Glass edge grinding device
By designing a movable grinding machine and a material transfer mechanism, the problem of uneven grinding in glass edge processing of existing equipment has been solved, achieving efficient and safe glass edge processing, and improving product quality and equipment lifespan.
Patent Information
- Application Number
- CN202520538647.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-26
AI Technical Summary
Existing grinding equipment is difficult to adjust flexibly according to the specific shape and size of the glass during edge processing, resulting in uneven grinding, missed grinding, and affecting product quality and equipment lifespan.
A movable grinding machine and material transfer mechanism were designed, combined with components such as a protective cover, cooling components, and dust removal components, to achieve precise grinding of glass edges and environmental protection.
This ensures uniform grinding of the glass edges, improves product qualification rate and production efficiency, extends equipment life, reduces maintenance costs, and maintains a clean and safe processing environment.
Smart Images

Figure CN223876704U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of grinding devices, in particular to a kind of glass edge grinding device. BACKGROUND
[0002] In the edge processing of different types of glass such as optical glass, glass cup, flat glass and tempered glass, edge grinding is a crucial link, which directly affects the appearance quality, use safety and subsequent assembly convenience of glass products.
[0003] With the continuous improvement of industrial level, the existing grinding equipment has realized automation, and its efficiency is greatly improved during processing. To realize the continuity of processing, the existing grinding processing mostly uses horizontal grinding line. The process of equipment processing is to place the glass on the conveying equipment, and the conveying equipment transmits the glass into the horizontal processing line. In the line body, corresponding grinding components are arranged on the path of the conveying equipment. During transmission, the edge grinding of the glass is completed. In the horizontal grinding line, although the conveying equipment can realize the continuous transmission and edge grinding of the glass, considering the continuity and stability of glass processing, the position of the grinding component is fixed or can only move within a limited range, which is difficult to adjust flexibly according to the specific shape and size of the glass, resulting in uneven grinding in some areas, and even grinding failure, which affects the overall quality and consistency of the product. In addition, the grinding component at fixed position is easy to wear out due to long-term repeated action on the same part, which not only reduces the service life of the equipment, but also may introduce more processing errors. SUMMARY
[0004] In order to overcome the shortcomings in the prior art, the purpose of the utility model is to provide a glass edge grinding device capable of automatically adjusting the position of grinding component and ensuring the consistency of grinding.
[0005] A glass edge grinding device includes a base plate, columns, guide seat 2, slide 1, guide seat 3, slide 2, transmission component 2, lifting plate, motor 1, mounting base, grinding machine, and motor 2. Columns are located on both the front and rear sides of the right side of the base plate. Guide seat 2 is located between the upper parts of the columns. Two slide 1s are slidably mounted on guide seat 2, and guide seat 3s are slidably mounted on each slide 1. Guide seat 2 and guide seat 3 have identical structures, each consisting of a mounting column and a guide rail and rack mounted on the mounting column. Both slide 1 and slide 2 contain a power component and gears. The power component connects to the gears to drive their rotation. The gears in slide 1 mesh with the racks on guide seat 2, causing slide 1 to move back and forth on guide seat 2. The slide block 2 is moved by a gear meshing with the rack of the guide seat 3. The slide block 2 moves back and forth on the guide seat 3. Each slide block 2 has a sliding lifting plate. A transmission component 2 is provided on one side of the slide block 2. The transmission component 2 drives the lifting plate to move up and down within the slide block 2. Each lifting plate has a rotatable mounting seat at its lower part. Each lifting plate has a motor 1 at its lower part. The output shaft of motor 1 is connected to the mounting seat on the same lifting plate. Each mounting seat has a rotatable grinding machine. Each mounting seat has a motor 2. The output shaft of motor 2 is connected to the grinding machine on the same mounting seat. Motor 2 drives the grinding machine to swing up and down. The top of the base plate has a material transfer mechanism. The material transfer mechanism transports the glass between the two grinding machines for grinding.
[0006] To further explain, the material transfer mechanism includes a guide seat, a transmission component, a slide, a rotary seat, a hydraulic cylinder, and a suction cup frame. The guide seat is horizontally positioned on the top of the base plate, and a slide is slidably mounted on the guide seat. The transmission component is mounted on the guide seat and consists of a drive motor and a lead screw. The lead screw of the transmission component is screwed to the slide, and the slide moves horizontally left and right on the guide seat through the transmission component. A rotary seat is located on the upper part of the slide, and a hydraulic cylinder is mounted on the rotary seat. The rotary seat drives the hydraulic cylinder to rotate, and a suction cup frame is located on the top of the hydraulic cylinder.
[0007] To further explain, it also includes a protective cover and a cooling component. The top of the base plate is provided with a protective cover, which surrounds the components mounted on the base plate. The left side of the protective cover is provided with a material transfer opening, and the upper right side of the protective cover is provided with a cooling component. The lower part of the cooling component extends into the interior of the protective cover, and the lower part of the cooling component is provided with several airflow outlets.
[0008] To further explain, it also includes dust removal components and conduits. Each slide is equipped with a dust removal component, and each dust removal component is equipped with a conduit. When the dust removal component is working, a suction negative pressure will be generated at the opening of the conduit, and the openings of the conduits all face the same side of the grinding machine.
[0009] To further explain, it also includes a flow guide and a filter plate. There is a notch on the lower right side of the cover. A flow guide is provided outside the notch, and a filter plate is provided inside the notch. When the flow guide is working, the gas inside the cover is discharged outward through the filter plate inside the notch.
[0010] Further, the window is arranged on the front and back of the shield, and a transparent plate is arranged in the window.
[0011] The utility model discloses the beneficial effect has: the utility model discloses two movable position's adjusting grinding angle's grinder is set up to carry out edge grinding to glass, not only allows the grinding part to carry out dynamic adjustment according to the specific shape and size of glass, ensures that every position can get uniform and high quality processing, can effectively avoid the uneven and the problem of grinding of fixed position to grind, in addition, the movable grinder can carry out accurate grinding on different angles and positions, adapts to a variety of complex edge processing demand, thereby the pass rate and production efficiency of product are improved greatly.
[0012] The utility model discloses the beneficial effect has: the utility model discloses two movable position's adjusting grinding angle's grinder is set up to carry out edge grinding to glass, not only allows the grinding part to carry out dynamic adjustment according to the specific shape and size of glass, ensures that every position can get uniform and high quality processing, can effectively avoid the uneven and the problem of grinding of fixed position to grind, in addition, the movable grinder can carry out accurate grinding on different angles and positions, adapts to a variety of complex edge processing demand, thereby the pass rate and production efficiency of product are improved greatly.
[0013] The utility model discloses the beneficial effect has: the utility model discloses two movable position's adjusting grinding angle's grinder is set up to carry out edge grinding to glass, not only allows the grinding part to carry out dynamic adjustment according to the specific shape and size of glass, ensures that every position can get uniform and high quality processing, can effectively avoid the uneven and the problem of grinding of fixed position to grind, in addition, the movable grinder can carry out accurate grinding on different angles and positions, adapts to a variety of complex edge processing demand, thereby the pass rate and production efficiency of product are improved greatly. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is the three-dimensional structure schematic diagram of the utility model.
[0015] Figure 2 It is the three-dimensional structure schematic diagram of the utility model hidden shield.
[0016] Figure 3 It is the three-dimensional structure schematic diagram of transmission mechanism and grinding mechanism of the utility model.
[0017] Figure 4 It is the three-dimensional structure schematic diagram of grinding mechanism of the utility model.
[0018] Figure 5 It is the three-dimensional structure schematic diagram of shield, cooling piece and flow guide piece of the utility model and other components.
[0019] Figure 6 It is the three-dimensional structure schematic diagram of cooling piece of the utility model.
[0020] Figure 7 It is the three-dimensional structure schematic diagram of shield, cooling piece and filter plate of the utility model and other components.
[0021] The components and their numbers in the diagram are as follows: 1. Base plate, 2. Guide seat one, 3. Transmission component one, 31. Slide table, 4. Rotary seat, 41. Hydraulic cylinder, 42. Suction cup frame, 5. Column, 51. Guide seat two, 6. Slide one, 61. Guide seat three, 62. Slide two, 621. Transmission component two, 63. Lifting plate, 64. Motor one, 641. Mounting seat, 65. Grinding machine, 651. Motor two, 7. Protective cover, 71. Viewing window, 72. Cooling component, 720. Airflow outlet, 73. Guide component, 74. Filter plate, 8. Dust removal component, 81. Conduit. Detailed Implementation
[0022] The embodiments of this utility model will be described below with reference to the accompanying drawings.
[0023] Example 1
[0024] A glass edge grinding device, such as Figures 1-4 As shown, it includes a base plate 1, a column 5, a second guide seat 51, a first slide 6, a third guide seat 61, a second slide 62, a second transmission component 621, a lifting plate 63, a first motor 64, a mounting base 641, a grinding machine 65, and a second motor 651.
[0025] The base plate 1 has fixed and vertically mounted columns 5 on both the front and rear sides of its right side. A guide seat 2 51 is securely mounted between the upper parts of the columns 5. Two slide seats 1 6 are slidably mounted on the guide seat 2 51, and each slide seat 1 6 is slidably mounted on a guide seat 3 61. The guide seat 2 51 and guide seat 3 61 have identical structures, both consisting of a mounting column and a guide rail and rack mounted on the mounting column. Both slide seats 1 6 and 2 62 contain a power component and gears. The power component in slide seats 1 6 and 2 62 is connected to and drives the gears to rotate. The gear in slide seat 1 6 meshes with the rack on guide seat 2 51, allowing slide seat 1 6 to move back and forth on guide seat 2 51. The gear in slide seat 2 62 meshes with the rack on guide seat 3 61, allowing slide seat 2 62 to move back and forth on guide seat 3 61. This design ensures flexible movement of the slides in multiple directions, improving the operational flexibility and precision of the equipment.
[0026] The lifting plate 63 is slidably arranged in the sliding seat two 62, and the transmission member two 621 is arranged on one side of the sliding seat two 62. The lifting plate 63 is driven to move up and down in the sliding seat two 62 through the transmission member two 621. The mounting seat 641 is rotatably arranged at the lower part of the lifting plate 63, and the motor one 64 is arranged at the lower part of the lifting plate 63. The output shaft of the motor one 64 is connected with the mounting seat 641 on the same lifting plate 63. The grinding machine 65 is rotatably arranged in the mounting seat 641. The motor two 651 is arranged on the mounting seat 641. The output shaft of the motor two 651 is connected with the grinding machine 65 on the same mounting seat 641. The grinding machine 65 is driven to swing up and down through the motor two 651. This design realizes accurate adjustment and swing movement of the grinding machine 65 in the vertical direction, can accurately grind according to different glass thickness and shape, and ensures consistency and efficiency of grinding effect. The purpose of arranging two grinding machines 65 is to grind two edges of the glass at one time.
[0027] The bottom plate 1 is provided with a material conveying mechanism. The material conveying mechanism conveys the glass to the grinding machines 65 for grinding. The material conveying mechanism comprises a guide seat one 2, a transmission member one 3, a sliding table 31, a rotating seat 4, a hydraulic cylinder 41 and a suction disc rack 42. Specifically, the guide seat one 2 is horizontally arranged on the top of the bottom plate 1, and the sliding table 31 is slidably arranged on the guide seat one 2. The transmission member one 3 is arranged on the guide seat one 2. The transmission member one 3 comprises a driving motor and a screw rod. The screw rod of the transmission member one 3 is screwed with the sliding table 31. When the driving motor works, the screw rod rotates to drive the sliding table 31 to move left and right on the guide seat one 2. This design ensures the stability and positioning accuracy of the sliding table 31 during conveying, can accurately move the glass from the material taking position to the grinding area, avoids deviation or falling of the glass during conveying, and improves the safety and efficiency of production.
[0028] The rotating seat 4 is arranged on the upper part of the sliding table 31. The hydraulic cylinder 41 is arranged on the rotating seat 4. The suction disc rack 42 is arranged on the top of the hydraulic cylinder 41. The rotating seat 4 can drive the hydraulic cylinder 41 and the suction disc rack 42 to rotate by a certain angle. Specifically, the rotating seat 4 is driven by a small servo motor, which can accurately adjust the angle of the suction disc rack 42 when needed. The hydraulic cylinder 41 is responsible for the lifting action of the suction disc rack 42. The suction disc rack 42 can be flexibly switched between different heights through the control of the air pressure or hydraulic system, so as to adapt to glass plates of different thicknesses.
[0029] The suction cup frame 42 can not only be lifted to a certain height in the vertical direction under the cooperation of the rotating seat 4 and the hydraulic cylinder 41, but also can be rotated to a certain angle. When the suction cup frame 42 completes the material taking, the sliding table 31 is driven by the transmission member one 3 to move to the area between the two grinding machines 65 for grinding. In this process, the suction cup frame 42 firmly adsorbs the glass to prevent displacement or falling of the glass in the conveying process, thereby ensuring the stability and positioning accuracy of the glass in the conveying process;
[0030] After grinding is completed, the rotating seat 4 drives the hydraulic cylinder 41 to rotate by 90 degrees, and then drives the suction cup frame 42 to rotate by 90 degrees, so that the unpolished edge is turned to a suitable position for subsequent processing or taking out. This design not only improves the continuity and efficiency of production, but also ensures that each edge can be uniformly and high-quality polished. The design of the double grinding machines 65 enables the grinding of two edges at a time, which significantly improves the production efficiency and the qualification rate of the product.
[0031] Embodiment 2
[0032] On the basis of embodiment 1, as shown in Figure 1 、 Figure 5 、 Figure 6 and Figure 7 , the shield 7 and the cooling member 72 are further included. The shield 7 is arranged on the top of the bottom plate 1 and surrounds the components installed on the bottom plate 1. The shield 7 is made of high-strength and wear-resistant material, which can not only protect the internal mechanical components from dust and debris, but also effectively reduce the noise generated during equipment operation and provide a quieter working environment. The left part of the shield 7 is provided with a material conveying opening, which is accurately aligned with the material conveying mechanism to ensure that the glass can smoothly enter and exit the working area in the shield 7. Meanwhile, flexible sealing bars can be designed at the opening to prevent external dust from entering the shield without affecting the glass entering and exiting.
[0033] The right part of the shield 7 is provided with the cooling member 72 on the upper side. The lower part of the cooling member 72 extends into the shield 7. The cooling member 72 is composed of a high-efficiency cooling system, including a fan, a cooling pipeline and a temperature controller. The lower part of the cooling member 72 is provided with a plurality of air outlets 720, which are uniformly distributed at key positions in the shield 7 to ensure that the cooling air can cover the entire grinding area. When the grinding machine 65 grinds the edge of the glass, a large amount of heat is generated. The cooling member 72 sprays cold air through the air outlets 720 to quickly remove the heat generated during grinding, preventing the glass from deforming or being damaged due to overheating, and also prolonging the service life of the grinding machine 65 and other components.
[0034] In addition, the cooling member 72 can also be equipped with a temperature sensor to monitor the temperature inside the protective cover 7 in real time and automatically adjust the air volume as needed to ensure that the working temperature is always within the optimal range. This intelligent temperature control design not only improves grinding efficiency but also ensures the stability of product quality, especially during long-term continuous operation, the stable operation of the cooling system is particularly important.
[0035] As shown in Figures 2-4 , it also includes a dust removal member 8 and a conduit 81, and the sliding seat two 62 is provided with the dust removal member 8, and the dust removal member 8 is provided with the conduit 81. Each dust removal member 8 is installed on the sliding seat two 62 by bolts or other fixing methods to ensure its stability during equipment operation. The dust removal member 8 is internally provided with a high-efficiency dust suction fan and a filtering device. When it works, the pipe opening of the conduit 81 generates a suction negative pressure, and the pipe openings of the conduits 81 are all directed to one side of the grinding machine 65 on the same side. This can ensure that the dust and debris generated during the grinding process can be sucked and discharged in time to prevent them from spreading to other areas inside the protective cover 7, thereby ensuring the cleanliness of the working environment and reducing the harm of dust to the equipment and operating personnel.
[0036] In addition, as shown in Figure 1 , Figure 5 , Figure 6 and Figure 7 , it also includes a flow guide member 73 and a filter plate 74. The right lower side of the protective cover 7 is provided with a gap, and the outer side of the gap is provided with the flow guide member 73, and the inner side of the gap is provided with the filter plate 74. The flow guide member 73 is made of high-temperature-resistant and corrosion-resistant materials and is fixed on the outer side of the gap of the protective cover 7 by screws or buckles to ensure that it is tightly fitted. The filter plate 74 is installed on the inner side of the gap and is made of high-efficiency filtering materials, which has good air permeability and filtering performance. When the cooling member 72 works, the gas in the protective cover 7 is guided by the flow guide member 73 and discharged outward through the filter plate 74 in the gap. This design not only ensures the effective circulation path of the cooling airflow but also maintains the positive pressure state inside the protective cover 7 to prevent external dust from entering the inside of the protective cover. At the same time, the filter plate 74 can effectively intercept the debris that is not sucked by the dust removal member 8 to reduce the situation of being raised and further improve the cleanliness of the working environment.
[0037] In a more preferred embodiment, as shown in Figure 1 , Figure 5 and Figure 7As shown, the shield 7 is provided with windows 71 on both sides, and the windows 71 are provided with transparent plates, the windows 71 are tightly combined with the shield 7 through sealing strips, so that the windows 71 have good sealing performance, and external dust is prevented from entering the shield 7, the transparent plates are made of high-strength and wear-resistant transparent materials, such as acrylic or reinforced glass, so that the transparent plates have good light transmission, sufficient strength and durability, through the windows 71, the operator can observe the working conditions in the shield 7, such as the conveying and grinding progress of the glass, without opening the shield 7, so that problems can be found and handled in time, and the safety and convenience of operation are improved.
[0038] The above is only an embodiment of the present application, and does not limit the patent range of the present application, and any equivalent structure or equivalent process conversion, or direct or indirect application in other related technical fields, is also included in the patent protection range of the present application.
Claims
1. A glass edge grinding device, comprising a base plate (1); characterized in that Further comprising a stand (5), a guide seat two (51), a sliding seat one (6), a guide seat three (61), a sliding seat two (62), a transmission two (621), a lifting plate (63), a motor one (64), a mounting seat (641), a grinder (65) and a motor two (651), the right part of the base plate (1) is provided with a stand (5) on both sides, the upper part of the stand (5) is provided with a guide seat two (51), the guide seat two (51) is slidably provided with two sliding seat one (6), the sliding seat one (6) is slidably provided with a guide seat three (61), wherein the guide seat two (51) and the guide seat three (61) are consistent in structure, both of which are composed of an installation column and a guide rail and a rack mounted on the installation column, the sliding seat one (6) and the sliding seat two (62) are both provided with a power member and a gear, the power member is connected with the gear to drive the gear to rotate, the gear in the sliding seat one (6) is engaged with the rack on the guide seat two (51), the sliding seat one (6) moves forward and backward on the guide seat two (51), the gear in the sliding seat two (62) is engaged with the rack of the guide seat three (61), the sliding seat two (62) moves forward and backward on the guide seat three (61), the lifting plate (63) is slidably provided in the sliding seat two (62), the sliding seat two (62) is provided with a transmission two (621) on one side, the transmission two (621) drives the lifting plate (63) to move up and down in the sliding seat two, the mounting seat (641) is rotatably provided at the lower part of the lifting plate (63), the motor one (64) is provided at the lower part of the lifting plate (63), the output shaft of the motor one (64) is connected with the mounting seat (641) on the same lifting plate (63), the grinder (65) is rotatably provided in the mounting seat (641), the motor two (651) is provided on the mounting seat (641), the output shaft of the motor two (651) is connected with the grinder (65) on the same mounting seat (641), the grinder (65) swings up and down by the motor two (651), the base plate (1) is provided with a material conveying mechanism on the top, the material conveying mechanism conveys the glass to the two grinders (65) for grinding processing.
2. An apparatus for edgewise grinding of glass according to claim 1, characterized in that The material conveying mechanism comprises a guide seat one (2), a transmission one (3), a sliding table (31), a rotating seat (4), a hydraulic cylinder (41) and a suction disc rack (42), the base plate (1) is provided with the guide seat one (2) horizontally and transversely on the top, the guide seat one (2) is slidably provided with the sliding table (31), the guide seat one (2) is provided with the transmission one (3), the transmission one (3) is composed of a driving motor and a lead screw, the lead screw of the transmission one (3) is screwed with the sliding table (31), the transmission one drives the sliding table (31) to move left and right on the guide seat, the rotating seat (4) is provided on the upper part of the sliding table (31), the hydraulic cylinder (41) is mounted on the rotating seat (4), the rotating seat (4) drives the hydraulic cylinder (41) to rotate, the suction disc rack (42) is provided on the top of the hydraulic cylinder (41).
3. An apparatus for edgewise grinding of glass according to claim 2, wherein The shroud (7) and the cooling member (72) are further included. The shroud (7) is arranged on the top of the bottom plate (1) and surrounds the components arranged on the bottom plate (1) inside. The left part of the shroud (7) is provided with a conveying opening. The right part of the shroud (7) is provided with the cooling member (72) on the upper side. The lower part of the cooling member (72) extends into the shroud (7). The lower part of the cooling member (72) is provided with a plurality of air outlets (720).
4. An apparatus for edgewise grinding of glass according to claim 3, wherein The dust removal member (8) and the conduit (81) are further included. The dust removal member (8) is arranged on the slide (62). The dust removal member (8) is provided with the conduit (81). When the dust removal member (8) works, the suction negative pressure is generated at the pipe opening of the conduit (81). The pipe openings of the conduits (81) are all directed to one side of the grinder (65).
5. An apparatus for edgewise grinding of glass according to claim 4, wherein The flow guide member (73) and the filter plate (74) are further included. The right part of the shroud (7) is provided with a gap on the lower side. The flow guide member (73) is arranged outside the gap. The filter plate (74) is arranged inside the gap. When the flow guide member (73) works, the gas in the shroud (7) is discharged outside through the filter plate (74) inside the gap.
6. An apparatus for edgewise grinding of glass according to claim 5, wherein The window (71) is further included. The window (71) is arranged on the front and back sides of the shroud (7). The transparent plate is arranged in the window (71).