Ceramic tile chamfering and cutting device
By introducing a tool setting holder and tool setting plate structure into the chamfering cutting device, the problem of inaccurate installation position of the cutting machine is solved, enabling fast and accurate installation of the cutting machine and chamfering cutting, thus improving operating efficiency and accuracy.
Patent Information
- Application Number
- CN202520084221.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-01-14
AI Technical Summary
In existing tile chamfering and cutting devices, the installation position of the cutting machine is difficult to accurately and quickly, which makes it impossible for the cutting machine to complete the chamfering work smoothly. Frequent adjustments are required, making the operation complicated and inefficient.
A ceramic tile chamfering and cutting device was designed, comprising a chamfering plate and a mounting base. The mounting base is equipped with a blade setting seat and a blade setting plate. The saw blade can fit against the blade setting plate. The installation of the cutting machine is ensured by an adjustment groove, a side shim, and a locking device to avoid positional deviation.
It enables quick and precise installation of the cutting machine, avoids readjustment due to positional deviation, improves work efficiency and ease of operation, and ensures the accuracy of chamfer cutting.
Smart Images

Figure CN223864028U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of cutting tool technology, and specifically refers to a ceramic tile chamfering and cutting device. Background Technology
[0002] Tiles are a commonly used material in the building decoration industry. Existing finished tiles generally have a regular square structure, and the decorative side of the tile is set perpendicular to the side of the tile. However, in actual renovations, due to the diversity of walls, when encountering interior and exterior corners, corner columns, window sills, etc., it is necessary to process the edges of tiles with a chamfer of about 45 degrees. Since manually cutting chamfers is difficult for workers, a chamfering plate specifically designed to assist workers in chamfering tiles has appeared on the market. Workers simply tilt the cutting machine onto the mounting base of the chamfering plate, creating a 45-degree angle between the saw blade and the plate. The position of the cutting machine on the mounting base determines the position of the saw blade, which in turn determines the chamfer and the thickness of the tile edge. Therefore, the installation position of the cutting machine on the chamfering plate is crucial. Currently, when workers install the cutting machine onto the mounting base, they mostly rely on their feel to determine the installation position, making it difficult to accurately and quickly install the machine in the correct position. When the installed cutting machine cannot successfully complete the chamfering work, the worker needs to readjust the position, which is quite troublesome. Summary of the Invention
[0003] The purpose of this invention is to provide a simple structure that allows users to quickly and accurately install the cutting machine onto the chamfering plate, ensuring that the cutting machine is installed in the correct position.
[0004] The purpose of this utility model is achieved as follows:
[0005] A tile chamfering and cutting device includes a chamfering plate and a mounting base disposed on the chamfering plate for mounting a cutting machine. After the cutting machine is installed on the mounting base, it is inclined to the chamfering plate, and the saw blade on the cutting machine is located on one side of the chamfering plate and is inclined to the chamfering plate. The lower half of the saw blade is located below the chamfering plate and forms an angle with the chamfering plate. A tool setting seat is inclinedly installed on one side of the chamfering plate, and a tool setting back plate is provided on the tool setting seat. The tool setting back plate is inclined to the chamfering plate. The saw blade on the cutting machine can be in contact with the front or rear side of the tool setting back plate, thereby determining the installation position of the cutting machine.
[0006] Furthermore, the tool setting holder is provided with a mounting part, and the mounting part has an adjustment groove. The tool setting back plate is movably installed in the adjustment groove. A margin space is formed between the front side of the tool setting back plate and the inner wall of one side of the adjustment groove. At least one margin shim is provided on the mounting part or the tool setting holder. The margin shim can be placed in the margin space. The front side of the tool setting back plate can fit with the margin shim, and the rear side of the tool setting back plate can fit with the saw blade.
[0007] Furthermore, a locking space is formed between the rear side of the tool setting plate and the inner wall of the other side of the adjustment groove. The tool setting seat is provided with a locking device, which can pass through the locking space and abut against the rear side of the tool setting plate, thereby locking the tool setting plate and the edge washer into the adjustment groove.
[0008] Furthermore, a guide rod is fixedly provided in the adjustment groove, and the edge shim is set in the adjustment groove. Each edge shim has an oblong hole, and the guide rod is set in the oblong hole. The edge shim is located on one side of the edge space. After the edge shim is driven to slide along the guide rod, the edge shim can enter the edge space and fit against the tool setting plate.
[0009] Furthermore, the mounting part is provided with a fixing hole through the adjustment groove, the tool setting plate is provided with a sliding hole, the mounting part is provided with a fixing rod, the fixing rod passes through the fixing hole and enters into the sliding hole to be movably connected with the tool setting plate, and the tool setting plate can slide back and forth along the fixing rod.
[0010] Furthermore, a protective pad is provided in the adjustment groove. The protective pad is located between the front side of the tool setting plate and the inner wall of the adjustment groove. A through hole is provided on the protective pad, and the fixing rod is located in the through hole.
[0011] Furthermore, the tool setter has a locking hole, and the inner wall of the other side of the adjusting groove has a threaded hole. The threaded hole corresponds to the locking hole. The locking device includes a locking screw. The inner end of the locking screw passes through the locking hole and enters the threaded hole. Driving the locking screw to rotate can control the locking screw to move forward along the threaded hole, so that the inner end of the locking screw enters the locking space and abuts against the tool setter plate.
[0012] Furthermore, one side of the chamfer plate extends downward to form a tile-fitting portion. The tool setter is located below the tile-fitting portion and has an abutment portion that abuts against the tile-fitting portion. The chamfer plate has symmetrically formed locking grooves on its upper side, and the tool setter has symmetrically formed fixing devices. The fixing devices can be used to fix the tool setter to one side of the chamfer plate. The fixing devices correspond to the locking grooves and include a hinge screw and a locking member threadedly connected to the hinge screw. The hinge screw is located in the locking groove, and the locking member has a threaded locking hole. The top of the hinge screw protrudes outside the locking groove and is located in the threaded locking hole, threadedly connected to the locking member. Driving the locking member to rotate allows the locking member to move downward along the hinge screw and enter a locking state with the chamfer plate.
[0013] Furthermore, the abutting part is provided with a snap-fit groove, the top of the tile-fitting part is located in the snap-fit groove, the tool holder is provided with symmetrical fixing grooves, each fixing groove is provided with a connecting rod, the bottom end of the hinge screw is provided with a connecting part, the connecting part is provided with a rotating hole, the connecting rod is disposed in the rotating hole, and the connecting part can rotate relative to the connecting rod.
[0014] The outstanding and beneficial technical effects of this utility model compared to the prior art are:
[0015] This utility model belongs to the technical field of cutting tools, specifically referring to a tile chamfering and cutting device, including a chamfering plate and a mounting base set on the chamfering plate. The mounting base and chamfering plate are common in the market. The mounting base allows workers to easily install the cutting machine onto it, resulting in an inclined position between the cutting machine and the chamfering plate. At this time, the saw blade on the cutting machine is also inclined to one side of the chamfering plate, with the lower half of the saw blade positioned below the chamfering plate, forming a 45-degree angle. This allows the tile chamfering and cutting device to smoothly chamfer the tiles. A blade-setting seat is inclinedly mounted on one side of the chamfering plate, with a blade-setting backing plate. The blade-setting backing plate is also inclined to the chamfering plate, and the saw blade can be in contact with the front or rear side of the blade-setting backing plate. Compared to existing chamfering plates specifically designed to assist workers in chamfering tiles, this device allows workers to easily install the cutting machine onto the mounting base of the chamfering plate. Traditionally, workers rely on their own feel to determine the installation position of the cutting machine, resulting in inaccurate and slow installation. When the installed cutting machine fails to complete the chamfering work smoothly, workers need to readjust its position, which is quite troublesome. This invention, compared to existing chamfering plates, includes a blade-aligning seat and a blade-aligning backing plate mounted on it. Before installing the cutting machine onto the mounting base, workers can first align the saw blade on the cutting machine with the front or rear side of the blade-aligning backing plate to quickly and accurately determine the installation position. Then, after fixing the cutting machine to the mounting base, it ensures the cutting machine is installed in the correct position. This avoids situations where the cutting machine cannot complete the tile chamfering work smoothly due to misalignment after installation, requiring workers to readjust its position. This avoids unnecessary trouble and speeds up work efficiency. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the present invention installed on a chamfered plate.
[0017] Figure 2 This is an exploded view of the utility model and the chamfered plate.
[0018] Figure 3 This is a perspective view of the present invention.
[0019] Figure 4 This is a schematic diagram of the structure of this utility model.
[0020] Figure 5 This is an exploded view of the tool holder and fixing device of this utility model.
[0021] Figure 6 This is an exploded view of the hinge screw and locking component of this utility model.
[0022] Figure 7This is an exploded view of the tool setting holder, tool setting plate, and edge spacer of this utility model.
[0023] Figure 8 This is a structural schematic diagram of the tool setting plate, fixing rod, and protective gasket of this utility model.
[0024] Figure 9 This is a schematic diagram of the structure of the edge-retaining gaskets of different thicknesses according to this utility model.
[0025] Figure 10 This is one of the structural schematic diagrams of this utility model.
[0026] Figure 11 yes Figure 10 A magnified view of a portion of point A in the middle.
[0027] Figure 12 This is the second structural schematic diagram of this utility model.
[0028] Figure 13 yes Figure 12 A magnified view of a section at point B.
[0029] Figure 14 This is the third structural schematic diagram of this utility model.
[0030] Figure 15 yes Figure 14 A magnified view of a section at point C.
[0031] Figure 16 This is one of the structural schematic diagrams of the blade-setting plate and saw blade of this utility model.
[0032] Figure 17 yes Figure 16 A schematic diagram of a saw blade being used to cut tiles after the blade has been adjusted.
[0033] Figure 18 This is one of the structural schematic diagrams of the blade-setting plate and saw blade of this utility model.
[0034] Figure 19 yes Figure 18 A schematic diagram of a saw blade being used to cut tiles after the blade has been adjusted.
[0035] The meaning of the labels in the diagram:
[0036] 1-Tool setting holder; 2-Tool setting backplate; 3-Mounting part; 4-Adjustment groove; 5-Mounting base;
[0037] 6-Side clearance space; 7-Side clearance gasket; 8-Locking space; 9-Guide rod; 10-Oval hole;
[0038] 11-Fixing hole; 12-Sliding hole; 13-Fixing rod; 14-Protective gasket; 15-Through hole;
[0039] 16-Locking hole; 17-Threaded hole; 18-Locking screw; 19-Abutting part; 20-Fixing groove;
[0040] 21-Hinged screw; 22-Locking element; 23-Threaded locking hole; 24-Snap-fit groove; 25-Connecting rod;
[0041] 26-Connecting part; 27-Rotating hole; 28-Chamfer plate; 29-Tile bonding part;
[0042] 30 - Locking groove; 31 - Saw blade. Detailed Implementation
[0043] The present invention will be further described below with reference to specific embodiments:
[0044] This utility model belongs to the field of cutting tool technology, specifically referring to a tile chamfering and cutting device, including a chamfering plate 28 and a mounting base 5 disposed on the chamfering plate 28. The mounting base 5 and the chamfering plate 28 are common in the market. The mounting base 5 allows workers to easily install the cutting machine onto the mounting base 5, so that the cutting machine and the chamfering plate 28 are in an inclined state. At this time, the saw blade 31 on the cutting machine is also in an inclined state with one side of the chamfering plate 28, and the lower half of the saw blade 31 is positioned... A 45-degree angle is formed between the bottom of the chamfering plate 28 and the chamfering plate 28, allowing the tile chamfering and cutting device to smoothly chamfer the tiles. A blade-setting seat 1 is installed at an angle on one side of the chamfering plate 28, and a blade-setting plate 2 is mounted on the blade-setting seat 1. The blade-setting plate 2 is also inclined to the chamfering plate 28, and the saw blade 31 can fit against the front or rear side of the blade-setting plate 2. Compared to existing chamfering plates on the market specifically designed to assist workers in chamfering tiles, this design allows workers to easily chamfer tiles after installing the cutting machine at the chamfering position. When installing the chamfering plate, workers typically rely on their feel to determine the cutting machine's position, making it difficult to accurately and quickly place the machine in the correct location. When the installed cutting machine cannot successfully complete the chamfering work, the worker needs to readjust its position, which is quite troublesome. This invention, compared to existing chamfering plates 28, includes a blade-aligning seat 1 and a blade-aligning backing plate 2 mounted on the blade-aligning seat 1. Before installing the cutting machine onto the mounting base 5, the worker can first align the saw blade 31 on the cutting machine with the front or rear side of the blade-aligning backing plate 2, thus quickly and accurately determining the cutting machine's installation position. After fixing the cutting machine to the mounting base, it ensures the cutting machine is installed in the correct position, preventing situations where the cutting machine cannot successfully complete the tile chamfering work due to misalignment after installation, requiring the worker to readjust the cutting machine's position. This avoids unnecessary trouble and increases work efficiency.
[0045] Preferably, the tool setting holder 1 is provided with a mounting part 3, and the mounting part 3 has an adjustment groove 4. The tool setting plate 2 is movably installed in the adjustment groove 4. A margin space 6 is formed between the front side of the tool setting plate 2 and the inner wall of one side of the adjustment groove 4. The mounting part 3 or the tool setting holder 1 is provided with at least one margin gasket 7, which can be placed in the margin space 6. The front side of the tool setting plate 2 can fit against the margin gasket 7, and the rear side of the tool setting plate 2 can fit against the saw blade 31. The mounting part 3 of the tool setting holder 1 has an adjustment groove 4, and the tool setting plate 2 is movably installed in the adjustment groove 4. The setting of the mounting part 3 allows the tool setting plate 2 to smoothly... The installation of this new invention differs from existing methods that require adjusting the position of the mounting base 5 on the chamfering plate 28 by tightening screws, thereby changing the position of the saw blade 31 and ultimately altering the thickness of the tile edge. This latter method is complex, time-consuming, and labor-intensive, relying solely on the worker's feel to determine the edge thickness, making precise control impossible. In this invention, the width of the edge space 6 formed between the front side of the blade support plate 2 and the inner wall of one side of the adjustment groove 4 determines the position of the blade support plate 2 within the adjustment groove 4. Because the saw blade on the cutting machine... Saw blade 31 needs to be in contact with the blade-setting plate 2. The position of the blade-setting plate 2 determines the width of the side of saw blade 31 and chamfering plate 28. This width determines the thickness of the beveled corner of the cut tile. Essentially, the width of the edge space 6 determines the edge thickness of the beveled corner. The mounting part 3 or the blade-setting seat 1 has four edge-setting pads 7, with thicknesses of 1 mm, 1 mm, 0.5 mm, and 0.2 mm respectively. Workers can choose the thickness of the tile edge according to their actual needs, thus selecting which edge-setting pads 7 to place in the edge space 6. When the edge-setting pads 7 are placed in the edge space... After step 6, the worker needs to first align the front side of the blade-aligning plate 2 with the edge-retaining pad 7. The worker then places the cutting machine on the mounting base 5 and aligns the saw blade 31 on the cutting machine with the rear side of the blade-aligning plate 2. There is no need to tighten screws to adjust the position of the mounting base 5 on the chamfering plate 28. The operation is simple, time-saving, and labor-saving. At this time, the width of the edge-retaining space 6 is the width between the saw blade 31 and the side of the chamfering plate 28. The distance between the saw blade 31 and the side of the chamfering plate 28 determines the edge thickness of the cut tile. This allows the worker to precisely control the edge thickness of the tile by controlling the distance of the edge-retaining space 6, thereby ensuring that the cut tile meets the worker's needs.
[0046] Preferably, a locking space 8 is formed between the rear side of the tool setting plate 2 and the inner wall of the other side of the adjusting groove 4. The tool setting seat 1 is provided with a locking device, which can pass through the locking space 8 and abut against the rear side of the tool setting plate 2, thereby locking the tool setting plate 2 and the edge shim 7 into the adjusting groove 4. When the edge shim 7 is placed in the edge space 6, since the locking space 8 is formed between the rear side of the tool setting plate 2 and the inner wall of the other side of the adjusting groove 4, the worker can pass through the tool setting seat. The locking device on 1 passes through the locking space 8 and abuts against the rear side of the blade setting plate 2, so that the front side of the blade setting plate 2 fits against the edge spacer 7. Under the external force of the locking device, the blade setting plate 2 and the edge spacer 7 will be locked in the adjusting groove 4, preventing the blade setting plate 2 and the edge spacer 7 from being unable to move during the process of the saw blade 31 on the cutting machine fitting against the blade setting plate 2, thereby ensuring that the width of the saw blade 31 and the side of the chamfering plate 28 is the thickness of the edge space 6.
[0047] Preferably, a guide rod 9 is fixedly installed in the adjusting groove 4, and the edge-retaining pad 7 is installed in the adjusting groove 4. Each edge-retaining pad 7 has a waist-shaped hole 10. The guide rod 9 is installed in the waist-shaped hole 10. The edge-retaining pad 7 is located on one side of the edge-retaining space 6. After the edge-retaining pad 7 is driven to slide along the guide rod 9, it can enter the edge-retaining space 6 and fit against the tool-setting plate 2. There are four edge-retaining pads 7, with thicknesses of 1 mm, 1 mm, 0.5 mm, and 0.2 mm respectively. Each edge-retaining pad 7 has a long, narrow waist-shaped hole 10. The guide rod 9, fixed inside the adjustment groove 4, is located inside the waist-shaped hole 10, which prevents the edge pad 7 from falling out of the adjustment groove 4 and being lost. The edge pad 7 is located on one side of the edge space 6. When the worker wants to use the edge pad 7, he only needs to manually push the edge pad 7 to slide along the guide rod 9. At this time, the edge pad 7 will enter the edge space 6 and fit against the knife-setting plate 2. This method of controlling the edge pad 7 to enter the edge space 6 is simple. The worker only needs to push the required edge pad 7 to move, which makes it convenient for the worker to control the thickness of the tile edge.
[0048] Preferably, the mounting part 3 has a fixing hole 11 that passes through the adjustment groove 4, the tool setting plate 2 has a sliding hole 12, and the mounting part 3 has a fixing rod 13. The fixing rod 13 passes through the fixing hole 11 and enters the sliding hole 12 to be movably connected to the tool setting plate 2. The tool setting plate 2 can slide back and forth along the fixing rod 13. The fixing rod 13 on the mounting part 3 passes through the fixing hole 11 on the mounting part 3 and enters the sliding hole 12 on the tool setting plate 2 to be movably connected to the tool setting plate 2. The tool setting plate 2 can move along the fixing rod 13 through the sliding hole 12. So when the edge shim 7 enters the edge space 6, the tool setting plate 2 can move smoothly, so that the front side of the tool setting plate 2 can smoothly fit with the edge shim 7. The setting of the fixing rod 13 can prevent one end of the tool setting plate 2 from leaving the adjustment groove 4.
[0049] Preferably, a protective gasket 14 is also provided in the adjusting groove 4. The protective gasket 14 is located between the front side of the blade-setting plate 2 and the inner wall of the adjusting groove 4. The protective gasket 14 has a through hole 15, and the fixing rod 13 is located in the through hole 15. The protective gasket 14 in the adjusting groove 4 is located between the front side of the blade-setting plate 2 and the inner wall of the adjusting groove 4, while the fixing rod 13 is located in the through hole 15 of the protective gasket 14, thereby effectively preventing the protective gasket 14 from detaching from the adjusting groove 4. The thickness of the protective gasket 14 is 1 mm, and the maximum width of the edge space 6 is 2 mm, so that the edge thickness of the tile can reach up to 3 mm. The protective gasket 14 is a Located directly within the edge-retaining space 6, when the worker only wants the edge thickness of the tile bevel corner to be 1 mm, and the edge thickness of the tile bevel corner is basically zero, the worker does not need to push the edge-retaining pad 7 into the edge-retaining space 6. After the worker fixes the blade-setting plate 2 through the locking device, the blade-setting plate 2 directly fits against the protective pad 14. At this time, the width of the edge-retaining space 6 is 1 mm. After the saw blade 31 on the cutting machine completes the blade setting, it ensures that the edge thickness of the cut tile is 1 mm, so that the tile is cut with a chamfer. This allows the worker to choose whether to chamfer or bevel corner cut the tile according to their actual needs, increasing the practicality of this utility model.
[0050] Preferably, the tool setter 1 has a locking hole 16, and the inner wall of the other side of the adjusting groove 4 has a threaded hole 17. The threaded hole 17 corresponds to the locking hole 16. The locking device includes a locking screw 18, the inner end of which passes through the locking hole 16 and enters the threaded hole 17. Driving the locking screw 18 to rotate controls the locking screw 18 to move forward along the threaded hole 17, so that the inner end of the locking screw 18 enters the locking space 8 and abuts against the tool setter plate 2. The upper locking hole 16 of the tool setter 1 corresponds to the threaded hole 17 on the inner wall of the other side of the adjusting groove 4. The locking device is commercially available. The commonly used locking screw 18 has its inner end passing through the locking hole 16 and entering the threaded hole 17. The worker can insert a screwdriver into the locking hole 16 and rotate the screwdriver to drive the locking screw 18 to rotate, thereby causing the locking screw 18 to move back and forth along the threaded hole 17. This allows the inner end of the locking screw 18 to enter the locking space 8 and abut against the rear side of the blade setting plate 2, so that the blade setting plate 2 can be smoothly fixed in the adjusting groove 4. This ensures that the blade setting plate 2 cannot move during the process of the saw blade 31 on the cutting machine being in contact with the blade setting plate 2, thus guaranteeing the width of the saw blade 31 and the side of the chamfering plate 28.
[0051] Preferably, one side of the chamfering plate 28 extends downward to form a tile-fitting portion 29. The knife-setting seat 1 is located below the tile-fitting portion 29. The knife-setting seat 1 is provided with an abutment portion 19, which can abut against the tile-fitting portion 29. The chamfering plate 28 is symmetrically provided with locking grooves 30. The knife-setting seat 1 is symmetrically provided with fixing devices. The fixing devices can be used to fix the knife-setting seat 1 to one side of the chamfering plate 28. The fixing devices correspond to the locking grooves 30 in position, and the fixing devices cover... The tool holder 1 includes a hinged screw 21 and a locking member 22 threadedly connected to the hinged screw 21. The hinged screw 21 is located in a locking groove 30. The locking member 22 has a threaded locking hole 23. The top end of the hinged screw 21 protrudes outside the locking groove 30 and is located in the threaded locking hole 23, threadedly connected to the locking member 22. Driving the locking member 22 to rotate allows it to move downwards along the hinged screw 21 and enter a locking state with the chamfering plate 28. The tool holder 1 has two sets of fixing devices, and the fixing devices are formed by the hinged screw 21. Composed of a locking element 22, the worker only needs to first bring the abutment part 19 on the tool holder 1 into contact with the tile-attached part 29 on one side of the chamfer plate 28. The hinge screw 21 will then enter the locking groove 30, with the tip of the hinge screw 21 protruding outside the locking groove 30. The worker can then rotate the locking element 22 counterclockwise, causing the locking element 22 to move downwards along the tip of the hinge screw 21 and abut against the top surface of the chamfer plate 28, thus locking the locking element 22 and the chamfer plate 28 into a locked state. At this time, the tool holder 1 is fixedly installed at an angle onto the chamfer plate. On one side of 28, when the worker wants to remove the tool setter 1 from the chamfer plate 28, the worker can turn the locking member 22 clockwise, so that the locking member 22 moves upward along the top of the hinge screw 21, so that the locking member 22 and the upper surface of the chamfer plate 28 are released from the locking state. At this time, the tool setter 1 can be easily removed from the chamfer plate 28. This method of fixing and removing the tool setter 1 is simple and convenient for the worker to install the tool setter 1 onto the chamfer plate 28 or remove the tool setter 1 from the chamfer plate 28.
[0052] Preferably, the abutment portion 19 has a snap-fit groove 24, the top of the tile-fitting portion 29 is located in the snap-fit groove 24, the tool setter 1 has symmetrically provided fixing grooves 20, each fixing groove 20 is provided with a connecting rod 25, the bottom end of the hinge screw 21 has a connecting portion 26, the connecting portion 26 has a rotating hole 27, the connecting rod 25 is disposed in the rotating hole 27, and the connecting portion 26 can rotate relative to the connecting rod 25; the connecting portion 26 at the bottom end of the hinge screw 21 has a rotating hole 27, and the hinge screw is rotatably connected to the connecting rod 25 in the fixing groove 20 through the rotating hole 27. The setting of the rotating rod allows the hinge screw 21 to be smoothly installed into the fixing groove 20 and connected to the tool setter 1. When the tool setter 1 is installed on one side of the chamfer plate 28, the tile adhesive part 29 will enter the locking groove 24 and engage with the tool setter 1, thus making the tool setter 1 more stably fixed on the chamfer plate 28. When the worker wants to remove the tool setter 1, the worker can rotate the locking member 22 to release the locking member 22 from the chamfer plate 28. Then the worker can rotate the hinge screw 21 relative to the connecting rod 25, so that the hinge screw 21 disengages from the locking groove 30 on the chamfer plate 28. At this time, the tool setter 1 is lifted and moved downward relative to the tile adhesive part 29, so that the locking groove 24 disengages from the tile adhesive part 29, and the tool setter 1 can be removed from the chamfer plate 28.
[0053] The above embodiments are merely preferred embodiments of the present utility model and are not intended to limit the scope of protection of the present utility model. Therefore, all equivalent changes made to the structure, shape, and principle of the present utility model should be covered within the scope of protection of the present utility model.
Claims
1. A ceramic tile chamfering and cutting device, comprising a chamfering plate (28) and a mounting base (5) disposed on the chamfering plate (28) and used for mounting a cutting machine, wherein the cutting machine is installed on the mounting base (5) at an angle to the chamfering plate (28), and the saw blade on the cutting machine is located on one side of the chamfering plate (28) at an angle to the chamfering plate (28), and the lower half of the saw blade is located below the chamfering plate (28) and forms an angle with the chamfering plate (28), characterized in that: A tool setting seat (1) is installed at an angle on one side of the chamfer plate (28). A tool setting back plate (2) is provided on the tool setting seat (1). The tool setting back plate (2) and the chamfer plate (28) are in an inclined state. The saw blade on the cutting machine can be attached to the front or rear side of the tool setting back plate (2) to determine the installation position of the cutting machine.
2. The ceramic tile chamfering and cutting device according to claim 1, characterized in that: The tool setting seat (1) is provided with a mounting part (3), and the mounting part (3) is provided with an adjustment groove (4). The tool setting back plate (2) is movably installed in the adjustment groove (4). A margin space (6) is formed between the front side of the tool setting back plate (2) and the inner wall of one side of the adjustment groove (4). At least one margin pad (7) is provided on the mounting part (3) or the tool setting seat (1). The margin pad (7) can be placed in the margin space (6). The front side of the tool setting back plate (2) can fit with the margin pad (7), and the rear side of the tool setting back plate (2) can fit with the saw blade.
3. The tile chamfering and cutting device according to claim 2, characterized in that: A locking space (8) is formed between the rear side of the tool setting plate (2) and the inner wall of the other side of the adjustment groove (4). The tool setting seat (1) is provided with a locking device. The locking device can pass through the locking space (8) and abut against the rear side of the tool setting plate (2), thereby locking the tool setting plate (2) and the edge gasket (7) into the adjustment groove (4).
4. A ceramic tile chamfering and cutting device according to claim 2, characterized in that: The adjustment groove (4) is fixedly provided with a guide rod (9), the edge shim (7) is provided in the adjustment groove (4), and the edge shim (7) is provided with a waist-shaped hole (10). The guide rod (9) is provided in the waist-shaped hole (10). The edge shim (7) is located on one side of the edge space (6). After the edge shim (7) is driven to slide along the guide rod (9), the edge shim (7) can enter the edge space (6) and fit against the tool setting plate (2).
5. A ceramic tile chamfering and cutting device according to claim 2, characterized in that: The mounting part (3) is provided with a fixing hole (11) that passes through the adjustment groove (4), the tool setting plate (2) is provided with a sliding hole (12), the mounting part (3) is provided with a fixing rod (13), the fixing rod (13) passes through the fixing hole (11) and enters into the sliding hole (12) to be movably connected to the tool setting plate (2), and the tool setting plate (2) can slide back and forth along the fixing rod (13).
6. A ceramic tile chamfering and cutting device according to claim 5, characterized in that: The adjustment groove (4) is also provided with a protective pad (14), which is located between the front side of the tool setting plate (2) and the inner wall of the adjustment groove (4). The protective pad (14) has a through hole (15), and the fixing rod (13) is located in the through hole (15).
7. A ceramic tile chamfering and cutting device according to claim 3, characterized in that: The tool setter (1) has a locking hole (16), and the inner wall of the adjustment groove (4) on the other side has a threaded hole (17). The threaded hole (17) corresponds to the locking hole (16). The locking device includes a locking screw (18). The inner end of the locking screw (18) passes through the locking hole (16) and enters the threaded hole (17). Driving the locking screw (18) to rotate can control the locking screw (18) to move forward along the threaded hole (17), so that the inner end of the locking screw (18) enters the locking space (8) and abuts against the tool setter plate (2).
8. A ceramic tile chamfering and cutting device according to any one of claims 2-6, characterized in that: One side of the chamfer plate (28) extends downward to form a tile bonding part (29). The knife-setting seat (1) is located below the tile bonding part (29). The knife-setting seat (1) is provided with an abutment part (19), which can abut against the tile bonding part (29). The chamfer plate (28) is symmetrically provided with locking grooves (30). The knife-setting seat (1) is symmetrically provided with fixing devices. The fixing devices can be used to fix the knife-setting seat (1) to one side of the chamfer plate (28). The fixing devices are positioned opposite to the locking grooves (30). The fixing device includes a hinge screw (21) and a locking member (22) threadedly connected to the hinge screw (21). The hinge screw (21) is located in the locking groove (30). The locking member (22) has a threaded locking hole (23). The top end of the hinge screw (21) protrudes outside the locking groove (30) and is located in the threaded locking hole (23) and threadedly connected to the locking member (22). Driving the locking member (22) to rotate can cause the locking member (22) to move downward along the hinge screw (21) and enter the locking state with the chamfer plate (28).
9. A ceramic tile chamfering and cutting device according to claim 8, characterized in that: The abutment part (19) is provided with a snap-fit groove (24), the top of the tile bonding part (29) is located in the snap-fit groove (24), the tool holder (1) is provided with symmetrical fixing grooves (20), each fixing groove (20) is provided with a connecting rod (25), the bottom end of the hinge screw (21) is provided with a connecting part (26), the connecting part (26) is provided with a rotating hole (27), the connecting rod (25) is set in the rotating hole (27), and the connecting part (26) can rotate relative to the connecting rod (25).