CN210367429U - Forming device for glass processing - Google Patents

Forming device for glass processing Download PDF

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Publication number
CN210367429U
CN210367429U CN201921246960.0U CN201921246960U CN210367429U CN 210367429 U CN210367429 U CN 210367429U CN 201921246960 U CN201921246960 U CN 201921246960U CN 210367429 U CN210367429 U CN 210367429U
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China
Prior art keywords
forming
glass
positioning
sleeve
glass surface
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CN201921246960.0U
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Chinese (zh)
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不公告发明人
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Xinyi City Carry Forward Fruit Valley Crafts Co Ltd
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Xinyi City Carry Forward Fruit Valley Crafts Co Ltd
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Abstract

The utility model discloses a forming device for glass processing, which comprises a bottom frame and a plate mould which is arranged above the bottom frame and used for forming a glass surface, wherein the plate mould comprises a plurality of glass surface forming tubes and two positioning forming strips which are arranged at intervals, the two positioning forming strips are respectively arranged at the two ends of the glass surface forming tubes and are fixedly connected with the corresponding end parts of the glass surface forming tubes, the forming device for glass processing adjusts the height of the local position of the positioning forming strips through a height adjusting structure, thereby realizing the adjustment of the height position of the glass surface forming tubes fixedly connected on the local position, thus, the plate mould can form panels with non-spherical surfaces or different bending radiuses, and can simultaneously adjust the corresponding height adjusting structures through a linkage structure, so that the two ends of the plate mould are positioned on the same horizontal plane, not only can greatly improve the glass forming efficiency, but also can effectively save the production cost.

Description

Forming device for glass processing
Technical Field
The utility model relates to a glass processing technology field specifically is a forming device that glass processing was used.
Background
The curved glass, spherical glass and the like are glass with certain shapes which are made by heating and softening glass, forming in a mould and annealing in order to meet the high-quality requirements of modern buildings. The curved glass, the spherical glass and the like have beautiful patterns, smooth lines and more flexible and various use. The curved glass, the spherical glass and the like are suitable for special requirements of different shapes of doors, windows, ceilings, curtain walls and the like of fish tanks, dining tables, balconies, mobile phone counters, cosmetic counters and hot-bending television cabinets.
In the prior art, the bending radius of the molding surface of the glass hot bending mold is fixed, so that a single mold can only mold fixed curved surface glass, and if a user needs to mold aspheric surface glass or curved surface glass with different bending radii, a plurality of molds need to be repeatedly manufactured, so that the processing efficiency of the hot bending glass is reduced, and meanwhile, the manufacturing cost of the curved surface glass, spherical surface glass and the like is also increased.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a forming device that glass processing used to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a forming device for glass processing comprises a bottom frame and a plate mold which is positioned above the bottom frame and used for forming a glass surface, wherein the plate mold comprises a plurality of glass surface forming tubes and two positioning forming strips which are arranged at intervals;
the height adjusting structure comprises portal frames fixedly arranged on the left side and the right side of the underframe, threaded rods penetrate through the upper wall surfaces of the pair of portal frames, the upper ends of the pair of threaded rods are respectively arranged on the lower wall surfaces of the pair of positioning forming strips through a first bearing, and a linkage structure is assembled between the height adjusting structures;
linkage structure is including setting up the support frame between a pair of portal frame, the support frame is installed wall on the chassis, support frame upper end fixed mounting has the sleeve, the sleeve internal rotation is equipped with the pivot, both ends are installed in the sleeve through No. two bearings about the pivot, the pivot both ends are provided with the screw thread, and the screw thread end of pivot all wears out the sleeve respectively with a pair of threaded rod meshing, fixed cover is equipped with No. one the gear in the pivot, No. one the bearing lower extreme is equipped with No. two gears, No. two gears and gear engagement, No. two gear lower extreme fixed mounting has the connecting rod, No. two gear end downwardly extending are kept away from to the connecting rod and are worn out the sleeve, the fixed No. three bearings that are equipped with of connecting rod and sleeve contact department, connecting rod fixed mounting is.
Preferably, the height adjusting structures are three and are respectively arranged at the front end, the middle part and the rear end between the plate mould and the underframe.
Preferably, the connecting rod penetrates out of the sleeve end and is fixedly provided with a rotating disc, the rotating disc is provided with a non-slip mat, and the non-slip mat is tightly adhered to the rotating disc.
Preferably, the glass surface forming pipe is a galvanized pipe.
Preferably, the positioning molding strip is a stainless steel flat iron strip, and the positioning molding strip is bent.
Compared with the prior art, the beneficial effects of the utility model are that: this forming device that glass processing was used, the height of the local position of location shaping strip is adjusted through the altitude mixture control structure, thereby can realize the regulation to the high position of fixed connection's glass face forming tube on this local position, like this, the matrix then can form aspheric surface board or different bend radius's panel, and can adjust the altitude mixture control structure that corresponds simultaneously through linkage structure, make matrix both ends be in on same horizontal plane, glass's shaping efficiency not only can be improved greatly, can also effectively practice thrift manufacturing cost.
Drawings
FIG. 1 is a front view of the present invention;
FIG. 2 is a left side view of the structure of the present invention;
fig. 3 is a schematic plan view of the plate mold structure of the present invention.
The device comprises a base frame 1, a plate mold 2, a glass surface forming tube 21, a positioning forming strip 22, a height adjusting structure 3, a portal frame 31, a threaded rod 32, a bearing 33, a linkage structure 4, a support frame 41, a sleeve 42, a rotating shaft 43, a bearing 44, a gear 45, a gear 46, a gear II, a connecting rod 47, a bearing 48, a turntable 5 and a non-slip mat 6.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. 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.
Referring to fig. 1-3, the present invention provides a technical solution: the utility model provides a forming device that glass processing used, its includes chassis 1 and is located 1 top of chassis and is used for fashioned matrix 2 of glass face, matrix 2 includes a plurality of glass face forming tubes 21 and two location shaping strip 22 that the interval set up, two location shaping strip 22 locate a plurality of glass face forming tubes 21 both ends respectively and with the tip fixed connection of the glass face forming tube 21 that corresponds, be equipped with between matrix 2 and the chassis 1 and be used for adjusting the height-adjusting structure 3 of location shaping strip 22 local position height.
When processing aspheric glass or glass with different bending radii, the heated semi-finished glass is placed on the plate die 2, the height of the local position of the positioning molding strip 22 is adjusted by the height adjusting structure 3, so that the height position of the glass surface molding tube 21 fixedly connected with the local position can be adjusted, thus the plate die 2 can form an aspheric plate or a panel with different bending radii, when the aspheric glass or the glass with different bending radii needs to be molded, a user does not need to manufacture a plurality of sets of glass hot bending dies, only needs to adjust the height of the local position of the positioning molding strip 22 by the height adjusting structure 3 to adjust the height position of the glass surface molding tube 21, and can arrange a plurality of glass surface molding tubes 21 arranged at intervals to form different bending radii, thereby realizing the molding of the aspheric glass or the glass with different bending radii, not only can greatly improve the molding efficiency of semi-finished glass, but also can effectively save the production cost.
Height adjusting structure 3 includes portal frame 31 of fixed mounting in the chassis 1 left and right sides, and threaded rod 32 all runs through on a pair of portal frame 31 wall, and a pair of threaded rod 32 upper end is all installed respectively in a pair of location shaping strip 22 lower wall through a bearing 33, is equipped with linkage 4 between height adjusting structure 3.
Through the threaded rod 32 rotating on the upper wall surface of the portal frame 31, as the threaded rod 32 is connected with the positioning molding strip 22 through a first bearing 33, the threaded rod 32 rotates in the portal frame 31, and the positioning molding strip 22 can be driven to ascend or descend.
Linkage structure 4 is including setting up support frame 41 between a pair of portal frame 31, support frame 41 installs in chassis 1 upper wall, support frame 41 upper end fixed mounting has sleeve 42, the sleeve 42 internal rotation is equipped with pivot 43, both ends are installed in sleeve 42 through No. two bearings 44 about pivot 43, pivot 43 both ends are provided with the screw thread, and the screw thread end of pivot 43 all wears out sleeve 42 and meshes with a pair of threaded rod 32 respectively, fixed cover is equipped with No. one gear 45 on the pivot 43, No. one bearing 33 lower extreme is equipped with No. two gears 46, No. two gears 46 and No. one gear 45 mesh, No. two gear 46 lower extreme fixed mounting has connecting rod 47, connecting rod 47 keeps away from No. two gears 46 end downwardly extending and wears out sleeve 42, connecting rod 47 and sleeve 42 contact department fixed mounting have No. three bearings 48, connecting rod 47 fixed mounting is on No. three bearing.
By rotating the connecting rod 47, the connecting rod 47 drives the second gear 46 to rotate, and then the first gear 45 meshed with the second gear 46 rotates to drive the rotating shaft 43 to rotate, because of the two ends of the rotating shaft 43; the threaded ends are respectively meshed with the corresponding threaded rods 32, and the corresponding height adjusting structures 3 can be driven simultaneously through the rotation of the rotating shaft 43, so that the height of the two ends of the positioning molding strip 22 is prevented from being uneven when the height adjusting structures 3 are adjusted.
The three height adjusting structures 3 are respectively arranged at the front end, the middle part and the rear end between the plate mould 2 and the underframe 1.
The local heights of the front end, the middle part and the rear end between the plate mould 2 and the underframe 1 can be adjusted through the height adjusting structure 3.
The connecting rod 47 penetrates out of the end of the sleeve 42 and is fixedly provided with a rotating disc 5, the rotating disc 5 is provided with an anti-skid pad 6, and the anti-skid pad 6 is tightly adhered to the rotating disc 5.
By rotating the connecting rod 47 through the rotating disc 5, the anti-slip pad 6 can prevent the hand from sliding when the rotating disc 5 is rotated.
The glass surface forming tube 21 is a galvanized tube.
The positioning and forming strip 22 is a flat iron strip of stainless steel, and the positioning and forming strip 22 is curved.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (5)

1. The forming device for glass processing is characterized by comprising an underframe (1) and a plate mold (2) which is positioned above the underframe (1) and used for forming a glass surface, wherein the plate mold (2) comprises a plurality of glass surface forming tubes (21) arranged at intervals and two positioning forming strips (22), the two positioning forming strips (22) are respectively arranged at two ends of the glass surface forming tubes (21) and fixedly connected with the end parts of the corresponding glass surface forming tubes (21), and a height adjusting structure (3) used for adjusting the height of the local position of the positioning forming strips (22) is arranged between the plate mold (2) and the underframe (1);
the height adjusting structure (3) comprises portal frames (31) fixedly mounted on the left side and the right side of the underframe (1), threaded rods (32) penetrate through the upper wall surfaces of the pair of portal frames (31), the upper ends of the pair of threaded rods (32) are respectively mounted on the lower wall surfaces of the pair of positioning molding strips (22) through a first bearing (33), and a linkage structure (4) is assembled between the height adjusting structure (3);
linkage structure (4) is including setting up support frame (41) between a pair of portal frame (31), wall on chassis (1) is installed to support frame (41), support frame (41) upper end fixed mounting has sleeve (42), sleeve (42) internal rotation is equipped with pivot (43), both ends are installed in sleeve (42) through No. two bearing (44) about pivot (43), pivot (43) both ends are provided with the screw thread, and the screw thread end of pivot (43) all wears out sleeve (42) and meshes with a pair of threaded rod (32) respectively, fixed cover is equipped with No. one gear (45) on pivot (43), No. one bearing (33) lower extreme is equipped with No. two gear (46), No. two gear (46) and a gear (45) meshing, No. two gear (46) lower extreme fixed assembly has connecting rod (47), connecting rod (47) keep away from No. two gear (46) end downwardly extending and wear out sleeve (42), a third bearing (48) is fixedly assembled at the contact position of the connecting rod (47) and the sleeve (42), and the connecting rod (47) is fixedly installed on an inner ring of the third bearing (48).
2. The forming device for glass processing according to claim 1, wherein the number of the height adjusting structures (3) is three, and the three height adjusting structures are respectively installed at the front end, the middle part and the rear end between the plate mold (2) and the base frame (1).
3. A forming device for glass processing according to claim 1, characterized in that the connecting rod (47) is fixed with a rotary plate (5) through the sleeve (42), the rotary plate (5) is provided with a non-slip pad (6), and the non-slip pad (6) is tightly adhered to the rotary plate (5).
4. The forming apparatus for glass processing according to claim 1, wherein the glass surface forming tube (21) is a galvanized tube.
5. A forming apparatus for glass processing according to claim 1, characterized in that the positioning and forming strip (22) is a flat iron strip of stainless steel, and the positioning and forming strip (22) is curved.
CN201921246960.0U 2019-08-04 2019-08-04 Forming device for glass processing Active CN210367429U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921246960.0U CN210367429U (en) 2019-08-04 2019-08-04 Forming device for glass processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921246960.0U CN210367429U (en) 2019-08-04 2019-08-04 Forming device for glass processing

Publications (1)

Publication Number Publication Date
CN210367429U true CN210367429U (en) 2020-04-21

Family

ID=70248627

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921246960.0U Active CN210367429U (en) 2019-08-04 2019-08-04 Forming device for glass processing

Country Status (1)

Country Link
CN (1) CN210367429U (en)

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