Multifunctional efficient glass edging production line

By separating the edging and polishing functions into two units and utilizing the width-adjusting power mechanism to achieve rapid adjustment of the movable unit, the problems of downtime and low efficiency of existing equipment when processing glass of different widths are solved, realizing efficient, continuous processing and flexible adaptability of the glass edging production line.

CN223670861UActive Publication Date: 2025-12-16GUANGDONG LIFENG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202423068845.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-12-16
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing integrated edge grinding and polishing equipment suffers from problems such as complex equipment adjustment, discontinuous processing, and low production efficiency when processing glass of different widths, especially in small-batch, multi-specification glass processing.

Method used

The edging and polishing functions are separated into two units. The movable edging and polishing units are driven to slide along the guide rail by the width adjustment power mechanism. This allows the edging module to adjust the width after the glass processing is completed, while the polishing module continues processing, ensuring the continuity and efficiency of the equipment.

Benefits of technology

It significantly reduces equipment downtime, improves production line efficiency and adaptability, enables rapid response to the processing needs of multi-specification, small-batch glass, and reduces manual intervention and equipment maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

A multifunctional efficient glass edge grinding production line comprises a first double-edge coarse grinding unit A and a first polishing unit B. A first conveying transition table C is installed between the first double-edge coarse grinding unit A and the first polishing unit B. One end of the first conveying transition table C is suspended, and the opposite end of the first conveying transition table C is connected with the first double-edge coarse grinding unit A or the first polishing unit B. Glass enters the first conveying transition table C after being subjected to edge grinding of the first double-edge coarse grinding unit A, and finally enters the first polishing unit B to be polished. The glass edging and polishing integrated machine has the advantages that the glass edging function and the glass polishing function are separated into two units, after glass edging is completed, when glass enters the polishing module to be machined, the movable mechanism of the edging module can achieve opening and closing adjustment through the width adjusting power mechanism, and it is not needed to wait for machining of the polishing module to be completed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a glass processing machinery, concretely is a kind of multifunctional efficient glass edge grinding production line. BACKGROUND

[0002] In the existing edge grinding and polishing function integrated equipment, edge grinding module and polishing module are arranged in the same processing path through integrated design, and glass can pass through edge grinding processing and polishing processing in turn.However, this design, although reducing the transfer and docking operation between different devices to a certain extent, still has obvious deficiencies in actual use, especially when different width glasses need to be processed.

[0003] The integrated equipment usually contains fixed edge grinding group and movable edge grinding group, for clamping glass and completing edge grinding processing.The position of fixed group is not adjustable, and the movable group slides along guide rail by mechanical driving to adapt to different width glasses.

[0004] Glass after edge grinding is transmitted to polishing module for further processing.Similar to edge grinding module, polishing module also contains two groups of devices, fixed and movable, to adapt to the width of glass by adjusting the position of movable group.

[0005] The width adjusting mechanism in integrated equipment is used to adjust the width position of movable edge grinding group and movable polishing group at the same time to ensure the processing accuracy and clamping stability of glass by two parts.

[0006] Although the edge grinding and polishing function integrated equipment reduces the number of devices in structure and improves space utilization, its design defects seriously affect production efficiency in actual processing.Especially when processing different width glasses, the complexity of device adjustment and non-continuous processing mode exposes the following significant shortcomings:

[0007] 1、In the existing equipment, glass processing needs to pass through edge grinding and polishing two modules in turn.Due to the fact that the working area of edge grinding and polishing shares the same width adjusting power mechanism, when the width needs to be adjusted to adapt to the next glass, the equipment can only stop running and adjust the width after the current glass completely finishes polishing processing and leaves the equipment.This adjustment mode depending on processing cycle causes the equipment to stop running during each width adjustment process, and continuous processing cannot be realized.

[0008] 2、The equipment cannot continue to process new glass during width adjustment process, and this design of stop adjustment greatly reduces the overall production efficiency of the equipment.For the production environment of frequently processing different specifications of glass, the time wasted by stop adjustment occupies a significant proportion of the entire production cycle.

[0009] 3、width adjustment depends on the drive of the width adjustment mechanism and manual operation. Since the edge grinding and polishing modules need to be adjusted synchronously, the accuracy and speed of adjustment are limited by the performance of the width adjustment mechanism, and manual intervention may further prolong the adjustment time.

[0010] 4、In actual production, the demand for small-batch multi-specification glass is increasing, and the existing equipment has poor adaptability to the switching of processing specifications.

[0011] For example, when processing the first glass with a width of 500mm, the equipment is set to the initial width, and the glass successfully completes the edge grinding and polishing process.

[0012] The second glass width needs to be adjusted to 600mm, and the equipment must wait for the first glass to complete the polishing process and exit the equipment before stopping running to adjust the width.

[0013] After the width adjustment is completed, the equipment can be restarted to continue processing the next glass. During this process, the equipment has a long downtime, the operation is cumbersome, and the overall production efficiency is low, so it is necessary to further improve it. Invention content

[0014] The purpose of the present application is to overcome the shortcomings of the prior art, provide a simple structure, convenient to use, can quickly adjust the width in the glass processing process, without waiting for the current glass processing to be completed.

[0015] Improve the continuity of processing, significantly improve the production efficiency of the equipment, and be able to flexibly meet the demand of multi-specification and small-batch glass processing. A multifunctional and efficient glass edge grinding production line.

[0016] The purpose of the present application is achieved by the following way: a multifunctional and efficient glass edge grinding production line, comprising a first double-sided rough grinding machine group A and a first polishing machine group B, a first conveying transition table C is installed between the first double-sided rough grinding machine group A and the first polishing machine group B, one end of the first conveying transition table C is suspended, and the opposite end is connected with the first double-sided rough grinding machine group A or the first polishing machine group B, after the glass is ground by the first double-sided rough grinding machine group A, it enters the first conveying transition table C, and finally enters the first polishing machine group B for polishing.

[0017] Further: the tail of the first polishing machine group B is further connected with a second double-sided rough grinding machine group D and a second polishing machine group E through a turning table, a second conveying transition table F is installed between the second double-sided rough grinding machine group D and the second polishing machine group E, one end of the second conveying transition table F is suspended, and the opposite end is connected with the second double-sided rough grinding machine group D or the second polishing machine group E;

[0018] After the glass is turned, it is sequentially ground by the second double-side rough grinding machine group D, enters the second conveying transition table F, and finally enters the second polishing machine group E to be polished, thereby completing the four-side edge grinding and polishing of the glass.

[0019] Further, the first double-side rough grinding machine group A is connected with a detection table G at the feeding end.

[0020] Further, the turning table is a straight-line turning table H, the feeding end of the straight-line turning table H is connected with the first polishing machine group B through a first turning conveying transition table H, and the discharging end of the straight-line turning table H is connected with the second double-side rough grinding machine group D through a second turning conveying transition table H.

[0021] Further, the turning table is a right-angle turning table J, the feeding end of the right-angle turning table J is connected with the first polishing machine group B, and the discharging end of the right-angle turning table J is connected with the second double-side rough grinding machine group D.

[0022] Further, the first double-side rough grinding machine group A or the second double-side rough grinding machine group D comprises a base, the base is provided with a grinding guide rail group, one side of the grinding guide rail group is fixedly installed with a fixed grinding group, and the other end of the grinding guide rail group is slidably installed with a movable grinding group; the movable grinding group is driven by a width-adjusting power mechanism to slide along the grinding guide rail group, so as to adjust the relative distance between the movable grinding group and the fixed grinding group.

[0023] Further, the fixed grinding group and the movable grinding group are oppositely installed and each comprises a grinding base and a grinding fixed belt conveying line arranged on the grinding base; the top of the grinding base is further installed with a grinding movable belt conveying line through a grinding lifting mechanism, the grinding lifting mechanism drives the grinding movable belt conveying line to move up and down, and the glass is clamped between the grinding fixed belt conveying line and the grinding movable belt conveying line.

[0024] Further, a plurality of grinding motors are installed on the grinding base, a grinding grinding wheel is installed on the main shaft of the grinding motor, and the grinding grinding wheel is sequentially arranged with an upper chamfering rough grinding wheel, a lower chamfering rough grinding wheel, a bottom edge rough grinding wheel and a film removing wheel from the feeding end to the discharging end.

[0025] Further, the first double-side polishing machine group or the second double-side polishing machine group comprises a base, the base is provided with a polishing guide rail group, one side of the polishing guide rail group is fixedly installed with a fixed polishing group, and the other end of the polishing guide rail group is slidably installed with a movable polishing group; the movable polishing group is driven by a width-adjusting power mechanism to slide along the polishing guide rail group, so as to adjust the relative distance between the movable polishing group and the fixed polishing group.

[0026] Further, the fixed polishing group and the movable polishing group are oppositely arranged, and each comprises a polishing base and a polishing fixed belt conveying line arranged on the polishing base; the top of the polishing base is further provided with a polishing movable belt conveying line through a polishing lifting mechanism, the polishing lifting mechanism drives the polishing movable belt conveying line to move up and down, and the glass is clamped between the polishing fixed belt conveying line and the polishing movable belt conveying line.

[0027] Further, a plurality of polishing motors are further arranged on the polishing base, a polishing grinding wheel is arranged on the main shaft of the polishing motor, and the polishing grinding wheel is sequentially arranged with a bottom edge fine grinding wheel, a lower chamfer fine grinding wheel, a lower chamfer fine polishing grinding wheel, an upper chamfer fine grinding wheel, an upper chamfer fine polishing grinding wheel, a bottom edge fine grinding wheel and a bottom edge fine polishing grinding wheel from the feeding end to the discharging end.

[0028] Further, the width adjusting power mechanism comprises a width adjusting base, a speed reducer is arranged on the width adjusting base, the speed reducer is driven to rotate by a servo motor, the speed reducer extends gear shafts to both sides, driving gears are arranged on the gear shafts, the driving gears are meshed with the racks on the edge grinding guide rail group or the polishing guide rail group, and the driving gears drive the movable edge grinding group or the movable polishing group to move when the driving gears rotate.

[0029] The beneficial effects of the utility model are as follows: 1. simple structure, low production cost and improved market competitiveness.

[0030] 2. The utility model separates the glass edge grinding function and the polishing function into two sets of machines, when the glass enters the polishing module for processing after the glass edge grinding is completed, the movable mechanism of the edge grinding module can be adjusted by opening and closing through the width adjusting power mechanism, and there is no need to wait for the processing of the polishing module to be completed. This design enables the equipment to perform the following two operations at the same time:

[0031] A. polishing processing of the current glass.

[0032] B. adjustment of the width of the edge grinding module to adapt to the next glass.

[0033] This synchronous adjustment mechanism significantly shortens the downtime of the equipment and ensures the continuity and efficiency of the production.

[0034] The movable edge grinding group and the movable polishing group are driven to slide along the guide rail through the width adjusting power mechanism, the utility model can quickly adjust the width of the edge grinding module and the polishing module, and adapt to the processing requirements of different specifications of glass. It is especially suitable for scattered single users who need to frequently switch the width of the glass, such as small batch and multi-specification order production scenes. The width adjustment process is fast and accurate, which significantly improves the response speed of the equipment to order requirements.

[0035] The grinding wheels for edge grinding in the production line are scientifically arranged according to the processing technology requirements, the film removing wheel, the rough grinding wheel, the lower chamfer rough grinding wheel and the upper chamfer rough grinding wheel are arranged in the rough grinding group, and the bottom edge fine grinding wheel, the chamfer fine grinding wheel and the like are arranged in the fine grinding and polishing group, so that the rough grinding and the fine grinding are separated and processed. The design of separating the rough grinding and the fine grinding makes each group of grinding wheels focus on completing a specific processing task, avoids the efficiency loss caused by the alternation of the rough grinding and the fine grinding in the same equipment, effectively shortens the processing cycle, and improves the overall working efficiency of the production line.

[0036] Through reasonable arrangement, two devices can be used for double-side grinding in the application, or four double-side machine groups can be combined into a production line, so that the customer can quickly and efficiently realize four-side edge grinding according to the edge grinding requirements. BRIEF DESCRIPTION OF DRAWINGS

[0037] Figure 1 It is a structure schematic view of the first embodiment of the utility model.

[0038] Figure 2 It is a structure schematic view of the second embodiment of the utility model.

[0039] Figure 3 It is an assembly drawing of the first double-side rough grinding group and the first double-side polishing group in the utility model.

[0040] Figure 4 It is a grinding wheel distribution drawing of the rough grinding group in the utility model.

[0041] Figure 5 It is a grinding wheel distribution drawing of the polishing group in the utility model.

[0042] Figure 6 It is a structure schematic view of the fixed edge grinding group in the utility model.

[0043] Figure 7 It is a structure schematic view of the fixed polishing group in the utility model.

[0044] Figure 8 It is a structure schematic view of the width adjusting power mechanism in the utility model. DETAILED DESCRIPTION

[0045] The utility model will be further described in detail below in combination with the drawings. A multifunctional efficient glass edge grinding production line comprises a first double-side rough grinding group A and a first polishing group B, a first conveying transition table C is installed between the first double-side rough grinding group A and the first polishing group B, one end of the first conveying transition table C is suspended, and the opposite end is connected with the first double-side rough grinding group A or the first polishing group B, glass is ground by the first double-side rough grinding group A, then enters the first conveying transition table C, and finally enters the first polishing group B for polishing.

[0046] In one embodiment, the tail of the first polishing machine B is connected with a second double-side rough grinding machine D and a second polishing machine E through a turning table, and a second conveying transition table F is installed between the second double-side rough grinding machine D and the second polishing machine E, one end of the second conveying transition table F is suspended, and the opposite end is connected with the second double-side rough grinding machine D or the second polishing machine E.

[0047] After the glass is turned, it is ground by the second double-side rough grinding machine D, enters the second conveying transition table F, and finally enters the second polishing machine E to be polished, thereby completing the four-side edge grinding and polishing of the glass.

[0048] In one embodiment, the feeding end of the first double-side rough grinding machine A is connected with a detection table G.

[0049] In one embodiment, the turning table is a straight-line turning table H, the feeding end of the straight-line turning table H is connected with the first polishing machine B through a first turning conveying transition table H1, and the discharging end of the straight-line turning table H is connected with the second double-side rough grinding machine D through a second turning conveying transition table H2.

[0050] In one embodiment, the turning table is a right-angle turning table J, the feeding end of the right-angle turning table J is connected with the first polishing machine B, and the discharging end of the right-angle turning table J is connected with the second double-side rough grinding machine D.

[0051] In one embodiment, the first double-side rough grinding machine A or the second double-side rough grinding machine D comprises a base 1, the base is provided with an edge grinding guide rail set 2, one end of the edge grinding guide rail set 2 is fixedly installed with a fixed edge grinding set 4, and the other end of the edge grinding guide rail set 2 is slidably installed with a movable edge grinding set 5 through a sliding block 8, the movable edge grinding set 5 is driven by a width adjusting power mechanism 6 to slide along the edge grinding guide rail set 2, and the relative distance between the movable edge grinding set 5 and the fixed edge grinding set 4 is adjusted.

[0052] In one embodiment, the fixed edge grinding set 4 and the movable edge grinding set 5 are oppositely installed and each comprises an edge grinding base 41 and an edge grinding fixed belt conveying line 42 arranged on the edge grinding base 41, and the top of the edge grinding base 41 is further installed with an edge grinding movable belt conveying line 44 through an edge grinding lifting mechanism 43, the edge grinding lifting mechanism 43 drives the edge grinding movable belt conveying line 44 to move up and down to clamp the glass 10 between the edge grinding fixed belt conveying line 42 and the edge grinding movable belt conveying line 44.

[0053] In one embodiment, the edge grinding base 41 is further installed with a plurality of edge grinding motors 45, the main shaft of the edge grinding motor 45 is installed with an edge grinding grinding wheel, and the edge grinding grinding wheel is sequentially arranged with an upper chamfering coarse grinding wheel 49, a lower chamfering coarse grinding wheel 48, a bottom edge coarse grinding wheel 47, and a film removing wheel 46 from the feeding end to the discharging end.

[0054] In one embodiment, the first or second double-sided polishing machine includes a base 1, and a polishing guide rail set 3 is arranged on the base. One end of the polishing guide rail set 3 is fixedly provided with a fixed polishing set 7, and the other end of the polishing guide rail set 3 is slidably provided with a movable polishing set 9. The movable polishing set 9 is driven by a width adjusting power mechanism 6 to slide along the polishing guide rail set 3, so as to adjust the relative distance between the movable polishing set 9 and the fixed polishing set 7.

[0055] In one embodiment, the fixed polishing set 7 and the movable polishing set 9 are oppositely arranged, and each includes a polishing base 71 and a polishing fixed belt conveying line 72 arranged on the polishing base 71. The top of the polishing base 71 is further provided with a polishing movable belt conveying line 73 driven by a polishing lifting mechanism to move up and down, so as to clamp a glass 10 between the polishing fixed belt conveying line 72 and the polishing movable belt conveying line 73.

[0056] In one embodiment, the polishing base 71 is further provided with a plurality of polishing motors 74. The main shaft of each polishing motor 74 is provided with a polishing grinding wheel. The polishing grinding wheel is sequentially provided with a bottom edge fine grinding wheel 711, a lower chamfer fine grinding wheel 710, a lower chamfer fine polishing grinding wheel 79, an upper chamfer fine grinding wheel 78, an upper chamfer fine polishing grinding wheel 77, the bottom edge fine grinding wheel 711, and a bottom edge fine polishing grinding wheel 75 from the feeding end to the discharging end.

[0057] In one embodiment, the width adjusting power mechanism 6 includes a width adjusting base 61, and a speed reducer 62 is arranged on the width adjusting base 61. The speed reducer 62 is driven to rotate by a servo motor 63. The speed reducer 62 extends gear shafts 64 to both sides. The gear shafts 64 are provided with drive gears 65. The drive gears 65 are engaged with the racks on the edge grinding guide rail set 2 or the polishing guide rail set 3. When the drive gears 65 rotate, the movable edge grinding set 5 or the movable polishing set 9 moves.

[0058] Working principle: The working process of the device can be divided into two main parts: edge grinding process and polishing process. As shown in FIG. 1, the glass enters the device and first enters a detection table G for detecting the width of the glass, so as to control the distance between the fixed edge and the movable edge in the rear device, so as to adapt to the processing of glasses of different widths. Figure 1 The glass after width detection is sent into the first double-sided coarse grinding machine set A to complete the deburring, chamfering and other edge grinding processes of the glass. Then, the glass enters the first polishing machine set B to complete the polishing processes such as smoothing and brightening. The whole processing process is continuous, and the device can automatically adjust the width during the processing to adapt to glasses of different specifications.

[0059]

[0060] ​The working principle of the coarse grinding unit is as follows:

[0061] In the present application, the coarse grinding unit is composed of a fixed grinding edge group and a movable grinding edge group. The fixed grinding edge group is fixed on one side of the device and is usually used to position the reference edge of the glass; the movable grinding edge group is connected with the grinding edge guide rail group through a sliding block device and can slide along the guide rail to adjust its position to adapt to glass of different widths. The width adjustment power mechanism includes a servo motor, a speed reducer and a gear drive system to drive the sliding of the movable grinding edge group, so as to adjust the relative distance between the grinding edge groups and enable them to grind glass of different widths.

[0062] During the grinding process, the glass is between the fixed grinding edge group and the movable grinding edge group, and the glass is pushed backward by the grinding belt conveying line, so that the glass passes through multiple grinding wheels in turn to grind the edge of the glass and realize the grinding, chamfering and other processes of the glass.

[0063] As shown in Figure 5 The grinding wheels in the present application are arranged in order from the feed end to the discharge end as follows: an upper chamfering coarse grinding wheel 49, a lower chamfering coarse grinding wheel 48, a bottom edge coarse grinding wheel 47 and a film removing wheel 46. Compared with the conventional technology, the glass in the present application is first chamfered and then bottom edge ground. During chamfering, the height of the bottom edge is first reduced, and during bottom edge grinding, the processing amount of the bottom edge coarse grinding wheel can be effectively reduced, thereby reducing the wear of the bottom edge coarse grinding wheel and improving the production efficiency.

[0064] 2. Working principle of the polishing module

[0065] The working principle of the polishing module is similar to that of the grinding module. The polishing module is composed of a fixed polishing group and a movable polishing group. The fixed polishing group is fixed in position and is used to determine the reference of the glass; the movable polishing group is connected with the polishing guide rail group through a sliding block and can slide along the guide rail to adjust its position to adapt to glass of different widths.

[0066] During the polishing process, the glass enters the polishing group after completing the grinding to be polished. The polishing process is similar to the grinding process. The glass moves backward under the action of the polishing belt conveying line, so that the glass passes through multiple polishing wheels in turn to ensure uniform polishing.

[0067] As shown in Figure 5As shown, the polishing grinding wheel in this case is arranged from the feed end to the discharge end in sequence with the bottom edge fine grinding wheel 711, the lower chamfer fine grinding wheel 710, the lower chamfer fine polishing grinding wheel 79, the upper chamfer fine grinding wheel 78, the upper chamfer fine polishing grinding wheel 77, the bottom edge fine grinding wheel 711, and the bottom edge fine polishing grinding wheel 75. Compared with the traditional technology, in the polishing unit in this case, a fine grinding wheel is added, and the bottom edge fine grinding wheel 711, the lower chamfer fine grinding wheel 710, and the lower chamfer fine polishing grinding wheel 79, and the upper chamfer fine grinding wheel 78 are used to finely grind the glass entering the polishing unit before polishing processing. Thus, abnormal wear of the polishing wheel caused by inaccurate positioning or other errors when the glass enters the polishing unit is avoided, thereby ensuring the processing accuracy of the glass and prolonging the service life of the grinding wheel.

[0068] 3. Working principle of the width adjustment power mechanism

[0069] The width adjustment power mechanism is the core part of the entire device, and its main function is to quickly adjust the width of the edging group and the polishing group to adapt to the processing of different specifications of glass.

[0070] Drive system: The width adjustment power mechanism includes a servo motor, a speed reducer, a gear shaft, and a drive gear. The servo motor drives the gear shaft to rotate through the speed reducer, and the drive gear on the gear shaft engages with the rack on the edging guide rail group and the polishing guide rail group. When the drive gear rotates, it drives the movable edging group and the movable polishing group to slide along the guide rail through the engagement of the rack, achieving the width adjustment of the edging and polishing modules.

[0071] Synchronous adjustment: The width adjustment power mechanism not only accurately adjusts the position of the movable edging group and the movable polishing group, but also ensures the synchronous adjustment of the two modules, so that the glass always maintains a stable position during the edging and polishing process. This synchronous adjustment mechanism greatly improves the processing accuracy of the device and reduces the processing errors caused by inconsistent width adjustment.

[0072] 4. Coordination of edging and polishing modules

[0073] After the glass is edged, it can enter the first conveying transition table C, allowing the glass to quickly separate from the edging mechanism. Under the conveying of the first conveying transition table C, the glass enters the polishing module to start the smoothing process. In this process, the movable part of the edging module can immediately adjust the width to prepare for the processing of the next piece of glass. This design makes the glass processing process highly continuous.

[0074] For example, when a new piece of glass is polished, the edging module can quickly open and close to adjust to the appropriate position for the width of the new glass, ensuring that the next piece of glass can immediately enter the edging group for processing.

[0075] At this time, the polishing module continues to polish the current glass until the processing of the current glass is completed.

[0076] This design avoids downtime and delays caused by width adjustment in the prior art, achieving seamless connection of edging and polishing, and keeping the equipment running efficiently at all times.

[0077] 5. Continuous processing and efficient switching of glass

[0078] Due to the independent adjustability and synchronous control of the edging and polishing modules, the equipment can automatically complete the adjustment of the glass width within one processing cycle without waiting for the current glass to be completely processed. This efficient processing mode greatly improves the efficiency of the production line, especially in the production environment of multiple specifications and small batch orders, which can quickly respond to the processing needs of different size glasses.

[0079] During the width adjustment process, the edging mechanism can be opened and closed before polishing is completed, adjusting to the width suitable for the new glass, reducing the equipment downtime and improving the production continuity.

[0080] Whether it is mass production or small batch order demand, the equipment can quickly switch processing specifications to meet the needs of different users.

[0081] In addition, since the belt conveying lines in the edging unit and the polishing unit are driven by independent power devices, the speed of the belt conveying line during the edging and polishing process is relatively independent. During the edging process, the feeding speed can be slower due to the large amount of cutting. During the polishing process, the feeding speed can be faster due to the smaller amount of cutting, thereby improving the work efficiency.

[0082] It should be noted that the production line in this case can be customized according to user needs. For example, a user can use a first double-sided rough edging unit A and a first polishing unit B to achieve double-sided processing of the glass. On this basis, a second double-sided rough edging unit D and a second polishing unit E can be added, and the second double-sided rough edging unit D is connected to the first polishing unit B through a turning table. After the two sides of the glass are processed, the glass is turned 90° by the turning table, so that the other two sides enter the second double-sided rough edging unit D and the second polishing unit E for processing, thereby realizing one-time feeding and processing of the four sides of the glass.

[0083] As shown in Figure 1 The turning table is a straight turning table H. After the glass enters the turning table, the lifting mechanism below it lifts the glass to a certain height, then the lifting mechanism rotates 90°, and the glass descends and is pushed into the second double-sided rough edging unit D again.

[0084] As shown in Figure 2As shown, the turning table is a right-angle turning table J, after the glass enters the turning table, the glass is lifted to a certain height for horizontal transmission by the lifting mechanism below, then the lifting mechanism is lowered and returns to the turning table to be pushed into the second double-sided rough grinding machine group D by vertical transmission.

[0085] 6. Technical advantages

[0086] High efficiency: The edge grinding module and polishing module of the equipment can be adjusted independently and work synchronously during glass processing, without waiting for the glass to be processed before adjusting the width. This design significantly reduces downtime and improves production efficiency.

[0087] Flexibility and adaptability: The equipment is suitable for multi-specification and small-batch production requirements, especially for scattered single users. The quick and accurate adjustment capability of the width adjustment power mechanism enables the equipment to flexibly respond to different size glass processing requirements, greatly improving the adaptability of the production line.

[0088] Automation and simplified operation: Width adjustment automation reduces manual intervention, making operation more convenient, reducing human error, and reducing the work intensity of workers. At the same time, the equipment has low maintenance requirements, reducing overall operating costs.

[0089] Stability and precision: The precise control of the width adjustment power mechanism and the synchronous work of the edge grinding and polishing modules ensure the stability of the glass position during processing, reduce processing errors, and ensure high-quality glass processing results.

[0090] In summary, the multifunctional high-efficiency glass edge grinding production line successfully realizes efficient and precise glass edge grinding and polishing processing through scientific and reasonable structural design, combined with the division and arrangement of grinding wheels and high automation degree. Not only improves the processing efficiency and quality, but also reduces the equipment maintenance cost, provides a highly competitive technical solution for the glass processing industry.

[0091] The above shows and describes the basic principles and main features of the present utility model and the advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited to the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present utility model. Without departing from the spirit and scope of the present utility model, various changes and improvements can be made to the present utility model, and these changes and improvements all fall within the scope of the claimed present utility model.

Claims

1. A multifunctional high-efficiency glass edging production line, characterized in that: It includes first double side rough grinding machine group (A) and first polishing machine group (B), first conveying transition table (C) is installed between first double side rough grinding machine group (A) and first polishing machine group (B), one end of first conveying transition table (C) is suspended, and the opposite end is connected with first double side rough grinding machine group (A) or first polishing machine group (B), glass enters first conveying transition table (C) after being ground by first double side rough grinding machine group (A), and finally enters first polishing machine group (B) to polish.

2. The multifunctional and high-efficient glass edging production line according to claim 1, characterized in that: The tail of the first polishing machine group (B) is further connected with the second double side rough grinding machine group (D) and the second polishing machine group (E) through the turning table, and the second conveying transition table (F) is installed between the second double side rough grinding machine group (D) and the second polishing machine group (E), one end of the second conveying transition table (F) is suspended, and the opposite end is connected with the second double side rough grinding machine group (D) or the second polishing machine group (E); After turning, the glass successively enters the second conveying transition table (F) after being ground by the second double side rough grinding machine group (D), and finally enters the second polishing machine group (E) to polish, thereby completing four edge grinding and polishing of the glass.

3. The multifunctional and high-efficient glass edging production line according to claim 1, characterized in that: The feeding end of the first double side rough grinding machine group (A) is connected with the detection table (G).

4. The multi-functional and high-efficient glass edging production line according to claim 2, characterized in that: The turning table is a straight line turning table (H), the feeding end of the straight line turning table (H) is connected with the first polishing machine group (B) through the first turning conveying transition table (H1); and the discharging end of the straight line turning table (H) is connected with the second double side rough grinding machine group (D) through the second turning conveying transition table (H2).

5. The multi-functional and high-efficient glass edging production line according to claim 2, characterized in that: The turning table is a right angle turning table (J), the feeding end of the right angle turning table (J) is connected with the first polishing machine group (B); and the discharging end of the right angle turning table (J) is connected with the second double side rough grinding machine group (D).

6. The multi-functional and high-efficient glass edging production line according to claim 1 or 2, characterized in that: The first double side rough grinding machine group (A) or the second double side rough grinding machine group (D) both includes a base (1), the base is provided with an edge grinding guide rail group (2), one side of the edge grinding guide rail group (2) is fixedly provided with a fixed edge grinding group (4), the other end of the edge grinding guide rail group (2) is slidably provided with a movable edge grinding group (5) through a sliding block (8), the movable edge grinding group (5) is driven by a width adjusting power mechanism (6) to slide along the edge grinding guide rail group (2), and the relative distance between the movable edge grinding group (5) and the fixed edge grinding group (4) is adjusted.

7. The multi-functional and high-efficient glass edging production line according to claim 6, characterized in that: The fixed edge grinding group (4) and the movable edge grinding group (5) are oppositely arranged and both include an edge grinding base (41) and an edge grinding fixed belt conveying line (42) arranged on the edge grinding base (41); the top of the edge grinding base (41) is further provided with an edge grinding movable belt conveying line (44) through an edge grinding lifting mechanism (43), the edge grinding lifting mechanism (43) drives the edge grinding movable belt conveying line (44) to move up and down, and the glass (10) is clamped between the edge grinding fixed belt conveying line (42) and the edge grinding movable belt conveying line (44).

8. The multi-functional and high-efficient glass edging production line according to claim 7, characterized in that: The edge grinding base (41) is further provided with a plurality of edge grinding motors (45), and an edge grinding wheel is arranged on the main shaft of the edge grinding motor (45), and the edge grinding wheel is sequentially provided with an upper chamfer coarse grinding wheel (49), a lower chamfer coarse grinding wheel (48), a bottom edge coarse grinding wheel (47) and a film removing wheel (46) from the feeding end to the discharging end.

9. The multi-functional and high-efficient glass edging production line according to claim 1 or 2, characterized in that: The first double-side polishing machine group or the second double-side polishing machine group comprises a base (1), and a polishing guide rail group (3) is arranged on the base, wherein one end of the polishing guide rail group (3) is fixedly provided with a fixed polishing group (7), and the other end of the polishing guide rail group (3) is slidably provided with a movable polishing group (9) through a sliding block (8), and the movable polishing group (9) is driven by a width adjusting power mechanism (6) to slide along the polishing guide rail group (3), so that the relative distance between the movable polishing group (9) and the fixed polishing group (7) is adjusted.

10. The multi-functional and high-efficient glass edging production line according to claim 9, characterized in that: The fixed polishing group (7) and the movable polishing group (9) are oppositely arranged and each comprises a polishing base (71) and a polishing fixed belt conveying line (72) arranged on the polishing base (71); the top of the polishing base (71) is further provided with a polishing movable belt conveying line (73) through a polishing lifting mechanism, and the polishing lifting mechanism drives the polishing movable belt conveying line (73) to move up and down, so that the glass (10) is clamped between the polishing fixed belt conveying line (72) and the polishing movable belt conveying line (73).

11. The multi-functional and high-efficient glass edging production line according to claim 10, characterized in that: The polishing base (71) is further provided with a plurality of polishing motors (74), and a polishing grinding wheel is arranged on the main shaft of the polishing motor (74), and the polishing grinding wheel is sequentially provided with a bottom edge fine grinding wheel (711), a lower chamfer fine grinding wheel (710), a lower chamfer fine polishing wheel (79), an upper chamfer fine grinding wheel (78), an upper chamfer fine polishing wheel (77), the bottom edge fine grinding wheel (711) and a bottom edge fine polishing wheel (75) from the feeding end to the discharging end.

12. The multi-functional and high-efficient glass edging production line according to claim 6, characterized in that: The width adjusting power mechanism (6) comprises a width adjusting base (61), and a speed reducer (62) is arranged on the width adjusting base (61), the speed reducer (62) is driven to rotate by a servo motor (63), the speed reducer (62) extends to both sides to form gear shafts (64), the gear shafts (64) are provided with driving gears (65), the driving gears (65) are engaged with racks on the edge grinding guide rail group (2) or the polishing guide rail group (3), and when the driving gears (65) rotate, the movable edge grinding group (5) or the movable polishing group (9) is driven to move.