CN215278436U - Waste recovery device is used in processing of magnetic force theftproof gate valve - Google Patents

Waste recovery device is used in processing of magnetic force theftproof gate valve Download PDF

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Publication number
CN215278436U
CN215278436U CN202120057075.9U CN202120057075U CN215278436U CN 215278436 U CN215278436 U CN 215278436U CN 202120057075 U CN202120057075 U CN 202120057075U CN 215278436 U CN215278436 U CN 215278436U
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crushing
subassembly
motor
clearance
workstation
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CN202120057075.9U
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王能余
俞定清
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Wuhu Veolia Valve Co ltd
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Wuhu Veolia Valve Co ltd
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Abstract

The utility model discloses a magnetic force theftproof is waste recovery device for gate valve processing belongs to theftproof gate valve processing technology field, including workstation, lifting unit, removal subassembly, clearance subassembly, crushing unit and screening subassembly, the workstation is the level setting and is equipped with down the silo on the horizontal plane and the workstation, the vertical side that sets up the silo down that just is located on the workstation of lifting unit, the removal subassembly sets up on lifting unit and with lifting unit sliding fit, the clearance subassembly sets up on the removal subassembly and with removal subassembly fixed connection, crushing unit set up the below of silo under and with workstation fixed connection, the screening subassembly sets up in crushing unit. The utility model discloses a remove subassembly and clearance subassembly and carry out automatic clearance operation to magnetic force theftproof gate valve processing waste material, the utility model discloses a crushing subassembly and screening subassembly retrieve the operation to magnetic force theftproof gate valve processing waste material.

Description

Waste recovery device is used in processing of magnetic force theftproof gate valve
Technical Field
The utility model relates to a theftproof gate valve processing technology field especially relates to a magnetic force is waste recovery device for theftproof gate valve processing.
Background
The gate valve is a key control part in a fluid conveying system and has the functions of stopping, adjusting, guiding, preventing counter flow, stabilizing pressure, shunting or overflowing and relieving pressure and the like. Gate valves used in fluid control systems range in variety and size from the simplest globe valves to the various gate valves used in extremely complex autonomous systems. The gate valve can be used for controlling various types of fluids such as air, water, steam, various corrosive media, slurry, oil products, liquid metal, radioactive media and the like.
The existing magnetic anti-theft gate valve production device cannot automatically clean the waste materials for production, cannot stir the waste materials for production, and cannot screen the waste materials for production.
In order to solve the above problem, a waste recovery device is used in processing of magnetic force theftproof gate valve is provided at present, including workstation, lifting unit, removal subassembly, clearance subassembly, crushing unit and screening subassembly, the workstation is the level setting and is equipped with down the silo on the horizontal plane and the workstation, the vertical side that sets up the silo down that just is located on the workstation of lifting unit, the removal subassembly sets up on lifting unit and with lifting unit sliding fit, the clearance subassembly set up on the removal subassembly and with removal subassembly fixed connection, crushing unit set up the below of silo under and with workstation fixed connection, screening subassembly sets up in crushing unit.
SUMMERY OF THE UTILITY MODEL
An embodiment of the utility model provides a magnetic force is waste recovery device for theftproof gate valve processing to solve and can't carry out automatic clearance to the waste material of production usefulness, can't stir garrulous to the waste material of production usefulness, can't sieve the technical problem of operation to the waste material of production usefulness.
The embodiment of the utility model provides an adopt following technical scheme: the utility model provides a waste recovery device is used in processing of magnetic force theftproof gate valve, includes workstation, lifting unit, removal subassembly, clearance subassembly, crushing unit and screening subassembly, the workstation is the level setting and is equipped with down the silo on the horizontal plane and the workstation, the vertical side that just is located down the silo that sets up on the workstation of lifting unit, the removal subassembly sets up on lifting unit and with lifting unit sliding fit, the clearance subassembly set up on the removal subassembly and with removal subassembly fixed connection, crushing unit set up the silo under the below and with workstation fixed connection, the screening subassembly sets up in crushing unit.
Further, the lifting component includes crane, elevator motor, threaded rod, lifter plate and two dead levers, the crane is fixed to be set up at the top of workstation and is located the side of silo down, elevator motor is fixed to be set up at the top of crane, the threaded rod rotates to be connected in the crane and the one end of threaded rod is connected with elevator motor's spindle drive, two dead lever fixed connection is on the crane, the lifter plate sets up on two dead levers and threaded rod, lifter plate and threaded rod threaded connection, be equipped with the spout on two lateral walls of lifter plate.
Further, it includes slide bar, transversely promotes electric jar, vertically promotes electric jar, horizontal carriage and vertical carriage to remove the subassembly, transversely promote electric jar fixed connection in the bottom of lifter plate, vertically promote electric jar fixed connection in the bottom of lifter plate, horizontal carriage fixed connection is served and is just through spout and lifter plate sliding fit at the flexible of transversely promoting electric jar, vertical carriage fixed connection is served and is just passed through spout and lifter plate sliding fit at the flexible of vertically promoting electric jar, the slide bar setting on vertical carriage and horizontal carriage and with horizontal carriage, vertical carriage sliding fit.
Further, the clearance subassembly is including fixed frame, clearance motor and clearance brush, fixed frame fixed connection is in the bottom of slide bar, clearance motor fixed connection is in fixed frame, the main shaft and the fixed 41 normal running fit of frame of clearance motor, the setting of clearance brush is on the main shaft of clearance motor and is connected with the spindle drive of clearance motor.
Further, crushing unit is including smashing case, lower flitch, two crushing shafts, two crushing motors and two crushing rollers, smash the case setting in the below of silo down and with workstation fixed connection, the bottom of smashing the case is equipped with the discharge gate, all be equipped with the feed opening on two lateral walls of smashing the case, the flitch slope sets up in the side that smashes incasement portion and be located the discharge gate down, two crushing shaft equidistant rotation is connected on smashing the case, two crushing motors sets up equidistant setting on the lateral wall of smashing the case, every crushing shaft all sets up on the main shaft of crushing motor and is connected with crushing motor's spindle drive, every the equal fixed connection of crushing roller is on crushing shaft.
Further, the screening component comprises a base, a rotating motor, a first connecting seat, a first connecting rod, a second connecting seat, a second connecting rod, a connecting shaft, a supporting plate, a vibrating screen, two rotating blocks and two vibrating springs, wherein the base is horizontally arranged on the inner side wall of the crushing box, the rotating motor is arranged on the base, the first connecting seat and the second connecting seat are symmetrically arranged at the top of the base, the first connecting rod and the second connecting rod are respectively and rotatably connected with the first connecting seat and the second connecting seat, one end of the first connecting rod is in transmission connection with a main shaft of the rotating motor, the two rotating blocks are respectively arranged on the first connecting rod and the second connecting rod, two ends of the connecting shaft are fixedly connected with the two rotating blocks, the vibrating screen is horizontally arranged on the crushing box and is in sliding fit with the two discharging ports of the crushing box, the bottom of the supporting plate is fixedly connected with the connecting shaft, the top of backup pad is rotated with the bottom of shale shaker and is connected, every the both ends of vibrations spring are connected with the bottom of first connecting seat, second connecting seat and shale shaker respectively.
The embodiment of the utility model provides an above-mentioned at least one technical scheme who adopts can reach following beneficial effect:
one of them, work when horizontal promotion electric jar and drive horizontal carriage and pass through the spout and slide on the lifter plate, vertically promote electric jar work and drive vertical carriage and pass through the spout and slide on the lifter plate to promote the slide bar and realize horizontal longitudinal sliding on horizontal carriage and vertical carriage, the slide bar slides and drives the slip of clearance subassembly, thereby clearance motor work drives the rotation of clearance brush and clears up and sweep the processing waste material into the crushing unit on the workstation in, realize the clearance operation.
And secondly, in the cleaning assembly sweeps the processing waste into the crushing box, two crushing motors drive two crushing shafts to rotate on the crushing box, the two crushing shafts drive two crushing rollers to crush the processing waste, and the crushed processing waste drops to the screening assembly to realize crushing.
The utility model discloses a magnetic force theftproof gate valve processing waste material, including the first connecting rod, the first connecting rod is connected with the vibrating screen, the first connecting rod is connected with the first connecting rod, the first connecting rod is connected with the second connecting rod, the first connecting rod is connected with the first connecting rod, the second connecting rod is connected with the second connecting rod, the second connecting rod is connected with the first connecting rod, the second connecting rod, the first connecting rod, the second connecting rod, the third, when crushing incomplete processing waste material, the crushing, the incomplete processing waste material, the first material, the second material, the incomplete processing waste material, the second material, the third material, the second material, the third material, the last material, the third material, the last material.
Drawings
The accompanying drawings, which are described herein, serve to provide a further understanding of the invention and constitute a part of this specification, and the exemplary embodiments and descriptions thereof are provided for explaining the invention without unduly limiting it. In the drawings:
fig. 1 is a schematic perspective view of the present invention;
fig. 2 is a schematic structural view of the lifting assembly of the present invention;
fig. 3 is a schematic structural view of the moving assembly of the present invention;
FIG. 4 is a schematic structural view of the cleaning assembly of the present invention;
FIG. 5 is a first schematic structural view of the crushing assembly of the present invention;
FIG. 6 is a schematic structural view of a second crushing assembly of the present invention;
figure 7 is a schematic diagram of a screen assembly according to the present invention.
Reference numerals
The automatic grinding machine comprises a workbench 1, a feed chute 11, a lifting assembly 2, a lifting frame 21, a lifting motor 22, a threaded rod 23, a lifting plate 24, a sliding groove 241, a fixed rod 25, a moving assembly 3, a sliding rod 31, a transverse pushing electric cylinder 32, a longitudinal pushing electric cylinder 33, a transverse sliding frame 34, a longitudinal sliding frame 35, a cleaning assembly 4, a fixed frame 41, a cleaning motor 42, a cleaning brush 43, a grinding assembly 5, a grinding box 51, a discharge port 511, a feed plate 512, a feed port 513, a grinding shaft 52, a grinding motor 53, a grinding roller 54, a screening assembly 6, a base 61, a rotating motor 62, a first connecting seat 63, a first connecting rod 631, a second connecting seat 64, a second connecting rod 641, a connecting shaft 65, a supporting plate 66, a vibrating screen 67, a rotating block 68 and a vibrating spring 69.
Detailed Description
To make the purpose, technical solution and advantages of the present invention clearer, the following will combine the embodiments of the present invention and the corresponding drawings to clearly and completely describe the technical solution of the present invention. It is to be understood that the embodiments described are only some embodiments of the invention, and not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The technical solutions provided by the embodiments of the present invention are described in detail below with reference to the accompanying drawings.
Referring to fig. 1 to 7, the embodiment of the utility model provides a waste recovery device is used in processing of magnetic force theftproof gate valve, including workstation 1, lifting unit 2, removal subassembly 3, clearance subassembly 4, crushing unit 5 and screening subassembly 6, workstation 1 is the level setting and is equipped with down silo 11 on the horizontal plane and workstation 1, lifting unit 2 is vertical to be set up on workstation 1 and is located down the side of silo 11, removal subassembly 3 sets up on lifting unit 2 and with lifting unit 2 sliding fit, clearance subassembly 4 sets up on removal subassembly 3 and with removal subassembly 3 fixed connection, crushing unit 5 sets up the below of silo 11 and with workstation 1 fixed connection down, screening subassembly 6 sets up in crushing unit 5.
Preferably, referring to fig. 2, the lifting assembly 2 includes a lifting frame 21, a lifting motor 22, a threaded rod 23, a lifting plate 24 and two fixing rods 25, the lifting frame 21 is fixedly arranged at the top of the workbench 1 and located beside the blanking slot 11, the lifting motor 22 is fixedly arranged at the top of the lifting frame 21, the threaded rod 23 is rotatably connected in the lifting frame 21, one end of the threaded rod 23 is in transmission connection with a spindle of the lifting motor 22, the two fixing rods 25 are fixedly connected to the lifting frame 21, the lifting plate 24 is arranged on the two fixing rods 25 and the threaded rod 23, the lifting plate 24 is in threaded connection with the threaded rod 23, and two side walls of the lifting plate 24 are provided with chutes 241; when the operation of going up and down needs to be carried out, elevator motor 22 work drives threaded rod 23 and rotates on crane 21, and threaded rod 23 rotates and drives lifter plate 24 and slide on two dead levers 25 to drive removal subassembly 3 and carry out the operation of going up and down, two dead levers 25 carry out the fixed operation to lifter plate 24 at the in-process that lifter plate 24 goes up and down and prevent that lifter plate 24 from rocking.
Preferably, referring to fig. 3, the moving assembly 3 includes a sliding rod 31, a transverse pushing electric cylinder 32, a longitudinal pushing electric cylinder 33, a transverse sliding frame 34 and a longitudinal sliding frame 35, the transverse pushing electric cylinder 32 is fixedly connected to the bottom of the lifting plate 24, the longitudinal pushing electric cylinder 33 is fixedly connected to the bottom of the lifting plate 24, the transverse sliding frame 34 is fixedly connected to the telescopic end of the transverse pushing electric cylinder 32 and is in sliding fit with the lifting plate 24 through a sliding chute 241, the longitudinal sliding frame 35 is fixedly connected to the telescopic end of the longitudinal pushing electric cylinder 33 and is in sliding fit with the lifting plate 24 through a sliding chute 241, the sliding rod 31 is disposed on the longitudinal sliding frame 35 and the transverse sliding frame 34 and is in sliding fit with the transverse sliding frame 34 and the longitudinal sliding frame 35; when the transverse pushing electric cylinder 32 works to drive the transverse sliding frame 34 to slide on the lifting plate 24 through the sliding groove 241, the longitudinal pushing electric cylinder 33 works to drive the longitudinal sliding frame 35 to slide on the lifting plate 24 through the sliding groove 241, so that the sliding rod 31 is pushed to transversely and longitudinally slide on the transverse sliding frame 34 and the longitudinal sliding frame 35, and the sliding rod 31 slides to drive the cleaning assembly 4 to slide, thereby realizing cleaning operation.
Preferably, as shown in fig. 4, the cleaning assembly 4 includes a fixing frame 41, a cleaning motor 42 and a cleaning brush 43, the fixing frame 41 is fixedly connected to the bottom of the sliding rod 31, the cleaning motor 42 is fixedly connected in the fixing frame 41, a main shaft of the cleaning motor 42 is rotatably matched with the fixing frame 41, and the cleaning brush 43 is arranged on the main shaft of the cleaning motor 42 and is in transmission connection with the main shaft of the cleaning motor 42; when the movable assembly 3 drives the fixed frame 41 to move, the cleaning motor 42 works to drive the cleaning brush 43 to rotate, so that the processing waste on the workbench 1 is cleaned and swept into the crushing assembly 5, and the cleaning operation is realized.
Preferably, as shown in fig. 5 to 6, the crushing assembly 5 includes a crushing box 51, a blanking plate 512, two crushing shafts 52, two crushing motors 53 and two crushing rollers 54, the crushing box 51 is disposed below the blanking slot 11 and fixedly connected to the workbench 1, a discharge port 511 is disposed at the bottom of the crushing box 51, discharge ports 513 are disposed on two side walls of the crushing box 51, the blanking plate 512 is obliquely disposed inside the crushing box 51 and located at a side of the discharge port 511, the two crushing shafts 52 are rotationally connected to the crushing box 51 at equal intervals, the two crushing motors 53 are disposed at equal intervals on an outer side wall of the crushing box 51, each crushing shaft 52 is disposed on a main shaft of the crushing motor 53 and is in transmission connection with the main shaft of the crushing motor 53, and each crushing roller 54 is fixedly connected to the crushing shaft 52; in clearing up subassembly 4 will process the waste material and sweep into crushing case 51, two crushing motor 53 work drive two crushing axles 52 rotate on crushing case 51, two crushing axles 52 rotate and drive two crushing roller 54 and carry out crushing work with processing waste material, and kibbling processing waste material drops and realizes crushing work to screening subassembly 6.
Preferably, as shown in fig. 7, the screen assembly 6 includes a base 61, a rotation motor 62, a first connection seat 63, a first connection rod 631, a second connection seat 64, a second connection rod 641, a connection shaft 65, a support plate 66, a vibration screen 67, two rotation blocks 68, and two vibration springs 69, the base 61 is horizontally disposed on an inner sidewall of the crush box 51, the rotation motor 62 is disposed on the base 61, the first connection seat 63 and the second connection seat 64 are symmetrically disposed on a top of the base 61, the first connection rod 631 and the second connection rod 641 are rotatably connected to the first connection seat 63 and the second connection seat 64, respectively, one end of the first connection rod is in transmission connection with a main shaft of the rotation motor 62, the two rotation blocks 68 are disposed on the first connection rod 631 and the second connection rod 641, both ends of the connection shaft 65 are fixedly connected to the two rotation blocks 68, the vibrating screen 67 is horizontally arranged on the crushing box 51 and is in sliding fit with the two feed openings 513 of the crushing box 51, the bottom of the supporting plate 66 is fixedly connected with the connecting shaft 65, the top of the supporting plate 66 is rotatably connected with the bottom of the vibrating screen 67, and two ends of each vibrating spring 69 are respectively connected with the first connecting seat 63, the second connecting seat 64 and the bottom of the vibrating screen 67; when the processing waste material after smashing drops to shale shaker 67 on, it rotates to rotate motor 62 and drives first connecting rod 631 and rotate on first connecting seat 63, thereby it rotates on second connecting seat 64 to drive second connecting rod 641 through connecting axle 65 and two turning blocks 68, connecting axle 65 rotates and drives backup pad 66 and rotate and drive shale shaker 67 and produce vibrations on smashing case 51, to smashing incomplete processing waste material screening filtration, the crushing incomplete processing waste material of selecting realizes the screening operation through the outside discharge of feed opening 513, complete kibbling processing waste material drops down on flitch 512, accomplish automatic unloading operation by discharge opening 511, the recovery work to magnetic force theftproof gate valve processing waste material has been realized.
The working principle is as follows: when lifting operation is required, the lifting motor 22 works to drive the threaded rod 23 to rotate on the lifting frame 21, the threaded rod 23 rotates to drive the lifting plate 24 to slide on the two fixing rods 25, thereby driving the moving component 3 to carry out lifting operation, the two fixing rods 25 carry out fixing operation on the lifting plate 24 in the lifting process of the lifting plate 24 to prevent the lifting plate 24 from shaking, when the transverse pushing electric cylinder 32 works to drive the transverse sliding frame 34 to slide on the lifting plate 24 through the sliding groove 241, the longitudinal pushing electric cylinder 33 works to drive the longitudinal sliding frame 35 to slide on the lifting plate 24 through the sliding groove 241, thereby pushing the sliding rod 31 to realize transverse and longitudinal sliding on the transverse sliding frame 34 and the longitudinal sliding frame 35, the sliding rod 31 slides to drive the cleaning component 4 to slide to realize cleaning operation, when the moving component 3 drives the fixing frame 41 to move, the cleaning motor 42 works to drive the cleaning brush 43 to rotate so as to clean processing waste on the workbench 1 and sweep the processing waste into the crushing component 5 In, realize the clearance operation, when clearance subassembly 4 sweeps the processing waste into crushing case 51, two crushing motors 53 work and drive two crushing shafts 52 to rotate on crushing case 51, two crushing shafts 52 rotate and drive two crushing rollers 54 to crush the processing waste, the crushed processing waste drops to screening subassembly 6 to realize the crushing operation, when the crushed processing waste drops to vibrating screen 67, rotating motor 62 rotates and drives first connecting rod 631 to rotate on first connecting seat 63, thereby drive second connecting rod 641 to rotate on second connecting seat 64 through connecting shaft 65 and two rotating blocks 68, connecting shaft 65 rotates and drives supporting plate 66 to rotate and drive vibrating screen 67 to generate the vibrations on crushing case 51, the screening filtration is carried out to the crushing waste, the screened incomplete crushing processing waste is discharged through discharge port 513 to realize the screening operation, the completely crushed processing waste material falls down onto the blanking plate 512, and the automatic blanking operation is completed through the discharge hole 511, so that the recovery work of the waste material for the processing of the magnetic anti-theft gate valve is realized.
The above description is only an example of the present invention, and is not intended to limit the present invention. Various modifications and changes may occur to those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the scope of the claims of the present invention.

Claims (6)

1. The utility model provides a waste recovery device is used in processing of magnetic force theftproof gate valve which characterized in that: including workstation (1), lifting unit (2), removal subassembly (3), clearance subassembly (4), crushing unit (5) and screening subassembly (6), workstation (1) is the level setting and is equipped with down silo (11) on workstation (1) on the horizontal plane, lifting unit (2) is vertical to be set up on workstation (1) and is located the side of silo (11) down, removal subassembly (3) set up on lifting unit (2) and with lifting unit (2) sliding fit, clearance subassembly (4) set up on removal subassembly (3) and with removal subassembly (3) fixed connection, crushing unit (5) set up the below of silo (11) under and with workstation (1) fixed connection, screening subassembly (6) set up in crushing unit (5).
2. The waste recycling device for machining the magnetic anti-theft gate valve according to claim 1, wherein: lifting unit (2) are including crane (21), elevator motor (22), threaded rod (23), lifter plate (24) and two dead lever (25), crane (21) are fixed to be set up at the top of workstation (1) and are located the side of silo (11) down, elevator motor (22) are fixed to be set up at the top of crane (21), threaded rod (23) rotate to be connected in crane (21) and the one end of threaded rod (23) is connected with the spindle drive of elevator motor (22), two dead lever (25) fixed connection is on crane (21), lifter plate (24) set up on two dead lever (25) and threaded rod (23), lifter plate (24) and threaded rod (23) threaded connection, be equipped with spout (241) on two lateral walls of lifter plate (24).
3. The waste recycling device for machining the magnetic anti-theft gate valve according to claim 2, wherein: the moving component (3) comprises a sliding rod (31), a transverse pushing electric cylinder (32), a longitudinal pushing electric cylinder (33), a transverse sliding frame (34) and a longitudinal sliding frame (35), the transverse pushing electric cylinder (32) is fixedly connected to the bottom of the lifting plate (24), the longitudinal pushing electric cylinder (33) is fixedly connected to the bottom of the lifting plate (24), the transverse sliding frame (34) is fixedly connected to the telescopic end of the transverse pushing electric cylinder (32) and is in sliding fit with the lifting plate (24) through a sliding groove (241), the longitudinal sliding frame (35) is fixedly connected to the telescopic end of the longitudinal pushing electric cylinder (33) and is in sliding fit with the lifting plate (24) through a sliding groove (241), the sliding rod (31) is arranged on the longitudinal sliding frame (35) and the transverse sliding frame (34) and is in sliding fit with the transverse sliding frame (34) and the longitudinal sliding frame (35).
4. The waste recycling device for machining the magnetic anti-theft gate valve according to claim 3, wherein: clearance subassembly (4) are including fixed frame (41), clearance motor (42) and clearance brush (43), fixed frame (41) fixed connection is in the bottom of slide bar (31), clearance motor (42) fixed connection is in fixed frame (41), the main shaft and the fixed frame (41) normal running fit of clearance motor (42), clearance brush (43) set up on the main shaft of clearance motor (42) and are connected with the spindle drive of clearance motor (42).
5. The waste recycling device for machining the magnetic anti-theft gate valve according to claim 1, wherein: the crushing component (5) comprises a crushing box (51), a blanking plate (512), two crushing shafts (52), two crushing motors (53) and two crushing rollers (54), the crushing box (51) is arranged below a blanking groove (11) and fixedly connected with the workbench (1), a discharge hole (511) is formed in the bottom of the crushing box (51), blanking holes (513) are formed in two side walls of the crushing box (51), the blanking plate (512) is obliquely arranged inside the crushing box (51) and located beside the discharge hole (511), the two crushing shafts (52) are connected to the crushing box (51) in an equidistant rotating mode, the two crushing motors (53) are arranged on the outer side wall of the crushing box (51) in an equidistant mode, and each crushing shaft (52) is arranged on a main shaft of the crushing motor (53) and is connected with the main shaft of the crushing motor (53) in a transmission mode, each crushing roller (54) is fixedly connected to the crushing shaft (52).
6. The waste recycling device for machining the magnetic anti-theft gate valve according to claim 5, wherein: the screening assembly (6) comprises a base (61), a rotating motor (62), a first connecting seat (63), a first connecting rod (631), a second connecting seat (64), a second connecting rod (641), a connecting shaft (65), a supporting plate (66), a vibrating screen (67), two rotating blocks (68) and two vibrating springs (69), wherein the base (61) is horizontally arranged on the inner side wall of the crushing box (51), the rotating motor (62) is arranged on the base (61), the first connecting seat (63) and the second connecting seat (64) are symmetrically arranged at the top of the base (61), the first connecting rod (631) and the second connecting rod (641) are respectively and rotatably connected with the first connecting seat (63) and the second connecting seat (64), one end of the first connecting rod (631) is in transmission connection with a main shaft of the rotating motor (62), the two rotating blocks (68) are respectively arranged on the first connecting rod (631) and the second connecting rod (641), the both ends of connecting axle (65) all with two turning block (68) fixed connection, shale shaker (67) level set up on smashing case (51) and with smash two feed opening (513) sliding fit of case (51), the bottom and connecting axle (65) fixed connection of backup pad (66), the top of backup pad (66) is rotated with the bottom of shale shaker (67) and is connected, every the both ends of vibrations spring (69) are connected with the bottom of first connecting seat (63), second connecting seat (64) and shale shaker (67) respectively.
CN202120057075.9U 2021-01-09 2021-01-09 Waste recovery device is used in processing of magnetic force theftproof gate valve Active CN215278436U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120057075.9U CN215278436U (en) 2021-01-09 2021-01-09 Waste recovery device is used in processing of magnetic force theftproof gate valve

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Application Number Priority Date Filing Date Title
CN202120057075.9U CN215278436U (en) 2021-01-09 2021-01-09 Waste recovery device is used in processing of magnetic force theftproof gate valve

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CN215278436U true CN215278436U (en) 2021-12-24

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CN202120057075.9U Active CN215278436U (en) 2021-01-09 2021-01-09 Waste recovery device is used in processing of magnetic force theftproof gate valve

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