A mounting seat of a chamfering tool and a chamfering machine
By designing limiting and movable positioning components, the problem of low efficiency in replacing edge-cutting blades is solved, simplifying the replacement process, reducing wear, and improving the fixing effect.
Patent Information
- Application Number
- CN202111025861.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-09-02
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2041-09-02
AI Technical Summary
In the existing technology, the edge-cutting blade is fixed to the mounting base with screws, which results in low replacement efficiency and frequent replacement, leading to wear and thread damage, and affecting the fixing effect.
The design employs a limiting component and a movable positioning component. The limiting component limits the edge cutting tool along the vertical direction of the mounting surface, while the movable positioning component positions the edge cutting tool by extending or retracting into the receiving cavity, simplifying the replacement process.
It improves the replacement efficiency of the beveling blade, reduces the difficulty of operation and the frequency of wear, and enhances the reliability of the fixed position.
Smart Images

Figure CN113696346B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of production equipment technology, and in particular to a mounting base for a beveling knife and a beveling machine. Background Technology
[0002] With the continuous advancement of solar cell module encapsulation technology, the edge trimming process of solar cell modules has achieved automated production. However, due to the high degree of glass deformation after lamination, slight wavy edges or slight corner lifting are caused by the edge trimming blade. This results in a height difference between the blade and the glass of the solar cell module, which accelerates the wear on one side of the edge trimming blade, leading to uneven wear and frequent replacement of the edge trimming blade. In related technologies, the edge trimming blade is fixed to the mounting base with screws, which results in low replacement efficiency. Summary of the Invention
[0003] In view of this, the embodiments of this application aim to provide a beveling tool mounting base and a beveling machine that facilitate the replacement of beveling tools.
[0004] To achieve the above objectives, a first aspect of this application provides a mounting base for a beveling tool, comprising:
[0005] A base body having a mounting groove and a receiving cavity communicating with the mounting groove, the mounting groove being used to mount the edge-cutting tool;
[0006] A limiting member is provided on the base body, the limiting member being used to limit the edge-cutting blade in a direction perpendicular to the mounting surface of the edge-cutting blade; and
[0007] A positioning member is movably disposed within the receiving cavity, the positioning member being at least partially extendable out of the receiving cavity for positioning the edge-cutting blade.
[0008] In one embodiment, the positioning element includes:
[0009] A positioning post, movably disposed within the receiving cavity; and
[0010] An operating component connected to the positioning post can be operated to cause one end of the positioning post to extend out of the receiving cavity. The positioning post is used to position the edge-cutting tool.
[0011] In one embodiment, the positioning post has a mounting hole, the positioning member includes a rotating shaft, the operating member is rotatably mounted on the base via the rotating shaft, and the operating member has a first end and a second end spaced apart, the first end passing through the mounting hole, and the second end being used for applying force.
[0012] In one embodiment, a rotational space communicating with the mounting groove is formed on one side of the base body, the first end and the second end are set at a preset angle, the second end is at least partially exposed outside the base body, and the second end is rotatable within the rotational space.
[0013] In one embodiment, the positioning member includes an elastic member disposed within the receiving cavity, one end of the elastic member abutting against the positioning post;
[0014] When the operating component is operated, the positioning post retracts into the receiving cavity, and the positioning post squeezes the elastic element to cause the elastic element to undergo elastic deformation.
[0015] When the operating element is released, the elastic element restores its elastic deformation and exerts a force on the positioning post, causing one end of the positioning post to extend out of the receiving cavity.
[0016] In one embodiment, the receiving cavity has an open end on the side away from the mounting groove, and the positioning member includes a locking member disposed at the open end, the locking member abutting against the end of the elastic member away from the positioning post.
[0017] In one embodiment, the limiting member includes at least one limiting screw disposed on the base, the limiting screw including a screw rod and a nut connected to the screw rod;
[0018] When the edge-cutting blade is placed in the mounting groove, the side of the nut facing the base is at the preset distance from the edge-cutting blade.
[0019] In one embodiment, the limiting member is a flange formed on at least one side of the seat body facing the mounting groove;
[0020] When the beveling blade is placed in the mounting groove, the side of the flange closest to the base body is at the preset distance from the beveling blade.
[0021] A second aspect of this application provides a trimming machine, comprising:
[0022] The mounting base described above;
[0023] A chamfering cutter is disposed in the mounting groove, the chamfering cutter having a positioning hole;
[0024] When the edge-cutting blade is placed in the mounting groove, the edge-cutting blade can be translated relative to the mounting base to align the positioning member with the positioning hole, and the positioning member cooperates with the positioning hole to position the edge-cutting blade.
[0025] In one embodiment, at least one side of the beveling blade is recessed to form a tail blade, the tail blade including a planar segment parallel to the side of the beveling blade, the planar segment being smoothly connected to the side of the beveling blade via an arc surface.
[0026] This application provides a mounting base for a beveling cutter and a beveling machine. The mounting base includes a base body, a limiting member, and a positioning member. When the beveling cutter is placed in the mounting groove, the limiting member limits the beveling cutter in a direction perpendicular to the mounting surface of the beveling cutter. Then, by controlling the movement of the positioning member, the positioning member extends out of the receiving cavity to position the beveling cutter. In other words, the beveling cutter can be replaced by controlling the movement of the positioning member. Therefore, the mounting base for the beveling cutter provided in this application can improve the replacement efficiency of the beveling cutter. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the structure of a mounting base equipped with a beveling tool according to an embodiment of this application;
[0028] Figure 2 for Figure 1 A sectional view;
[0029] Figure 3 for Figure 1 A cross-sectional view from another direction;
[0030] Figure 4 for Figure 2 The sectional view of the positioning component is omitted.
[0031] Figure 5 for Figure 1 Schematic diagram of the center positioning component;
[0032] Figure 6 This is a partial schematic diagram of an embodiment of the present application, omitting the mounting base of the guide plate;
[0033] Figure 7 This is a schematic diagram of the structure of a beveling tool according to an embodiment of this application.
[0034] Explanation of reference numerals in the attached figures
[0035] Seat 10; Mounting groove 10a; Receiving cavity 10b; First cavity 10c; Second cavity 10d; First stepped surface 10e; Open end 10f; Rotation space 10g; Boss 10h; Limiting member 20; Positioning member 30; Positioning post 31; Mounting hole 31a; First section 31b; Second section 31c; Second stepped surface 31d; Operating member 32; First end 32a; Second end 32b; Rotating shaft 33; Elastic member 34; Locking member 35; Edge trimmer 40; Positioning hole 40a; Tail blade 40b; Flat section 40c; Arc surface 40d; Guide groove 50; Avoidance surface 50a; Guide plate 60. Detailed Implementation
[0036] It should be noted that, unless otherwise specified, the embodiments and technical features in the embodiments of this application can be combined with each other, and the detailed descriptions in the specific implementation should be understood as explanations of the purpose of this application and should not be regarded as undue limitations on this application.
[0037] The first aspect of this application provides a mounting base for a beveling tool; please refer to [link to relevant documentation]. Figures 1 to 6 The mounting base includes a base body 10, a limiting member 20, and a positioning member 30. The base body 10 has a mounting groove 10a and a receiving cavity 10b communicating with the mounting groove 10a. The mounting groove 10a is used to mount a beveling tool 40. The limiting member 20 is disposed on the base body 10 and is used to limit the beveling tool 40 in a direction perpendicular to the mounting surface of the beveling tool 40. The positioning member 30 is movably disposed in the receiving cavity 10b and can at least partially extend out of the receiving cavity 10b to position the beveling tool 40.
[0038] In related technologies, edge-cutting cutters are fixed with screws. When the edge-cutting cutter wears out, it needs to be replaced. The process of replacing the edge-cutting cutter requires first removing the screws on the mounting base, then removing the edge-cutting cutter to be replaced, replacing it with a new edge-cutting cutter, and then fixing it with screws again. This operation is cumbersome and time-consuming, resulting in low edge-cutting cutter replacement efficiency. Furthermore, edge-cutting cutters are prone to wear, leading to frequent replacements. Therefore, fixing edge-cutting cutters with screws has two drawbacks: firstly, the efficiency of edge-cutting cutter replacement is low, and secondly, frequent edge-cutting cutter replacements can damage the screw threads, thus affecting the fixation of the edge-cutting cutter.
[0039] For the mounting base of the edge-cutting blade 40 provided in this embodiment, please refer to... Figures 1 to 6 During the assembly process of the edge-cutting blade 40, the edge-cutting blade 40 is placed in the mounting groove 10a. The edge-cutting blade 40 is limited by the limiting member 20 in a direction perpendicular to the mounting surface of the edge-cutting blade 40. Then, the positioning member 30 is moved so that part of the positioning member 30 extends out of the receiving cavity 10b to position the edge-cutting blade 40. When it is necessary to remove the edge-cutting blade 40 from the mounting groove 10a, the positioning member 30 is moved and retracted into the receiving cavity 10b, so that the edge-cutting blade 40 can be removed from the mounting groove 10a. In other words, the edge-cutting blade 40 can be replaced by controlling the movement of the positioning member 30. Therefore, the mounting base of the edge-cutting blade 40 provided in this embodiment can improve the replacement efficiency of the edge-cutting blade 40.
[0040] For some implementation methods, please refer to Figure 2 and Figure 5 The positioning element 30 can be a pin, which engages with the shaft hole of the edge beveling tool 40 to position the edge beveling tool 40. Alternatively, the positioning element 30 can be a latch, which positions the edge beveling tool 40.
[0041] For example, please refer to Figure 2 and Figure 5 The positioning element 30 includes a positioning post 31 and an operating element 32 connected to the positioning post 31. The positioning post 31 is movably disposed in the receiving cavity 10b. By operating the operating element 32, one end of the positioning post 31 can be driven to extend out of the receiving cavity 10b. The positioning post 31 is used to position the edge-cutting tool 40.
[0042] It should be noted that the positioning post 31 being movably disposed within the receiving cavity 10b means that the positioning post 31 is disposed within the receiving cavity 10b and that the positioning post 31 is capable of moving along the extending direction of the receiving cavity 10b.
[0043] The operating component 32 connected to the positioning post 31 refers to the fact that the operating component 32 and the positioning post 31 can be connected by welding, screwing, or shaft hole fitting. The specific connection method between the operating component 32 and the positioning post 31 is not limited here, as long as the operating component 32 can drive the positioning post 31 to move along the extension direction of the receiving cavity 10b.
[0044] By operating the operating member 32, the positioning pin 31 is moved along the extension direction of the receiving cavity 10b and extends out of the receiving cavity 10b, thereby positioning the edge-cutting blade 40. Then, by controlling the positioning pin 31 to retract into the receiving cavity 10b, the edge-cutting blade 40 can be removed. In other words, the edge-cutting blade 40 can be replaced by moving the positioning pin 31, thereby improving the replacement efficiency of the edge-cutting blade 40.
[0045] It should be noted that the operating member 32 can move the positioning column 31 along the extension direction of the receiving cavity 10b by pushing and pulling, and the operating member 32 can also move the positioning column 31 along the extension direction of the receiving cavity 10b by rotating.
[0046] For example, please refer to Figure 2 The positioning component 30 includes a rotating shaft 33, and the operating component 32 is rotatably mounted on the base 10 via the rotating shaft 33. Please refer to the following document for further details. Figure 5 The operating member 32 has a first end 32a and a second end 32b spaced apart. The first end 32a abuts against the positioning post 31, and the second end 32b is used for applying operating force.
[0047] It should be noted that the operation member 32 is rotatably mounted on the base 10 via the rotating shaft 33, meaning that the operation member 32 is mounted on the base 10 and can rotate relative to the base 10 around the rotating shaft 33. During the replacement of the cutting tool, the second end 32b is operated to cause the first end 32a to drive the positioning pin 31 to move along the extension direction of the receiving cavity 10b.
[0048] For example, please refer to Figure 2 and Figure 5 The positioning pin 31 has a mounting hole 31a, and the first end 32a passes through the mounting hole 31a. By setting the mounting hole 31a, the positioning pin 31 and the first end 32a of the operating member 32 are fitted with a shaft hole. On the one hand, it facilitates the assembly of the positioning member 30 and the seat 10 during the assembly process. On the other hand, it facilitates the rotation of the operating member 32 to drive the positioning pin 31 to move.
[0049] For example, please refer to Figure 4 A rotation space 10g is formed on one side of the seat 10, the second end 32b is located in the operating space and is at least partially exposed outside the seat 10, and the second end 32b is able to rotate within the rotation space 10g.
[0050] By forming a rotation space 10g on one side of the seat 10, it is convenient to set up the operating member 32 and to rotate the operating member 32 during use. The second end 32b is at least partially exposed outside the seat 10 for pressing or rotating the part of the second end 32b exposed outside the seat 10. Thus, it has the advantage of convenient operation of the operating member 32.
[0051] Please refer to Figure 4 and Figure 6 The rotating space 10g is connected to the mounting groove 10a to facilitate demolding during the manufacturing process, thereby improving the manufacturing efficiency and cost of the mounting base.
[0052] For example, please refer to Figure 5 The first end 32a and the second end 32b are set at a preset angle.
[0053] It should be noted that the preset angle between the first end 32a and the second end 32b means that the first end 32a and the second end 32b are not on the same straight line. This setting makes it easier to rotate the second end 32b. On the other hand, when the positioning post 31 moves the same distance, the rotation space 10g required by the operating member 32 with the preset angle between the first end 32a and the second end 32b is smaller. The range of the preset angle is not limited here, as long as the operating member 32 can drive the positioning post 31 to move along the extension direction of the receiving cavity 10b. For example, the range of the preset angle can be 100° to 160°.
[0054] During the cutting tool change process, please refer to Figure 2The operator only needs to hold the mounting base with one hand and press the second end 32b into the rotation space 10g with their fingers. Since the first end 32a and the second end 32b are set at a preset angle, when the second end 32b is fully rotated into the rotation space 10g, the second end 32b drives the first end 32a to rotate, thereby causing the first end 32a to drive the positioning post 31 to retract into the receiving cavity 10b along the extension direction of the receiving cavity 10b, and thus the cutting tool can be pulled out. Therefore, on the one hand, the second end 32b will not be damaged due to the excessive rotation angle of the second end 32b when pressing it. On the other hand, the second end 32b being fully rotated into the rotation space 10g makes it convenient for the operator to hold the mounting base, thus making it convenient for the operator to apply force.
[0055] For example, the operating element 32 is a shift fork, which is rotatably mounted on the base 10 via a pivot 33. The first end 32a of the shift fork passes through the mounting hole 31a, and the second end 32b of the shift fork is located in the operating space and is at least partially exposed outside the base 10. By pressing or rotating the portion of the second end 32b of the shift fork exposed outside the base 10, the first end 32a is driven to rotate, thereby causing the first end 32a to drive the positioning pin 31 to move along the extension direction of the receiving cavity 10b.
[0056] In some implementations, the operating element 32 may also be a cam or a ratchet mechanism.
[0057] For example, please refer to Figure 2 , Figure 3 and Figure 5 The positioning member 30 includes an elastic member 34 disposed in the receiving cavity 10b, one end of which abuts against the positioning post 31. When the operating member 32 is operated, the positioning post 31 retracts into the receiving cavity 10b, and the positioning post 31 squeezes the elastic member 34 to cause the elastic member 34 to undergo elastic deformation. When the operating member 32 is released, the elastic member 34 restores its elastic deformation and exerts a force on the positioning post 31, so that one end of the positioning post 31 extends out of the receiving cavity 10b.
[0058] By providing an elastic element 34 at one end of the positioning post 31, when the positioning post 31 retracts into the receiving cavity 10b, the positioning post 31 presses against the elastic element 34. When the operating member 32 is released, the positioning post 31 extends out of the receiving cavity 10b under the action of the elastic element 34. This reduces the difficulty of replacing the beveling cutter 40. When replacing the beveling cutter 40, after removing the old beveling cutter 40, the new beveling cutter 40 is placed on the mounting slot 10a, and the operating member 32 can be released. At this time, the positioning post 31 can abut against the beveling cutter 40 under the action of the elastic element 34. As the beveling cutter 40 moves horizontally relative to the seat 10, when the beveling cutter 40 moves to the position that mates with the positioning post 31, the positioning post 31 extends out of the receiving cavity 10b under the action of the elastic element 34 and mates with the beveling cutter 40 to position the beveling cutter 40. Therefore, the difficulty of aligning the positioning post 31 and the beveling cutter 40 can be reduced, thereby further improving the installation efficiency of the beveling cutter 40.
[0059] For example, the elastic element 34 is a spring.
[0060] It should be noted that the elastic element 34 is not limited here, as long as it can produce elastic deformation. For example, the elastic element 34 can also be made of rubber or silicone.
[0061] In some embodiments, the positioning member 30 may not include the elastic member 34. The positioning post 31 can be retracted into the receiving cavity 10b by operating the operating member 32. By operating the operating member 32 again, one end of the positioning post 31 can be extended out of the receiving cavity 10b along the extension direction of the receiving cavity 10b for positioning the edge trimmer 40. That is, the positioning post 31 is not positioned by the rebound force of the elastic member 34, but by manually operating the operating member, thereby positioning the edge trimmer 40.
[0062] For example, please refer to Figure 2 and Figure 4 The receiving cavity 10b has an open end 10f on the side away from the mounting groove 10a. The positioning member 30 includes a locking member 35 disposed at the open end 10f. The locking member 35 abuts against the end of the elastic member 34 away from the positioning post 31.
[0063] Please see Figure 2 By providing an opening end 10f on the side of the receiving cavity 10b away from the mounting groove 10a and a locking member 35 at the opening end 10f, on the one hand, it is convenient to assemble the positioning post 31, the operating member 32 and the elastic member 34. On the other hand, by adjusting the locking degree of the locking member 35, the force of the elastic member 34 on the positioning post 31 can be adjusted, thereby improving the reliability of the positioning member 30.
[0064] For example, please refer to Figure 4The receiving cavity 10b includes a first cavity 10c and a second cavity 10d that are interconnected and form a first stepped surface 10e. The end of the first cavity 10c away from the second cavity 10d forms an open end 10f, and the first stepped surface 10e faces the open end 10f. The positioning post 31 includes a first segment 31b and a second segment 31c that are interconnected and form a second stepped surface 31d. A mounting hole 31a is formed on the second segment 31c. The diameter of the second segment 31c is larger than the diameter of the first segment 31b, and the diameter of the second segment 31c is larger than the aperture of the second cavity 10d. The first stepped surface 10e cooperates with the second stepped surface 31d to limit the movement of the positioning post 31 in the receiving cavity 10b and prevent the positioning post 31 from coming out of the receiving cavity 10b. The open end 10f is used to fix the locking member 35.
[0065] In some embodiments, the side of the receiving cavity 10b away from the mounting groove 10a does not have an open end 10f. The receiving cavity 10b is only connected to the mounting groove 10a. When the first positioning member 30 is assembled, the elastic member 34 is first placed into the receiving cavity 10b, and then the positioning post 31 is placed into the receiving cavity 10b and abuts against the elastic member 34. Then, it is connected to the positioning post 31 through the operating member 32. The operating member 32 can drive one end of the positioning post 31 along the extension direction of the receiving cavity 10b to extend into the receiving cavity 10b, and can also prevent the positioning post 31 from coming out of the receiving cavity 10b.
[0066] It should be noted that the specific structural form of the mounting slot 10a is not limited here, as long as it can accommodate the beveling tool 40.
[0067] For example, please refer to Figure 6 The mounting surface of the base 10 for assembling with the edge trimmer 40 has two opposing bosses 10h, and a mounting groove 10a is formed between the two opposing bosses 10h, in which the edge trimmer 40 is disposed.
[0068] For example, please refer to Figure 1 The limiting member 20 includes at least one limiting screw disposed on the base 10.
[0069] One or more limiting screws can be provided on the base 10. The number of limiting screws is not limited here, as long as they can be used to limit the edge cutting tool 40 in the direction perpendicular to the mounting surface of the edge cutting tool 40.
[0070] Please see Figure 1 Two limiting screws are provided on each of the two opposite bosses 10h on the base 10. The limiting screws are used to limit the edge cutting tool 40 in a direction perpendicular to the mounting surface of the edge cutting tool 40.
[0071] Specifically, please refer to Figure 1The limiting screw includes a screw rod and a nut connected to the screw rod. When the edge trimmer 40 is set in the mounting groove 10a, the side of the nut facing the base 10 is at a preset distance from the edge trimmer 40.
[0072] Along the direction perpendicular to the mounting surface of the edge-cutting blade 40, the partial projection of the nut on the mounting surface of the edge-cutting blade 40 is located within the projection range of the mounting groove 10a, which is used to limit the edge-cutting blade 40 in the direction perpendicular to the mounting surface of the edge-cutting blade 40.
[0073] It should be noted that the side of the nut facing the base 10 is at a preset distance from the edge-cutting blade 40. The preset distance means that when the edge-cutting blade 40 is set in the mounting groove 10a, the preset distance allows the edge-cutting blade 40 to move relative to the base 10 in the mounting groove 10a so that the positioning member 30 can position the edge-cutting blade 40. On the other hand, it allows the limiting screw to limit the edge-cutting blade 40 in the direction perpendicular to the mounting surface of the edge-cutting blade 40.
[0074] By setting limiting screws on two opposing bosses 10h on the base 10, the distance between the nut and the boss 10h can be adjusted according to different types of edge trimmers 40, thereby adapting to different types of edge trimmers 40 and improving the versatility of the mounting base.
[0075] In some embodiments, the limiting member 20 is a flange formed on at least one side of the seat 10 facing the mounting groove 10a; when the edge trimmer 40 is disposed in the mounting groove 10a, the side of the flange closest to the seat 10 is at a predetermined distance from the edge trimmer 40.
[0076] For example, please refer to Figure 1 and Figure 6 The base 10 includes a guide groove 50, which is located on the side of the base 10 away from the mounting groove 10a and adjacent to the mounting groove 10a. The guide groove 50 is used to install the guide plate 60 so that the residual material generated after the edge cutting blade 40 cuts the battery assembly falls into the set position along the guide plate 60.
[0077] Please see Figure 6 The guide chute 50 has a clearance surface 50a. In order to allow the residual material to fall into the set position more smoothly, the guide plate 60 is tilted downward. By forming a clearance surface 50a at the corner of the guide chute 50, the gap between the guide chute 50 and the guide plate 60 is increased, thereby facilitating the assembly of the guide plate 60.
[0078] A second aspect of this application provides a beveling machine, including a beveling blade 40 and a mounting base of any of the above embodiments.
[0079] Since the edge trimming machine provided in this application includes the mounting base of any of the above embodiments, it also has the beneficial effects of the mounting base. Therefore, the edge trimming machine provided in this application can improve the replacement efficiency of the edge trimming blade 40.
[0080] Specifically, please refer to Figure 7 The edge-cutting blade 40 is disposed in the mounting groove 10a and has a positioning hole 40a. When the edge-cutting blade 40 is disposed in the mounting groove 10a, the edge-cutting blade 40 can be aligned with the positioning member 30 and the positioning hole 40a by translating relative to the mounting base. The positioning member 30 and the positioning hole 40a cooperate to position the edge-cutting blade 40.
[0081] Please see Figures 1 to 7 During the assembly of the edge-cutting blade 40, the edge-cutting blade 40 is placed in the mounting groove 10a. The edge-cutting blade 40 is limited by the limiting member 20 in a direction perpendicular to the mounting surface of the edge-cutting blade 40. Then, the positioning member 30 is moved by controlling the movement so that part of the positioning member 30 extends out of the receiving cavity 10b and engages with the positioning hole 40a to position the edge-cutting blade 40. When it is necessary to remove the edge-cutting blade 40 from the mounting groove 10a, the positioning member 30 is moved by controlling the movement so that the positioning member 30 disengages from the positioning hole 40a. Then, the edge-cutting blade 40 is moved by controlling the translation relative to the mounting base to remove the edge-cutting blade 40 from the mounting groove 10a. In other words, the edge-cutting blade 40 can be replaced by controlling the movement of the positioning member 30. Therefore, the mounting base of the edge-cutting blade 40 provided in this application embodiment can improve the replacement efficiency of the edge-cutting blade 40.
[0082] For example, please refer to Figure 7 At least one side of the beveling cutter 40 is recessed to form a tail blade 40b. The tail blade 40b includes a planar segment 40c parallel to the side of the beveling cutter 40. The planar segment and the side of the beveling cutter 40 are smoothly connected by an arc surface 40d.
[0083] In related technologies, after solar cell modules are laminated in a laminator, adhesive overflows onto the upper surface of the upper glass and the lower surface of the lower glass. The existing edge-cutting blade 40 has a straight blade, which cannot cut the adhesive overflowing onto the upper glass and the lower glass. Therefore, after the existing edge-cutting blade 40's tail blade 40b scrapes the corner, the excess adhesive remaining on the upper and lower surfaces of the glass will be unable to be completely removed along with the tail material.
[0084] In this embodiment of the application, at least one side of the beveling blade 40 has an inwardly recessed tail blade 40b. Please refer to [link to relevant documentation]. Figure 1 and Figure 7The tail blade 40b includes a flat section 40c parallel to the side of the beveling blade 40. The flat section 40c and the side of the beveling blade 40 are smoothly connected by an arc surface 40d. Thus, when the tail blade 40b is used to scrape the corner of the glass, the arc surface 40d of the tail blade 40b can contact the adhesive on the upper surface of the upper glass and the lower surface of the lower glass, thereby effectively cutting off the excess adhesive on the upper surface of the upper glass and the lower surface of the lower glass. After scraping the corner, the tail blade 40b of the beveling blade 40b can directly remove the four-legged tail material after the glass layer, thereby improving the working efficiency of the beveling blade 40.
[0085] The various embodiments / implementations provided in this application can be combined with each other without creating contradictions.
[0086] The above are merely preferred embodiments of this application and are not intended to limit the scope of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application are included within the protection scope of this application.
Claims
1. A mounting for a beveler, characterised in that, The application relates to a mounting base for a chamfering tool. The mounting base comprises: a base body, which is provided with a mounting groove for mounting the chamfering tool and a receiving cavity in communication with the mounting groove; a limiting member arranged on the base body and used for limiting the chamfering tool in a direction perpendicular to a mounting surface of the chamfering tool, and a part of the limiting member is projected in a projection range of the mounting groove in a direction perpendicular to the mounting surface of the chamfering tool; and a positioning member movably arranged in the receiving cavity and capable of being at least partially extended out of the receiving cavity and used for positioning the chamfering tool; the positioning member comprises a positioning column movably arranged in the receiving cavity and an operating member connected with the positioning column, and one end of the positioning column is capable of being extended out of the receiving cavity by operating the operating member, and the positioning column is used for positioning the chamfering tool; 2. The mount of claim 1, wherein the positioning column is provided with a mounting hole, the operating member is rotatably arranged on the base body through a rotating shaft, the operating member has spaced first and second ends, the first end is arranged in the mounting hole, and the second end is used for operating a force.
3. The mount of claim 1, wherein One side of the base body is provided with a rotating space in communication with the mounting groove, the first and second ends are arranged at a preset included angle, the second end is at least partially exposed out of the base body, and the second end is capable of rotating in the rotating space. The positioning member comprises an elastic member arranged in the receiving cavity, and one end of the elastic member is in abutment with the positioning column; when the positioning column is retracted into the receiving cavity, the positioning column extrudes the elastic member to make the elastic member elastically deformed; 4. The mount of claim 3, wherein when the operating member is released, the elastic member restores the elastic deformation and generates a force acting on the positioning column to make one end of the positioning column extended out of the receiving cavity.
5. The mount of claim 1, wherein The receiving cavity is provided with an open end away from the mounting groove, the positioning member comprises a locking member arranged at the open end, and one end of the locking member away from the positioning column is in abutment with the elastic member. The limiting member comprises at least one limiting screw arranged on the base body, the limiting screw comprises a screw rod and a nut connected with the screw rod; 6. The mount of claim 1, wherein when the chamfering tool is arranged in the mounting groove, the nut is arranged at a preset distance away from the chamfering tool. The limiting member is a turned edge formed by turning at least one side of the base body towards the mounting groove; 7. A beveler characterized by when the chamfering tool is arranged in the mounting groove, the turned edge is arranged at a preset distance away from the chamfering tool. The application further relates to a chamfering tool. The mounting base is arranged in the mounting groove of the mounting base, and the chamfering tool is capable of moving horizontally relative to the mounting base to make the positioning member aligned with the positioning hole, and the positioning member is matched with the positioning hole to position the chamfering tool. At least one side of the chamfering tool is concave to form a tail edge, the tail edge comprises a planar section parallel to a side surface of the chamfering tool, and the planar section is connected with the side surface of the chamfering tool through a smooth arc surface.
8. The resharpening machine of claim 7, wherein,
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