Clamping tool for hollow glass processing
Technical Field
The application relates to the field of hollow glass processing, in particular to a clamping tool for hollow glass processing.
Background
In the prior art, in the processing process of hollow glass, common clamping tools mostly adopt mechanical clamps or sucker devices to realize clamping and conveying of glass, and although the tools can meet production requirements to a certain extent, a plurality of remarkable defects exist.
The mechanical clamp scheme is used for directly clamping the glass edge through the metal clamping jaw to carry, however, the clamping mode is easy to leave scratches on the glass surface, the quality of a finished product is affected, the clamping force is not easy to control, glass is possibly caused to be cracked, the suction cup device scheme is used for adsorbing the glass surface by using the vacuum suction cup to move, although the damage caused by direct contact is avoided in the mode, the suction cup has higher requirements on the cleanliness of the glass surface, if dust or moisture exists on the surface, the adsorption effect can be affected, the conveying is unstable, meanwhile, the sealing performance of the suction cup is easy to drop after long-term working, and the maintenance cost is higher.
Disclosure of utility model
In order to solve the problem that the common clamping tools mostly adopt mechanical clamps or sucker devices to clamp and convey glass, the tools can meet production requirements to a certain extent, but have a plurality of remarkable defects, and the application provides the clamping tool for processing hollow glass.
The clamping tool for processing the hollow glass adopts the following technical scheme:
A centre gripping frock for cavity glass processing, including two rectangular plates that control parallel distribution, two the top surface both ends of rectangular plate are equipped with first fixed plate and second fixed plate respectively, be equipped with the third fixed plate between first fixed plate and the second fixed plate, the top surface of first fixed plate and third fixed plate is equipped with the flat board, the top surface both ends of flat board all are equipped with the rectangle frame, the inside of rectangle frame is equipped with the axostylus axostyle that the equidistance distributes, the outer wall of axostylus axostyle is equipped with the gyro wheel.
Preferably, two sliding rods are arranged between the second fixing plate and the third fixing plate, the outer walls of the two sliding rods are sleeved with moving plates, threaded rods are arranged on the moving plates in a penetrating mode, one ends of the threaded rods penetrate through the third fixing plate, and the output ends of the second motors are connected in an outward extending mode.
Preferably, the top surface both ends of movable plate all are equipped with the riser, two the top surface of riser is equipped with the roof, the top surface of roof is equipped with two pneumatic cylinders, the output of pneumatic cylinder runs through the roof, and downwardly extending is connected with the rubber clamp plate.
Preferably, the top surfaces of the two rectangular plates are provided with sliding openings, sliding blocks are arranged in the sliding openings, and the sliding blocks are connected with the movable plates.
Preferably, the dull and stereotyped top surface both ends all link up and are equipped with the through-hole, two the inside of through-hole all is equipped with two-way threaded rod, two the both ends of two-way threaded rod all overlap and are equipped with the movable block, two the movable block is connected with two rectangle frames respectively, two-way threaded rod's one end all runs through dull and stereotyped, and outwards extends the cover and be equipped with the belt pulley, two connect through belt drive between the belt pulley, one of them two-way threaded rod's the other end runs through dull and stereotyped, and outwards extend and be connected with the output of first motor.
In summary, the application has the following beneficial technical effects:
1. the output end of the first motor drives the two-way threaded rod on the first motor to rotate, the rotation of the two-way threaded rod drives the belt pulley on the first motor to rotate, the rotation of the belt pulley drives the other belt pulley and the two-way threaded rod on the first belt pulley to rotate through the belt, the rotation of the two-way threaded rods drives the movable block on the second belt pulley to move relatively along the horizontal direction of the two-way threaded rod, and the relative movement of the movable block drives the two rectangular frames and the rollers on the two rectangular frames to rotate, so that the hollow glass with different sizes can be subjected to auxiliary conveying, and displacement of the hollow glass in the process of processing and feeding is prevented, and the processing efficiency of the hollow glass is affected;
2. The output ends of the two hydraulic cylinders drive the rubber pressing plates to vertically reciprocate downwards, the downward movement of the rubber pressing plates can clamp the hollow glass, meanwhile, the output end of the second motor drives the threaded rod to rotate, the rotation of the threaded rod drives the moving plate to move along the horizontal direction of the sliding rod, the hollow glass moves forwards, then the hydraulic cylinders are loosened and returned, and the hollow glass is continuously conveyed forwards by repeating the actions.
Drawings
FIG. 1 is a front elevational view of a construction of an embodiment of the application;
FIG. 2 is a structural top view of an embodiment of the application;
fig. 3 is a structural bottom view of an embodiment of the application.
The reference numerals are 1, a rectangular plate, 2, a first fixed plate, 3, a bidirectional threaded rod, 4, a belt pulley, 5, a movable plate, 6, a second fixed plate, 7, a vertical plate, 8, a top plate, 9, a hydraulic cylinder, 10, a rubber pressing plate, 11, a third fixed plate, 12, a flat plate, 13, a first motor, 14, a through hole, 15, a rectangular frame, 16, a roller, 17, a threaded rod, 18, a slide bar, 19, a sliding hole, 20, a movable block, 21 and a second motor.
Detailed Description
The application is described in further detail below with reference to fig. 1-3.
The embodiment of the application discloses a clamping tool for hollow glass processing, referring to figures 1-3, comprising two rectangular plates 1 which are distributed in parallel left and right, wherein the two ends of the top surface of the two rectangular plates 1 are respectively fixedly provided with a first fixed plate 2 and a second fixed plate 6, a third fixed plate 11 is arranged between the first fixed plate 2 and the second fixed plate 6, the third fixed plate 11 is fixedly connected with the two rectangular plates 1, the top surfaces of the first fixed plate 2 and the third fixed plate 11 are fixedly provided with a flat plate 12, the two ends of the top surface of the flat plate 12 are movably provided with rectangular frames 15, the inside of the rectangular frames 15 are fixedly provided with equally distributed shaft rods, the outer wall of each shaft rod is movably provided with idler wheels 16, the two ends of the top surface of the flat plate 12 are respectively and rotatably provided with through holes 14, the inside of each through hole 14 is respectively provided with a bidirectional threaded rod 3, the two ends of each bidirectional threaded rod 3 are respectively provided with a movable block 20 in a threaded sleeve, the two movable blocks 20 are respectively and fixedly connected with the two rectangular frames 15, one ends of the two bidirectional threaded rods 3 penetrate through the flat plate 12, the belt pulleys 4 are fixedly sleeved in an outward extending manner, the two belt pulleys 4 are connected through belt transmission, the other end of one bidirectional threaded rod 3 penetrates through the flat plate 12 and is connected with the output end of the first motor 13 in an outward extending manner, the bidirectional threaded rod 3 on the two bidirectional threaded rod 3 is driven to rotate through the output end of the first motor 13, the belt pulley 4 on the bidirectional threaded rod 3 is driven to rotate by the rotation of the belt pulley 4, the other belt pulley 4 and the bidirectional threaded rod 3 on the belt pulley 4 are driven to rotate by the rotation of the belt pulley 4, the movable blocks 20 on the two bidirectional threaded rods 3 are driven to move relatively along the horizontal direction of the bidirectional threaded rod 3, the two rectangular frames 15 and the rollers 16 on the two bidirectional threaded rods 20 are driven to rotate by the relative movement of the movable blocks 20, therefore, the auxiliary conveying function can be realized on hollow glass with different sizes, and the phenomenon that the hollow glass is displaced in the process of processing and feeding is prevented, so that the processing efficiency of the hollow glass is influenced.
Referring to fig. 2 and 3, two slide bars 18 are fixedly arranged between the second fixing plate 6 and the third fixing plate 11, the outer wall sliding sleeves of the two slide bars 18 are provided with a moving plate 5, a threaded rod 17 is threaded on the moving plate 5, one end of the threaded rod 17 penetrates through the third fixing plate 11 and is connected with the output end of a second motor 21 in an outward extending mode, two ends of the top surface of the moving plate 5 are fixedly provided with vertical plates 7, top plates 8 are fixedly arranged on the top surfaces of the two vertical plates 7, two hydraulic cylinders 9 are arranged on the top surfaces of the top plates 8, the output ends of the hydraulic cylinders 9 penetrate through the top plates 8 and extend downwards to be connected with a rubber pressing plate 10, sliding ports 19 are respectively arranged on the top surfaces of the two rectangular plates 1 in a sliding mode, the sliding blocks are fixedly connected with the moving plate 5, the rubber pressing plate 10 is driven to vertically reciprocate downwards through the output ends of the two hydraulic cylinders 9, hollow glass can be clamped through downward movement of the rubber pressing plate 10, meanwhile, the threaded rod 17 is driven to rotate through the output ends of the second motor 21, the rotation of the threaded rod 17 drives the moving plate 5 to move along the horizontal direction of the slide bars 18, hollow glass is enabled to move forward, and then the hollow glass is enabled to move forward, and the hollow glass is repeatedly and the hollow glass is not to be released, and the hollow glass is repeatedly conveyed forward.
When the clamping tool for hollow glass processing is used, the output ends of the two hydraulic cylinders 9 drive the rubber pressing plate 10 to vertically reciprocate downwards, the downward movement of the rubber pressing plate 10 can clamp hollow glass, meanwhile, the output ends of the second motors 21 drive the threaded rods 17 to rotate, the rotation of the threaded rods 17 drive the moving plate 5 to move along the horizontal direction of the sliding rods 18, the hollow glass is moved forwards, then the hydraulic cylinders 9 are loosened and returned, the output ends of the first motors 13 drive the bidirectional threaded rods 3 on the moving plate, the rotation of the bidirectional threaded rods 3 drives the belt pulleys 4 on the bidirectional threaded rods to rotate, the rotation of the belt pulleys 4 drives the other belt pulleys 4 and the bidirectional threaded rods 3 on the belt pulleys to rotate, the rotation of the two bidirectional threaded rods 3 drives the movable blocks 20 on the bidirectional threaded rods 3 to relatively move along the horizontal direction of the bidirectional threaded rods 3, and the relative movement of the movable blocks 20 drives the two rectangular frames 15 and the rollers 16 on the two rectangular frames to rotate, so that the hollow glass can play an auxiliary conveying role in the hollow glass, and displacement phenomenon in the process of processing and loading is prevented.
In the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be mechanical or electrical, or may be a direct connection between two elements, where "up," "down," "left," "right," etc. are merely used to indicate relative positional relationships, and when the absolute position of an object to be described changes, the relative positional relationships may change;
In the drawings of the disclosed embodiments, only the structures related to the embodiments of the present disclosure are referred to, and other structures can refer to the common design, so that the same embodiment and different embodiments of the present disclosure can be combined with each other without conflict;
Finally, the foregoing description of the preferred embodiment of the utility model is provided for the purpose of illustration only, and is not intended to limit the utility model to the particular form disclosed, but on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the utility model.
The above embodiments are not intended to limit the scope of the application, so that the equivalent changes of the structure, shape and principle of the application are covered by the scope of the application.