CN223189101U - Spacing elevation structure and curved surface glass processing equipment - Google Patents

Spacing elevation structure and curved surface glass processing equipment

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Publication number
CN223189101U
CN223189101U CN202422063490.1U CN202422063490U CN223189101U CN 223189101 U CN223189101 U CN 223189101U CN 202422063490 U CN202422063490 U CN 202422063490U CN 223189101 U CN223189101 U CN 223189101U
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CN
China
Prior art keywords
limit
rail
prism
cross
spacing
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Active
Application number
CN202422063490.1U
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Chinese (zh)
Inventor
詹胜文
傅思健
陈学才
单扬奕
郑龙
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Dongguan Entebeisi Intelligent Technology Co ltd
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Dongguan Entebeisi Intelligent Technology Co ltd
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Priority to CN202422063490.1U priority Critical patent/CN223189101U/en
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Publication of CN223189101U publication Critical patent/CN223189101U/en
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Abstract

The application provides a limiting lifting structure and curved glass processing equipment. The limiting lifting structure comprises a mounting frame, a lifting piece and a limiting assembly. The lifting part is installed on the mounting frame, the limiting assembly comprises limiting prisms and n crossed limiting guide rails, the number of the side faces of the limiting prisms is n, one end portion of each limiting prism is connected with the power output end of the lifting part, the extending directions of the n crossed limiting guide rails are identical, the n crossed limiting guide rails are in one-to-one correspondence with the n side faces of each limiting prism, each crossed limiting guide rail is respectively arranged at the intersection of every two adjacent side faces of each limiting prism, each crossed limiting guide rail is respectively clung to the corresponding two side faces of each limiting prism, each crossed limiting guide rail is in sliding connection with the two side faces of each limiting prism, each crossed limiting guide rail is connected with the mounting frame, and the mounting frame is in position avoidance with the power output end of the lifting part. The limiting lifting structure is simple in structure and good in universality.

Description

Spacing elevation structure and curved surface glass processing equipment
Technical Field
The utility model relates to the technical field of glass processing, in particular to a limiting lifting structure and curved glass processing equipment.
Background
When the upper die and the lower die are used for clamping, if the position movement accuracy of the upper die or the lower die is poor, the quality of the product can be affected, for example, china patent application with the application number 202020724584.8 discloses a die for forming soles of running shoes, the die is matched with guide posts and guide springs, the positioning accuracy of the upper die and the lower die is improved further through positioning protrusions on the lower surface of the lower die and positioning grooves on the upper surface of a forming die, the die is required to be improved in clamping positioning accuracy, the die corresponding to each type of product is required to be improved, the universality is poor, and the die corresponding to each type of product is required to be improved, for example, china patent application with the application number 202011548465.2 is also provided for forming a punched product, the die is used for confirming and adjusting the position of the die during punching through the matched use of laser, and further the matched use of a support plate, a limiting plate, a positioning rib, a hydraulic rod and a punching head, and the die is required to be improved in moving accuracy during punching.
Disclosure of utility model
The utility model aims to overcome the defects in the prior art and provides a limiting lifting structure and curved glass processing equipment which are simple in structure and good in universality.
The aim of the utility model is realized by the following technical scheme:
The utility model provides a spacing elevation structure, includes mounting bracket, lifting part and spacing subassembly, the lifting part is installed on the mounting bracket, spacing subassembly includes spacing prism and n cross limit guide, the number of spacing prism's side is n, the one end of spacing prism with the power take off of lifting part is connected, n the extending direction of cross limit guide is the same, and n cross limit guide with spacing prism's n side one-to-one sets up, every cross limit guide sets up respectively the intersection of every adjacent both sides face of spacing prism, and every cross limit guide hugs closely respectively on spacing prism corresponds both sides face, and every cross limit guide with spacing prism's both sides face sliding connection, every cross limit guide with the mounting bracket is connected, the mounting bracket with lifting part's power take off the setting of keeping away the position;
Wherein n is an integer and n is 3 or more.
In one embodiment, each cross limit rail includes a first limit rail and a second limit rail which have the same extending directions, n first limit rails of each cross limit rail are arranged in a one-to-one correspondence with n sides of the limit prism, each first limit rail of each cross limit rail is respectively arranged at an intersection of each adjacent two sides of the limit prism, each first limit rail of each cross limit rail is respectively connected to two corresponding sides of the limit prism, a sliding connection groove is formed in each second limit rail of each cross limit rail, the extending directions of the sliding connection grooves are the same as the extending directions of the corresponding second limit rail, at least part of each first limit rail of each cross limit rail is clamped at the corresponding sliding connection groove, the first limit rail of each cross limit rail is in sliding connection with the corresponding second limit rail, the sliding direction of each first limit rail of each cross limit rail is in sliding connection with the corresponding sliding connection groove, and the sliding connection groove of each mounting frame is arranged in the same extending directions of the sliding connection groove.
In one embodiment, each of the cross limit rails includes a third limit rail and a fourth limit rail having the same extending direction, the third limit rail and the fourth limit rail are connected, a junction of the third limit rail and the fourth limit rail of each of the cross limit rails coincides with an intersection of corresponding adjacent two sides of the limit prisms, the third limit rail is connected to one of the corresponding sides of the limit prisms, the fourth limit rail is connected to the other of the corresponding sides of the limit prisms, the third limit rail and the fourth limit rail of each of the cross limit rails are all closely attached to the corresponding sides of the limit prisms, and the third limit rail and the fourth limit rail of each of the cross limit rails are all slidably connected to the limit prisms, and the third limit rail and the fourth limit rail of each of the cross limit rails are all connected to the mounting frame.
In one embodiment, the third spacing rail and the fourth spacing rail are integrally formed.
In one embodiment, each of the cross-rails extends in the same direction as the direction of gravity.
In one embodiment, the number of sides of the limit prism is four;
The number of the cross limit guide rails is four.
In one embodiment, the lifting member is a cylinder.
In one embodiment, each of the cross-rails is riveted to the mounting bracket.
The utility model provides a curved glass processing equipment, includes and preheats the structure, preheats the structure and go up down and preheat the structure and the spacing elevation structure of arbitrary embodiment above-mentioned, go up preheat the structure set up in spacing prismatic other end department, go up preheat the structure with the power take off of lifter or spacing prismatic connection, lower preheat the structure with go up preheat the structure and correspond the setting, the lifter drive go up preheat the structure towards being close to or keeping away from lower preheat the direction of structure and remove.
In one embodiment, the curved glass processing apparatus further comprises a graphite mold disposed on a side of the lower preheating structure adjacent to the upper preheating structure.
Compared with the prior art, the utility model has at least the following advantages:
According to the limit lifting structure, the extending directions of n crossed limit guide rails are the same, the n crossed limit guide rails are arranged in one-to-one correspondence with n side surfaces of the limit prism, namely, the n crossed limit guide rails are uniformly distributed in the circumferential direction of the limit prism, a channel with the same width is formed at the periphery of the limit prism, each crossed limit guide rail is further matched with each crossed limit guide rail to be respectively arranged at the intersection of every two adjacent side surfaces of the limit prism, each crossed limit guide rail is respectively clung to the corresponding two side surfaces of the limit prism, and the two side surfaces of each crossed limit guide rail are in sliding connection with the two side surfaces of the limit prism, so that each side surface of the limit prism is at least partially abutted to the channel with the same width at each position, and when the power output end of the lifting piece drives the limit prism to deviate, the lifting piece is further driven by the limit prism to move, the lifting piece is further driven by the n crossed limit guide rails to have the effect of deviation correction on the movement of the limit prism, and therefore, the lifting piece is effectively driven by the lifting piece to move, the limit prism is effectively guaranteed to move, and the die is easy to be matched with die, and the limit lifting structure is good in accuracy, and the die is suitable for die assembly.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed in the embodiments will be briefly described below, it being understood that the following drawings only illustrate some embodiments of the present utility model and therefore should not be considered as limiting the scope, and other related drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a diagram illustrating a limit lifting structure according to an embodiment of the present utility model;
FIG. 2 is a partial view of the spacing elevator structure of FIG. 1;
FIG. 3 is a partial exploded view of the spacing elevator structure of FIG. 1;
Fig. 4 is another partial view of the spacing elevator structure of fig. 1.
Detailed Description
In order that the utility model may be readily understood, a more complete description of the utility model will be rendered by reference to the appended drawings. The drawings illustrate preferred embodiments of the utility model. This utility model may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It will be understood that when an element is referred to as being "fixed to" another element, it can be directly on the other element or intervening elements may also be present. 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. The terms "vertical," "horizontal," "left," "right," and the like are used herein for illustrative purposes only and are not meant to be the only embodiment.
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 utility model belongs. The terminology used herein in the description of the utility model is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model. The term "and/or" as used herein includes any and all combinations of one or more of the associated listed items.
The application provides a limiting lifting structure. The limiting lifting structure comprises a mounting frame, a lifting piece and a limiting assembly. The lifting part is installed on the mounting frame, the limiting assembly comprises limiting prisms and n crossed limiting guide rails, the number of the side faces of the limiting prisms is n, one end portion of each limiting prism is connected with the power output end of the lifting part, the extending directions of the n crossed limiting guide rails are identical, the n crossed limiting guide rails are in one-to-one correspondence with the n side faces of each limiting prism, each crossed limiting guide rail is respectively arranged at the intersection of every two adjacent side faces of each limiting prism, each crossed limiting guide rail is respectively clung to the corresponding two side faces of each limiting prism, each crossed limiting guide rail is in sliding connection with the two side faces of each limiting prism, each crossed limiting guide rail is connected with the mounting frame, and the mounting frame is in position avoidance with the power output end of the lifting part. Wherein n is an integer and n is 3 or more.
The spacing elevation structure of foretell for the extending direction of n crossing limit rail is the same, and n crossing limit rail and the n side one-to-one setting of spacing prism, even make n crossing limit rail evenly disperse in the circumference of spacing prism, and form the passageway that the width is the same everywhere in spacing prism periphery, further cooperate each crossing limit rail to set up respectively in the crossing department of every adjacent both sides face of spacing prism, and each crossing limit rail is hugged closely on the both sides face that spacing prism corresponds respectively, and each crossing limit rail and the both sides face sliding connection of spacing prism, make each crossing limit rail carry out spacingly to the crossing department of the adjacent side that spacing prism corresponds, even make each side of spacing prism all at least partial butt in the passageway that the width is the everywhere the same, and then make when driving spacing prism at the power take place the deviation of elevating piece, n crossing limit rail can produce mechanical interference with spacing prism and hinder elevating piece further drive spacing prism and remove, and n crossing limit rail can drive spacing prism removal effect of rectifying, and then the elevating piece drive spacing prism, thereby the die has guaranteed effectively that the spacing piece moves, the die has good accuracy, and has good die spacing structure, and die has good accuracy.
In order to better understand the limit lifting structure of the present application, the limit lifting structure of the present application is further explained below:
Referring to fig. 1 to 3, a limit lifting structure 10 according to an embodiment includes a mounting frame 100, a lifting member 200 and a limit assembly 300. The lifting member 200 is installed on the installation frame 100, the limiting assembly 300 comprises limiting prisms 310 and n crossed limiting guide rails 320, the number of the side surfaces of the limiting prisms 310 is n, one end of each limiting prism 310 is connected with the power output end of the lifting member 200, the extending directions of the n crossed limiting guide rails 320 are identical, the n crossed limiting guide rails 320 are in one-to-one correspondence with the n side surfaces of the limiting prisms 310, each crossed limiting guide rail 320 is respectively arranged at the intersection of each two adjacent side surfaces of the limiting prism 310, each crossed limiting guide rail 320 is respectively clung to the corresponding two side surfaces of the limiting prism 310, each crossed limiting guide rail 320 is in sliding connection with the two side surfaces of the limiting prism 310, each crossed limiting guide rail 320 is connected with the installation frame 100, and the installation frame 100 is in position avoidance with the power output end of the lifting member 200. Wherein n is an integer and n is 3 or more.
The above-mentioned spacing lift structure 10 makes the extending direction of n cross spacing guide 320 the same, and n cross spacing guide 320 and spacing prism 310 n side one-to-one set up, even make n cross spacing guide 320 even disperse on spacing prism 310 circumference, and form the same passageway of everywhere width in spacing prism 310 periphery, further cooperate each cross spacing guide 320 to set up respectively in spacing prism 310's every adjacent both sides crossing department, and each cross spacing guide 320 hugs closely respectively on spacing prism 310's both sides face, and each cross spacing guide 320 and spacing prism 310's both sides face sliding connection, make each cross spacing guide 320 carry out spacingly to spacing prism 310's adjacent side crossing department, even make spacing prism 310 each side all at least partial butt in a everywhere width on the passageway, and then make when spacing prism 310 is driven to remove at the power take place the deviation in the output of lifting member 200, n cross spacing guide 320 can produce mechanical interference with spacing prism 310 and prevent lifting member 200 to further drive spacing prism 310, and n cross spacing prism 320 and the die 200 can be driven by the side face of spacing prism 310 to the side face the corresponding, and the die has the good precision of moving, and the die has the good die spacing structure of rectifying and rectifying, and rectifying the die moving is well has been guaranteed to the die moving well.
Referring to fig. 2 to 4 together, in one embodiment, each cross limit rail 320 includes a first limit rail 321 and a second limit rail 322 with the same extending direction, the first limit rail 321 of each cross limit rail 320 is disposed in a one-to-one correspondence with n sides of the limit prism 310, the first limit rail 321 of each cross limit rail 320 is disposed at an intersection of each adjacent two sides of the limit prism 310, the first limit rail 321 of each cross limit rail 320 is connected to two corresponding sides of the limit prism 310, the second limit rail 322 of each cross limit rail 320 is provided with a sliding groove 301, the extending direction of the sliding groove 301 is the same as the extending direction of the corresponding second limit rail 322, at least part of the first limit rail 321 of each cross limit rail 320 is clamped at the corresponding sliding groove 301, the sliding direction of the first limit rail 321 of each cross limit rail 320 is the same as the extending direction of the corresponding sliding groove 301, and the second limit rail 322 of each cross limit rail 320 is better connected to the corresponding mounting frame 100, and the corresponding mounting frame 100 is better in sliding connection with the sliding groove 322.
In one embodiment, each cross limit rail comprises a third limit rail and a fourth limit rail which have the same extending direction, the third limit rail and the fourth limit rail are connected, the joint of the third limit rail and the fourth limit rail of each cross limit rail coincides with the intersection of the corresponding adjacent two sides of the limit prism, the third limit rail is connected to one corresponding side of the limit prism, the fourth limit rail is connected to the other corresponding side of the limit prism, the third limit rail and the fourth limit rail of each cross limit rail are tightly attached to the side of the corresponding limit prism, the third limit rail and the fourth limit rail of each cross limit rail are in sliding connection with the limit prism, and the third limit rail and the fourth limit rail of each cross limit rail are connected with the mounting frame, so that the effective limit of the cross limit rail to the limit prism is well ensured.
In one embodiment, the third spacing guide rail and the corresponding fourth spacing guide rail are of an integrated structure, so that the connection stability and connection compactness of the third spacing guide rail and the fourth spacing guide rail are improved, the structural stability and the structural compactness of the crossed spacing guide rail are further improved, and the spacing stability of the crossed spacing guide rail to the spacing prism is better ensured.
In one embodiment, the extending direction of each cross limiting guide rail is the same as the gravity direction, i.e. n cross limiting guide rails are matched to form a channel which is perpendicular to the gravity direction and has the same width everywhere, so that the convenience of configuration of the n cross limiting guide rails is better improved.
Referring to fig. 2 to 4, in one embodiment, the number of sides of the limiting prism 310 is four. Further, the number of cross rails 320 is four. In other embodiments, the number of the side faces of the limit prism is three, and further, the number of the cross limit guide rails is three, so that the formation of a channel with the same width at each place can be better ensured, the effective limitation of the positions of the side faces of the limit prism is further realized, and further, the limit accuracy of the lifting piece for driving the limit prism to move is better ensured.
Referring to fig. 2 to 4, in one embodiment, the lifting member 200 is a cylinder.
In one embodiment, each cross-rail is riveted to the mounting bracket.
The application provides curved glass processing equipment. The curved glass processing equipment comprises an upper preheating structure, a lower preheating structure and the limiting lifting structure of any embodiment, wherein the upper preheating structure is arranged at the other end of the limiting prism, the upper preheating structure is connected with the power output end of the lifting piece or the limiting prism, the lower preheating structure is correspondingly arranged with the upper preheating structure, and the lifting piece drives the upper preheating structure to move towards a direction close to or far away from the lower preheating structure. Further, referring to fig. 1 to 3, in the present embodiment, the limiting lifting structure 10 includes a mounting frame 100, a lifting member 200 and a limiting assembly 300. The lifting member 200 is installed on the installation frame 100, the limiting assembly 300 comprises limiting prisms 310 and n crossed limiting guide rails 320, the number of the side surfaces of the limiting prisms 310 is n, one end of each limiting prism 310 is connected with the power output end of the lifting member 200, the extending directions of the n crossed limiting guide rails 320 are identical, the n crossed limiting guide rails 320 are in one-to-one correspondence with the n side surfaces of the limiting prisms 310, each crossed limiting guide rail 320 is respectively arranged at the intersection of each two adjacent side surfaces of the limiting prism 310, each crossed limiting guide rail 320 is respectively clung to the corresponding two side surfaces of the limiting prism 310, each crossed limiting guide rail 320 is in sliding connection with the two side surfaces of the limiting prism 310, each crossed limiting guide rail 320 is connected with the installation frame 100, and the installation frame 100 is in position avoidance with the power output end of the lifting member 200. Wherein n is an integer and n is 3 or more.
The curved surface glass processing equipment adopts the limiting lifting structure, so that the limiting accuracy of the movement of the upper preheating structure in the curved surface glass processing equipment is better improved, the limiting accuracy of the die assembly of the curved surface glass processing die is better ensured, and the quality of curved surface glass products is better ensured.
In one embodiment, the curved glass processing apparatus further comprises a graphite mold disposed on a side of the lower preheating structure adjacent to the upper preheating structure.
Compared with the prior art, the utility model has at least the following advantages:
According to the limit lifting structure 10 disclosed by the utility model, the extending directions of n cross limit guide rails 320 are the same, n cross limit guide rails 320 are arranged in a one-to-one correspondence manner with n side surfaces of the limit prism 310, namely, n cross limit guide rails 320 are uniformly distributed on the circumference of the limit prism 310, a channel with the same width is formed on the periphery of the limit prism 310, each cross limit guide rail 320 is further matched with each cross limit guide rail 320 to be respectively arranged at the intersection of each two adjacent side surfaces of the limit prism 310, each cross limit guide rail 320 is respectively clung to the corresponding two side surfaces of the limit prism 310, and each cross limit guide rail 320 is in sliding connection with the two side surfaces of the limit prism 310, so that each cross limit guide rail 320 limits the intersection of the corresponding adjacent side surfaces of the limit prism 310, namely, each side surface of the limit prism 310 is at least partially abutted to the channel with the same width, and when the power output end of the lifting piece 200 drives the limit prism 310 to move, the n cross limit guide rails 320 and the limit prism 310 are further matched to generate mechanical interference to prevent the lifting piece 200 from further moving, and the n cross limit guide rails 320 are relatively easy to drive the limit prism 200 to move, and the limit prism 200 is relatively easy to move, and the die is relatively suitable for correcting the movement of the limit prism 200.
The above examples illustrate only a few embodiments of the utility model, which are described in detail and are not to be construed as limiting the scope of the utility model. It should be noted that it will be apparent to those skilled in the art that several variations and modifications can be made without departing from the spirit of the utility model, which are all within the scope of the utility model. Accordingly, the scope of protection of the present utility model is to be determined by the appended claims.

Claims (10)

1. The utility model provides a spacing elevation structure, includes mounting bracket, lifting part and spacing subassembly, the lifting part is installed on the mounting bracket, its characterized in that, spacing subassembly includes spacing prism and n cross limit guide, the lateral number of spacing prism is n, the one end of spacing prism with the power take off of lifting part is connected, n cross limit guide's extending direction is the same, and n cross limit guide with the n side one-to-one of spacing prism sets up, each cross limit guide sets up respectively the intersection department of every adjacent both sides face of spacing prism, and each cross limit guide is hugged closely respectively on the both sides face that spacing prism corresponds, and each cross limit guide with the both sides face sliding connection of spacing prism, each cross limit guide with the mounting bracket is connected, the mounting bracket keeps away the position with the power take off of lifting part and sets up.
Wherein n is an integer and n is 3 or more.
2. The limit lifting structure according to claim 1, wherein each cross limit rail comprises a first limit rail and a second limit rail which have the same extending direction, n first limit rails of each cross limit rail are arranged in a one-to-one correspondence with n sides of the limit prism, each first limit rail of each cross limit rail is arranged at an intersection of each two adjacent sides of the limit prism, the first limit rail of each cross limit rail is connected to two corresponding sides of the limit prism, a sliding connection groove is formed in the second limit rail of each cross limit rail, the extending direction of the sliding connection groove is the same as that of the corresponding second limit rail, at least part of the first limit rail of each cross limit rail is clamped at the corresponding sliding connection groove, the first limit rail of each cross limit rail is connected with the corresponding second limit rail in a sliding manner, the sliding connection groove of each first limit rail of each cross limit rail is connected with the corresponding sliding connection groove of the mounting frame in the same extending direction of the first limit rail.
3. The limit lifting structure of claim 1, wherein each of the cross-limit rails includes a third limit rail and a fourth limit rail having the same extending direction, the third limit rail and the fourth limit rail are connected, a junction of the third limit rail and the fourth limit rail of each of the cross-limit rails coincides with an intersection of corresponding adjacent two sides of the limit prism, the third limit rail is connected to a corresponding one of the sides of the limit prism, the fourth limit rail is connected to a corresponding other of the sides of the limit prism, and the third limit rail and the fourth limit rail of each of the cross-limit rails are each abutted against a corresponding one of the sides of the limit prism, and the third limit rail and the fourth limit rail of each of the cross-limit rails are each slidably connected to the limit prism, and the third limit mount and the fourth limit rail of each of the cross-limit rails are each connected to the limit prism.
4. A spacing elevator arrangement as claimed in claim 3, wherein the third spacing rail is of unitary construction with the corresponding fourth spacing rail.
5. The limit lifting structure of claim 1, wherein each of the cross-limit rails extends in the same direction as the direction of gravity.
6. The limit lifting structure of claim 1, wherein the number of sides of the limit prism is four;
The number of the cross limit guide rails is four.
7. The spacing elevator arrangement of claim 1, wherein the elevator is a cylinder.
8. The spacing elevator arrangement of claim 1, wherein each of the cross-limiting rails is riveted to the mounting bracket.
9. Curved glass processing equipment, characterized in that, including last preheating structure, lower preheating structure and the spacing elevation structure of any one of claims 1 to 8, go up preheating structure set up in spacing prismatic other end department, go up preheating structure with the power take off end of lifter or spacing prismatic connection, lower preheating structure with go up preheating structure corresponds the setting, the lifter drive go up preheating structure towards being close to or keeping away from lower preheating structure's direction removes.
10. The curved glass processing apparatus of claim 9, further comprising a graphite mold disposed on a side of the lower preheating structure adjacent the upper preheating structure.
CN202422063490.1U 2024-08-23 2024-08-23 Spacing elevation structure and curved surface glass processing equipment Active CN223189101U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422063490.1U CN223189101U (en) 2024-08-23 2024-08-23 Spacing elevation structure and curved surface glass processing equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422063490.1U CN223189101U (en) 2024-08-23 2024-08-23 Spacing elevation structure and curved surface glass processing equipment

Publications (1)

Publication Number Publication Date
CN223189101U true CN223189101U (en) 2025-08-05

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422063490.1U Active CN223189101U (en) 2024-08-23 2024-08-23 Spacing elevation structure and curved surface glass processing equipment

Country Status (1)

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CN (1) CN223189101U (en)

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