CN217807267U - Material stacking device with buffer anti-collision material channel - Google Patents

Material stacking device with buffer anti-collision material channel Download PDF

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Publication number
CN217807267U
CN217807267U CN202222017698.0U CN202222017698U CN217807267U CN 217807267 U CN217807267 U CN 217807267U CN 202222017698 U CN202222017698 U CN 202222017698U CN 217807267 U CN217807267 U CN 217807267U
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fixed
stacking platform
platform
stacking
plate
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CN202222017698.0U
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吕翔
俞涛
张品君
王平平
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Zhejiang Zhongji Bearing Co ltd
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Zhejiang Zhongji Bearing Co ltd
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Abstract

A stacking device with a buffering anti-collision material channel comprises a plurality of vertical stand columns, wherein an inclined stacking platform is fixed at the upper end of each stand column, a vertical and longitudinal baffle plate is inserted into the left side of the stacking platform, a linkage plate is fixed at the lower end of each baffle plate after penetrating through the stacking platform, a plurality of first guide posts vertical to the stacking platform are inserted into the linkage plate, the upper ends of the first guide posts are fixed on the stacking platform, a lifting cylinder is fixed on the linkage plate between the first guide posts, and a piston rod of the lifting cylinder penetrates through the linkage plate and is fixed on the stacking platform; the preceding terminal surface of striker plate supports to lean on there is the preceding baffle, and the preceding baffle is fixed on sign indicating number material platform, has installed fore-and-aft spacing side's pipe on the sign indicating number material platform up end on striker plate right side. The stacking device adopts the platform to replace a trough, more bearing rings can be stacked, and personnel can clean the workpiece on the stacking platform at regular time without the need of personnel, so that the labor force can be effectively saved; meanwhile, the buffer mechanism is arranged, so that the collision damage of stacked workpieces can be reduced.

Description

Material stacking device with buffer anti-collision material channel
The technical field is as follows:
the utility model relates to a forge the technical field of mould, more specifically says and relates to a sign indicating number material device that area buffering anticollision material was said.
The background art comprises the following steps:
the existing rolling bearing generally comprises a bearing ring and a rolling ball or a rolling needle between the bearing rings, wherein the bearing rings are an outer ring and an inner ring, the outer ring and the inner ring are generally formed by forging bar materials, and the bearing rings formed by forging need to be machined to meet the assembly requirement; the car is processed the conventional machine tooling mode of bearing ring, and the bearing ring accomplishes the car processing back, carries a V type silo through the guide rail in, but the bearing ring that only can pile one emission in the single V type silo needs the manual work to take away this way bearing ring, just can pile again, so need the artifical frequent bearing ring of taking, this station needs personnel to keep watch on, the bearing ring that takes off from V type silo from time to time holds in the material frame.
The utility model has the following contents:
the utility model aims at being not enough to prior art, and provide a sign indicating number material device that material was said in area buffering anticollision, its sign indicating number material device adopts the platform to replace the silo, can put things in good order more bearing ring, and personnel come regularly clear up sign indicating number material work piece on the platform can, need not personnel to keep on duty, can effectively save the labour.
A stacking device with a buffering anti-collision material channel comprises a plurality of vertical stand columns, wherein inclined stacking platforms are fixed at the upper ends of the stand columns, vertical and longitudinal material blocking plates are inserted into the left sides of the stacking platforms, linkage plates are fixed at the lower ends of the material blocking plates after penetrating through the stacking platforms, a plurality of first guide posts perpendicular to the stacking platforms are inserted into the linkage plates, the upper ends of the first guide posts are fixed on the stacking platforms, lifting cylinders are fixed on the linkage plates between the first guide posts, and piston rods of the lifting cylinders penetrate through the linkage plates and are fixed on the stacking platforms; the front end face of the material baffle abuts against the front baffle, the front baffle is fixed on the stacking platform, a longitudinal limiting square pipe is arranged on the upper end face of the stacking platform on the right side of the material baffle, a longitudinal material pushing plate is arranged on the upper end face of the stacking platform on the left side of the material baffle, a plurality of transverse second guide posts are fixed on the left end face of the material pushing plate, the second guide posts are connected onto the fixed slide blocks in an inserting mode, transverse material pushing cylinders are fixed on the material pushing plates between the second guide posts, and the material pushing cylinders and the fixed slide blocks are fixed on the upper end face of the stacking platform;
a longitudinal discharge channel is formed between the material pushing plate and the material blocking plate; the rear end of sign indicating number material platform is fixed with put to one side and just right with discharge passage carries the silo, carries to be equipped with a plurality of buffering subassemblies on the silo, and the buffering subassembly is the annular buffer block of circle including being located directly over carrying the silo, and it has horizontal counter roll to peg graft on the buffer block, and the one end of counter roll is fixed at vertical support arm, and the support arm is fixed on the lateral wall that carries the silo, and the other end plug bush of counter roll is fixed with circular shape separation blade.
Preferably, the diameter of the inner wall of the buffer block on the buffer assembly is larger than that of the support shaft, the diameter of the inner wall of the buffer block is smaller than that of the baffle, and the diameter of the baffle is smaller than that of the buffer block.
Preferably, the material pushing cylinder is an adjustable stroke cylinder, and the minimum stroke of the material pushing cylinder is larger than the distance between the material baffle plate and the material pushing plate.
Preferably, the upper end face of the striker plate is parallel to the material stacking platform, a piston rod of the lifting cylinder is perpendicular to the material stacking platform, and the stroke of the lifting cylinder is greater than the length of the striker plate extending out of the material stacking platform.
Preferably, a rubber cushion pad is fixedly adhered to the rear end face of the front baffle, the right end face of the front baffle is flush with the right end face of the stacking platform, and the front end of the stacking platform is lower than the rear end of the stacking platform.
Preferably, the rear end of the limiting square tube is inserted with an L-shaped turnover rod, a transverse dovetail groove is formed on the lower end face of the rear end of the stacking platform and abuts against a sliding seat, a dovetail-shaped guide block is formed on the sliding seat, and the guide block is inserted in the dovetail groove of the stacking platform; the rear end shaping of sliding seat has two ear seats, and the rear end of upset pole is inserted and is established between two ear seats and has been pegged graft the articulated shaft, and the both ends of articulated shaft are pegged graft and are fixed on the ear seat.
Preferably, a longitudinal stop lever is fixed on the lower end face of the right end of the stacking platform, a vertical support rod is formed at the rear end of the stop lever, a transverse support rod is formed at the upper end of the support rod, and the support rod is located on the rear side of the sliding seat.
The beneficial effects of the utility model reside in that:
the stacking device adopts the platform to replace a trough, more bearing rings can be stacked, and personnel can clean the workpiece on the stacking platform at regular time without the need of personnel, so that the labor force can be effectively saved; meanwhile, the buffer mechanism is arranged, so that the collision damage of stacked workpieces can be reduced.
Description of the drawings:
fig. 1 is a schematic perspective view of the present invention;
fig. 2 is a schematic perspective view of another angle of the present invention;
fig. 3 is a schematic view of the side view structure of the present invention.
In the figure: 1. a column; 2. a material stacking platform; 21. a dovetail groove; 3. a striker plate; 4. expanding a linkage plate; 5. a first guide post; 6. a lifting cylinder; 7. a front baffle; 8. a material pushing plate; 9. a second guide post; 10. a fixed sliding block; 11. a material pushing cylinder; 12. limiting the square tube; 13. a conveying trough; 14. a buffer assembly; 141. a support arm; 142. a buffer block; 143. a fulcrum; 144. a baffle plate; 15. a sliding seat; 151. a guide block; 152. an ear mount; 16. a turning rod; 17. a stop lever; 171. a support bar; 172. a supporting rod.
The specific implementation mode is as follows:
the embodiment is as follows: as shown in fig. 1 to 3, the stacking device with the buffer anti-collision material channel comprises a plurality of vertical upright posts 1, wherein an inclined stacking platform 2 is fixed at the upper end of each upright post 1, a vertical baffle plate 3 is inserted into the left side of the stacking platform 2, a linkage plate 4 is fixed at the lower end of the baffle plate 3 after penetrating through the stacking platform 2, a plurality of first guide posts 5 vertical to the stacking platform 2 are inserted into the linkage plate 4, the upper ends of the first guide posts 5 are fixed on the stacking platform 2, a lifting cylinder 6 is fixed on the linkage plate 4 between the first guide posts 5, and a piston rod of the lifting cylinder 6 penetrates through the linkage plate 4 and is fixed on the stacking platform 2; the front end face of the striker plate 3 abuts against a front baffle plate 7, the front baffle plate 7 is fixed on the stacking platform 2, a longitudinal limiting square tube 12 is arranged on the upper end face of the stacking platform 2 on the right side of the striker plate 3, a longitudinal pushing plate 8 is arranged on the upper end face of the stacking platform 2 on the left side of the striker plate 3, a plurality of transverse second guide posts 9 are fixed on the left end face of the pushing plate 8, the second guide posts 9 are inserted into fixed sliding blocks 10, a transverse pushing air cylinder 11 is fixed on the pushing plate 8 between the second guide posts 9, and the pushing air cylinder 11 and the fixed sliding blocks 10 are both fixed on the upper end face of the stacking platform 2;
a longitudinal discharge channel is formed between the material pushing plate 8 and the material blocking plate 3; the rear end of the stacking platform 2 is fixedly provided with a conveying trough 13 which is obliquely arranged and is right opposite to the discharge channel, the conveying trough 13 is provided with a plurality of buffer assemblies 14, each buffer assembly 14 comprises a buffer block 142 which is positioned right above the conveying trough 13 and is annular, a transverse support shaft 143 is inserted into the buffer block 142, one end of each support shaft 143 is fixed on a vertical support arm 141, the support arms 141 are fixed on the outer side wall of the conveying trough 13, and the other ends of the support shafts 143 are inserted and sleeved with round blocking pieces 144.
Preferably, the diameter of the inner wall of the buffer block 142 of the buffer assembly 14 is larger than the diameter of the fulcrum 143, the diameter of the inner wall of the buffer block 142 is smaller than the diameter of the baffle 144, and the diameter of the baffle 144 is smaller than the diameter of the buffer block 142.
Preferably, the material pushing cylinder 11 is an adjustable stroke cylinder, and the minimum stroke of the material pushing cylinder 11 is larger than the distance between the striker plate 3 and the material pushing plate 8.
Preferably, the up end of striker plate 3 and sign indicating number platform 2 parallel, the piston rod of lift cylinder 6 is mutually perpendicular with sign indicating number platform 2, the stroke of lift cylinder 6 is greater than the length that striker plate 3 stretches out sign indicating number platform 2.
Preferably, a rubber cushion pad is fixedly adhered to the rear end face of the front baffle 7, the right end face of the front baffle 7 is flush with the right end face of the stacking platform 2, and the front end of the stacking platform 2 is lower than the rear end of the stacking platform 2.
Preferably, the rear end of the limiting square tube 12 is inserted with an L-shaped turning rod 16, a transverse dovetail groove 21 is formed on the lower end face of the rear end of the stacking platform 2 and abuts against the sliding seat 15, a dovetail-shaped guide block 151 is formed on the sliding seat 15, and the guide block 151 is inserted in the dovetail groove 21 of the stacking platform 2; the rear end shaping of sliding seat 15 has two ear seats 152, and the rear end of upset pole 16 is inserted and is established between two ear seats 152 and has been pegged graft the articulated shaft, and the both ends of articulated shaft are pegged graft and are fixed on ear seat 152.
Preferably, a longitudinal stop lever 17 is fixed on the lower end face of the right end of the stacking platform 2, a vertical support rod 171 is formed at the rear end of the stop lever 17, a transverse support rod 172 is formed at the upper end of the support rod 171, and the support rod 172 is located at the rear side of the sliding seat 15.
The working principle is as follows: the utility model relates to a yard material device that area buffering anticollision material was said, the main technical point of its yard material device is replacing circular silo structure with current platform structure, can pile up the multirow bearing ring on the platform, compare only one row of bearing ring originally, the bearing capacity improves greatly, when concrete sign indicating number, the work piece of accomplishing car processing rolls from carrying silo 13 to the discharge passageway between striker plate 3 and scraping wings 8, when arranging the work piece in the discharge passageway fully, start lift cylinder 6 and realize that striker plate 3 descends and retracts into sign indicating number material platform 2, start pushing wings cylinder 11 afterwards, scraping wings 8 pushes the work piece to sign indicating number material platform 2 on the right side of striker plate 3, utilize spacing side's pipe 12 to spacing the work piece, prevent effectively that the work piece from overturning; the pushing plates 8 are pushed one by one to stack the workpieces on the stacking platform 2, when the stacking platform 2 is emptied, the limiting square tubes 12 are moved away from the stacking platform 2, and the workpieces can be taken from the right side of the stacking platform 2;
and the conveying trough 13 is provided with a plurality of buffer assemblies 14 with buffer blocks 142, when the workpiece rolls and falls, the existing buffer blocks 142 are sprayed and contacted to reduce the kinetic energy of the workpiece, and then the workpiece passes through the buffer blocks 142 and continuously rolls.
The examples are intended to be illustrative, but not limiting, of the invention. The embodiments can be modified by those skilled in the art without departing from the spirit and scope of the present invention, and therefore, the scope of the present invention should be defined by the appended claims.

Claims (7)

1. The utility model provides a sign indicating number material device that area buffering anticollision material was said, includes a plurality of vertical stands (1), and the upper end of stand (1) is fixed with sign indicating number material platform (2) of putting to one side, its characterized in that: a vertical longitudinal material baffle (3) is inserted into the left side of the material stacking platform (2), a linkage plate (4) is fixed to the lower end of the material baffle (3) after penetrating through the material stacking platform (2), a plurality of first guide posts (5) perpendicular to the material stacking platform (2) are inserted into the linkage plate (4), the upper ends of the first guide posts (5) are fixed to the material stacking platform (2), a lifting cylinder (6) is fixed to the linkage plate (4) between the first guide posts (5), and a piston rod of the lifting cylinder (6) penetrates through the linkage plate (4) and is fixed to the material stacking platform (2); the front end face of the striker plate (3) is abutted against a front baffle plate (7), the front baffle plate (7) is fixed on the stacking platform (2), a longitudinal limiting square tube (12) is arranged on the upper end face of the stacking platform (2) on the right side of the striker plate (3), a longitudinal pushing plate (8) is arranged on the upper end face of the stacking platform (2) on the left side of the striker plate (3), a plurality of transverse second guide posts (9) are fixed on the left end face of the pushing plate (8), the second guide posts (9) are inserted on fixed sliding blocks (10), transverse pushing cylinders (11) are fixed on the pushing plate (8) between the second guide posts (9), and the pushing cylinders (11) and the fixed sliding blocks (10) are fixed on the upper end face of the stacking platform (2);
a longitudinal discharge channel is formed between the material pushing plate (8) and the material blocking plate (3); the rear end of sign indicating number material platform (2) is fixed with puts to one side and just right transport silo (13) with discharge passage, be equipped with a plurality of buffer unit (14) on transport silo (13), buffer unit (14) are annular buffer block (142) including being located directly over transport silo (13), it has horizontal counter shaft (143) to peg graft on buffer block (142), vertical support arm (141) are fixed to the one end of counter shaft (143), support arm (141) are fixed on the lateral wall of carrying silo (13), the other end plug bush of counter shaft (143) is fixed with circular shape separation blade (144).
2. The stacking device with the buffering anti-collision material channel as claimed in claim 1, wherein: the diameter of the inner wall of a buffer block (142) on the buffer assembly (14) is larger than that of the fulcrum shaft (143), the diameter of the inner wall of the buffer block (142) is smaller than that of the baffle (144), and the diameter of the baffle (144) is smaller than that of the buffer block (142).
3. The material stacking device with the buffer anti-collision material channel as claimed in claim 1, wherein: the pushing cylinder (11) adopts an adjustable stroke cylinder, and the minimum stroke of the pushing cylinder (11) is larger than the distance between the striker plate (3) and the pushing plate (8).
4. The stacking device with the buffering anti-collision material channel as claimed in claim 1, wherein: the upper end face of the striker plate (3) is parallel to the material stacking platform (2), a piston rod of the lifting cylinder (6) is perpendicular to the material stacking platform (2), and the stroke of the lifting cylinder (6) is larger than the length of the striker plate (3) extending out of the material stacking platform (2).
5. The stacking device with the buffering anti-collision material channel as claimed in claim 1, wherein: a rubber cushion pad is fixedly adhered to the rear end face of the front baffle (7), the right end face of the front baffle (7) is flush with the right end face of the stacking platform (2), and the front end of the stacking platform (2) is lower than the rear end of the stacking platform (2).
6. The stacking device with the buffering anti-collision material channel as claimed in claim 1, wherein: the rear end of the limiting square tube (12) is inserted with an L-shaped turnover rod (16), a transverse dovetail groove (21) is formed on the lower end face of the rear end of the stacking platform (2) and abuts against a sliding seat (15), a dovetail-shaped guide block (151) is formed on the sliding seat (15), and the guide block (151) is inserted in the dovetail groove (21) of the stacking platform (2); the rear end shaping of sliding seat (15) has two ear seats (152), and the rear end of upset pole (16) is inserted and is established between two ear seats (152) and be pegged graft and be connected the articulated shaft, and the both ends of articulated shaft are pegged graft and are fixed on ear seat (152).
7. The stacking device with the buffering anti-collision material channel as claimed in claim 6, wherein: be fixed with fore-and-aft pin (17) on the lower terminal surface of sign indicating number material platform (2) right-hand member, the shaping of pin (17) rear end has vertical bracing piece (171), and the upper end shaping of bracing piece (171) has horizontal die-pin (172), and die-pin (172) are located the rear side of sliding seat (15).
CN202222017698.0U 2022-08-02 2022-08-02 Material stacking device with buffer anti-collision material channel Active CN217807267U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222017698.0U CN217807267U (en) 2022-08-02 2022-08-02 Material stacking device with buffer anti-collision material channel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222017698.0U CN217807267U (en) 2022-08-02 2022-08-02 Material stacking device with buffer anti-collision material channel

Publications (1)

Publication Number Publication Date
CN217807267U true CN217807267U (en) 2022-11-15

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ID=83973314

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222017698.0U Active CN217807267U (en) 2022-08-02 2022-08-02 Material stacking device with buffer anti-collision material channel

Country Status (1)

Country Link
CN (1) CN217807267U (en)

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