Feeding frame for special glass processing

By designing the material pickup mechanism for the shovel plate and the compression assembly, the problem that the existing loading rack is difficult to adsorb textured special glass is solved, and a stable and convenient glass loading process is achieved.

CN223188463UActive Publication Date: 2025-08-05DALIAN HUAYING GLASSWARE CO LTD
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Patent Information

Application Number
CN202421951093.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-08-05
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

The existing special glass processing loading rack is difficult to effectively adsorb special glass with textured surfaces through suction cups.

Method used

The material picking mechanism of the shovel plate and the compression assembly is adopted. The bidirectional screw drives the shovel plate to move in opposite directions through the motor, shovels the two ends of the glass, and presses the glass through the spring reaction force of the compression assembly, replacing the traditional suction cup adsorption method.

Benefits of technology

The stable feeding of special glass with textured surface is achieved, preventing the glass from sliding down during the transportation process, and improving the convenience and stability of feeding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a feeding frame for special glass processing, relates to the technical field of special glass processing, and aims to solve the technical problem that special glass with textures on the surface is difficult to adsorb mainly through suction cups in the conventional feeding frame for special glass processing, and the feeding frame comprises a feeding frame body and a material taking mechanism, the feeding frame body comprises a conveying mechanism, a lifting mechanism is arranged at the end of the conveying mechanism, and the material taking mechanism is arranged at the output end of the lifting mechanism. The motor drives the bidirectional lead screw to rotate, the two shovel plates are driven to move oppositely, the two ends of the special glass are shoveled up, the mode of shoveling up the glass is adopted to replace a traditional mode of sucking the glass through suction cups, and the special glass with textures on the surface can be more conveniently fed; the opposite ends of the two pressing plates are in the shape of upwards-tilted cambered surfaces, so that the two ends of the glass can conveniently enter clamping spaces formed by the opposite faces of the pressing plates and the shovel plate, the pressing plates and the particle protrusions are driven by the counter-acting force of the springs to press the glass, and the stability of the glass in the conveying process is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of special glass processing, and more specifically, to a loading rack for special glass processing. Background Art

[0002] Specialty glass is characterized by its light transmission, heat insulation, sound insulation, wear resistance, and climate change resistance. Some glass also has heat preservation, heat absorption, and radiation protection properties. Specialty glass is widely used in door and window panels, wall panels, and interior decoration in buildings.

[0003] The existing loading rack for special glass processing mainly uses suction cups to absorb the glass and then transport it to the processing equipment for processing. However, some special glass surfaces have uneven textures rather than smooth textures. It is difficult to transport the glass by fixedly sucking the glass with suction cups to take out the special glass with textured surfaces. In view of this, we propose a loading rack for special glass processing. Utility Model Content

[0004] The purpose of the utility model is to overcome the shortcomings of the existing technology, meet the actual needs, and provide a special glass processing loading rack to solve the technical problem that the current existing special glass processing loading rack mainly uses suction cups to absorb glass and is difficult to absorb special glass with textured surface.

[0005] In order to solve the above technical problems, the present invention provides the following technical solutions: a loading rack for special glass processing, comprising a loading rack body, the loading rack body comprising a conveying mechanism, the end of the conveying mechanism being provided with a lifting mechanism; and further comprising a material taking mechanism, the material taking mechanism being provided at the output end of the lifting mechanism;

[0006] The material-grabbing mechanism includes a top plate, a bidirectional screw and a motor. The top of the top plate is fixedly connected to the output end of the lifting mechanism. The middle part of the bidirectional screw is rotatably connected to the center of the bottom surface of the top plate through a mounting seat. The motor is fixedly mounted on the top surface of one end of the top plate by screws. The output end of the motor is transmitted to one end of the bidirectional screw through a gear set. Both ends of the bidirectional screw are threaded with mounting plates. The top surface of the mounting plate and the top surface of the top plate are limited and slided. The opposite sides of the bottom of the two mounting plates are fixedly connected with shovel plates.

[0007] Preferably, the tops of the two shovel plates at one relative end are both in the shape of a downwardly inclined slope, and a pressing assembly is provided on the tops of the two shovel plates.

[0008] Preferably, the clamping assembly includes a pressure plate and a support plate, the pressure plate is arranged on the top of the shovel plate, the support plate is arranged on the top of the pressure plate, and one end of the support plate is fixedly connected to the surface of one side of the mounting plate, and both end surfaces of the top of the pressure plate are fixedly connected with a guide rod, one end of the guide rod is passed through the support plate body, and a spring is sleeved on the surface of the guide rod, and both ends of the spring are fixedly connected to the opposite surfaces of the support plate and the pressure plate respectively.

[0009] Preferably, a plurality of hemispherical particle protrusions are provided on the bottom surface of the pressing plate.

[0010] Preferably, the two pressing plates have opposite ends that are both in the shape of upwardly tilted arc surfaces.

[0011] Preferably, a T-shaped slider is provided at the top of the mounting plate, a T-shaped slot is provided at the bottom of the top plate, and the side surface of the T-shaped slider slides with the inner wall of the T-shaped slot in a limited manner.

[0012] Compared with the prior art, the beneficial effects of the present invention are:

[0013] 1. The utility model designs a material-retrieving mechanism. The motor drives the bidirectional screw to rotate through the gear set, and then drives the two mounting plates to move. During this process, the T-shaped slider on the top of the mounting plate slides within the T-shaped slide groove, driving the two shovel plates to move in opposite directions, and scooping up the two ends of the special glass. The utility model adopts the method of scooping up the glass instead of the traditional method of sucking the glass with a suction cup, which is more convenient for loading special glass with textured surface.

[0014] 2. The utility model also designs a clamping component, and the two shovel plates move in opposite directions to scoop up the two ends of the special glass until the two ends of the glass contact the curved end of the pressure plate. The opposite ends of the two pressure plates are both in an upward curved shape, which makes it easier for the two ends of the glass to enter the clamping space formed by the opposite side of the pressure plate and the shovel plate, and then drive the pressure plate and the guide rod to move upward along the support plate to compress the spring. At the same time, the reaction force of the spring drives the pressure plate and the particle protrusion to press the glass, preventing the glass from slipping during the conveying process of the conveying mechanism. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0016] Figure 2 This is a schematic structural diagram of the material taking mechanism of the present utility model;

[0017] Figure 3 This is a schematic diagram of a partially enlarged cross-sectional structure of point A of the present invention;

[0018] Figure 4 This is a schematic diagram of the pressing plate structure of the present utility model.

[0019] Description of the numbers in the figure:

[0020] 1. Loading frame; 101. Conveying mechanism; 102. Lifting mechanism; 2. Retrieving mechanism; 201. Top plate; 2011. T-shaped slide; 202. Bidirectional screw rod; 203. Motor; 204. Mounting plate; 2041. T-shaped slider; 205. Shovel plate; 206. Clamping assembly; 2061. Pressing plate; 2062. Support plate; 2063. Guide rod; 2064. Spring; 2065. Particle protrusion. DETAILED DESCRIPTION

[0021] like Figures 1 to 4 As shown, the utility model relates to a loading rack for special glass processing, which includes a loading rack body 1 and a material taking mechanism 2.

[0022] like Figure 1 As shown, the loading rack 1 includes a conveying mechanism 101, and a lifting mechanism 102 is provided at the end of the conveying mechanism 101. In this embodiment, the loading rack 1 is a loading device used for glass processing on the market, wherein the conveying mechanism 101 is used to transport the glass to the processing equipment, and the lifting mechanism 102 is used to change the height of the glass.

[0023] like Figures 1 to 4 As shown, the material taking mechanism 2 is arranged at the output end of the lifting mechanism 102.

[0024] Specifically, such as Figures 1 to 4 As shown, the material-retrieving mechanism 2 includes a top plate 201, a bidirectional screw rod 202 and a motor 203. The top of the top plate 201 is fixedly connected to the output end of the lifting mechanism 102. The middle of the bidirectional screw rod 202 is rotatably connected to the center of the bottom surface of the top plate 201 through a mounting seat. The motor 203 is fixedly installed on the top surface of one end of the top plate 201 by screws. The output end of the motor 203 is transmitted to one end of the bidirectional screw rod 202 through a gear set. Both ends of the bidirectional screw rod 202 are threadedly sleeved with mounting plates 204. The top surface of the mounting plate 204 is limitedly slidable with the top surface of the top plate 201. The opposite sides of the bottoms of the two mounting plates 204 are fixedly connected with shovel plates 205. A T-shaped slider 2041 is provided at the top of the mounting plate 204, and a T-shaped groove 2011 is provided at the bottom of the top plate 201. The side of the T-shaped slider 2041 slides with the inner wall of the T-shaped groove 2011 in a limited manner. The motor 203 is driven by an external control mechanism, and the motor 203 drives the bidirectional screw rod 202 to rotate through a gear set, thereby driving the two mounting plates 204 to move. During this process, the T-shaped slider 2041 on the top of the mounting plate 204 slides in a limited manner in the T-shaped groove 2011, driving the two shovel plates 205 to move in opposite directions, and shoveling up the two ends of the special glass. The utility model adopts the method of shoveling glass instead of the traditional method of sucking glass with a suction cup.

[0025] Further, such as Figure 1 、 Figure 2 、 Figure 4 As shown, the tops of the two shovel plates 205 at one end thereof are both in the shape of a downwardly inclined slope, so that the shovel plates 205 can easily scoop up the glass, and a pressing assembly 206 is provided on the tops of the two shovel plates 205 .

[0026] In further, as Figure 1 、 Figure 2 As shown, the clamping assembly 206 includes a pressing plate 2061 and a support plate 2062. The pressing plate 2061 is arranged on the top of the shovel plate 205, and the support plate 2062 is arranged on the top of the pressing plate 2061. One end of the support plate 2062 is fixedly connected to the surface of one side of the mounting plate 204. The two end surfaces of the top of the pressing plate 2061 are fixedly connected with a guide rod 2063. One end of the guide rod 2063 is passed through the plate body of the support plate 2062, and a spring 2064 is sleeved on the surface of the guide rod 2063. The two ends of the spring 2064 are respectively fixedly connected to the opposite surfaces of the support plate 2062 and the pressing plate 2061. The pressing plate 2061 and the opposite surface of the shovel plate 205 press the glass end to prevent the conveying mechanism 101 from slipping during the glass conveying process.

[0027] Furthermore, if Figure 4 As shown, a plurality of hemispherical particle protrusions 2065 are provided on the bottom surface of the pressing plate 2061 to increase the friction between the pressing plate 2061 and the glass, thereby improving the stability of the glass during transportation.

[0028] It is worth noting that if Figure 4 As shown, the two pressure plates 2061 have an upward curved surface at one end relative to each other, and the two shovel plates 205 move towards each other to shovel up the two ends of the special glass until the two ends of the glass contact the curved ends of the pressure plates 2061. The two pressure plates 2061 have an upward curved surface at one end relative to each other, which makes it easier for the two ends of the glass to enter the clamping space formed by the opposite side of the pressure plate 2061 and the shovel plate 205, thereby driving the pressure plate 2061 and the guide rod 2063 to move upward along the support plate 2062 to compress the spring 2064. At the same time, the reaction force of the spring 2064 drives the pressure plate 2061 and the particle protrusion 2065 to press the glass.

[0029] Working principle: This embodiment provides a loading rack for special glass processing. When in use, the motor 203 is driven by an external control mechanism. The motor 203 drives the bidirectional screw 202 to rotate through the gear set, and then drives the two mounting plates 204 to move. During this process, the T-shaped slider 2041 on the top of the mounting plate 204 slides within the T-shaped slide groove 2011, driving the two shovel plates 205 to move in opposite directions, shoveling up the two ends of the special glass until the two ends of the glass contact the arc surface end of the pressure plate 2061. The opposite ends of the two pressure plates 2061 are both in an upward curved shape. It is easier for both ends of the glass to enter the clamping space formed by the opposite side of the pressure plate 2061 and the shovel plate 205, thereby driving the pressure plate 2061 and the guide rod 2063 to move upward along the support plate 2062 to compress the spring 2064. At the same time, the reaction force of the spring 2064 drives the pressure plate 2061 and the particle protrusion 2065 to press the glass. The lifting mechanism 102 and the conveying mechanism 101 are driven by the external control mechanism to convey the glass to the processing equipment. The motor 203 is driven by the external control mechanism to flip and drive the two shovel plates 205 to move in the opposite direction, thereby removing the glass for processing.

[0030] The embodiments disclosed in the present invention are preferred embodiments, but are not limited to them. Ordinary technicians in this field can easily understand the spirit of the present invention based on the above embodiments and make different extensions and changes. As long as they do not deviate from the spirit of the present invention, they are all within the scope of protection of the present invention.

Claims

1. A loading rack for special glass processing, comprising a loading rack body (1), wherein the loading rack body (1) comprises a conveying mechanism (101), and a lifting mechanism (102) is provided at the end of the conveying mechanism (101); characterized in that: It also includes a material taking mechanism (2), which is arranged at the output end of the lifting mechanism (102); The material taking mechanism (2) comprises a top plate (201), a bidirectional screw rod (202) and a motor (203); the top of the top plate (201) is fixedly connected to the output end of the lifting mechanism (102); the middle of the bidirectional screw rod (202) is rotatably connected to the center of the bottom surface of the top plate (201) through a mounting seat; the motor (203) is fixedly mounted on the top surface of one end of the top plate (201) by screws; the output end of the motor (203) is transmitted to one end of the bidirectional screw rod (202) through a gear set; both ends of the bidirectional screw rod (202) are threadedly sleeved with mounting plates (204); the top surface of the mounting plate (204) and the top surface of the top plate (201) are limitedly slidable; and the bottom opposite sides of the two mounting plates (204) are fixedly connected with shovel plates (205).

2. A loading rack for special glass processing according to claim 1, characterized in that: The tops of the two shovel plates (205) at one relative end are both in the shape of a downwardly inclined slope, and the tops of the two shovel plates (205) are both provided with a pressing assembly (206).

3. A loading rack for special glass processing according to claim 2, characterized in that: The clamping assembly (206) includes a pressure plate (2061) and a support plate (2062), wherein the pressure plate (2061) is arranged on the top of the shovel plate (205), and the support plate (2062) is arranged on the top of the pressure plate (2061), and one end of the support plate (2062) is fixedly connected to the surface of one side of the mounting plate (204), and the two end surfaces of the top of the pressure plate (2061) are fixedly connected with a guide rod (2063), one end of the guide rod (2063) is passed through the plate body of the support plate (2062), and a spring (2064) is sleeved on the surface of the guide rod (2063), and the two ends of the spring (2064) are fixedly connected to the opposite surfaces of the support plate (2062) and the pressure plate (2061), respectively.

4. A loading rack for special glass processing according to claim 3, characterized in that: The bottom surface of the pressing plate (2061) is provided with a plurality of hemispherical particle protrusions (2065).

5. A loading rack for special glass processing according to claim 3, characterized in that: The opposite ends of the two pressing plates (2061) are both in the shape of an upwardly tilted arc surface.

6. A loading rack for special glass processing according to claim 3, characterized in that: A T-shaped slider (2041) is provided at the top of the mounting plate (204), a T-shaped slot (2011) is provided at the bottom of the top plate (201), and the side surface of the T-shaped slider (2041) slides with the inner wall of the T-shaped slot (2011) in a limited manner.