end of the crushing motor (18) is connected to the rotating crushing blade (17).
3. A quartz oscillating pulverizer as described in claim 2, characterized in that, The sealing mechanism (02) includes a mounting plate (21), a rotating ball (22), a threaded rod (23), and a nut (24). The mounting plate (21) is installed on the outer wall of the crushing cylinder (15). The mounting plate (21) and the sealing cover plate (16) are both provided with fixing grooves. The rotating ball (22) is rotatably installed in the fixing groove of the mounting plate (21). The threaded rod (23) is installed on the rotating ball (22). The nut (24) is installed on the threaded rod (23) through a threaded relationship.
4. A quartz vibrating pulverizer as described in claim 2, characterized in that, The swing mechanism (03) includes a drive umbrella plate (31), a telescopic frame (33), a drive disc (34), an eccentric drive rod (35), and a swing motor (36). The drive umbrella plate (31) is mounted on the first rotating shaft (13), and a guide groove (32) is provided on the drive umbrella plate (31). The telescopic frame (33) is mounted on the side wall of the sliding frame (12), and a motor frame is provided at the other end of the telescopic frame (33). The drive disc (34) is rotatably mounted on the motor frame, and the eccentric drive rod (35) is eccentrically mounted on the drive disc (34). The eccentric drive rod (35) is slidably mounted in the guide groove (32). The swing motor (36) is mounted on the motor frame, and the output end of the swing motor (36) is connected to the drive disc (34).
5. A quartz oscillating pulverizer as described in claim 2, characterized in that, The screening mechanism (04) includes a mounting ring (41) and a screen plate (42). A mounting plate is provided on the inner wall of the crushing cylinder (15). The screen plate (42) is mounted on the mounting ring (41). The mounting ring (41) can be mounted on the mounting plate on the inner wall of the crushing cylinder (15).
6. A quartz oscillating pulverizer as described in claim 5, characterized in that, The mounting mechanism (05) includes a drive box (51), a guide tube (52), a locking pin (53), a second rotating shaft (54), a turntable (55), a first connecting rod (56), and a spiral spring (57). The drive box (51) is mounted on the sieve plate (42), the guide tube (52) is mounted on the sieve plate (42), the locking pin (53) is slidably mounted inside the guide tube (52), the second rotating shaft (54) is rotatably mounted inside the drive box (51), the turntable (55) is mounted on the second rotating shaft (54), one end of the first connecting rod (56) is rotatably mounted on the locking pin (53), and the other end of the first connecting rod (56) is eccentrically mounted on the bottom end of the turntable (55). One end of the spiral spring (57) is mounted on the second rotating shaft (54), and the other end of the spiral spring (57) is mounted on the inner wall of the drive box (51). A lock hole is provided on the inner wall of the crushing cylinder (15).
7. A quartz oscillating pulverizer as described in claim 2, characterized in that, The auxiliary mechanism (06) includes a turntable (61), an eccentric shaft (62), a second connecting rod (63), and an auxiliary motor (64). The turntable (61) is rotatably mounted on the base plate bracket (11), the eccentric shaft (62) is eccentrically mounted on the turntable (61), one end of the second connecting rod (63) is rotatably mounted on the eccentric shaft (62), and the other end of the second connecting rod (63) is rotatably mounted on the sliding frame (12). The auxiliary motor (64) is mounted at the bottom of 1, and the output end of the auxiliary motor (64) is connected to the turntable (61).
Citation Information
Patent Citations
Swing crusher
CN217341658U