CN215049669U - Bending device for manufacturing glass processing equipment parts - Google Patents

Bending device for manufacturing glass processing equipment parts Download PDF

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Publication number
CN215049669U
CN215049669U CN202120989591.5U CN202120989591U CN215049669U CN 215049669 U CN215049669 U CN 215049669U CN 202120989591 U CN202120989591 U CN 202120989591U CN 215049669 U CN215049669 U CN 215049669U
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CN
China
Prior art keywords
box
buffer
air
processing equipment
vacuum adsorption
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Expired - Fee Related
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CN202120989591.5U
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Chinese (zh)
Inventor
沈顺金
曾利明
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Wuhu Baide Metal Products Co ltd
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Wuhu Baide Metal Products Co ltd
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Priority to CN202120989591.5U priority Critical patent/CN215049669U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

The utility model provides a bending device of glass processing equipment part manufacturing usefulness, including the bender, bender the place ahead is equipped with a supporting bench, a supporting bench top symmetry is equipped with fixture, fixture includes the pneumatic cylinder, the piston rod of pneumatic cylinder is connected with the buffering box, one side of buffering box is equipped with the vacuum adsorption dish, the inboard of buffering box is equipped with the buffer board, one side of buffer board is equipped with a plurality of buffer spring, buffer spring's inboard is equipped with the elastic column, one side symmetry of buffer board is equipped with the connecting rod, just the inboard of vacuum adsorption dish is equipped with the exhaust duct, be equipped with a plurality of fixed pipes on the exhaust duct, the inlet end of fixed pipe is equipped with vacuum suction nozzle. The utility model discloses can effectually prevent that fixture from causing the damage to glassware to practiced thrift manufacturing cost, and the impact force that produces the pneumatic cylinder when the buffer box that sets up can effectual alleviate the vacuum adsorption dish motion, and then can prolong device's life.

Description

Bending device for manufacturing glass processing equipment parts
Technical Field
The utility model relates to the technical field of glass processing equipment, in particular to a bending device for manufacturing parts of glass processing equipment.
Background
In the prior art, in the process of glass processing, a bending device is often used for bending glass, in the bending process, a clamping mechanism is often needed for fixing the glass, and when the glass is clamped and fixed by the current clamping mechanism, the clamping force is difficult to control, so that the situation that the glass is damaged due to overlarge clamping force can be caused, and the production cost is increased.
According to patent document application number 201922470605.8, an automatic bending device for glass is provided, the on-line screen storage device comprises a base, the base is provided with a plurality of parallel arrangement's supplementary bent plate, the centre of supplementary bent plate with base fixed connection, the both ends of supplementary bent plate all are provided with glass fixture, supplementary bent plate is provided with at both ends and connects a plurality of supplementary bent plate even board, the base is provided with the conflict even board makes supplementary bent plate automatic bending's power unit though make supplementary bent plate automatic bending through power unit to reduce intensity of labour, and reduce cost and improve effect, but glass fixture centre gripping glass's power is difficult to control, thereby causes glass damaged easily.
SUMMERY OF THE UTILITY MODEL
The utility model mainly provides a bending device for manufacturing glass processing equipment parts, which is used for solving the technical problem provided in the background technology.
The utility model provides a technical scheme that above-mentioned technical problem adopted does:
a bending device for manufacturing glass processing equipment parts comprises a bending machine, wherein a supporting table is arranged in front of the bending machine, clamping mechanisms are symmetrically arranged at the top of the supporting table, each clamping mechanism comprises a pneumatic cylinder, a piston rod of the pneumatic cylinder is connected with a buffer box, a vacuum adsorption disc is arranged on one side, away from the pneumatic cylinder, of each buffer box, a buffer plate is arranged on the inner side of each buffer box, the buffer plates are in sliding connection with the buffer boxes, a plurality of buffer springs are arranged on one side of each buffer plate side by side, elastic columns are arranged on the inner sides of the buffer springs, one ends, away from the buffer plates, of the elastic columns and the buffer springs are fixedly connected with the inner wall of each buffer box, connecting rods are symmetrically arranged on one side, opposite to the buffer springs, of the connecting rods are connected with the outer wall of the vacuum adsorption disc, and an air exhaust pipeline is arranged on the inner side of the vacuum adsorption disc, a plurality of fixed pipes are installed side by side on the air exhaust pipeline, every the inlet end of fixed pipe all runs through the vacuum adsorption dish, the inlet end of fixed pipe has vacuum suction nozzle through threaded connection.
Preferably, the bottom of the supporting table is close to the outer edge and is provided with a fixing box, an air pump is arranged on an inner bottom plate of the fixing box, a three-way joint is arranged at an air inlet end of the air pump, two air inlet ends of the three-way joint are connected with a main air outlet of an air exhaust pipeline through an air exhaust pipe, and the air exhaust pipeline is distributed in the vacuum adsorption disc in a criss-cross mode.
Preferably, the end of giving vent to anger of aspiration pump has the filter cartridge through the pipe connection, one side that the aspiration pump was kept away from to the filter cartridge is equipped with the pipeline of giving vent to anger, the pipeline of giving vent to anger is kept away from the one end of filter cartridge and is run through fixed box and extend to its outside and install the three-way valve, first blast pipe and second blast pipe are installed respectively to the two ends of giving vent to anger of three-way valve, the air nozzle is installed to the gas outlet of first blast pipe, the air nozzle is loudspeaker column structure.
Preferably, install second filter screen, active carbon filter plate and HEPA filter screen in the filter box in proper order, second filter screen, active carbon filter plate and HEPA filter screen all link to each other through the inner wall of bolt with the filter box.
Preferably, an access door is installed at the opening of the fixed box through a hinge.
Preferably, the outside symmetry of buffer spring is equipped with spacing post, the one end of spacing post and the inner wall fixed connection of buffering box.
Preferably, a first filter screen is mounted on the inner wall of each vacuum suction nozzle interface.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model realizes the fixation of the glassware through the pneumatic cylinder, the buffer box, the elastic column, the buffer spring, the buffer plate, the connecting rod, the vacuum adsorption disc, the air exhaust pipeline, the fixed pipe and the vacuum suction nozzle, and can effectively prevent the clamping mechanism from damaging the glassware, thereby saving the production cost, and effectively reducing the impact force generated to the pneumatic cylinder when the vacuum adsorption disc moves by utilizing the buffer spring and the elastic column, and further prolonging the service life of the device; the cooling of the glass product can be accelerated through the air suction pump, the air outlet pipeline, the three-way valve, the first exhaust pipe and the air nozzle, so that the production efficiency can be improved, and the energy utilization rate can be improved; through second filter screen, active carbon filter plate and HEPA filter screen, can filter the gas that the aspiration pump was taken out to impurity such as dust adheres to the possibility on the glass when cooling glass can effectual reduction.
The present invention will be explained in detail with reference to the drawings and specific embodiments.
Drawings
Fig. 1 is a schematic view of the overall external structure of the present invention;
FIG. 2 is a sectional view of the structure of the buffer box and the vacuum chuck of the present invention;
FIG. 3 is a sectional view of the inner structure of the fixing box of the present invention;
fig. 4 is an enlarged view of region a in fig. 1.
In the figure: 1. bending machine; 2. a support table; 3. a clamping mechanism; 31. a pneumatic cylinder; 32. a buffer box; 321. an elastic column; 322. a buffer spring; 323. a limiting column; 324. a buffer plate; 325. a connecting rod; 33. a vacuum adsorption pan; 331. an air extraction pipeline; 332. a fixed tube; 333. a vacuum nozzle; 3331. a first filter screen; 334. an air exhaust pipe; 4. a fixing box; 41. an access door; 5. an air pump; 51. a three-way joint; 6. a filter cartridge; 61. a second filter screen; 62. an active carbon filter plate; 63. a HEPA filter screen; 64. an air outlet pipe; 65. a three-way valve; 66. a first exhaust pipe; 661. an air nozzle; 67. a second exhaust pipe.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully with reference to the accompanying drawings, in which several embodiments of the present invention are shown, but the present invention can be implemented in different forms, and is not limited to the embodiments described in the text, but rather, these embodiments are provided to make the disclosure of the present invention more thorough and comprehensive.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may be present, and when an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present, as the terms "vertical", "horizontal", "left", "right" and the like are used herein for descriptive purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs, and the use of the term knowledge in the specification of the present invention is for the purpose of describing particular embodiments and is not intended to limit the present invention, and the term "and/or" as used herein includes any and all combinations of one or more of the associated listed items.
In the embodiment, please refer to fig. 1 and 2, a bending device for manufacturing glass processing equipment parts comprises a bending machine 1, a supporting table 2 is arranged in front of the bending machine 1, clamping mechanisms 3 are symmetrically arranged at the top of the supporting table 2, each clamping mechanism 3 comprises a pneumatic cylinder 31, a piston rod of the pneumatic cylinder 31 is connected with a buffer box 32, a vacuum adsorption disc 33 is arranged on one side of the buffer box 32 away from the pneumatic cylinder 31, a buffer plate 324 is arranged on the inner side of the buffer box 32, the buffer plate 324 is in sliding connection with the buffer box 32, a plurality of buffer springs 322 are arranged on one side of the buffer plate 324 side by side, an elastic column 321 is arranged on the inner side of the buffer spring 322, the elastic column 321 is made of rubber or silica gel, one ends of the elastic column 321 and the buffer spring 322 away from the buffer plate 324 are fixedly connected with the inner wall of the buffer box 32, and a connecting rod 325 is symmetrically arranged on one side of the buffer plate 324 opposite to the buffer spring 322, one end, far away from the buffer plate 324, of the connecting rod 325 is connected with the outer wall of the vacuum adsorption disc 33, an air exhaust pipeline 331 is arranged on the inner side of the vacuum adsorption disc 33, a plurality of fixing pipes 332 are arranged on the air exhaust pipeline 331 side by side, the air inlet end of each fixing pipe 332 penetrates through the vacuum adsorption disc 33, the air inlet end of each fixing pipe 332 is connected with a vacuum suction nozzle 333 through threads, inner threads are arranged on the inner wall of the air inlet end of each fixing pipe 332, external threads are arranged on the outer wall of a joint of the vacuum suction nozzle 333, the inner threads are meshed with the external threads, so that the vacuum suction nozzle 333 is convenient to install, disassemble and replace, when in use, a glass product is fixed on one clamping mechanism 3, air in the vacuum suction nozzle 333 is pumped out through the operation of the air pump 5 to form negative pressure in the vacuum suction nozzle 333, and the vacuum suction nozzle 333 can adsorb the glass product under the action of the negative pressure, then, another pneumatic cylinder 31 is started, the pneumatic cylinder 31 controls the buffer box 32 to drive another vacuum adsorption disc 33 to approach to the glass product, the connecting rod 325 can move into the buffer box 32 when the another vacuum adsorption disc 33 contacts with the glass product, at this time, the connecting rod 325 can drive the buffer plate 324 to press the buffer spring 322 and the elastic column 321, the acting force applied to the glass product can be effectively buffered and absorbed by the buffer spring 322 and the elastic column 321, meanwhile, the glass product can be adsorbed by the vacuum suction nozzle 333 on the another vacuum adsorption disc 33, so that the glass product can be effectively prevented from being damaged by the clamping mechanism 3 while being fixed, the impact force generated to the pneumatic cylinder 31 when the vacuum adsorption disc 33 moves can be effectively relieved by the buffer spring 322 and the elastic column 321, the service life of the device can be prolonged, the limiting columns 323 are symmetrically arranged on the outer side of the buffer spring 322, one end of the limiting column 323 is fixedly connected with the inner wall of the buffer box 32, the height of the limiting column 323 is smaller than that of the elastic column 321, the buffer plate 324 is limited through the limiting column 323, each of the inner walls of the vacuum suction nozzle 333 interfaces is provided with a first filter screen 3331, and impurities such as external dust are filtered through the first filter screen 3331.
In an embodiment, referring to fig. 1, 3 and 4, a fixing box 4 is installed at a position, close to an outer edge, of the bottom of the supporting table 2, an air suction pump 5 is installed on an inner bottom plate of the fixing box 4, a three-way joint 51 is installed at an air inlet end of the air suction pump 5, two air inlet ends of the three-way joint 51 are both connected with a main air outlet of an air suction pipeline 331 through an air suction pipe 334, the air suction pipelines 331 are distributed in a vacuum adsorption disc 33 in a criss-cross manner, an air outlet end of the air suction pump 5 is connected with a filter box 6 through a pipeline, an air outlet pipeline 64 is arranged on one side of the filter box 6, away from the air suction pump 5, one end of the air outlet pipeline 64, away from the filter box 6, penetrates through the fixing box 4 and extends to the outer side of the fixing box to be provided with a three-way valve 65, the three-way valve 65 can be an electric three-way valve 65, the three-way valve 65 is electrically connected with a controller of the bending machine 1 through a wire, the controller of the bending machine 1 controls the three-way valve 65, this is prior art, does not do the specific description here, first blast pipe 66 and second blast pipe 67 are installed respectively to the both ends of giving vent to anger of three-way valve 65, air nozzle 661 is installed to the gas outlet of first blast pipe 66, air nozzle 661 is loudspeaker column structure, aspiration pump 5 and bender 1 during operation, the left exit can be plugged up to the case of three-way valve 65 and second blast pipe 67 and the pipeline 64 switch-on of giving vent to anger, and the gas that aspiration pump 5 took this moment is discharged by second blast pipe 67, and after the glass bending operation was accomplished, the export made first blast pipe 66 and the pipeline 64 switch-on of giving vent to anger under the case can be plugged up to the case of three-way valve 65, and the gas that aspiration pump 5 took this moment can be through first blast pipe 66 and spout by air nozzle 661, utilizes the gas of air nozzle 661 spun to accelerate the cooling of glassware, thereby can not only improve production efficiency, can also improve energy utilization ratio.
In an embodiment, referring to fig. 3, a second filter 61, an activated carbon filter 62 and a HEPA filter 63 are sequentially installed in the filter box 6, the second filter 61 may be made of metal, resin or other materials, the aperture of the second filter 61 is smaller than that of the first filter 3331, the second filter screen 61, the active carbon filter board 62 and the HEPA filter screen 63 are all connected with the inner wall of the filter box 6 through bolts, most of impurities such as dust can be filtered through the second filter screen 61, organic matters in the gas can be adsorbed through the activated carbon filter plate 62, and has the functions of deodorization and peculiar smell removal, the HEPA filter screen 63 can effectively intercept the particulate matters below 2.5 microns, thereby can effectual reduction impurity such as dust when cooling glass adhere to the glass on the possibility, access door 41 is installed through the hinge to the opening part of fixed box 4, utilizes access door 41 can make things convenient for maintenance personal to maintain or change fixed box 4's aspiration pump 5 and filter cartridge 6.
The utility model discloses a concrete operation as follows:
firstly, fixing a glass product on one of the clamping mechanisms 3, pumping air in a vacuum suction nozzle 333 by the operation of an air pump 5 to form negative pressure in the vacuum suction nozzle 333, enabling the vacuum suction nozzle 333 to adsorb the glass product under the action of the negative pressure, then starting another pneumatic cylinder 31, controlling a buffer box 32 by using the pneumatic cylinder 31 to drive another vacuum adsorption disk 33 to be close to the glass product, enabling a connecting rod 325 to move towards the buffer box 32 when the other vacuum adsorption disk 33 is contacted with the glass product, enabling the connecting rod 325 to drive a buffer plate 324 to extrude the buffer spring 322 and an elastic column 321, effectively buffering and absorbing acting force applied to the glass product by using the buffer spring 322 and the elastic column 321, enabling the vacuum suction nozzle 333 on the other vacuum adsorption disk 33 to adsorb the glass product to fix the glass product, and then bending the glass product by using a bending machine 1, at this time, the valve core of the three-way valve 65 blocks the left outlet to connect the second exhaust pipe 67 with the exhaust pipe 64, the gas pumped by the air pump 5 is exhausted from the second exhaust pipe 67, after the glass bending operation is completed, the valve core of the three-way valve 65 blocks the lower outlet to connect the first exhaust pipe 66 with the exhaust pipe 64, and at this time, the gas pumped by the air pump 5 passes through the first exhaust pipe 66 and is ejected by the air nozzle 661, and the cooling of the glass product can be accelerated by using the gas ejected by the air nozzle 661.
The present invention has been described above with reference to the accompanying drawings, and it is obvious that the present invention is not limited by the above-mentioned manner, if the method and the technical solution of the present invention are adopted, the present invention can be directly applied to other occasions without substantial improvement, and the present invention is within the protection scope of the present invention.

Claims (7)

1. The utility model provides a bending device that glass processing equipment part was made and was used, includes bender (1), its characterized in that, the place ahead of bender (1) is equipped with brace table (2), the top symmetry of brace table (2) is equipped with fixture (3), every fixture (3) all includes pneumatic cylinder (31), the piston rod of pneumatic cylinder (31) is connected with buffer box (32), one side that pneumatic cylinder (31) were kept away from in buffer box (32) is equipped with vacuum adsorption dish (33), the inboard of buffer box (32) is equipped with buffer board (324), buffer board (324) and buffer box (32) sliding connection, a plurality of buffer spring (322) are installed side by side to one side of buffer board (324), the inboard of buffer spring (322) is equipped with elasticity post (321), the one end that elasticity post (321) and buffer spring (322) kept away from buffer board (324) all with the inner wall fixed connection of buffer box (32), just connecting rod (325) are installed to the one side symmetry relative with buffer spring (322) on buffer board (324), the one end that buffer board (324) were kept away from in connecting rod (325) links to each other with the outer wall of vacuum adsorption dish (33), just the inboard of vacuum adsorption dish (33) is equipped with air exhaust pipeline (331), install a plurality of fixed pipes (332), every on air exhaust pipeline (331) side by side vacuum adsorption dish (33) all run through to the inlet end of fixed pipe (332), there is vacuum suction nozzle (333) fixed pipe's (332) inlet end through threaded connection.
2. The bending device for manufacturing the glass processing equipment parts according to claim 1, wherein a fixing box (4) is installed at the bottom of the supporting table (2) close to the outer edge, an air suction pump (5) is installed on an inner bottom plate of the fixing box (4), a three-way joint (51) is installed at an air inlet end of the air suction pump (5), two air inlet ends of the three-way joint (51) are connected with a main air outlet of an air suction pipeline (331) through an air suction pipe (334), and the air suction pipeline (331) is distributed in the vacuum adsorption disc (33) in a criss-cross mode.
3. The bending device for manufacturing the glass processing equipment parts according to claim 2, wherein the air outlet end of the air pump (5) is connected with a filter box (6) through a pipeline, one side, away from the air pump (5), of the filter box (6) is provided with an air outlet pipeline (64), one end, away from the filter box (6), of the air outlet pipeline (64) penetrates through the fixed box (4) and extends to the outer side of the fixed box to be provided with a three-way valve (65), two air outlet ends of the three-way valve (65) are respectively provided with a first exhaust pipe (66) and a second exhaust pipe (67), an air nozzle (661) is installed at an air outlet of the first exhaust pipe (66), and the air nozzle (661) is of a horn-shaped structure.
4. The bending device for manufacturing the glass processing equipment parts according to claim 3, wherein a second filter screen (61), an activated carbon filter screen (62) and a HEPA filter screen (63) are sequentially installed in the filter box (6), and the second filter screen (61), the activated carbon filter screen (62) and the HEPA filter screen (63) are connected with the inner wall of the filter box (6) through bolts.
5. A bending device for manufacturing glass processing equipment parts according to claim 4, wherein an access door (41) is mounted at the opening of the fixing box (4) through a hinge.
6. The bending device for manufacturing the glass processing equipment parts according to claim 1, wherein a limiting column (323) is symmetrically arranged on the outer side of the buffer spring (322), and one end of the limiting column (323) is fixedly connected with the inner wall of the buffer box (32).
7. The bending apparatus for manufacturing glass processing equipment parts according to claim 1, wherein a first filter screen (3331) is installed on an inner wall of an interface of each vacuum suction nozzle (333).
CN202120989591.5U 2021-05-10 2021-05-10 Bending device for manufacturing glass processing equipment parts Expired - Fee Related CN215049669U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120989591.5U CN215049669U (en) 2021-05-10 2021-05-10 Bending device for manufacturing glass processing equipment parts

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120989591.5U CN215049669U (en) 2021-05-10 2021-05-10 Bending device for manufacturing glass processing equipment parts

Publications (1)

Publication Number Publication Date
CN215049669U true CN215049669U (en) 2021-12-07

Family

ID=79199500

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120989591.5U Expired - Fee Related CN215049669U (en) 2021-05-10 2021-05-10 Bending device for manufacturing glass processing equipment parts

Country Status (1)

Country Link
CN (1) CN215049669U (en)

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GR01 Patent grant
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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20211207

CF01 Termination of patent right due to non-payment of annual fee