Grinding equipment for cyclone separator parts
By designing grinding equipment for cyclone separator parts, the combination of universal wheels and synchronous motors solves the blind spot problem between the part installation position and the flexibility of the grinding equipment, and realizes flexible positioning and efficient grinding of the parts.
Patent Information
- Application Number
- CN202311085723.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-28
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2043-08-28
AI Technical Summary
When the existing cyclone separator part grinding device adjusts the angle position of the grinding instrument after fixing the parts, blind spots are likely to appear between the part installation position and the flexibility of the grinding instrument, affecting the grinding effect.
A grinding equipment for cyclone separator parts is designed, including grinding base, T-frame, positioning frame, synchronous motor, synchronous rod and limit frame. Through the cooperation of universal wheels and synchronous motors, flexible positioning and angle adjustment of parts can be achieved to avoid the occurrence of blind spots.
It realizes flexible grinding of cyclone separator parts, avoids friction and blind spots during angle adjustment, and improves grinding efficiency and accuracy.
Smart Images

Figure CN116922229B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of parts grinding, in particular to grinding equipment for cyclone separator parts. Background Art
[0002] A cyclone separator is a method of removing particles from air, gas or liquid streams through vortex separation without the use of filters. When removing particulate matter from liquids, a hydrocyclone is used. Usually, when making a cyclone separator, it needs to be pieced together with parts. The cyclone separator shell part style is similar to a cylindrical shape. During the production process, the surface of the cylindrical shell part needs to be polished to ensure the smoothness of the cylindrical shell part. When polishing, grinding equipment is needed to perform the above steps.
[0003] Understanding the application of existing cyclone separator parts grinding equipment: The parts grinding device currently used in cyclone separators basically performs processing steps by adjusting the angular position of the grinding equipment after fixing the parts. Blind spots are easily generated between the part installation position and the flexibility of the grinding equipment, affecting the grinding effect of the parts.
[0004] Therefore, in view of this, the existing structure and defects are studied and improved, and a grinding device for cyclone separator parts is provided to achieve a more practical purpose. Summary of the Invention
[0005] In order to solve the above technical problems, the present invention provides a grinding device for cyclone separator parts to solve the problem that the parts grinding device used in the existing cyclone separator basically performs the processing steps by adjusting the angular position of the grinding device after fixing the parts, and a blind spot is easily generated between the part installation position and the flexibility of the grinding device, which affects the grinding effect of the parts.
[0006] The present invention provides a grinding device for cyclone separator parts, specifically comprising: a grinding base; a T-shaped frame is fixedly connected to the middle position of the top rear end of the grinding base, the top middle position of the T-shaped frame is fixedly connected to a positioning frame, the positioning frame is located at the rear end position just above the grinding base, the top middle position of the positioning frame is fixedly connected to an extension seat, the top middle position of the extension seat is fixedly connected to a synchronous motor, the rotating shaft of the synchronous motor is designed with a gear, and the gear of the synchronous motor is meshed with the upper position of the front end of the transmission ring, the transmission ring and the positioning frame are coaxial, the left position of the positioning frame is rotatably connected to a synchronization rod A, the middle position of the synchronization rod A is provided with a helical gear, and the helical gear of the synchronization rod A is meshed with the transmission ring, the outer position of the synchronization rod A is provided with a gear, the right position of the positioning frame is rotatably connected to a synchronization rod B, the middle position of the synchronization rod B is provided with a helical gear, and the helical gear of the synchronization rod B is meshed with the transmission ring, the outer position of the synchronization rod B is provided with a gear, the front end position of the positioning frame is fixedly connected to the rear end position of the limit frame, and the limit frame and the middle position of the positioning frame are through-designed.
[0007] Furthermore, the top left position fixing plate of the grinding base is connected to the first support platform, the side position of the first support platform is provided with a strip groove, the first support platform is fixedly connected to the first grinding frame, the top right position fixing plate of the grinding base is connected to the second support platform, the side position of the second support platform is provided with a strip groove, the second support platform is fixedly connected to the second grinding frame, and the first grinding frame and the second grinding frame are symmetrically designed.
[0008] Furthermore, the top position of the first grinding frame is slidably connected to the first sliding frame, a threaded hole is provided at the bottom lower position of the first sliding frame, the rear end position of the first grinding frame is fixedly connected to the first servo motor, the rod body of the first servo motor is provided with a thread, the rod body of the first servo motor is located in the threaded hole of the first sliding frame, the top position of the first sliding frame is slidably connected to the second sliding frame, an extension rod is provided at the right position of the second sliding frame and a threaded hole is provided on the left side, the extension rod of the second sliding frame is located in the strip groove of the first support platform, the extension rod of the second sliding frame is provided with the first grinder, the left position of the first sliding frame is fixedly connected to the second servo motor, the rod body of the second servo motor is provided with a thread, and the rod body of the second servo motor is located in the threaded hole of the second sliding frame.
[0009] Furthermore, the top position of the second grinding frame is slidably connected to the third sliding frame, and a threaded hole is provided at the bottom lower position of the third sliding frame. The rear end position of the second grinding frame is fixedly connected to the third servo motor, the rod body of the third servo motor is provided with a thread, and the rod body of the third servo motor is located in the threaded hole of the third sliding frame. The top position of the third sliding frame is slidably connected to the fourth sliding frame, an extension rod is provided at the left position of the fourth sliding frame and a threaded hole is provided on the right side, the extension rod of the fourth sliding frame is located in the strip groove of the second support platform, the extension rod of the fourth sliding frame is provided with a second grinder, and the right position of the third sliding frame is fixedly connected to the fourth servo motor, the rod body of the fourth servo motor is provided with a thread, and the rod body of the fourth servo motor is located in the threaded hole of the fourth sliding frame.
[0010] Furthermore, an isosceles trapezoidal groove is provided in the middle position of the top of the grinding base, and a collecting box is provided in the groove of the grinding base. The interior of the collecting box is hollow, and a collecting net is placed at the top of the collecting box. A rectangular groove is provided at the front end of the collecting box, and an additional frame is fixedly connected to the upper end of the rectangular groove of the collecting box. A reciprocating motor is fixedly connected to the bottom of the additional frame, and a cam part is fixedly connected to the rotating shaft of the reciprocating motor. The inner edge position of the cam part is rotatably connected to the front end position of the transmission rod.
[0011] Furthermore, the rear end position of the transmission rod is rotatably connected to the front end position of the sliding member, the sliding member is slidably connected to the internal rear end position of the mounting frame, and the internal upper position of the sliding member is fixedly connected to the middle position of the front end of the bottom of the collection net.
[0012] Furthermore, the front end internal position of the limit frame is rotatably connected to a spiral ring, and the upper and lower ends of the limit frame are respectively slidably connected to a directional plate. The two directional plates are symmetrically designed, and the inner sides of the two directional plates are both provided with universal wheels. The front ends of the two directional plates are both provided with arc patterns, and the arc patterns of the two directional plates are both engaged with the rear end position of the spiral ring.
[0013] Furthermore, the left inner position of the limit frame is slidably connected to the first auxiliary frame, the front end position of the first auxiliary frame is meshed with the left position of the rear end of the spiral ring, the left position of the first auxiliary frame is rotatably connected to the first adjusting screw, the outer position of the first adjusting screw is fixedly connected to the first tooth, the first tooth is meshed with the outer gear of the synchronization rod A, the inner position of the first auxiliary frame is slidably connected to the first plate, a threaded hole is opened on the outer side of the first plate, and the first adjusting screw is located in the threaded hole of the first plate.
[0014] Furthermore, the right inner position of the limiting frame is slidably connected to a second auxiliary frame, the front end position of the second auxiliary frame is meshed with the right position of the rear end of the spiral ring, the left position of the second auxiliary frame is rotatably connected to the second adjusting screw, the outer position of the second adjusting screw is fixedly connected to the second tooth, the second tooth is meshed with the outer gear of the synchronization rod B, the inner position of the second auxiliary frame is slidably connected to the second plate, a threaded hole is opened on the outer side of the second plate, and the second adjusting screw is located in the threaded hole of the second plate.
[0015] Compared with the prior art, the present invention has the following beneficial effects:
[0016] When the cyclone separator shell parts enter the middle position inside the limit frame, the universal wheels set on the two directional plates are in a longitudinal state, and the universal wheels roll to facilitate the cyclone separator shell parts to enter the interior of the limit frame, which saves effort and avoids friction when the cyclone separator shell parts move. When the rotation position of the cyclone separator shell parts needs to be adjusted, the cyclone separator shell parts are rotated at this time. The universal wheels of the two directional plates will synchronously follow the rotation angle of the cyclone separator shell parts, and the universal wheels of the two directional plates will be in a horizontal state, which facilitates the cyclone separator shell parts to rotate in the internal position of the limit frame, avoiding the blind spot that is very easy to appear between the part installation position and the flexibility of the grinding equipment.
[0017] When the universal wheels of the two directional plates are required to fit the cyclone separator housing parts, and the first auxiliary frame and the second auxiliary frame cancel the limit on the cyclone separator housing parts, the synchronous motor is started to drive the transmission ring to rotate. When the transmission ring rotates, the synchronous rod A and the synchronous rod B are respectively driven to rotate. At this time, the outer gear of the synchronous rod A engages with the first tooth, and the first tooth will drive the first adjusting screw to rotate inside the first auxiliary frame. Combined with the first adjusting screw being located in the threaded hole of the first plate, the first plate can slide with the inner position of the first auxiliary frame to adjust the distance between the first plate and the cyclone separator housing parts; at the same time, when the synchronous rod B rotates, the outer gear of the synchronous rod B engages with the second tooth, and the second tooth will drive the second adjusting screw to rotate inside the second auxiliary frame. Combined with the second adjusting screw being located in the threaded hole of the second plate, the second plate can slide with the inner position of the second auxiliary frame to adjust the distance between the second plate and the cyclone separator housing parts, thereby canceling the limiting effect of the first plate and the second plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.
[0019] In the attached figure:
[0020] Figure 1A schematic diagram of the main structure of a grinding device for cyclone separator parts according to an embodiment of the present invention is shown;
[0021] Figure 2 A schematic side view of a grinding device for cyclone separator parts according to an embodiment of the present invention is shown;
[0022] Figure 3 It shows a schematic side view of the assembled structure of the grinding base as a whole and the collection box as a whole according to an embodiment of the present invention;
[0023] Figure 4 It shows a schematic side view of the structure of a collection box according to an embodiment of the present invention;
[0024] Figure 5 It shows a schematic side view of the structure of the first grinding frame according to an embodiment of the present invention;
[0025] Figure 6 A schematic side view of the structure of a second grinding frame according to an embodiment of the present invention is shown;
[0026] Figure 7 It shows a schematic side view of the assembly structure of the positioning frame and the limiting frame according to an embodiment of the present invention;
[0027] Figure 8 A schematic side view of the positioning frame according to an embodiment of the present invention is shown;
[0028] Figure 9 A schematic diagram of a half-section side view of the structure of a limiting frame according to an embodiment of the present invention is shown;
[0029] Figure 10 A schematic diagram of the split structure of the limiting frame according to an embodiment of the present invention is shown in a half-section rear side view, from which the structural shape of the rear end of the spiral ring can be clearly seen.
[0030] Reference Signs List
[0031] 1. Grinding base; 101. T-shaped frame; 102. First support platform; 103. Second support platform; 2. Collection box; 201. Collection net; 202. Mounting frame; 203. Reciprocating motor; 204. Cam member; 205. Drive rod; 206. Sliding member; 3. First grinding frame; 301. First servo motor; 302. First sliding frame; 303. Second servo motor; 304. Second sliding frame; 305. First grinder; 4. Second grinding frame; 401. Third servo motor; 402. Third sliding frame; 403, fourth servo motor; 404, fourth sliding frame; 405, second grinder; 5, positioning frame; 501, extension seat; 502, synchronous motor; 503, transmission ring; 504, synchronization rod A; 505, synchronization rod B; 6, limit frame; 601, spiral ring; 602, directional plate; 603, first auxiliary frame; 631, first adjusting screw; 632, first tooth; 633, first contact plate; 604, second auxiliary frame; 641, second adjusting screw; 642, second tooth; 643, second contact plate. DETAILED DESCRIPTION
[0032] The embodiments of the present invention are described in further detail below with reference to the accompanying drawings and examples.
[0033] Example 1:
[0034] As attached Figure 1 To the attached Figure 10 As shown:
[0035] The present invention provides a grinding device for cyclone separator parts, comprising: a grinding base 1; a T-shaped frame 101 is fixedly connected to the middle position of the top rear end of the grinding base 1, a positioning frame 5 is fixedly connected to the middle position of the top of the T-shaped frame 101, the positioning frame 5 is located at the rear end position just above the grinding base 1, an extension seat 501 is fixedly connected to the middle position of the top of the positioning frame 5, a first support platform 102 is connected to the fixed plate at the top left position of the grinding base 1, a strip groove is provided on the side of the first support platform 102, a first grinding frame 3 is fixedly connected to the first support platform 102, a second support platform 103 is connected to the fixed plate at the top right position of the grinding base 1, a strip groove is provided on the side of the second support platform 103, a second grinding frame 4 is fixedly connected to the second support platform 103, and the first grinding frame 3 and the second grinding frame 4 are symmetrically designed.
[0036] Among them, the top position of the first grinding frame 3 is slidably connected to the first sliding frame 302, and a threaded hole is provided at the bottom lower position of the first sliding frame 302. The rear end position of the first grinding frame 3 is fixedly connected to the first servo motor 301, and the rod body of the first servo motor 301 is provided with a thread, and the rod body of the first servo motor 301 is located in the threaded hole of the first sliding frame 302. The top position of the first sliding frame 302 is slidably connected to the second sliding frame 304, and an extension rod is provided at the right position of the second sliding frame 304 and a threaded hole is provided on the left side. The extension rod of the second sliding frame 304 is located in the strip groove of the first support platform 102, and the extension rod of the second sliding frame 304 is provided with the first grinder 305. The left position of the first sliding frame 302 is fixedly connected to the second servo motor 303, and the rod body of the second servo motor 303 is provided with a thread, and the rod body of the second servo motor 303 is located in the threaded hole of the second sliding frame 304.
[0037] Among them, the top position of the second grinding frame 4 is slidably connected to the third sliding frame 402, and a threaded hole is provided at the bottom lower position of the third sliding frame 402. The rear end position of the second grinding frame 4 is fixedly connected to the third servo motor 401, and the rod body of the third servo motor 401 is provided with a thread, and the rod body of the third servo motor 401 is located in the threaded hole of the third sliding frame 402. The top position of the third sliding frame 402 is slidably connected to the fourth sliding frame 404, and an extension rod is provided at the left position of the fourth sliding frame 404 and a threaded hole is provided at the right side. The extension rod of the fourth sliding frame 404 is located in the strip groove of the second support platform 103, and the extension rod of the fourth sliding frame 404 is provided with a second grinder 405. The right position of the third sliding frame 402 is fixedly connected to the fourth servo motor 403, and the rod body of the fourth servo motor 403 is provided with a thread, and the rod body of the fourth servo motor 403 is located in the threaded hole of the fourth sliding frame 404.
[0038] Among them, an isosceles trapezoidal groove is opened in the middle position of the top of the grinding base 1, and a collecting box 2 is arranged in the groove of the grinding base 1. The interior of the collecting box 2 is hollow, and a collecting net 201 is placed at the top position of the collecting box 2. A rectangular groove is opened at the front end position of the collecting box 2, and the upper end position of the rectangular groove of the collecting box 2 is fixedly connected to an additional frame 202, and the bottom of the additional frame 202 is fixedly connected to a reciprocating motor 203, and the rotating shaft of the reciprocating motor 203 is fixedly connected to a cam part 204, and the inner edge position of the cam part 204 is rotatably connected to the front end position of the transmission rod 205.
[0039] Among them, the rear end position of the transmission rod 205 is rotationally connected to the front end position of the sliding member 206, the sliding member 206 is slidingly connected to the internal rear end position of the mounting frame 202, and the internal upper position of the sliding member 206 is fixedly connected to the middle position of the bottom front end of the collection net 201.
[0040] Among them, the front end internal position of the limiting frame 6 is rotatably connected to a spiral ring 601, and the upper and lower ends of the limiting frame 6 are respectively slidably connected to a directional plate 602. The two directional plates 602 are symmetrically designed, and the inner sides of the two directional plates 602 are both provided with universal wheels. The front ends of the two directional plates 602 are both provided with arc patterns, and the arc patterns of the two directional plates 602 are both engaged with the rear end position of the spiral ring 601.
[0041] During use: first, place the cyclone separator housing part that needs to be ground in the middle position inside the limit frame 6, then rotate the spiral ring 601 until the universal wheels set on the inner sides of the two directional plates 602 are respectively fitted with the upper and lower ends of the cyclone separator housing part, and the cyclone separator housing part will be positioned in the middle position inside the limit frame 6 through the simultaneous opposite movement of the two directional plates 602. Next, start the first servo motor 301 to make the first sliding frame 302 slide forward and backward, start the second servo motor 303, and through the second servo motor 303 rod thread and the second sliding frame 304 threaded hole, the first grinder 305 can move in the left and right directions, so that the first grinder 305 can fit the left grinding position of the cyclone separator housing part.
[0042] Start the third servo motor 401 to make the third sliding frame 402 slide forward and backward, start the fourth servo motor 403, and through the fourth servo motor 403 rod thread cooperate with the fourth sliding frame 404 threaded hole, the second grinder 405 can move in the left and right direction, so that the second grinder 405 can fit the right side grinding position of the cyclone separator shell part.
[0043] In order to ensure the required grinding position of the cyclone separator housing parts, combined with the universal wheels set on the two directional plates 602, when the cyclone separator housing parts enter the middle position inside the limit frame 6, the universal wheels set on the two directional plates 602 are in a longitudinal state, and the rolling of the universal wheels facilitates the cyclone separator housing parts to enter the interior of the limit frame 6, which saves effort and avoids friction when the cyclone separator housing parts move. When the rotation position of the cyclone separator housing parts needs to be adjusted, the cyclone separator housing parts are rotated. At this time, the universal wheels of the two directional plates 602 will synchronously follow the rotation angle of the cyclone separator housing parts, and the universal wheels of the two directional plates 602 will be in a horizontal state, which facilitates the cyclone separator housing parts to rotate in the internal position of the limit frame 6.
[0044] Example 2:
[0045] The grinding device for cyclone separator parts provided in the first embodiment can save time and effort when adjusting the position of the cyclone separator housing parts without scratching them, but the cyclone separator housing parts cannot be fixed to the position of the limit frame 6. Therefore, the grinding device for cyclone separator parts further includes:
[0046] The top middle position of the extension seat 501 is fixedly connected to a synchronous motor 502, and the rotating shaft of the synchronous motor 502 is designed with a gear, and the gear of the synchronous motor 502 is meshed with the upper front end position of the transmission ring 503, and the transmission ring 503 is coaxial with the positioning frame 5. The left position of the positioning frame 5 is rotatably connected to the synchronous rod A504, and the middle position of the synchronous rod A504 is provided with a helical gear, and the helical gear of the synchronous rod A504 is meshed with the transmission ring 503, and the outer position of the synchronous rod A504 is provided with a gear, and the right position of the positioning frame 5 is rotatably connected to the synchronous rod B505, and the middle position of the synchronous rod B505 is provided with a helical gear, and the helical gear of the synchronous rod B505 is meshed with the transmission ring 503, and the outer position of the synchronous rod B505 is provided with a gear, the front end position of the positioning frame 5 is fixedly connected to the rear end position of the limiting frame 6, and the limiting frame 6 and the middle position of the positioning frame 5 are through-designed.
[0047] Among them, the left inner position of the limiting frame 6 is slidingly connected to the first auxiliary frame 603, the front end position of the first auxiliary frame 603 is meshed with the left position of the rear end of the spiral ring 601, the left position of the first auxiliary frame 603 is rotatably connected to the first adjusting screw 631, the outer position of the first adjusting screw 631 is fixedly connected to the first tooth 632, the first tooth 632 is meshed with the outer gear of the synchronization rod A504, the inner position of the first auxiliary frame 603 is slidingly connected to the first plate 633, a threaded hole is opened on the outer side of the first plate 633, and the first adjusting screw 631 is located in the threaded hole of the first plate 633.
[0048] Among them, the right inner position of the limiting frame 6 is slidingly connected to the second auxiliary frame 604, the front end position of the second auxiliary frame 604 is meshed with the right position of the rear end of the spiral ring 601, the left position of the second auxiliary frame 604 is rotatably connected to the second adjusting screw 641, the outer position of the second adjusting screw 641 is fixedly connected to the second tooth 642, the second tooth 642 is meshed with the outer gear of the synchronization rod B505, the inner position of the second auxiliary frame 604 is slidingly connected to the second plate 643, the outer side of the second plate 643 is provided with a threaded hole, and the second adjusting screw 641 is located in the threaded hole of the second plate 643.
[0049] When the spiral ring 601 is rotated, the first auxiliary frame 603 and the second auxiliary frame 604 move synchronously, and the movement mode of the first auxiliary frame 603 and the second auxiliary frame 604 is synchronized with the movement mode of the two directional plates 602. When the first auxiliary frame 603 and the second auxiliary frame 604 approach each other, the first sticking plate 633 and the second sticking plate 643 respectively stick to the left and right sides of the cyclone separator shell parts to complete the tightening step to prevent the cyclone separator shell parts from loosening.
[0050] When the universal wheels of the two directional plates 602 are required to fit the cyclone separator housing parts, and the first auxiliary frame 603 and the second auxiliary frame 604 cancel the limit on the cyclone separator housing parts, the synchronous motor 502 is started to drive the transmission ring 503 to rotate, and when the transmission ring 503 rotates, the synchronous rod A504 and the synchronous rod B505 are respectively driven to rotate. At this time, the outer gear of the synchronous rod A504 engages with the first tooth 632, and the first tooth 632 will drive the first adjusting screw 631 to rotate inside the first auxiliary frame 603. Combined with the first adjusting screw 631 being located in the threaded hole of the first plate 633, the first plate 633 can be rotated with The inner position of the first auxiliary frame 603 slides to adjust the distance between the first plate 633 and the cyclone separator housing parts; at the same time, when the synchronization rod B505 rotates, the outer gear of the synchronization rod B505 engages the second tooth 642, and the second tooth 642 will drive the second adjusting screw 641 to rotate inside the second auxiliary frame 604. Combined with the second adjusting screw 641 being located in the threaded hole of the second plate 643, the second plate 643 can slide with the inner position of the second auxiliary frame 604 to adjust the distance between the second plate 643 and the cyclone separator housing parts, thereby canceling the limiting effect of the first plate 633 and the second plate 643.
[0051] Combined with attachment Figure 7 As shown:
[0052] The figure clearly shows the meshing position and shape of the first tooth 632 and the outer gear of the synchronization rod A504, as well as the meshing position and shape of the second tooth 642 and the outer gear of the synchronization rod B505. When the spiral ring 601 rotates, the first auxiliary frame 603 and the second auxiliary frame 604 as a whole move in position. At this time, the first tooth 632 and the second tooth 642 move in position synchronously, and the meshing gap between the first tooth 632 and the outer gear of the synchronization rod A504 and the meshing gap between the second tooth 642 and the outer gear of the synchronization rod B505 will have friction and sliding. When the first tooth 632 and the second tooth 642 move, the outer gear of the synchronization rod A504 and the outer gear of the synchronization rod B505 will still play a limiting effect, preventing the first tooth 632 and the second tooth 642 from rotating, and at the same time preventing interference when the first auxiliary frame 603 and the second auxiliary frame 604 move as a whole.
[0053] Example 3:
[0054] Combined with attachment Figure 3 And attached Figure 4 In the embodiment, after the cyclone separator housing parts are ground, the debris will fall to the upper position of the collection net 201, pass through the collection net 201 into the collection box 2, and complete the debris collection step. However, when the debris contacts the upper end of the collection net 201, it is easy to get stuck at the upper end of the collection net 201, resulting in a clogged and messy upper end of the collection net 201. After starting the reciprocating motor 203, the cam part 204 and the transmission rod 205 cooperate to drive the sliding part 206 to slide back and forth at the rear end of the mounting frame 202, driving the collection net 201 to move a short distance forward and backward. The inertia generated by the movement of the collection net 201 causes the debris above the collection net 201 to shift, thereby accelerating the debris to enter the internal position of the collection box 2.
Claims
1. Grinding equipment for cyclone separator parts, characterized in that, include: A grinding base (1); a T-shaped frame (101) is fixedly connected to the middle position of the top rear end of the grinding base (1); a positioning frame (5) is fixedly connected to the middle position of the top of the T-shaped frame (101); the positioning frame (5) is located at the rear end position just above the grinding base (1); an extension seat (501) is fixedly connected to the middle position of the top of the positioning frame (5); a synchronous motor (502) is fixedly connected to the middle position of the top of the extension seat (501); a rotating shaft of the synchronous motor (502) is designed with a gear, and the gear of the synchronous motor (502) is meshed with the upper position of the front end of the transmission ring (503); the transmission ring (503) and the positioning frame (5) are coaxial; a synchronous rod A (504) is rotatably connected to the left side of the positioning frame (5); the synchronous rod A A helical gear is provided in the middle position of (504), and the helical gear of the synchronization rod A (504) is meshed with the transmission ring (503), a gear is provided at the outer position of the synchronization rod A (504), the right position of the positioning frame (5) is rotatably connected with the synchronization rod B (505), the middle position of the synchronization rod B (505) is provided with a helical gear, and the helical gear of the synchronization rod B (505) is meshed with the transmission ring (503), a gear is provided at the outer position of the synchronization rod B (505), the front end position of the positioning frame (5) is fixedly connected with the rear end position of the limiting frame (6), and the limiting frame (6) and the middle position of the positioning frame (5) are through-designed, the front end inner position of the limiting frame (6) is rotatably connected with the spiral ring (601), the upper and lower ends of the limiting frame (6) The positions are respectively connected in a sliding manner with a directional plate (602), the two directional plates (602) are symmetrically designed, and the inner positions of the two directional plates (602) are both provided with universal wheels, the front ends of the two directional plates (602) are both provided with arc patterns, and the arc patterns of the two directional plates (602) are meshed with the rear end positions of the spiral ring (601), the left inner position of the limiting frame (6) is slidably connected with the first auxiliary frame (603), the front end position of the first auxiliary frame (603) is meshed with the left position of the rear end of the spiral ring (601), the left position of the first auxiliary frame (603) is rotatably connected with the first adjusting screw (631), the outer position of the first adjusting screw (631) is fixedly connected with the first tooth (632), and the first tooth (63 2) Engaged with the outer gear of the synchronization rod A (504), the inner position of the first auxiliary frame (603) is slidably connected to the first plate (633), the outer side of the first plate (633) is provided with a threaded hole, the first adjusting screw (631) is located in the threaded hole of the first plate (633), the right inner position of the limit frame (6) is slidably connected to the second auxiliary frame (604), the front end position of the second auxiliary frame (604) is engaged with the right position of the rear end of the spiral ring (601), the left position of the second auxiliary frame (604) is rotatably connected to the second adjusting screw (641), the outer position of the second adjusting screw (641) is fixedly connected to the second tooth (642), and the second tooth (642) is engaged with the outer gear of the synchronization rod B (505),The second auxiliary frame (604) is slidably connected to a second plate (643) on the inner side thereof. A threaded hole is provided on the outer side of the second plate (643). The second adjusting screw (641) is located in the threaded hole of the second plate (643).
2. The grinding device for cyclone separator parts according to claim 1, characterized in that: The top left fixed plate of the grinding base (1) is connected to a first support platform (102), a strip groove is provided on the side of the first support platform (102), and the first support platform (102) is fixedly connected to a first grinding frame (3). The top right fixed plate of the grinding base (1) is connected to a second support platform (103), a strip groove is provided on the side of the second support platform (103), and the second support platform (103) is fixedly connected to a second grinding frame (4). The first grinding frame (3) and the second grinding frame (4) are symmetrically designed.
3. The grinding device for cyclone separator parts according to claim 2, characterized in that: The top position of the first grinding frame (3) is slidably connected to the first sliding frame (302), a threaded hole is provided at the bottom lower position of the first sliding frame (302), the rear end position of the first grinding frame (3) is fixedly connected to the first servo motor (301), the rod body of the first servo motor (301) is provided with a thread, the rod body of the first servo motor (301) is located in the threaded hole of the first sliding frame (302), the top position of the first sliding frame (302) is slidably connected to the second sliding frame (304), the second An extension rod is provided at the right side of the sliding frame (304) and a threaded hole is provided at the left side. The extension rod of the second sliding frame (304) is located in the strip groove of the first support platform (102). The extension rod of the second sliding frame (304) is provided with a first grinder (305). A second servo motor (303) is fixedly connected to the left side of the first sliding frame (302). The rod body of the second servo motor (303) is provided with a thread. The rod body of the second servo motor (303) is located in the threaded hole of the second sliding frame (304).
4. The grinding device for cyclone separator parts according to claim 2, characterized in that: The top position of the second grinding frame (4) is slidably connected to the third sliding frame (402), a threaded hole is provided at the bottom lower position of the third sliding frame (402), the rear end position of the second grinding frame (4) is fixedly connected to the third servo motor (401), the rod body of the third servo motor (401) is provided with a thread, the rod body of the third servo motor (401) is located in the threaded hole of the third sliding frame (402), the top position of the third sliding frame (402) is slidably connected to the fourth sliding frame (404), the fourth An extension rod is provided at the left side of the sliding frame (404) and a threaded hole is provided at the right side. The extension rod of the fourth sliding frame (404) is located in the strip groove of the second support platform (103). The extension rod of the fourth sliding frame (404) is provided with a second grinder (405). A fourth servo motor (403) is fixedly connected to the right side of the third sliding frame (402). The rod body of the fourth servo motor (403) is provided with a thread. The rod body of the fourth servo motor (403) is located in the threaded hole of the fourth sliding frame (404).
5. The grinding device for cyclone separator parts according to claim 1, characterized in that: An isosceles trapezoidal groove is provided at the middle position of the top of the grinding base (1), and a collecting box (2) is provided in the groove of the grinding base (1). The interior of the collecting box (2) is hollow, and a collecting net (201) is placed at the top position of the collecting box (2). A rectangular groove is provided at the front end position of the collecting box (2), and an additional frame (202) is fixedly connected to the upper end position of the rectangular groove of the collecting box (2). A reciprocating motor (203) is fixedly connected to the bottom of the additional frame (202), and a cam member (204) is fixedly connected to the rotating shaft of the reciprocating motor (203). The inner edge position of the cam member (204) is rotatably connected to the front end position of the transmission rod (205).
6. The grinding device for cyclone separator parts according to claim 5, characterized in that: The rear end of the transmission rod (205) is rotatably connected to the front end of the sliding member (206), the sliding member (206) is slidably connected to the rear end of the mounting frame (202), and the upper part of the interior of the sliding member (206) is fixedly connected to the middle position of the bottom front end of the collection net (201).
Citation Information
Patent Citations
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