CN214465387U - Quick molecular sieve filling structure - Google Patents

Quick molecular sieve filling structure Download PDF

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Publication number
CN214465387U
CN214465387U CN202120596524.7U CN202120596524U CN214465387U CN 214465387 U CN214465387 U CN 214465387U CN 202120596524 U CN202120596524 U CN 202120596524U CN 214465387 U CN214465387 U CN 214465387U
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disposed
clamping device
molecular sieve
frame
plate
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CN202120596524.7U
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Chinese (zh)
Inventor
付留聚
赵树祥
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Shandong Boke Cnc Equipment Co ltd
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Shandong Boke Cnc Equipment Co ltd
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Abstract

The utility model belongs to the machining application apparatus field especially relates to a quick molecular sieve filling structure, including the frame that is the rectangle setting, the crane surface be provided with the diaphragm, diaphragm up end be provided with slider, slider upper end be provided with clamping device, clamping device including the limiting plate and the clamp plate that set up from beginning to end, fixing device include fixed lath, installation piece, fixed feed cylinder, spacing post and adjustment tank. The utility model discloses the spacing post that sets up, cooperation clamp plate press from both sides tight fixed to the curved aluminum strip, and the adjustment tank can realize not unidimensional tight fixed of clamp of bending the aluminum strip, prevents effectively that its lower extreme from rocking appearing, improves the work progress, and slider can control clamping device and remove to accomplish the aluminum strip in proper order and punch, fill and seal the glue work, compares in the conventional art, can effectively slow down equipment wear rate, increase of service life, and troubleshooting also can be more convenient, save time.

Description

Quick molecular sieve filling structure
Technical Field
The utility model belongs to the machining application apparatus field especially relates to a quick molecular sieve filling structure.
Background
The hollow glass is a new building material with good heat-insulating, sound-insulating, beautiful and applicable properties and capable of reducing the dead weight of buildings, and is made up by using two or three pieces of glass and high-strength high-air-tightness composite adhesive to make the glass pieces and aluminium alloy frame containing drying agent be adhered together so as to obtain the invented high-effective sound-insulating and heat-insulating glass. The molecular sieve is filled in the aluminum alloy frame, so that the water and residual organic matters in the hollow glass can be adsorbed, the hollow glass keeps smooth and transparent, and the service life of the hollow glass is prolonged.
In the prior art, an aluminum alloy frame is generally poured with a molecular sieve after being bent and formed, the traditional molecular sieve pouring adopts manual punching, pouring and glue sealing, the work progress is slow, the punching quality is poor, the precision is low, and the pouring has the hidden troubles of excess, insufficiency and the like.
Although above-mentioned device has solved the slow and not good problem of punching, the effect of pouring of job schedule, still have some drawbacks: the pouring device and the glue sealing device need to move to the aluminum alloy frame under the matching of the lifting track, the lifting seat, the lifting cylinder and the like, and then the next operation can be carried out; the aluminum alloy frame who bends simultaneously can only fix an contained angle, and other edges and corners lack fixing device, appear rocking easily filling the in-process, influence the working process, and then influence aluminum alloy frame's shaping quality.
SUMMERY OF THE UTILITY MODEL
The utility model discloses to foretell jacking equipment frequently move receive wearing and tearing and the not good technical problem who influences the work progress and exist of aluminum alloy frame fixed effect, provide a reasonable in design, simple structure, processing convenience and can replace jacking equipment to realize filling, seal the glue and avoid aluminum alloy frame to take place to rock and improve the quick molecular sieve filling structure of work progress.
In order to achieve the purpose, the utility model discloses a technical scheme be a quick molecular sieve filling structure, including the frame that is the rectangle setting, frame one side be provided with the crane, the crane surface be provided with the diaphragm, diaphragm up end be provided with slider, slider including spout and the draw runner that sets up from top to bottom, slider upper end be provided with clamping device, clamping device rear end face be provided with the slip feed cylinder, the slip feed cylinder set up on the diaphragm, clamping device including the limiting plate and the pinch-off blades that set up around, two the pinch-off blades symmetry set up in limiting plate one side, clamping device in be provided with the aluminium strip of bending, keep away from the pinch-off blade upper end of limiting plate one side be provided with fixing device, fixing device include fixed lath, a, The mounting block is arranged at the geometric center of the end part of the fixed lath and the geometric center of the fixed lath respectively, the fixed feeding cylinders are arranged on the mounting block respectively, the end parts of the fixed laths, which are far away from the clamping device, below the clamping device are provided with adjusting grooves, and the mounting block is three and the limiting column is arranged in the adjusting grooves opposite to the two fixed feeding cylinders respectively.
Preferably, a supporting plate is arranged obliquely above the clamping device, a feeding tank is arranged at the upper end of the supporting plate, the lower end of the feeding tank is provided with a material guide pipe, the front end surface of the supporting plate comprises an opening and closing device, a filling device and a punching machine which are arranged up and down, the two opening and closing devices are symmetrically arranged at the geometric center of the front end surface of the supporting plate, the lower end of the opening and closing device is provided with a bolt, the two filling devices are symmetrically arranged at the two sides of the lower end of the opening and closing device and are connected with the material guide pipe, the filling device is internally provided with a filling opening, the two punching machines are symmetrically arranged at the oblique upper part of the filling device, the lower end of the perforating machine is provided with a perforating feeding cylinder, the lower end of the perforating feeding cylinder is provided with a supporting block, the rear end of the supporting plate is provided with a pneumatic motor, and the two pneumatic motors are symmetrically arranged on one side of the outer surface of the rack.
Preferably, the lower end of the rack is provided with a bottom plate, one side of the upper end of the rack is provided with a control box, the outer surface of the control box is provided with a control panel, and the rear part of the control box is provided with a molecular sieve barrel.
Preferably, the lifting frame is further provided with a lifting device at the upper end of the outer surface of the lifting frame, the fixing plate strip is arranged in an L shape and can be matched with the upper end of the clamping device, and the bent aluminum strip is internally provided with a feeding hole.
Compared with the prior art, the utility model has the advantages and positive effects that,
1. through the spacing post on the fixed lath that sets up, can cooperate the clamp plate to press from both sides tight fixedly to the bent aluminium strip, can make its not unidimensional aluminum alloy frame of adaptation according to the size needs of frame simultaneously, remove the spacing post in the adjustment tank, effectively prevent that the aluminium strip lower extreme of bending from appearing rocking, and then improve the course.
2. Through the slider who sets up, can control clamping device and remove to accomplish in proper order that the aluminium strip of bending punches, fills and seals the work of gluing, replaced need remove among the prior art and fill or seal the mode that devices such as glue could accomplish a series of works, the slider size is small and exquisite simultaneously, compares in the traditional art and effectively slows down equipment wear speed, increase of service life, and troubleshooting also can be more convenient, save time.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive labor.
FIG. 1 is a schematic structural diagram of a rapid molecular sieve filling structure;
FIG. 2 is a structural side view of the filling structure;
FIG. 3 is an enlarged view of the structure at the location A of the rapid molecular sieve filling structure;
FIG. 4 is a schematic structural view of the opening and closing device and the perfusion device;
FIG. 5 is a schematic structural view of a sliding device and a fixing device;
in the above figures, 1, a frame; 2. a base plate; 3. a control box; 31. a control panel; 4. a molecular sieve barrel; 5. a lifting frame; 51. a lifting device; 52. a transverse plate; 6. feeding and filling; 7. a support plate; 8. A perforating machine; 9. a punching feed cylinder; 10. a support block; 11. an opening and closing device; 111. a bolt; 12. A material guide pipe; 13. a perfusion device; 131. an infusion port; 14. bending the aluminum strip; 141. a feed port; 15. A clamping device; 151. a limiting plate; 152. a clamping plate; 16. a sliding device; 161. a slide bar; 162. A chute; 163. a sliding feed cylinder; 17. a fixing device; 171. fixing the lath; 172. mounting blocks; 173. a fixed feed cylinder; 174. a limiting column; 175. an adjustment groove; 18. a pneumatic motor.
Detailed Description
In order to make the above objects, features and advantages of the present invention more clearly understood, the present invention will be further described with reference to the accompanying drawings and examples. It should be noted that the embodiments and features of the embodiments of the present application may be combined with each other without conflict.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, however, the present invention may be practiced in other ways than those specifically described herein, and therefore the present invention is not limited to the limitations of the specific embodiments of the present disclosure.
In the embodiment, as shown in fig. 1, fig. 2, fig. 3, fig. 4, and fig. 5, a novel filling molecular sieve structure includes a frame 1 disposed in a rectangular shape, a vertical portion of the frame 1 is configured to provide an installation location for a component, in order to facilitate height adjustment of the device, a lifting frame 5 is disposed on one side of the frame 1, a horizontal plate 52 is disposed on an outer surface of the lifting frame 5, a sliding device 16 is disposed on an upper end surface of the horizontal plate 52, the sliding device 16 drives a clamping device 15 to move, so as to achieve operations of punching, filling, and sealing the aluminum strip 14, the operations of punching, filling, and sealing the aluminum strip are performed, instead of moving the filling device 13 and the sealing device 19 in the prior art, the sliding device 16 includes a sliding slot 162 and a sliding strip 161 disposed up and down, the sliding slot 162 facilitates movement of the clamping device 15, the sliding strip 161 limits a moving direction of the clamping device 15, the clamping device 15 is disposed on an upper end of the sliding device 16, the rear end face of the clamping device 15 is provided with a sliding feeding cylinder 163, the sliding feeding cylinder 163 is arranged on the transverse plate 52, the sliding feeding cylinder 163 provides power for the movement of the clamping device 15, and the smooth progress in the sliding process is ensured, in order to realize the clamping of the bent aluminum strip 14, the clamping device 15 comprises a limiting plate 151 and clamping plates 152 which are arranged in the front and back, the limiting plate 151 can prevent the aluminum strip from falling, the two clamping plates 152 are symmetrically arranged on one side of the limiting plate 151, the clamping plates 152 are combined together to clamp the aluminum strip, the bent aluminum strip 14 is arranged in the clamping device 15, in order to improve the fixing effect of the device on the bent aluminum strip 14, the upper end of the clamping plate 152 on the side far away from the limiting plate 151 is provided with a fixing device 17, the fixing device 17 comprises a fixing strip 171, an installation block 172, a fixing feeding cylinder 173, a limiting column 174 and an adjusting groove 175, the two installation blocks 172 are respectively arranged at the end part of the fixing strip 171 and the geometric center of the fixing strip 171, two fixed cylinders 173 are respectively arranged on the mounting block 172, the end part of the fixing strip 171 far away from the lower part of the clamping device 15 is provided with an adjusting groove 175, three limiting columns 174 are respectively arranged in the opposite and adjusting grooves 175 of the two fixed cylinders 173, because the upper end of the clamping device 15 is in triangular arrangement, the L-shaped fixing strip 171 can be matched with the clamping plate 152 to fix the bent aluminum strip 14, after the bent aluminum strip 14 is placed on the clamping plate 152, the limiting columns 174 are enabled to compress the bent aluminum strip 14 through adjusting the fixed cylinders 173, and meanwhile, under the matching of the adjusting groove 175, the fixing device 17 can be matched with aluminum alloy frames with different sizes, so that the bent aluminum strip 14 is effectively prevented from shaking, and the working process is improved.
When the utility model is used, the processed right angle of the frame of the bent aluminum strip 14 is placed in the clamping device 15, the short edge of the aluminum alloy frame is placed on the right side of the clamping device 15, the long edge is placed on the left side, two close limiting columns 174 are in the opposite direction of the bent aluminum strip 14, according to the size requirement of the bent aluminum strip 14 frame, the limiting columns 174 in the adjusting grooves 175 are moved to be fixed on the right-angled same-side right angle of the clamped frame, the bent aluminum strip 14 can be fixed by matching with the clamping plates 152 through the fixing plate strip 171, the two clamping plates 152 are combined together under the driving of the self-tapping screw rod of the clamping device 15, the limiting columns 174 are pressed on the bent aluminum strip 14 by matching with the fixing air cylinders 173, and under the matching of the adjusting grooves 175, the fixing device 17 can be matched with the aluminum alloy frames with different sizes, and the lower end of the bent aluminum strip 14 is effectively prevented from shaking, further, the working process is improved, after the bent aluminum strip 14 is clamped, the sliding feed cylinder 163 is controlled to contract to drive the clamping device 15 to move on the sliding device 16, the bent aluminum strip 14 moves below the punching machine 8, the punching work of the bent aluminum strip 14 is completed under the cooperation of the pneumatic motor 18 and the punching feed cylinder 9, the sliding feed cylinder 163 continuously contracts to drive the bent aluminum strip 14 to sequentially complete the pouring and sealing work, meanwhile, when the pouring work is performed, the pneumatic motor 18 can control the bolt 111 in the opening and closing device 11 to vibrate, the molecular sieve particles at the pouring opening 131 are prevented from being blocked, the pouring process is improved, the time cost is saved, the arranged sliding device 16 replaces the mode that devices such as pouring or sealing need to be moved to complete a series of work in the prior art, and meanwhile, the sliding device 16 is small in size and effectively reduces the abrasion speed of the equipment compared with the prior art, the service life is prolonged, troubleshooting is more convenient, and the time is saved.
In order to provide favorable installation conditions for other parts of the device, a supporting plate 7 is arranged obliquely above a clamping device 15, in order to transfer particles in a molecular sieve barrel 4, a feeding tank 6 is arranged at the upper end of the supporting plate 7, a material guide pipe 12 is arranged at the lower end of the feeding tank 6, the particles are conveyed into a filling device 13, the front end surface of the supporting plate 7 comprises an opening and closing device 11, the filling device 13 and a punching machine 8 which are arranged up and down, the filling device 13 has the same working principle with the prior art, the punching machine 8 is a pneumatic punching machine 8 in the prior art and can realize punching operation on bent aluminum strips 14, two opening and closing devices 11 are symmetrically arranged at the geometric center of the front end surface of the supporting plate 7, a bolt 111 is arranged at the lower end of the opening and closing device 11, the opening and closing devices 11 can control the opening and closing of the filling device 13 to prevent the leakage of the particles, the two filling devices 13 are symmetrically arranged at two sides of the lower end of the opening and closing device 11 and connected with the material guide pipe 12, a filling opening 131 is arranged in the filling device 13, molecular sieve particles are conveyed into a feeding hole 141 of the bent aluminum strip 14 from the filling hole under the action of the filling device 13, two punching machines 8 are symmetrically arranged above the filling device 13 in an oblique direction, a punching feeding cylinder 9 is arranged at the lower end of each punching machine 8, a support block 10 is arranged at the lower end of each punching feeding cylinder 9, the support blocks 10 provide mounting positions for the punching feeding cylinders 9, the punching machines 8 complete punching operation on the bent aluminum strip 14 under the action of the punching feeding cylinders 9, a pneumatic motor 18 is arranged at the rear end of the supporting plate 7, the two pneumatic motors 18 are symmetrically arranged on two sides of the outer surface of the rack 1, the pneumatic motors 18 can provide drilling power for the punching machines 8 on one hand, and can also control a bolt 111 arranged in the opening and closing device 11 to vibrate on the other hand, and the blockage of the molecular sieve particles at the filling opening 131 is effectively avoided, thereby improving the perfusion process and saving the time cost.
In order to realize the support to equipment, 1 lower extreme of frame is provided with bottom plate 2, and for better controlgear operation, 1 upper end one side of frame is provided with control box 3, and 3 surfaces of control box are provided with control panel 31, and 3 backs of control box are provided with molecular sieve bucket 4, and molecular sieve bucket 4 is used for depositing the molecular sieve granule, improves the course of work.
In order to make the not unidimensional aluminium strip 14 of bending of device adaptation, crane 5 surface upper end still is provided with elevating gear 51, elevating gear 51 can control perfusion device 13, clamping device 15 and slider 16's height, and then satisfy different work processes, in order to improve fixing device 17's fixed effect, fixed lath 171 is the setting of L type and can the adaptation in clamping device 15 upper end, be provided with feed port 141 in the aluminium strip 14 of bending, the feed port is beaten by puncher 8, the pouring of the molecular sieve granule of being convenient for, improve the practicality of aluminium strip 14 of bending.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the present invention in other forms, and any person skilled in the art may use the above-mentioned technical contents to change or modify the equivalent embodiment into equivalent changes and apply to other fields, but any simple modification, equivalent change and modification made to the above embodiments according to the technical matters of the present invention will still fall within the protection scope of the technical solution of the present invention.

Claims (4)

1. A rapid molecular sieve filling structure comprises a frame arranged in a rectangular shape, and is characterized in that one side of the frame is provided with a lifting frame, the outer surface of the lifting frame is provided with a transverse plate, the upper end surface of the transverse plate is provided with a sliding device, the sliding device comprises a sliding chute and a sliding strip which are arranged up and down, the upper end of the sliding device is provided with a clamping device, the rear end surface of the clamping device is provided with a sliding feeding cylinder, the sliding feeding cylinder is arranged on the transverse plate, the clamping device comprises a limiting plate and clamping plates which are arranged front and back, the two clamping plates are symmetrically arranged on one side of the limiting plate, a bent aluminum strip is arranged in the clamping device, the upper end of the clamping plate on one side far away from the limiting plate is provided with a fixing device, the fixing device comprises a fixing plate strip, an installation block, a fixing feeding cylinder, a limiting column and an adjusting groove, the two mounting blocks are respectively arranged at the end parts of the fixed laths and the geometric centers of the fixed laths, the two fixed feeding cylinders are respectively arranged on the mounting blocks, the end parts of the fixed laths far away from the lower part of the clamping device are provided with adjusting grooves, and the three limiting columns are respectively arranged opposite to the two fixed feeding cylinders and in the adjusting grooves.
2. The rapid molecular sieve filling structure according to claim 1, wherein a support plate is disposed obliquely above the clamping device, a feeding tank is disposed at the upper end of the support plate, a material guide pipe is disposed at the lower end of the feeding tank, the front end surface of the support plate comprises an opening and closing device, a filling device and a punching machine which are disposed vertically, the two opening and closing devices are symmetrically disposed at the geometric center of the front end surface of the support plate, a bolt is disposed at the lower end of the opening and closing device, the two filling devices are symmetrically disposed at two sides of the lower end of the opening and closing device and connected with the material guide pipe, a filling opening is disposed in the filling device, the two punching machines are symmetrically disposed obliquely above the filling device, a punching feeding cylinder is disposed at the lower end of the punching feeding cylinder, a support block is disposed at the lower end of the punching feeding cylinder, and a pneumatic motor is disposed at the rear end of the support plate, the two pneumatic motors are symmetrically arranged on one side of the outer surface of the frame.
3. The rapid molecular sieve filling structure according to claim 2, wherein a bottom plate is arranged at the lower end of the frame, a control box is arranged on one side of the upper end of the frame, a control panel is arranged on the outer surface of the control box, and a molecular sieve barrel is arranged behind the control box.
4. The rapid molecular sieve filling structure of claim 3, wherein the lifting frame is further provided with a lifting device at the upper end of the outer surface thereof, the fixing strip is arranged in an L shape and can be adapted to the upper end of the clamping device, and the bent aluminum strip is provided with a feeding hole therein.
CN202120596524.7U 2021-03-24 2021-03-24 Quick molecular sieve filling structure Active CN214465387U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120596524.7U CN214465387U (en) 2021-03-24 2021-03-24 Quick molecular sieve filling structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120596524.7U CN214465387U (en) 2021-03-24 2021-03-24 Quick molecular sieve filling structure

Publications (1)

Publication Number Publication Date
CN214465387U true CN214465387U (en) 2021-10-22

Family

ID=78160848

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120596524.7U Active CN214465387U (en) 2021-03-24 2021-03-24 Quick molecular sieve filling structure

Country Status (1)

Country Link
CN (1) CN214465387U (en)

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