CN212442336U - A material receiving device for punch production - Google Patents

A material receiving device for punch production Download PDF

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Publication number
CN212442336U
CN212442336U CN202021881625.0U CN202021881625U CN212442336U CN 212442336 U CN212442336 U CN 212442336U CN 202021881625 U CN202021881625 U CN 202021881625U CN 212442336 U CN212442336 U CN 212442336U
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fixedly installed
sets
assembly
wall
material receiving
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CN202021881625.0U
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Chinese (zh)
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佘方元
周文祥
唐燕燕
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Dongguan Hailuo Industrial Co ltd
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Dongguan Hailuo Industrial Co ltd
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Abstract

本实用新型属于冲床生产领域,特别涉及一种用于冲床生产的接料装置;所述接料装置包括底板、工作箱、提升组件和卸料组件;所述工作箱包括第一箱体;所述第一箱体固定安装在所述底板;所述第一箱体顶部开设有第一进料口,且所述第一箱体一侧外壁上开设有第一出料口;所述底板上开设有第二内槽,所述第二内槽位于所述工作箱的第一出料口一侧;所述提升组件底部固定安装在所述第二内槽中;所述卸料组件一端固定安装在所述提升组件的滑动机构上;本发明可实现自动卸料的功能,降低了劳动强度;同时可将冲压件表面残留的冲压粉清洁干净,并且还可以起到加速冷却冲压件的效果。

Figure 202021881625

The utility model belongs to the field of punch production, in particular to a material receiving device for punch production; the material receiving device comprises a bottom plate, a work box, a lifting component and a discharge component; the work box includes a first box body; the first box body is fixedly installed on the bottom plate; the top of the first box body is provided with a first feeding port, and the outer wall of one side of the first box body is provided with a first discharging port; the bottom plate is provided with a first feeding port; A second inner groove is opened, and the second inner groove is located on one side of the first discharge port of the working box; the bottom of the lifting assembly is fixedly installed in the second inner groove; one end of the discharge assembly is fixed It is installed on the sliding mechanism of the lifting assembly; the present invention can realize the function of automatic unloading and reduce labor intensity; at the same time, the residual stamping powder on the surface of the stamping part can be cleaned, and the effect of accelerating the cooling of the stamping part can also be achieved. .

Figure 202021881625

Description

Material receiving device for punch production
Technical Field
The utility model belongs to punch press production field, in particular to receiving device for punch press production.
Background
The punch press is common mechanical equipment in industrial production, the processing mode is to punch parts by means of kinetic energy of the punch, compared with processes such as turning and polishing, the punching process has the advantages of material and energy saving, high working efficiency and the like, the operation is simple, the technical requirement on operators is low, products which cannot be achieved by other machining processes can be manufactured through various die applications, and therefore the punch press is more and more widely applied.
The stamping parts produced by the punch press need a special material receiving device to receive materials, a lot of stamping powder can be remained on the surfaces of the stamping parts, the production quality of subsequent processes can be reduced by the stamping powder, the temperature of the stamping parts which are just stamped is very high, and the next process can be carried out after the stamping parts are fully cooled, so that the working efficiency is reduced, the stamping parts need to be cleaned and cooled, but the traditional material receiving device does not have the cleaning and cooling functions.
Traditional receiving device need manually carry the stamping workpiece when getting into next process, nevertheless because the stamping workpiece is mostly metal product, and weight is heavier, so can aggravate intensity of labour greatly.
Disclosure of Invention
In order to solve the problems, the utility model provides a material receiving device for punch production, which comprises a bottom plate, a work box, a lifting assembly and a discharging assembly;
the working box comprises a first box body; the first box body is fixedly arranged on the bottom plate; a first feeding hole is formed in the top of the first box body, and a first discharging hole is formed in the outer wall of one side of the first box body;
a second inner groove is formed in the bottom plate and is positioned on one side of the first discharge hole of the working box; the bottom of the lifting assembly is fixedly arranged in the second inner groove;
one end of the discharging assembly is fixedly arranged on the sliding mechanism of the lifting assembly;
the material receiving device further comprises a cleaning assembly, and the cleaning assembly comprises a second box body, a water pumping pipe, a stirring mechanism, a communicating pipe, a water pumping pump and an electromagnetic valve; the second box body is fixedly arranged in the first box body, a working bin is arranged in the second box body, and a second feeding hole and a second discharging hole are respectively formed in the outer wall of one side of the working bin; the second discharge hole is positioned below the second feed inlet; a water storage bin is arranged below the working bin; two ends of the communicating pipe are respectively communicated with the working bin and the water storage bin; the inner bottom of the working bin is an inclined plane, and one end of the inclined plane close to the second discharge hole is the lowest point; the electromagnetic valve is fixedly arranged on the communicating pipe; one end of the water pumping pipe penetrates into the water storage bin, the other end of the water pumping pipe is communicated with the water pumping pump through a hoop, and the water pumping pump is fixedly installed on the inner wall of one side of the working bin; the stirring mechanism is fixedly arranged on the second box body; the second feed inlet is positioned below the first feed inlet.
Preferably, the stirring mechanism comprises a first motor, a first rotating rod and a stirring blade;
the first motor is fixedly arranged at the top of the second box body, and the output end of the first motor penetrates into the working bin and is in transmission connection with the first rotating rod through a coupler; the stirring blade is fixedly arranged on the first rotating rod.
Preferably, the lifting assembly comprises an electric turntable, a lifting column, a third motor, a screw rod and a second sliding block;
the electric turntable is fixedly arranged in the second inner groove; the bottom of the lifting column is fixedly arranged on the electric turntable, and the top of the lifting column penetrates above the second inner groove; a cavity is formed in the lifting column, the third motor is fixedly mounted at the top of the lifting column, and an output shaft of the third motor penetrates into the cavity and is in transmission connection with one end of the screw rod through a coupler; the other end of the screw rod is rotatably connected to the inner wall of the bottom of the cavity through a bearing seat; the inner wall of one side, far away from the outlet, of the screw rod is provided with a second sliding groove, the second sliding block is in threaded connection with the screw rod, one end of the second sliding block is in the second sliding groove in a sliding mode, the other end of the second sliding block penetrates through the outside of the cavity, and the second sliding block is fixedly installed on the discharging assembly.
Preferably, the discharging assembly comprises a storage bucket mounting plate, a storage bucket, a fourth motor, a second rotating rod, a third rotating rod and two groups of storage bucket supporting blocks;
the storage barrel mounting plate is fixedly mounted on the second sliding block; the storage barrels are arranged between the two storage barrel supporting blocks, and the inlets of the storage barrels are positioned below the first discharge ports; the two groups of storage barrel supporting blocks are fixedly arranged on the outer wall of one side of the storage barrel mounting plate, which is far away from the second sliding block; the fourth motor is fixedly arranged on the outer wall of one group of storage barrel supporting blocks, and the output end of the fourth motor penetrates between the two groups of storage barrel supporting blocks and is in transmission connection with the second rotating rod through a coupler; the other end of the second rotating rod is fixedly arranged on the outer wall of one side of the storage barrel; and one end of the third rotating rod is fixedly arranged on the outer wall of the other side of the storage barrel, and the other end of the third rotating rod is rotatably connected with the other group of storage barrel supporting blocks through a bearing seat.
Preferably, the material receiving device further comprises a material receiving assembly, and the material receiving assembly comprises an extension plate, a material receiving plate, a push rod mounting plate, an electric push rod, a hinge type oil cylinder and two groups of material receiving plate supporting rods;
a first inner groove is formed in the extension plate; one end of the material receiving plate penetrates into the first inner groove and is fixedly arranged on the push rod mounting plate; the electric push rod is fixedly arranged on the push rod mounting plate, and the output end of the electric push rod is fixedly arranged on the inner wall of one end of the first inner groove, which is far away from the material receiving plate; two ends of the hinge type oil cylinder are respectively hinged to the top of the second box body and the lower surface of the material receiving plate through a group of hinges; two sets of connect flitch bracing piece one end to pass through the hinge and articulate in second box top, and other end fixed mounting connect on the flitch lower surface, connect the flitch bracing piece to be located one side that hinge formula oil cylinder is close to first discharge gate.
Preferably, the material receiving assembly further comprises two groups of first chutes and two groups of first sliding blocks;
the two groups of first sliding chutes are respectively arranged on the outer walls of the two sides of the material receiving plate; and one ends of the two groups of first sliding blocks are fixedly arranged on the inner walls of the two sides of the first inner groove, and the other ends of the two groups of first sliding blocks are respectively connected in the two groups of first sliding grooves in a sliding manner.
Preferably, the material receiving device further comprises a conveying assembly, wherein the conveying assembly comprises a transmission rod, a driven rod, a second motor, two groups of first mounting columns and two groups of second mounting columns;
the bottoms of the two groups of first mounting columns and the two groups of second mounting columns are fixedly mounted on the inner wall of the bottom of the first box body; the second motor is fixedly arranged on the outer wall of one side of one group of the first mounting columns, and the output end of the second motor penetrates between the two groups of the first mounting columns and is in transmission connection with the transmission rod through a coupler; the other end of the transmission rod is rotatably connected to the inner side wall of the other group of the first mounting columns through a bearing seat; two ends of the driven rod are respectively and rotatably connected to the inner side walls of the two groups of second mounting columns through a group of bearing seats.
Preferably, the conveying assembly further comprises a conveying belt and a breathable net;
two ends of the conveying belt are respectively sleeved on the transmission rod and the driven rod, and the transmission rod and the driven rod are in transmission connection through the conveying belt; the breathable net is arranged on the conveying belt.
Preferably, the material receiving device further comprises a drying assembly, and the drying assembly comprises a dryer support frame, two dryer mounting plates and two dryers;
the bottom of the dryer support frame is fixedly arranged on the inner wall of the bottom of the first box body; the two groups of dryer mounting plates are fixedly mounted on the dryer supporting frame and are respectively positioned at the upper end and the lower end of the breathable net; two sets of drying-machine is fixed mounting respectively two sets of on the inner wall of drying-machine mounting panel, and two sets of the air outlet of drying-machine sets up for relative.
Preferably, the material receiving device further comprises a control panel, and the control panel is electrically connected with the cleaning assembly, the material receiving assembly, the conveying assembly, the drying assembly, the lifting assembly and the discharging assembly through electric wires.
The invention has the following advantages:
1. the receiving device can clean the stamping powder remained on the surface of the stamping part through a working bin and a stirring mechanism in the cleaning assembly, and can also play a role in accelerating cooling by using clear water; meanwhile, the water used by the cleaning assembly can realize the function of recycling.
2. The automatic discharging function can be realized through the discharging assembly and the lifting assembly, manual labor is not needed, automatic connection of stamping and a next process piece can be completed, labor intensity is reduced, and working efficiency is improved.
Additional features and advantages of the invention will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. The objectives and other advantages of the invention will be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and those skilled in the art can also obtain other drawings according to the drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a receiving device according to an embodiment of the invention;
fig. 2 is a schematic cross-sectional view of a receiving device according to an embodiment of the invention;
FIG. 3 shows a schematic cross-sectional view of a cleaning assembly according to an embodiment of the invention;
fig. 4 shows a schematic right-view of a receiving assembly according to an embodiment of the invention;
FIG. 5 shows a schematic bottom view of an extension plate and a receiver plate according to an embodiment of the invention;
FIG. 6 shows a schematic top view of a transfer assembly according to an embodiment of the invention;
fig. 7 illustrates a right-side schematic view of a drying assembly according to an embodiment of the present invention;
FIG. 8 shows a cross-sectional schematic view of a lift assembly according to an embodiment of the present invention;
figure 9 shows a schematic top view of a discharge assembly according to an embodiment of the invention.
In the figure: 1. a base plate; 2. a work box; 201. a first case; 202. a first feed port; 203. a first discharge port; 3. a cleaning assembly; 301. a second case; 302. a working bin; 303. a water storage bin; 304. a second feed port; 305. a second discharge port; 306. a water pumping pipe; 307. a stirring mechanism; 3071. a first motor; 3072. a first rotating lever; 3073. stirring blades; 308. a communicating pipe; 309. a water pump; 310. an electromagnetic valve; 4. a material receiving assembly; 401. an extension plate; 402. a first inner tank; 403. a material receiving plate; 404. a push rod mounting plate; 405. an electric push rod; 406. a first chute; 407. a first slider; 408. a hinge-type oil cylinder; 409. a material receiving plate supporting rod; 5. a transfer assembly; 501. a first mounting post; 502. a transmission rod; 503. a second mounting post; 504. a driven lever; 505. a conveyor belt; 506. a breathable net; 507. a second motor; 6. a drying assembly; 601. a dryer support frame; 602. a dryer mounting plate; 603. a dryer; 7. a lifting assembly; 701. an electric turntable; 702. a lifting column; 703. a cavity; 704. a third motor; 705. a screw rod; 706. a second chute; 707. a second slider; 8. a discharge assembly; 801. a storage bucket mounting plate; 802. a storage barrel; 803. a fourth motor; 804. a second rotating rod; 805. a third rotating rod; 806. a material storage barrel supporting block; 9. a second inner tank; 10. a control panel.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In order to solve the problems, the invention provides a material receiving device for punch production, which comprises a bottom plate 1, a working box 2, a lifting assembly 7 and a discharging assembly 8. Illustratively, as shown in fig. 1 and 2, the work box 2 includes a first box 201; the first box 201 is fixedly arranged on the bottom plate 1; a first feeding hole 202 is formed in the top of the first box body 201, and a first discharging hole 203 is formed in the outer wall of one side of the first box body 201.
A second inner groove 9 is formed in the bottom plate 1, and the second inner groove 9 is positioned on one side of the first discharge hole 203 of the working box 2; the bottom of the lifting assembly 7 is fixedly arranged in the second inner groove 9; one end of the discharging component 8 is fixedly arranged on the sliding mechanism of the lifting component 7; and the discharge assembly 8 is slidable on the lifting assembly 7. The lifting assembly 7 is used for driving the discharging assembly 8 to rotate and move in the vertical direction; the discharging assembly 8 is used for loading the processed rear stamping parts and discharging the stamping parts to a receiving mechanism of a subsequent process.
The material receiving device further comprises a cleaning assembly 3, a material receiving assembly 4, a conveying assembly 5 and a drying assembly 6. The receiving component 4 is arranged on the first feeding hole 202; one end of the receiving component 4 is located above the second feeding hole 304, and the other end is located outside the first box 201. The receiving assembly 4 can be used for guiding the stamping parts into the first box 201.
The drying component 6 comprises a plurality of groups of drying machines 603, and the plurality of groups of drying machines 603 are symmetrically arranged at the upper end and the lower end of the breathable net 506. Residual water stains on the surface of the stamping part can be removed through the drying assembly 6.
The cleaning assembly 3 includes a second housing 301. As shown in fig. 3, the second box body 301 is fixedly installed in the first box body 201, a working bin 302 is arranged in the second box body 301, and a second feeding hole 304 and a second discharging hole 305 are respectively formed in an outer wall of one side of the working bin 302; the second discharge port 305 is located below the second feed port 304; the second feed port 304 is located below the first feed port 202; clean subassembly 3 is used for the remaining raw materials powder sanitization in stamping workpiece surface, simultaneously, utilizes the clear water can accelerate the stamping workpiece that will just stamped the completion to cool off.
The conveying assembly 5 comprises a gas permeable net 506, as shown in fig. 6, one end of the gas permeable net 506 is located below the second discharge port 305, and the other end is located above the first discharge port 203. The conveying mechanism is used for conveying the cleaned and cooled stamping parts out of the first box 201.
The receiving device further comprises a control panel 10, as shown in fig. 1, the control panel 10 is fixedly installed on an outer wall of one side of the first box 201. The working state of each component in the material receiving device can be controlled through the control panel 10.
The height of one end of the material receiving assembly 4 far away from the first feed port 202 can be adjusted through the hinge type oil cylinder 408 according to the height of the blanking port of the stamping equipment, and when the height of the blanking port of the stamping equipment is too high, the electric push rod 405 can be used for pushing the extension plate 401 to extend towards one end of the blanking port of the stamping equipment, so that the compatibility of the material receiving device facing stamping equipment with different sizes is higher. The receiving device can clean the stamping powder remained on the surface of the stamping part through the working bin 302 and the stirring mechanism in the cleaning assembly 3, and can also play a role in accelerating cooling by using clear water; meanwhile, the water of the cleaning component 3 can realize the function of recycling. The automatic discharging function can be realized through the discharging assembly 8 and the lifting assembly 7, the automatic connection of the stamping and the next process piece can be completed without manual labor, the labor intensity is reduced, and the working efficiency is also improved.
The cleaning assembly 3 further comprises a suction pipe 306, a stirring mechanism 307, a communicating pipe 308, a suction pump 309 and a solenoid valve 310. Illustratively, as shown in fig. 3, a water storage bin 303 is arranged below the working bin 302; two ends of the communicating pipe 308 are respectively communicated with the working bin 302 and the water storage bin 303; the inner bottom of the working bin 302 is an inclined plane, and one end of the inclined plane close to the second discharge hole 305 is the lowest point; the electromagnetic valve 310 is fixedly arranged on the communicating pipe 308; one end of the water pumping pipe 306 penetrates into the water storage bin 303, the other end of the water pumping pipe is communicated with the water pumping pump 309 through a clamp, and the water pumping pump 309 is fixedly installed on the inner wall of one side of the working bin 302; the stirring mechanism 307 is fixedly installed on the second casing 301. The water pump 309 and the electromagnetic valve 310 are electrically connected to the control panel 10 through wires.
The stirring mechanism 307 includes a first motor 3071, a first rotating rod 3072, and a stirring blade 3073. The first motor 3071 is fixedly mounted at the top of the second box 301, and the output end of the first motor 3071 penetrates into the working bin 302 and is in transmission connection with the first rotating rod 3072 through a coupler; the agitating blade 3073 is fixedly installed on the first rotating shaft 3072. The first motor 3071 is electrically connected to the control panel 10 through a wire.
During operation, the stamping part passes through the receiving component 4 and enters the working bin 302 through the second feeding hole 304; and then, the first motor 3071 is started, the first rotating rod 3072 and the stirring blades 3073 are driven to rotate by the first motor 3071, and the stamping parts and the clean water in the working bin 302 are stirred, so that all the stamping parts can be uniformly cleaned and cooled. After the work is finished, the electromagnetic valve 310 is started, so that all the clean water in the working bin 302 enters the water storage bin 303 through the communicating pipe 308. The valve at the second outlet 305 is then opened so that the stamping can drop through the second outlet 305 onto the underlying conveyor assembly 5. When the next work is performed, the water suction pump 309 is started, so that clean water in the water storage bin 303 enters the working bin 302 through the water suction pipe 306, and the function of water resource recycling is realized.
The material receiving assembly 4 comprises an extension plate 401, a material receiving plate 403, a push rod mounting plate 404, an electric push rod 405, a hinged oil cylinder 408, two sets of material receiving plate support rods 409, two sets of first chutes 406 and two sets of first sliders 407. Illustratively, as shown in fig. 4 and 5, a first inner groove 402 is formed in the extension plate 401; one end of the receiving plate 403 penetrates into the first inner groove 402 and is fixedly mounted on the push rod mounting plate 404; the electric push rod 405 is fixedly installed on the push rod installation plate 404, and the output end of the electric push rod 405 is fixedly installed on the outer wall of one end of the extension plate 401 far away from the material receiving plate 403; two groups of the first chutes 406 are respectively arranged on the outer walls of two sides of the material receiving plate 403; one end of each of the two sets of first sliding blocks 407 is fixedly mounted on the inner walls of the two sides of the first inner slot 402, and the other end is slidably connected in the two sets of first sliding slots 406 respectively; two ends of the hinge type oil cylinder 408 are respectively hinged to the top of the second box body 301 and the lower surface of the material receiving plate 403 through a group of hinges. One end of each of the two material receiving plate supporting rods 409 is hinged to the top of the second box 301 through a hinge, the other end of each of the two material receiving plate supporting rods 409 is fixedly mounted on the lower surface of the material receiving plate 403, and the material receiving plate supporting rods 409 are located on one side, close to the first discharge port 203, of the hinge-type oil cylinder 408. The hinge type oil cylinder 408 is electrically connected to the control panel 10 through an electric wire.
During operation, the hinge-type oil cylinder 408 is used to push the material receiving plate 403, so as to adjust the angle between the material receiving plate 403 and the upper surface of the second box 301, and the end of the extension plate 401 far away from the first feed port 202 can be adjusted at will according to the height of the feed port of the stamping device. When the height of the blanking opening of the punching equipment is too high, the electric push rod 405 can be started, the extension plate 401 is pushed by the electric push rod 405 to move towards one end far away from the first feeding opening 202, so that the length of the material receiving assembly 4 is extended, and the compatibility of the material receiving device facing the punching equipment with different sizes is higher.
The transmission assembly 5 further comprises a transmission rod 502, a driven rod 504, a transmission belt 505, a second motor 507, two sets of first mounting posts 501 and two sets of second mounting posts 503. For example, as shown in fig. 6, the bottoms of two sets of the first mounting posts 501 and two sets of the second mounting posts 503 are both fixedly mounted on the inner wall of the bottom of the first box 201; the second motor 507 is fixedly installed on the outer wall of one side of one group of the first installation columns 501, and the output end of the second motor 507 penetrates between the two groups of the first installation columns 501 and is in transmission connection with the transmission rod 502 through a coupler; the other end of the transmission rod 502 is rotatably connected to the inner side wall of the other group of the first mounting columns 501 through a bearing seat; two ends of the driven rod 504 are rotatably connected to the inner side walls of the two groups of second mounting columns 503 through a group of bearing seats respectively; two ends of the transmission belt 505 are respectively sleeved on the transmission rod 502 and the driven rod 504, and the transmission rod 502 and the driven rod 504 are in transmission connection through the transmission belt 505; the air-permeable net 506 is disposed on the conveyor belt 505. The second motor 507 is electrically connected to the control panel 10 through an electric wire.
After the cleaning of the stamping part is finished, the stamping part falls on the ventilation net 506 through the second discharge port 305, then the second motor 507 is started, the driving rod 502 and the driven rod 504 are driven to rotate through the second motor 507, and the conveying belt 505 and the ventilation net 506 are driven to rotate, so that the stamping part can be conveyed to one side of the first discharge port 203. The ventilative net 506 can make the warm braw that upper and lower two sets of drying-machines 603 sent form the circulation when the stamping workpiece passes through drying assembly 6, lets every face of stamping workpiece all can evenly receive the wind, has improved drying quality.
The drying assembly 6 further comprises a dryer support frame 601 and two sets of dryer mounting plates 602; for example, as shown in fig. 7, the bottom of the dryer support frame 601 is fixedly installed on the inner wall of the bottom of the first box 201; the two groups of dryer mounting plates 602 are fixedly mounted on the dryer support frame 601, and the two groups of dryer mounting plates 602 are respectively positioned at the upper end and the lower end of the breathable net 506; the two sets of dryers 603 are respectively and fixedly mounted on the inner walls of the two sets of dryer mounting plates 602, and the air outlets of the two sets of dryers 603 are oppositely arranged. The two sets of dryers 603 are electrically connected to the control panel 10 through wires, respectively.
When the conveyor belt 505 drives the stamping part to pass through the dryer 603, the upper and lower two sets of dryers 603 are used for drying the stamping part from two corresponding directions simultaneously, so that the drying effect is better.
The lifting assembly 7 comprises an electric turntable 701, a lifting column 702, a third motor 704, a screw 705 and a second sliding block 707. Illustratively, as shown in fig. 8, the electric turntable 701 is fixedly installed in the second inner tank 9; the bottom of the lifting column 702 is fixedly arranged on the electric turntable 701, and the top of the lifting column penetrates above the second inner groove 9; a cavity 703 is formed in the lifting column 702, the third motor 704 is fixedly mounted at the top of the lifting column 702, and an output shaft of the third motor 704 penetrates into the cavity 703 and is in transmission connection with one end of the screw 705 through a coupler; the other end of the screw rod 705 is rotatably connected to the inner wall of the bottom of the cavity 703 through a bearing seat; a second sliding groove 706 is formed in the inner wall of one side, away from the outlet, of the screw rod 705, a second sliding block 707 is connected to the screw rod 705 in a threaded manner, one end of the second sliding block 707 is connected to the inside of the second sliding groove 706 in a sliding manner, and the other end of the second sliding block 707 penetrates through the outside of the cavity 703 and is fixedly mounted on the discharging assembly 8. The electric turntable 701 and the third motor 704 are electrically connected to the control panel 10 through electric wires, respectively.
After the stamping part comes out of the first discharge port 203 and falls on the discharging assembly 8 below, the discharging assembly 8 is driven to rotate to the direction of the next process equipment through the electric turntable 701, then the third motor 704 is started, the lead screw 705 is driven to rotate through the third motor 704, and the second sliding block 707 and the discharging assembly 8 are driven to ascend through the rotation of the lead screw 705. And the height required to be lifted by the discharging assembly 8 is determined according to the height of the material receiving port of the next process equipment, so that the purpose of automatic discharging and feeding is realized, and the labor intensity is reduced.
The discharging assembly 8 includes a storage bucket mounting plate 801, a storage bucket 802, a fourth motor 803, a second rotating rod 804, a third rotating rod 805, and two storage bucket supporting blocks 806. For example, as shown in fig. 9, the storage bin mounting plate 801 is fixedly mounted on the second sliding block 707; the storage bucket 802 is arranged between the two storage bucket supporting blocks 806, and the inlet of the storage bucket 802 is located below the first discharge port 203; the two groups of storage bucket supporting blocks 806 are fixedly arranged on the outer wall of one side of the storage bucket mounting plate 801 far away from the second sliding block 707; the fourth motor 803 is fixedly installed on the outer wall of one group of storage bucket supporting blocks 806, and the output end of the fourth motor 803 penetrates between the two groups of storage bucket supporting blocks 806 and is in transmission connection with the second rotating rod 804 through a coupling; the other end of the second rotating rod 804 is fixedly arranged on the outer wall of one side of the storage barrel 802; one end of the third rotating rod 805 is fixedly installed on the outer wall of the other side of the storage barrel 802, and the other end is rotatably connected with another group of storage barrel supporting blocks 806 through a bearing seat. The fourth motor 803 is electrically connected to the control panel 10 through a wire.
The stamping workpiece can fall into storage vat 802 after coming out from first discharge gate 203, after lifting unit 7 drove storage vat 802 and reaches the height that next process connects the material mouth, start fourth motor 803, it is rotatory to drive second bull stick 804 and third bull stick 805 through fourth motor 803, and it is rotatory to drive storage vat 802, make the stamping workpiece in the storage vat 802 can fall on the material mouth that connects of next process, need not manual operation, further realization automatic discharge's purpose.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.

Claims (10)

1.一种用于冲床生产的接料装置,其特征在于:所述接料装置包括底板(1)、工作箱(2)、提升组件(7)和卸料组件(8);1. A material receiving device for punch production, characterized in that: the material receiving device comprises a bottom plate (1), a work box (2), a lifting assembly (7) and a discharge assembly (8); 所述工作箱(2)包括第一箱体(201);所述第一箱体(201)固定安装在所述底板(1);所述第一箱体(201)顶部开设有第一进料口(202),且所述第一箱体(201)一侧外壁上开设有第一出料口(203);The working box (2) includes a first box body (201); the first box body (201) is fixedly mounted on the bottom plate (1); a first inlet is provided on the top of the first box body (201). a feeding port (202), and a first feeding port (203) is opened on the outer wall of one side of the first box body (201); 所述底板(1)上开设有第二内槽(9),所述第二内槽(9)位于所述工作箱(2)的第一出料口(203)一侧;所述提升组件(7)底部固定安装在所述第二内槽(9)中;The bottom plate (1) is provided with a second inner groove (9), and the second inner groove (9) is located on one side of the first discharge port (203) of the working box (2); the lifting assembly (7) the bottom is fixedly installed in the second inner groove (9); 所述卸料组件(8)一端固定安装在所述提升组件(7)的滑动机构上;One end of the unloading assembly (8) is fixedly installed on the sliding mechanism of the lifting assembly (7); 所述接料装置还包括清洁组件(3),所述清洁组件(3)包括第二箱体(301)、抽水管(306)、搅拌机构(307)、连通管(308)、抽水泵(309)和电磁阀(310);所述第二箱体(301)固定安装在所述第一箱体(201)内,所述第二箱体(301)内设置有工作仓(302),所述工作仓(302)一侧外壁上分别开设有第二进料口(304)和第二出料口(305);所述第二出料口(305)位于所述第二进料口(304)下方;所述工作仓(302)下方设置有储水仓(303);所述连通管(308)两端分别与工作仓(302)和储水仓(303)连通;所述工作仓(302)的内底部为倾斜面,所述倾斜面靠近第二出料口(305)的一端为最低点;所述电磁阀(310)固定安装在所述连通管(308)上;所述抽水管(306)一端贯穿至所述储水仓(303)内,且抽水管(306)另一端通过卡箍与所述抽水泵(309)连通,所述抽水泵(309)固定安装在所述工作仓(302)一侧内壁上;所述搅拌机构(307)固定安装在所述第二箱体(301)上;所述第二进料口(304)位于所述第一进料口(202)下方。The material receiving device further includes a cleaning assembly (3), the cleaning assembly (3) includes a second box body (301), a water suction pipe (306), a stirring mechanism (307), a communication pipe (308), and a suction pump ( 309) and a solenoid valve (310); the second box (301) is fixedly installed in the first box (201), and a work bin (302) is arranged in the second box (301), A second feeding port (304) and a second discharging port (305) are respectively opened on the outer wall of one side of the working bin (302); the second discharging port (305) is located at the second feeding port Below (304); a water storage bin (303) is arranged below the working bin (302); the two ends of the communication pipe (308) are respectively communicated with the working bin (302) and the water storage bin (303); the working bin (302) The inner bottom of the valve is an inclined surface, and the end of the inclined surface close to the second discharge port (305) is the lowest point; the solenoid valve (310) is fixedly installed on the communication pipe (308); the suction pipe ( One end of 306) penetrates into the water storage bin (303), and the other end of the suction pipe (306) is communicated with the suction pump (309) through a clamp, and the suction pump (309) is fixedly installed in the working bin (302). ) on the inner wall of one side; the stirring mechanism (307) is fixedly installed on the second box body (301); the second feeding port (304) is located below the first feeding port (202). 2.根据权利要求1所述的一种用于冲床生产的接料装置,其特征在于:所述搅拌机构(307)包括第一电机(3071)、第一转杆(3072)和搅拌叶(3073);2. A material receiving device for punch production according to claim 1, characterized in that: the stirring mechanism (307) comprises a first motor (3071), a first rotating rod (3072) and a stirring blade ( 3073); 所述第一电机(3071)固定安装在所述第二箱体(301)的顶部,且所述第一电机(3071)的输出端贯穿至所述工作仓(302)内,且通过联轴器与第一转杆(3072)传动连接;所述搅拌叶(3073)固定安装在所述第一转杆(3072)上。The first motor (3071) is fixedly installed on the top of the second box (301), and the output end of the first motor (3071) penetrates into the working chamber (302) and passes through a coupling The mixer is connected with the first rotating rod (3072) in a driving manner; the stirring blade (3073) is fixedly installed on the first rotating rod (3072). 3.根据权利要求1所述的一种用于冲床生产的接料装置,其特征在于:所述提升组件(7)包括电动转盘(701)、提升柱(702)、第三电机(704)、丝杆(705)、第二滑块(707);3. A material receiving device for punch production according to claim 1, characterized in that: the lifting assembly (7) comprises an electric turntable (701), a lifting column (702), and a third motor (704) , screw (705), second slider (707); 所述电动转盘(701)固定安装在所述第二内槽(9)中;所述提升柱(702)底部固定安装在所述电动转盘(701)上,且顶部贯穿至第二内槽(9)上方;所述提升柱(702)内开设有空腔(703),所述第三电机(704)固定安装在所述提升柱(702)顶部,且所述第三电机(704)的输出轴贯穿至所述空腔(703)内,且通过联轴器与所述丝杆(705)的一端传动连接;所述丝杆(705)另一端通过轴承座转动连接在所述空腔(703)的底部内壁上;所述丝杆(705)远离出口的一侧内壁上开设有第二滑槽(706),所述第二滑块(707)螺纹连接在所述丝杆(705)上,所述第二滑块(707)一端滑动连接在所述第二滑槽(706)内,所述第二滑块(707)另一端贯穿至所述空腔(703)外部,且固定安装在所述卸料组件(8)上。The electric turntable (701) is fixedly installed in the second inner groove (9); the bottom of the lifting column (702) is fixedly installed on the electric turntable (701), and the top penetrates to the second inner groove (9). 9) Above; a cavity (703) is opened in the lifting column (702), the third motor (704) is fixedly installed on the top of the lifting column (702), and the third motor (704) is The output shaft penetrates into the cavity (703), and is drivingly connected to one end of the screw rod (705) through a coupling; the other end of the screw rod (705) is rotatably connected to the cavity through a bearing seat On the bottom inner wall of (703); a second chute (706) is opened on the inner wall of the side of the screw rod (705) away from the outlet, and the second slider (707) is threadedly connected to the screw rod (705) ), one end of the second sliding block (707) is slidably connected in the second sliding groove (706), and the other end of the second sliding block (707) penetrates to the outside of the cavity (703), and It is fixedly installed on the unloading assembly (8). 4.根据权利要求3所述的一种用于冲床生产的接料装置,其特征在于:所述卸料组件(8)包括储料桶安装板(801)、储料桶(802)、第四电机(803)、第二转杆(804)、第三转杆(805)和两组储料桶支撑块(806);4. A material receiving device for punch production according to claim 3, characterized in that: the unloading assembly (8) comprises a storage barrel mounting plate (801), a storage barrel (802), a Four motors (803), a second rotating rod (804), a third rotating rod (805) and two sets of storage bucket support blocks (806); 所述储料桶安装板(801)固定安装在所述第二滑块(707)上;所述储料桶(802)设置在两组所述储料桶支撑块(806)之间,且所述储料桶(802)的入口位于所述第一出料口(203)的下方;两组所述储料桶支撑块(806)均固定安装在所述储料桶安装板(801)远离第二滑块(707)的一侧外壁上;所述第四电机(803)固定安装在一组储料桶支撑块(806)的外壁上,所述第四电机(803)的输出端贯穿至两组所述储料桶支撑块(806)之间,且通过联轴器与所述第二转杆(804)传动连接;所述第二转杆(804)另一端固定安装在所述储料桶(802)的一侧外壁上;所述第三转杆(805)一端固定安装在所述储料桶(802)的另一侧外壁上,且另一端通过轴承座与另一组储料桶支撑块(806)转动连接。The storage bucket mounting plate (801) is fixedly installed on the second sliding block (707); the storage bucket (802) is arranged between the two groups of the storage bucket support blocks (806), and The inlet of the storage bucket (802) is located below the first discharge port (203); the two groups of the storage bucket support blocks (806) are fixedly installed on the storage bucket mounting plate (801) on the outer wall of one side away from the second sliding block (707); the fourth motor (803) is fixedly installed on the outer wall of a group of storage bucket support blocks (806), and the output end of the fourth motor (803) It penetrates between the two sets of the storage tank support blocks (806), and is connected with the second rotating rod (804) through a coupling; the other end of the second rotating rod (804) is fixedly installed on the one side outer wall of the storage bucket (802); one end of the third rotating rod (805) is fixedly mounted on the other side outer wall of the storage bucket (802), and the other end is connected to the other side through the bearing seat The group storage tank support block (806) is rotatably connected. 5.根据权利要求1所述的一种用于冲床生产的接料装置,其特征在于:所述接料装置还包括接料组件(4),所述接料组件(4)包括延长板(401)、接料板(403)、推杆安装板(404)、电动推杆(405)、铰轴式油缸(408)和两组接料板支撑杆(409);5. A material catching device for punch production according to claim 1, characterized in that: the material catching device further comprises a material catching component (4), and the material catching component (4) comprises an extension plate ( 401), feeding plate (403), push rod mounting plate (404), electric push rod (405), hinged oil cylinder (408) and two sets of feeding plate support rods (409); 所述延长板(401)内开设有第一内槽(402);所述接料板(403)一端贯穿至所述第一内槽(402)中,且固定安装在所述推杆安装板(404)上;所述电动推杆(405)固定安装在所述推杆安装板(404)上,且所述电动推杆(405)的输出端固定安装在所述第一内槽(402)远离接料板(403)的一端内壁上;所述铰轴式油缸(408)两端分别通过一组铰链铰接在所述第二箱体(301)顶部和接料板(403)下表面上;两组所述接料板支撑杆(409)一端通过铰链铰接在所述第二箱体(301)顶部,且另一端固定安装在所述接料板(403)下表面上,所述接料板支撑杆(409)位于所述铰轴式油缸(408)靠近第一出料口(203)的一侧。The extension plate (401) is provided with a first inner groove (402); one end of the material receiving plate (403) penetrates into the first inner groove (402) and is fixedly installed on the push rod mounting plate (404); the electric push rod (405) is fixedly installed on the push rod mounting plate (404), and the output end of the electric push rod (405) is fixedly installed in the first inner groove (402) ) on the inner wall of one end away from the feeding plate (403); the two ends of the hinged oil cylinder (408) are hinged on the top of the second box (301) and the lower surface of the feeding plate (403) respectively through a set of hinges one end of the two groups of the feeding plate support rods (409) is hinged on the top of the second box body (301) through a hinge, and the other end is fixedly installed on the lower surface of the feeding plate (403). The feed plate support rod (409) is located on the side of the hinged oil cylinder (408) close to the first discharge port (203). 6.根据权利要求5所述的一种用于冲床生产的接料装置,其特征在于:所述接料组件(4)还包括两组第一滑槽(406)和两组第一滑块(407);6. A material splicing device for punch production according to claim 5, characterized in that: the material splicing assembly (4) further comprises two sets of first chutes (406) and two sets of first sliding blocks (407); 两组所述第一滑槽(406)分别设置在所述接料板(403)的两侧外壁上;两组所述第一滑块(407)一端固定安装在所述第一内槽(402)的两侧内壁上,且另一端分别滑动连接在两组所述第一滑槽(406)内。The two sets of the first sliding grooves (406) are respectively arranged on the outer walls of both sides of the material receiving plate (403); one end of the two sets of the first sliding blocks (407) is fixedly installed in the first inner groove (407). 402) on both sides of the inner walls, and the other ends are respectively slidably connected in the two sets of the first chute (406). 7.根据权利要求1所述的一种用于冲床生产的接料装置,其特征在于:所述接料装置还包括传送组件(5),所述传送组件(5)包括传动杆(502)、从动杆(504)、第二电机(507)、两组第一安装柱(501)和两组第二安装柱(503);7. A material splicing device for punch production according to claim 1, characterized in that: the material splicing device further comprises a conveying assembly (5), and the conveying assembly (5) comprises a transmission rod (502) , a driven rod (504), a second motor (507), two sets of first mounting posts (501) and two sets of second mounting posts (503); 两组所述第一安装柱(501)和两组第二安装柱(503)底部均固定安装在所述第一箱体(201)的底部内壁上;所述第二电机(507)固定安装在一组所述第一安装柱(501)的一侧外壁上,所述第二电机(507)的输出端贯穿至两组所述第一安装柱(501)之间,且通过联轴器与所述传动杆(502)传动连接;所述传动杆(502)另一端通过轴承座转动连接在另一组所述第一安装柱(501)的内侧壁上;所述从动杆(504)两端分别通过一组轴承座转动连接在两组所述第二安装柱(503)的内侧壁上。The bottoms of the two sets of the first mounting posts (501) and the two sets of the second mounting posts (503) are fixedly mounted on the bottom inner wall of the first box body (201); the second motor (507) is fixedly mounted On one side outer wall of one set of the first mounting columns (501), the output end of the second motor (507) penetrates between the two sets of the first mounting columns (501), and passes through the coupling The other end of the transmission rod (502) is rotatably connected to the inner side wall of the other group of the first installation columns (501) through the bearing seat; the driven rod (504) ) are respectively rotatably connected to the inner side walls of the two sets of second installation posts (503) through a set of bearing seats. 8.根据权利要求7所述的一种用于冲床生产的接料装置,其特征在于:所述传送组件(5)还包括传送带(505)和透气网(506);8. A material splicing device for punch production according to claim 7, characterized in that: the conveying assembly (5) further comprises a conveying belt (505) and a ventilation net (506); 所述传送带(505)两端分别套装在所述传动杆(502)和从动杆(504)上,所述传动杆(502)和从动杆(504)通过传送带(505)传动连接;所述透气网(506)设置在所述传送带(505)上。Both ends of the conveyor belt (505) are respectively sheathed on the transmission rod (502) and the driven rod (504), and the transmission rod (502) and the driven rod (504) are connected by transmission through the conveyor belt (505); The breathable mesh (506) is arranged on the conveyor belt (505). 9.根据权利要求8所述的一种用于冲床生产的接料装置,其特征在于:所述接料装置还包括烘干组件(6),所述烘干组件(6)包括烘干机支撑架(601)、两组烘干机安装板(602)和两组烘干机(603);9. A material receiving device for punch production according to claim 8, characterized in that: the material receiving device further comprises a drying component (6), and the drying component (6) includes a dryer a support frame (601), two sets of dryer installation boards (602) and two sets of dryers (603); 所述烘干机支撑架(601)底部固定安装在所述第一箱体(201)的底部内壁上;两组所述烘干机安装板(602)均固定安装在所述烘干机支撑架(601)上,且两组所述烘干机安装板(602)分别位于所述透气网(506)的上下两端;两组所述烘干机(603)分别固定安装在两组所述烘干机安装板(602)的内壁上,且两组所述烘干机(603)的出风口为相对设置。The bottom of the dryer support frame (601) is fixedly installed on the bottom inner wall of the first box body (201); the two sets of the dryer mounting plates (602) are fixedly installed on the dryer support on the rack (601), and two sets of the dryer mounting plates (602) are respectively located at the upper and lower ends of the ventilation net (506); the two sets of the dryers (603) are fixedly installed on the two sets of on the inner wall of the dryer installation plate (602), and the air outlets of the two groups of the dryers (603) are arranged oppositely. 10.根据权利要求1所述的一种用于冲床生产的接料装置,其特征在于:所述接料装置还包括控制面板(10),所述控制面板(10)通过电线分别与所述清洁组件(3)、接料组件(4)、传送组件(5)、烘干组件(6)、提升组件(7)和卸料组件(8)电性连接。10. A material splicing device for punch production according to claim 1, characterized in that: the material splicing device further comprises a control panel (10), and the control panel (10) is connected to the The cleaning component (3), the material receiving component (4), the conveying component (5), the drying component (6), the lifting component (7) and the discharging component (8) are electrically connected.
CN202021881625.0U 2020-09-01 2020-09-01 A material receiving device for punch production Expired - Fee Related CN212442336U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112058789A (en) * 2020-09-01 2020-12-11 东莞市海洛实业有限公司 A material receiving device for punch production

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112058789A (en) * 2020-09-01 2020-12-11 东莞市海洛实业有限公司 A material receiving device for punch production
CN112058789B (en) * 2020-09-01 2024-08-09 东莞市海洛实业有限公司 A material receiving device for punching machine production

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