CN212475258U - Production of super large cavity glass is with closing piece device - Google Patents

Production of super large cavity glass is with closing piece device Download PDF

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Publication number
CN212475258U
CN212475258U CN202020729917.6U CN202020729917U CN212475258U CN 212475258 U CN212475258 U CN 212475258U CN 202020729917 U CN202020729917 U CN 202020729917U CN 212475258 U CN212475258 U CN 212475258U
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lead screw
motor
glass
production
winding roller
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CN202020729917.6U
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Chinese (zh)
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刘长伟
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Henan Zhongbo Glass Co ltd
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Henan Zhongbo Glass Co ltd
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Abstract

The utility model discloses a super large cavity glass production is with closing piece device, including horizontal drive, collateral branch brace, removal wheel, supporting shoe, positioner and tote box, the collateral branch brace is located under the horizontal drive, remove the wheel and locate under the collateral branch brace, positioner locates between the collateral branch brace, the supporting shoe is located on the positioner, the tote box is portable to be located under the horizontal drive. The utility model belongs to the technical field of glass production, specifically indicate an utilize tote box, control glass rises down will to through positioner, close the piece with two glass location, avoid the super large cavity glass production of glass dislocation with closing the piece device.

Description

Production of super large cavity glass is with closing piece device
Technical Field
The utility model belongs to the technical field of glass production, specifically indicate a super large cavity glass production is with closing piece device.
Background
Hollow glass is in process of production, need carry out the secondary and close the piece, need for people earlier place upper glass assigned position closing the piece before closing the piece, carry out the secondary by automatic last glass machine and close the piece, two upper and lower glass of hollow glass must be aligned all around, there is the deviation slightly, will cause the wrong piece of subassembly glass, need adjust, it will cause the subassembly battery piece to have little or not very, increase the rate of reprocessing, adjust not in place when people are for once, need adjust once more, until reaching and close the piece requirement, the production efficiency in workshop is seriously influenced. In addition, in the production process of the hollow glass, the hollow glass needs to be manually replaced by a manual forklift every time when the hollow glass is used up, and the replacement of the hollow glass is time-consuming and labor-consuming and has high labor intensity because the hollow glass is heavy.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides an utilize tote box, control glass rises down will to through positioner, close the piece with two glass location, avoid the super large cavity glass production of glass dislocation with closing the piece device.
In order to realize the above functions, the utility model discloses the technical scheme who takes as follows: a sheet combining device for producing oversized hollow glass comprises a horizontal driving device, side supporting columns, moving wheels, supporting blocks, a positioning device and a carrying box, wherein the side supporting columns are arranged under the horizontal driving device, the moving wheels are arranged under the side supporting columns and used for controlling the device to move, the positioning device is arranged between the side supporting columns and is responsible for positioning the placing position of the glass to avoid the glass from being misplaced and causing loss, the supporting blocks are arranged on the positioning device to provide support for glass sheet combination, and the carrying box is movably arranged under the horizontal driving device; the carrying case comprises a case body, a motor shell, a main motor, a central cable, suckers, side motors, side cables, a first winding roller rod, a second winding roller rod, through grooves, vertical guide wheels and corner fixing blocks, the case body is arranged under a horizontal driving device, the motor shell is arranged below the center of the upper wall of the case body, the main motor is arranged in the motor shell, the winding roller rods are sleeved on a rotating shaft of the main motor, the through grooves penetrate through the center of the bottom surface of the case body and are arranged, the side motors are arranged at two ends of the bottom surface of the case body, the vertical guide wheels are arranged at two sides of the through grooves and are arranged on the bottom surface of the case body, the winding roller rods are sleeved on rotating shafts of the side motors, the central cable is wound on the first winding roller rod, the suckers are fixedly arranged at one end of the central cable far away from the winding roller rods, the, the corner fixed block is the inside hollow right angle triangle structure setting of inclined plane opening, utilizes the cavity edge of placing glass in the inner wall of corner fixed block, and glass's center department is fixed to the reunion sucking disc, accomplishes glass's fixed, ensures that glass can not fall down or turn on one's side midway, leads to glass to damage, constitutes the threat to staff's safety even, the corner fixed block is located the side cable and is kept away from one of side motor and serve.
Further, horizontal drive device includes lead screw shell, driving motor, motor storehouse, links up pole, lead screw pair, lead screw, backup pad and fixed cover piece, the lead screw shell is located on the collateral branch pillar, the motor storehouse is located on the lead screw shell inner wall side, fixed cover piece is located on the side that lead screw shell inner wall kept away from the motor storehouse, driving motor locates in the motor storehouse, lead screw one end fixed connection is in driving motor, the rotatable fixed cover piece of locating of the lead screw other end, the lead screw pair cup joints on the lead screw, through lead screw and lead screw, becomes rotary motion into linear motion, it is vice under the lead screw to link up the pole, the backup pad is located under the link up pole.
Furthermore, the positioning device comprises a base plate, a slide rail, a telescopic rod and a positioning plate, wherein the base plate is arranged between the side supporting columns, the slide rail is arranged on the base plate and is arranged on two side surfaces of the supporting block, the positioning plate is movably arranged on the slide rail and is arranged on the base plate, the telescopic rod is connected on the side surfaces of the positioning plate and the side surfaces of the supporting block, the positioning plate slides on the slide rail to adapt to the glasses with different sizes, and the upper-layer glass does not fall down and can be combined with the lower-layer glass to realize the effect of combining and positioning the glass.
Furthermore, the supporting block is provided with a cushion layer as a buffer layer, so that the impact of the supporting block corners on the glass is reduced, and the glass is protected.
Further, the locating frame is arranged below the center of the upper wall of the box body and sleeved on the central cable, the locating frame is used for controlling the hollow cable to be located at the center of the carrying box, the sucker can be adhered to the center of the glass, and the phenomenon that the glass inclines or even turns on the side due to uneven force application when the glass is carried is avoided.
Furthermore, the side face of the through groove is provided with a horizontal guide wheel, the horizontal guide wheel is in contact with the side cable, the side cable is supported in the through groove, the position of the side cable is controlled, and the side cable is prevented from being rubbed with the corner of the through groove to cause damage to the side cable.
The utility model adopts the above structure to gain beneficial effect as follows: the utility model provides a pair of super large cavity glass production is with closing piece device easy operation, the mechanism is compact, and reasonable design, through addding the tote box, utilize main motor and side motor control wire winding roller pole to rotate, wire winding roller pole winding center cable and side cable, central point through the fixed glass of sucking disc puts, fix glass edge through the corner fixed block, realize that glass rises or descends, and adapt to not unidimensional glass through mobilizable locating plate, and through the locating plate upper end, judge whether can close the piece with lower floor's glass, realize that glass closes the effect of piece location, reduce glass's descending number of times, and the accuracy is high, workman's the amount of labour has been reduced.
Drawings
FIG. 1 is an overall structure diagram of a laminating device for producing oversized hollow glass according to the present invention;
FIG. 2 is the structure diagram of the carrying box of the sheet combining device for producing oversized hollow glass
Fig. 3 is the utility model relates to a production of super large cavity glass is with top view of corner fixed block who closes piece device.
The device comprises a horizontal driving device 1, a horizontal driving device 2, side supporting columns 3, a moving wheel 4, supporting blocks 5, a positioning device 6, a carrying box 7, a box body 8, a motor shell 9, a main motor 10, a center cable 11, a sucker 12, a side motor 13, a side cable 14, a first winding roller rod 15, a second winding roller rod 16, a through groove 17, a vertical guide wheel 18, a corner fixing block 19, a lead screw shell 20, a driving motor 21, a motor cabin 22, a connecting rod 23, a lead screw pair 24, a lead screw 25, a supporting plate 26, a fixing sleeve block 27, a base plate 28, a sliding rail 29, a telescopic rod 30, a positioning plate 31, a cushion layer 32, a positioning frame 33 and a horizontal guide wheel.
Detailed Description
The technical solution of the present invention will be described clearly and completely with reference to the accompanying drawings, and obviously, the described embodiments are some, but not all embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance. The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1-3, the utility model relates to a sheet combining device for producing oversized hollow glass, which comprises a horizontal driving device 1, side supporting columns 2, a moving wheel 3, supporting blocks 4, a positioning device 5 and a carrying box 6, wherein the side supporting columns 2 are arranged below the horizontal driving device 1, the moving wheel 3 is arranged below the side supporting columns 2, the positioning device 5 is arranged between the side supporting columns 2, the supporting blocks 4 are arranged on the positioning device 5, and the carrying box 6 is movably arranged below the horizontal driving device 1; the carrying box 6 comprises a box body 7, a motor shell 8, a main motor 9, a central cable 10, a sucker 11, a side motor 12, a side cable 13, a winding roller rod I14, a winding roller rod II 15, a through groove 16, a vertical guide wheel 17 and a corner fixing block 18, wherein the box body 7 is arranged under the horizontal driving device 1, the motor shell 8 is arranged under the center of the upper wall of the box body 7, the main motor 9 is arranged in the motor shell 8, the winding roller rod I14 is sleeved on a rotating shaft of the main motor 9, the through groove 16 is arranged by penetrating through the center of the bottom surface of the box body 7, the side motor 12 is arranged at two ends of the bottom surface of the box body 7, the vertical guide wheel 17 is arranged at two sides of the through groove 16 and arranged on the bottom surface of the box body 7, the winding roller rod II 15 is sleeved on a rotating shaft of the side motor 12, the central cable 10 is wound on the winding roller rod I14, the, the side cable 13 is wound on the second winding roller rod 15 and can be movably arranged on the vertical guide wheel 17, the corner fixing block 18 is arranged in a right-angled triangular structure with an inclined opening and a hollow interior, and the corner fixing block 18 is arranged at one end, far away from the side motor 12, of the side cable 13.
Horizontal drive device 1 includes lead screw shell 19, driving motor 20, motor storehouse 21, links up pole 22, lead screw pair 23, lead screw 24, backup pad 25 and fixed cover block 26, lead screw shell 19 is located on the collateral branch pillar 2, motor storehouse 21 is located on the 19 inner wall sides of lead screw shell, fixed cover block 26 is located on the 19 inner walls of lead screw shell keep away from the side in motor storehouse 21, driving motor 20 is located in motor storehouse 21, 24 one end fixed connection of lead screw in driving motor 20, the rotatable fixed cover block 26 of locating of the 24 other ends of lead screw, lead screw pair 23 cup joints on lead screw 24, link up pole 22 is located under the lead screw pair 23, backup pad 25 is located under the link up pole 22.
The positioning device 5 comprises a base plate 27, a sliding rail 28, an expansion link 2929 and a positioning plate 30, wherein the base plate 27 is arranged between the side support columns 2, the sliding rail 28 is arranged on the base plate 27 and arranged on two side surfaces of the support block 4, the positioning plate 30 is movably arranged on the sliding rail 28 and arranged on the base plate 27, and the expansion link 2929 is connected to the side surfaces of the positioning plate 30 and the side surfaces of the support block 4.
And a cushion layer 31 is arranged on the supporting block 4.
A positioning frame 32 is arranged below the center of the upper wall of the box body 7, and the positioning frame 32 is sleeved on the central cable 10.
The side surface of the through groove 16 is provided with a horizontal guide wheel 33, and the horizontal guide wheel 33 is arranged in contact with the side cable 13.
When the device is used, firstly, the corner fixing block 18 is sleeved on the corner of the lower layer glass, then the sucker 11 is adsorbed at the center of the lower layer glass, the main motor 9 and the side motor 12 are started, the main motor 9 and the side motor 12 control the winding roller rod to rotate, the winding roller rod winds the central cable 10 and the side cable 13, the lower layer glass is pulled to rise through the central cable 10 and the side cable 13, the side cable 13 is supported through the vertical guide wheel 17 and the horizontal guide wheel 33, the side cable 13 is prevented from being rubbed with the box body 7 to influence the service life of the side cable 13, then the driving motor 20 is started, the driving motor 20 controls the lead screw 24 to rotate, the lead screw pair 23 moves horizontally until the lead screw pair moves to the supporting block 4, the lower layer glass is placed on the gasket through the main motor 9 and the side motor 12, the sucker 11 and the corner are fixed and taken out from the center of the lower layer glass and the corner, the positioning plate 30 is controlled to, accomplish the edge of lower floor's glass and limit the position, then move to upper glass top through horizontal drive arrangement 1 control transport case 6, fix upper glass and rise through transport case 6, then move to lower floor's glass's top, control main motor 9 and side motor 12, put down upper glass slowly, when being close to locating plate 30 upper end, according to upper glass and locating plate 30's position, adjust upper glass's position through horizontal drive arrangement 1, the border to upper glass can be in locating plate 30, last control transport case 6 slowly puts down upper glass, when upper glass is with lower floor's glass is near to the contact, take off the border fixed block from upper glass's corner, place upper glass on lower floor's glass through sucking disc 11, accomplish glass's piece that closes.
The present invention and the embodiments thereof have been described above, but the description is not limited thereto, and the embodiment shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should understand that they should not be limited to the embodiments described above, and that they can design the similar structure and embodiments without departing from the spirit of the invention.

Claims (6)

1. The utility model provides a production of super large cavity glass is with closing piece device which characterized in that: the carrying box is movably arranged below the horizontal driving device; the carrying case comprises a case body, a motor shell, a main motor, a central cable, suckers, side motors, side cables, a first winding roller rod, a second winding roller rod, through grooves, vertical guide wheels and corner fixing blocks, the case body is arranged under a horizontal driving device, the motor shell is arranged below the center of the upper wall of the case body, the main motor is arranged in the motor shell, the winding roller rods are sleeved on a rotating shaft of the main motor, the through grooves penetrate through the center of the bottom surface of the case body and are arranged, the side motors are arranged at two ends of the bottom surface of the case body, the vertical guide wheels are arranged at two sides of the through grooves and are arranged on the bottom surface of the case body, the winding roller rods are sleeved on rotating shafts of the side motors, the central cable is wound on the first winding roller rod, the suckers are fixedly arranged at one end of the central cable far away from the winding roller rods, the, the corner fixing block is arranged in a right-angled triangular structure with an inclined opening and a hollow interior, and is arranged at one end, far away from the side motor, of the side cable.
2. The laminating device for the production of the oversized hollow glass as claimed in claim 1, wherein: horizontal drive device includes lead screw shell, driving motor, motor storehouse, linking pole, lead screw pair, lead screw, backup pad and fixed cover piece, the lead screw shell is located on the collateral branch pillar, the motor storehouse is located on the lead screw shell inner wall side, fixed cover piece is located on the side that lead screw shell inner wall kept away from the motor storehouse, driving motor locates in the motor storehouse, lead screw one end fixed connection is in driving motor, the rotatable fixed cover piece of locating of the lead screw other end, the lead screw pair cup joints on the lead screw, the linking pole is located under the lead screw pair, the backup pad is located under the linking pole.
3. The laminating device for the production of the oversized hollow glass as claimed in claim 1, wherein: the positioning device comprises a base plate, a slide rail, a telescopic rod and a positioning plate, wherein the base plate is arranged between the side supporting columns, the slide rail is arranged on the base plate and arranged on two side surfaces of the supporting block, the positioning plate is movably arranged on the slide rail and arranged on the base plate, and the telescopic rod is connected to the side surfaces of the positioning plate and the supporting block.
4. The laminating device for the production of the oversized hollow glass as claimed in claim 3, wherein: and the supporting block is provided with a cushion layer.
5. The laminating device for the production of the oversized hollow glass as claimed in claim 1, wherein: a positioning frame is arranged below the center of the upper wall of the box body and sleeved on the central cable.
6. The laminating device for the production of the oversized hollow glass as claimed in claim 1, wherein: and a horizontal guide wheel is arranged on the side surface of the through groove and is in contact with the side cable.
CN202020729917.6U 2020-05-07 2020-05-07 Production of super large cavity glass is with closing piece device Active CN212475258U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020729917.6U CN212475258U (en) 2020-05-07 2020-05-07 Production of super large cavity glass is with closing piece device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020729917.6U CN212475258U (en) 2020-05-07 2020-05-07 Production of super large cavity glass is with closing piece device

Publications (1)

Publication Number Publication Date
CN212475258U true CN212475258U (en) 2021-02-05

Family

ID=74455347

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020729917.6U Active CN212475258U (en) 2020-05-07 2020-05-07 Production of super large cavity glass is with closing piece device

Country Status (1)

Country Link
CN (1) CN212475258U (en)

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