CN215278936U - Ash and dust removing device for car loader - Google Patents

Ash and dust removing device for car loader Download PDF

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Publication number
CN215278936U
CN215278936U CN202121423462.6U CN202121423462U CN215278936U CN 215278936 U CN215278936 U CN 215278936U CN 202121423462 U CN202121423462 U CN 202121423462U CN 215278936 U CN215278936 U CN 215278936U
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China
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block
moving
dust
feeding
fixed
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Active
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CN202121423462.6U
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Chinese (zh)
Inventor
周燕权
周汗
罗辉
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Wuhan Lanhaiyan Smart Loading Equipment Co ltd
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Wuhan Lanhaiyan Smart Loading Equipment Co ltd
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Abstract

The utility model relates to a dust cleaning and removing device for a car loader, which comprises a feeding block, wherein a dust cleaning component is arranged on the feeding block; the dust cleaning assembly comprises a rotating assembly and a moving assembly, the bottom of the feeding block is fixedly connected with a first fixing block, and a moving block is arranged on one side, away from the feeding block, of the first fixing block; the moving assembly is arranged on the moving block and the first fixing block and drives the moving block to move along the length direction of the feeding block; the dust cleaning component further comprises a dust collection part, the rotating component is arranged on the moving block, the dust collection part is connected with the moving block, and the rotating component drives the dust collection part to do arc motion on two sides of the feeding block. The utility model relates to a technical field of carloader. The utility model discloses have the work efficiency who has improved the clear operation, reduced the cost of labor's of mill effect.

Description

Ash and dust removing device for car loader
Technical Field
The utility model belongs to the technical field of the technique of carloader and specifically relates to a be used for carloader deashing dust collector.
Background
The carloader realizes that quick and orderly placing the article on the transport vechicle automatically.
The existing car loader is provided with a movable cart, a movable trolley and a feeding block, the movable cart realizes the back and forth movement of the car loader, the movable trolley is arranged on the movable cart, the movable trolley is connected with the feeding block, and the movable trolley drives the feeding block to move left and right on the movable cart. The articles are moved from the feedblock to the transport cart.
After each shipment, the feedblock is full of dust. All need clear up on the pay-off piece after work is accomplished at every turn, when avoiding next transportation operation, article and most dust on the pay-off piece mix and enter into the transport vechicle mutually. However, each cleaning operation requires a large amount of labor, which increases the labor cost of the factory and reduces the efficiency of the cleaning operation.
SUMMERY OF THE UTILITY MODEL
According to the not enough of prior art existence, the utility model aims at providing a be used for carloader deashing dust collector has the work efficiency who has improved the clear operation, has reduced the effect of the cost of labor of mill.
The above technical purpose of the present invention can be achieved by the following technical solutions:
the ash and dust removing device for the car loader comprises a feeding block, wherein a dust removing assembly is arranged on the feeding block;
the dust cleaning assembly comprises a rotating assembly and a moving assembly, the bottom of the feeding block is fixedly connected with a first fixing block, and a moving block is arranged on one side, away from the feeding block, of the first fixing block;
the moving assembly is arranged on the moving block and the first fixing block and drives the moving block to move along the length direction of the feeding block;
the dust cleaning component further comprises a dust collection part, the rotating component is arranged on the moving block, the dust collection part is connected with the moving block, and the rotating component drives the dust collection part to do arc motion on two sides of the feeding block.
Through adopting above-mentioned technical scheme, the runner assembly drives dust absorption portion and moves to the opposite side of pay-off piece from one side of first fixed block, and the removal subassembly drives dust absorption portion along the length direction repetitive movement of pay-off piece, clears away the dust on the pay-off piece motion surface through dust absorption portion, has improved the work efficiency who clears away the operation, has reduced the cost of labor of mill.
The present invention may be further configured in a preferred embodiment as: the moving assembly comprises a connecting block, a first placing groove is formed in one side of the first fixing block, the connecting block is located in the first placing groove, the connecting block is matched with the first placing groove in length in the width direction, and the other side of the connecting block is fixed with the moving block;
a plurality of guide rods are arranged in the first placing groove in parallel along the length direction of the first placing groove, penetrate through the connecting block and are connected with the guide rods in a sliding mode;
the utility model discloses a pay-off piece, including first fixed block, pay-off piece, first motor, motion piece, screw rod, first dead lever, first fixed block keep away from one side symmetry of pay-off piece is provided with two first fixed plates, one side of first fixed plate is fixed with first motor, the output of first motor is fixed with the screw rod, the screw rod passes the motion piece, just the screw rod with motion piece threaded connection, another one side of first fixed plate is fixed with first dead lever, the one end of first dead lever extends to inside the screw rod, the screw rod with first dead lever rotates to be connected.
Through adopting above-mentioned technical scheme, first motor drives the screw rod and rotates around first dead lever, and the screw rod drives the motion piece and moves along the linear direction of guide arm place, and the motion piece drives the length direction motion of dust absorption portion along the pay-off piece.
The present invention may be further configured in a preferred embodiment as: the rotating assembly comprises two rotating rods, the two rotating rods are respectively arranged on two side surfaces of the moving block in the length direction, one ends of the two rotating rods extend into the moving block, and the moving block is rotatably connected with the rotating rods;
one ends of the two rotating rods, which are far away from the moving block, are respectively fixed with a second fixing plate, and the dust collection part is fixed between the two second fixing plates;
one of them the outer peripheral face of dwang is provided with first conical gear, the second standing groove has been seted up to the bottom of motion piece, the inside second motor that is provided with of second standing groove, the output end of second motor is fixed with second conical gear, just second conical gear with first conical gear intermeshing.
Through adopting above-mentioned technical scheme, the second motor drives second conical gear and rotates, and second conical gear drives first conical gear and rotates, and first conical gear drives the dwang rotation rather than linking to each other, and the dwang drives and corresponds the rotation of second fixed plate, and the second fixed plate drives dust absorption portion and rotates, makes dust absorption portion move to working face one side of pay-off piece.
The present invention may be further configured in a preferred embodiment as: a connecting rod is arranged between the two second fixing plates, and the dust suction part is positioned between the connecting rod and the moving block.
Through adopting above-mentioned technical scheme, two second fixed plates are connected to the connecting rod, and the second motor drives one of them second fixed plate and rotates, and then drives the connecting rod and rotate, and the connecting rod drives another second fixed plate and rotates, and the connecting rod has reduced the external force that dust absorption portion received when two second fixed plates rotate, has improved the life of dust absorption portion.
The present invention may be further configured in a preferred embodiment as: and two baffles are symmetrically arranged on one side of the feeding block, which is far away from the moving block, along the length direction of the feeding block.
Through adopting above-mentioned technical scheme, article motion range on the feedblock has been injectd to two baffles, avoids article and the contact of stripping from of feedblock on the feedblock.
The present invention may be further configured in a preferred embodiment as: a plurality of third placing grooves are formed in one side, away from the moving block, of the feeding block, rolling balls are movably arranged in the third placing grooves, the vertical sections of the third placing grooves are major arcs, and the rolling balls are partially located on the outer side of the feeding block.
Through adopting above-mentioned technical scheme, the ball contacts with the article on the pay-off piece, has reduced the frictional force between article and the pay-off piece, makes article quick motion on the pay-off piece.
To sum up, the utility model discloses a following at least one useful technological effect:
1. through being provided with removal subassembly and rotating assembly on feedblock and motion piece, rotating assembly drives dust absorption portion and does semi-circular rotation, and removal subassembly drives dust absorption portion and moves along the length direction of feedblock, and dust absorption portion clears away the dust on the feedblock motion face, has improved the work efficiency who clears away the operation, has reduced the cost of labor of mill.
2. Through being provided with the connecting rod between two second fixed plates, the connecting rod has reduced the external force that dust absorption portion received when two second fixed plates rotate, has improved the life of dust absorption portion.
3. Through being provided with two baffles along its length direction symmetry in the one side of the motion piece is kept away from to the feedblock, article motion range on the feedblock has been injectd to two baffles, avoids article and the feedblock on the feedblock to break away from the contact.
4. A plurality of balls capable of freely moving are arranged on one side of the working surface of the feeding block, and the balls are in contact with the articles on the feeding block, so that the friction force between the articles and the feeding block is reduced, and the articles can rapidly move on the feeding block.
Drawings
Fig. 1 is a schematic view of the entire internal structure of the present embodiment.
Fig. 2 is a schematic view of the internal structure of one side of fig. 1.
Fig. 3 is an enlarged schematic view of a portion a in fig. 2.
In the figure, 1, a feeding block; 2. a dust removal assembly; 3. a rotating assembly; 4. a moving assembly; 21. a first fixed block; 22. a motion block; 23. a dust suction part; 41. connecting blocks; 42. a first placing groove; 43. a guide bar; 44. a first fixing plate; 45. a first motor; 46. a screw; 47. a first fixing lever; 31. rotating the rod; 32. a second fixing plate; 33. a first conical gear; 34. a second placing groove; 35. a second motor; 36. a second conical gear; 5. a connecting rod; 6. a baffle plate; 7. a third placing groove; 71. and a ball.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example (b):
referring to fig. 1-3, the utility model discloses a be used for carloader deashing dust collector, including pay-off piece 1. Two baffles 6 are symmetrically arranged on one side of the working surface of the feeding block 1 along the length direction of the feeding block. The two baffles 6 define the range of motion of the articles on the feedblock 1, avoiding the articles on the feedblock 1 to come out of contact with the feedblock 1.
A plurality of third standing grooves 7 are formed in one side of the working face of the feeding block 1, rolling balls 71 are movably arranged in the third standing grooves 7, the vertical sections of the third standing grooves 7 are major arcs, and the rolling balls 71 are partially located on the outer side of the feeding block 1. The balls 71 contact with the articles on the feeding block 1, so that the friction force between the articles and the feeding block 1 is reduced, and the articles can rapidly move on the feeding block 1.
The feeding block 1 is provided with a dust cleaning component 2. The dust cleaning component 2 comprises a rotating component 3, a moving component 4 and a dust absorption part 23, the bottom of the feeding block 1 is fixedly connected with a first fixing block 21, and a moving block 22 is arranged on one side, away from the feeding block 1, of the first fixing block 21; the moving component 4 is arranged on the moving block 22 and the first fixing block 21, and the moving component 4 drives the moving block 22 to move along the length direction of the feeding block 1.
The rotating assembly 3 is arranged on the moving block 22, the dust collection part 23 is connected with the moving block 22, and the rotating assembly 3 drives the dust collection part 23 to do arc motion on two sides of the feeding block 1.
The rotating assembly 3 drives the dust collection portion 23 to move to the other side of the feeding block 1 from one side of the first fixing block 21, the moving assembly 4 drives the dust collection portion 23 to move repeatedly along the length direction of the feeding block 1, dust on the moving surface of the feeding block 1 is removed through the dust collection portion 23, the work efficiency of removing operation is improved, and the labor cost of a factory is reduced.
The moving assembly 4 comprises a connecting block 41, a first placing groove 42 is formed in one side of the first fixing block 21, the connecting block 41 is located in the first placing groove 42, and one side, away from the feeding block 1, of the connecting block 41 is flush with one side, away from the feeding block 1, of the first fixing block 21. And the connecting block 41 is matched with the first placing groove 42 in length in the width direction, and the other side of the connecting block 41 is fixed with the moving block 22.
The first placing groove 42 is internally provided with a plurality of guide rods 43 in parallel along the length direction, the guide rods 43 penetrate through the connecting block 41, and the connecting block 41 is connected with the guide rods 43 in a sliding manner. In the present embodiment, the number of the guide rods 43 is eight.
Two first fixing plates 44 are symmetrically arranged on one side, away from the feeding block 1, of the first fixing block 21, a first motor 45 is fixed on one side of each first fixing plate 44, a screw rod 46 is fixed at the output end of each first motor 45, each screw rod 46 penetrates through the corresponding moving block 22, each screw rod 46 is in threaded connection with the corresponding moving block 22, a first fixing rod 47 is fixed on one side of the other first fixing plate 44, one end of each first fixing rod 47 extends into the corresponding screw rod 46, and each screw rod 46 is rotatably connected with the corresponding first fixing rod 47. The first motor 45 drives the screw rod 46 to rotate around the first fixing rod 47, the screw rod 46 drives the moving block 22 to move along the linear direction of the guide rod 43, and the moving block 22 drives the dust suction part 23 to move along the length direction of the feeding block 1.
The rotating assembly 3 includes two rotating rods 31, the two rotating rods 31 are respectively disposed on two sides of the length direction of the moving block 22, one ends of the two rotating rods 31 all extend to the inside of the moving block 22, and the moving block 22 is rotatably connected with the rotating rods 31. The ends of the two rotating levers 31 far from the moving block 22 are both fixed with second fixing plates 32. The widths of the feeding block 1, the first fixing block 21 and the moving block 22 are all smaller than the linear distance between the two second fixing plates 32.
The dust suction part 23 is fixed between the two second fixing plates 32. A connecting rod 5 is arranged between the two second fixing plates 32, and the dust suction part 23 is positioned between the connecting rod 5 and the moving block 22. Two second fixed plates 32 are connected to connecting rod 5, and second motor 35 drives one of them second fixed plate 32 and rotates, and then drives connecting rod 5 and rotate, and connecting rod 5 drives another second fixed plate 32 and rotates, and connecting rod 5 has reduced the external force that dust absorption portion 23 received when two second fixed plates 32 rotate, has improved the life of dust absorption portion 23.
A first conical gear 33 is arranged on the peripheral surface of one of the rotating rods 31, a second placing groove 34 is formed in the bottom of the moving block 22, a second motor 35 is arranged in the second placing groove 34, a second conical gear 36 is fixed at the output end of the second motor 35, and the second conical gear 36 is meshed with the first conical gear 33. The second motor 35 drives the second bevel gear 36 to rotate, the second bevel gear 36 drives the first bevel gear 33 to rotate, the first bevel gear 33 drives the rotating rod 31 connected with the first bevel gear to rotate, the rotating rod 31 drives the corresponding second fixing plate 32 to rotate, and the second fixing plate 32 drives the dust collection part 23 to rotate, so that the dust collection part 23 moves to one side of the working surface of the feeding block 1.
The implementation principle of the above embodiment is as follows:
when the conveying work is finished, the dust cleaning operation needs to be carried out on the feeding block 1.
The first motor 45, the second motor 35 and the dust suction part 23 are connected to a power supply outside the apparatus.
The operator first starts the second motor 35, the second motor 35 drives the corresponding rotating rod 31 to rotate, the rotating rod 31 drives the corresponding second fixing plate 32 to rotate, and the second fixing plate 32 drives the connecting rod 5 and the dust collection portion 23 to start to rotate, so as to drive the other second fixing plate 32 to rotate together.
When the dust suction part 23 rotates to the working surface of the feeding block 1, the operator stops the second motor 35.
Further, the operator starts the dust suction part 23, the dust suction part 23 is connected with a dust collection bag through an air pipe, and dust absorbed by the dust suction part 23 enters the interior of the collection bag through the air pipe.
The operator starts the first motor 45 again, the first motor 45 drives the screw rod 46 to rotate around the first fixing rod 47, and the screw rod 46 drives the feeding block 1 to move along the linear direction of the guide rod 43. The motion block 22 drives the two rotating rods 31 to move along the linear direction of the feeding block 1, and the rotating rods 31 drive the dust suction part 23 to move linearly. The dust suction part 23 sucks dust on the working surface of the feed block 1 into the collection bag.
An operator can control the first motor 45 to enable the dust suction part 23 to repeatedly move above one side of the working surface of the feeding block 1 until one side of the working surface of the feeding block 1 is completely clean.
Meanwhile, an operator can independently start the first motor 45, and the first motor 45 finally drives the dust suction part 23 to clean dust on one side, far away from the feeding block 1, of the first fixing block 21 and the feeding block 1.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (6)

1. The ash and dust removing device for the car loader comprises a feeding block (1), and is characterized in that a dust removing assembly (2) is arranged on the feeding block (1);
the dust cleaning component (2) comprises a rotating component (3) and a moving component (4), the bottom of the feeding block (1) is fixedly connected with a first fixing block (21), and a moving block (22) is arranged on one side, far away from the feeding block (1), of the first fixing block (21);
the moving assembly (4) is arranged on the moving block (22) and the first fixing block (21), and the moving assembly (4) drives the moving block (22) to move along the length direction of the feeding block (1);
the dust cleaning component (2) further comprises a dust collection part (23), the rotating component (3) is arranged on the moving block (22), the dust collection part (23) is connected with the moving block (22), and the rotating component (3) drives the dust collection part (23) to do arc motion on two sides of the feeding block (1).
2. The ash and dust removing device for the car loader according to claim 1, characterized in that: the moving assembly (4) comprises a connecting block (41), a first placing groove (42) is formed in one side of the first fixing block (21), the connecting block (41) is located in the first placing groove (42), the connecting block (41) is matched with the first placing groove (42) in length in the width direction, and the other side of the connecting block (41) is fixed with the moving block (22);
a plurality of guide rods (43) are arranged in the first placing groove (42) in parallel along the length direction of the first placing groove, the guide rods (43) penetrate through the connecting block (41), and the connecting block (41) is connected with the guide rods (43) in a sliding manner;
keep away from first fixed block (21) one side symmetry of pay-off piece (1) is provided with two first fixed plates (44), one side of first fixed plate (44) is fixed with first motor (45), the output of first motor (45) is fixed with screw rod (46), screw rod (46) pass motion piece (22), just screw rod (46) with motion piece (22) threaded connection, another one side of first fixed plate (44) is fixed with first dead lever (47), the one end of first dead lever (47) extends to inside screw rod (46), screw rod (46) with first dead lever (47) rotate and are connected.
3. The ash and dust removing device for the car loader according to claim 1, characterized in that: the rotating assembly (3) comprises two rotating rods (31), the two rotating rods (31) are respectively arranged on two side faces of the moving block (22) in the length direction, one ends of the two rotating rods (31) extend into the moving block (22), and the moving block (22) is rotatably connected with the rotating rods (31);
second fixing plates (32) are fixed at one ends of the two rotating rods (31) far away from the moving block (22), and the dust collection part (23) is fixed between the two second fixing plates (32);
one of them the periphery face of dwang (31) is provided with first conical gear (33), second standing groove (34) have been seted up to the bottom of motion piece (22), second standing groove (34) inside is provided with second motor (35), the output of second motor (35) is fixed with second conical gear (36), just second conical gear (36) with first conical gear (33) intermeshing.
4. The ash and dust removing device for the car loader according to claim 3, characterized in that: a connecting rod (5) is arranged between the two second fixing plates (32), and the dust suction part (23) is positioned between the connecting rod (5) and the moving block (22).
5. The ash and dust removing device for the car loader according to claim 1, characterized in that: two baffles (6) are symmetrically arranged on one side, far away from the moving block (22), of the feeding block (1) along the length direction of the feeding block.
6. The ash and dust removing device for the car loader according to claim 1, characterized in that: a plurality of third placing grooves (7) are formed in one side, far away from the moving block (22), of the feeding block (1), rolling balls (71) are movably arranged in the third placing grooves (7), the vertical sections of the third placing grooves (7) are major arcs, and the rolling balls (71) are partially located on the outer side of the feeding block (1).
CN202121423462.6U 2021-06-25 2021-06-25 Ash and dust removing device for car loader Active CN215278936U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121423462.6U CN215278936U (en) 2021-06-25 2021-06-25 Ash and dust removing device for car loader

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121423462.6U CN215278936U (en) 2021-06-25 2021-06-25 Ash and dust removing device for car loader

Publications (1)

Publication Number Publication Date
CN215278936U true CN215278936U (en) 2021-12-24

Family

ID=79518468

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121423462.6U Active CN215278936U (en) 2021-06-25 2021-06-25 Ash and dust removing device for car loader

Country Status (1)

Country Link
CN (1) CN215278936U (en)

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