Diamond wire gang saw capable of winding wires through single guide wheel row
Through the combination adjustment of the guidance system and the tensioning system, the problem of uneven winding of diamond wires on traditional diamond wire row saws is solved, and efficient and stable diamond wire winding and cutting effects are achieved.
Patent Information
- Application Number
- CN202421611595.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-07-09
AI Technical Summary
Traditional diamond wire saws need to turn continuously when wrapping the wire coil, resulting in poor diamond wire effect and easy to be wound in one position, increasing the risk of disconnection.
The single guide wheel winding structure is adopted, and the position of the tensioning system and the retracting and retracting system is adjusted by combining the guidance system, tensioning system and retracting and retracting and retracting system, ensuring that the diamond wire is wound on the retracting and retracting coil at a reasonable angle and tension to reduce deflection.
It improves the winding quality of diamond wire, reduces the risk of wire breakage, enhances cutting efficiency, and reduces the problem of offset and uneven force of diamond wire during the cutting process.
Smart Images

Figure CN223186738U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a diamond wire saw with a single guide wheel and a winding wire, belonging to the technical field of stone cutting. Background Art
[0002] Diamond wire, short for diamond cutting wire, is made by bonding tiny diamond particles to a cutting wire. It is used to cut hard and brittle materials such as glass, ceramics, silicon, and gemstones. Traditional stone cutting uses saw blades, wire saws, band saws, and other tools with alloy blades. The alloy blades have a certain thickness, resulting in kerfs ranging from 3 to 10 mm when cutting stone. Furthermore, the carbide cutting tools are in rigid contact with the stone during processing, causing significant vibration and easily causing the stone to break during processing. Diamond wire, on the other hand, uses flexible contact with the stone being cut, eliminating instantaneous impact loads. Compared to traditional cutting methods, it offers less vibration and noise. Diamond wire also features a smaller kerf, which reduces stone loss during the cutting process.
[0003] Current diamond wire saws use multiple guide wheels to wind the diamond wire around the payout and takeup reels. This type of structure makes it difficult to adjust the pressure of the diamond wire on the processing rollers. During winding, the diamond wire twists due to the turning motion, causing lateral movement and achieving wire arrangement. The guide wheels and payout and takeup reels are fixed in position, making it easy for the wire to become entangled in one spot on the reel during winding and payout, resulting in poor wire arrangement and an increased risk of wire breakage. Utility Model Content
[0004] The technical problem to be solved by the utility model is to provide a diamond wire saw with a single guide wheel for winding the wire, which solves the problems that the diamond wire needs to be continuously turned when winding the reel and the diamond wire has a poor arrangement effect on the reel when reeling and paying off the wire.
[0005] The technical problem to be solved by the utility model is achieved by adopting the following technical solutions: a diamond wire saw with a single guide wheel winding, comprising
[0006] Platform, pay-off and retractable system, tensioning system, guide system,
[0007] The retractable and retractable system, the tensioning system and the guiding system are arranged above the platform.
[0008] The platform is arranged on the roller frame of the diamond wire gang saw, the guide system is connected to the tensioning system, and the tensioning system is connected to the retractable wire system through the guide system;
[0009] The guide system is capable of adjusting the position of the tensioning system on the platform, and the guide system is capable of adjusting the relative position between the tensioning system and the retractable wire system;
[0010] The wire-reeling and -paying system can collect or release the diamond wire, and the tensioning system can wind the diamond wire into the wire-reeling and -paying system at a set tension.
[0011] Preferably, the guiding system includes a wiring motor, a guide rail, a guide screw, a wire arranging motor, and a wire arranging screw, and the guide rail is provided with the wire retraction and release system and the tensioning system; the wiring motor can adjust the position of the tensioning system on the guide rail through the guide screw; the wire arranging motor adjusts the relative position between the wire retraction and release system and the tensioning system through the wire arranging screw.
[0012] Preferably, the tensioning system includes a tensioning wheel, a tensioning motor, a tensioning carriage, and a tensioning support. The tensioning motor is arranged above the tensioning carriage through the tensioning support, and the tensioning wheel passes through the tensioning support and is connected to the tensioning motor.
[0013] Preferably, the pay-off and take-up system includes a pay-off and take-up reel, a pay-off and take-up motor, a pay-off and take-up support, and a pay-off and take-up drag plate. The pay-off and take-up drag plate is arranged above the guide rail, and the pay-off and take-up support is arranged above the pay-off and take-up drag plate. The pay-off and take-up motor is arranged at one end of the pay-off and take-up support, and the pay-off and take-up reel is arranged at the other end of the pay-off and take-up support.
[0014] Preferably, the cable arrangement motor controls the tensioning system and the pay-off and take-up system to ensure that the projection of the tensioning wheel is always within the pay-off and take-up reel.
[0015] Preferably, there are four guide rails.
[0016] Preferably, the guide rails are divided into two long guide rails and two short guide rails; wherein the tensioning system is provided on the long guide rails, and the retractable wire system is provided on the short guide rails.
[0017] Preferably, the guiding system arranges the lines through precise calculation.
[0018] The beneficial effects of the utility model are:
[0019] (1) According to the present invention, a guide screw is provided at the bottom of the tensioning system to connect with the wiring motor, and a wire arrangement screw is provided at the bottom of the tensioning system to connect with the wire reel. By starting the wiring motor to drive the guide screw provided at the bottom of the tensioning system to rotate, the position of the tensioning system on the platform can be adjusted; by starting the wire arrangement motor to drive the wire arrangement screw to rotate, the position of the wire reel on the platform can be controlled. The diamond wire released or collected at the wire reel can be set in the processing roller of the diamond wire saw at a shorter distance and a reasonable angle, thereby reducing the deflection of the diamond wire when the processing roller is connected to the wire reel.
[0020] (2) Through the present invention, the diamond wire is directly connected to the tensioning wheel. The diamond wire released from or collected by the pay-off reel is directly connected to the pay-off reel. The diamond wire can be set at the processing roller from the pay-off reel at a small deflection or no deflection angle, avoiding the need for the diamond wire to be adjusted by the guide wheel when it is connected from the processing roller to the tensioning wheel, and then rotated and wound onto the pay-off reel again after the position adjustment is completed; or the pay-off reel releases a certain length of diamond wire, sets a certain tension by the tensioning wheel, and then adjusts the position by the guide wheel before setting it to the processing roller. The force in different directions of the diamond wire released from or collected by the pay-off reel to the processing roller is reduced, and the error of the tension provided by the tensioning wheel to the diamond wire is reduced.
[0021] (3) Through the present invention, the position of the retractable wire coil on the platform can be adjusted by the joint action of the guide screw and the wire arrangement screw. When the thickness of the stone to be cut is relatively short, the pre-set diamond wire spacing on the processing roller is relatively large, and some diamond wires are not in contact with the stone to be cut. At this time, cutting the stone will cause the diamond wire to deviate, and some diamond wires will be unevenly stressed. In severe cases, there is a risk of wire breakage. At this time, adjusting the position of the retractable wire coil on the platform can reduce the spacing of the diamond wire set on the processing roller and reduce the deviation of the diamond wire. When the preset spacing of the diamond wire is less than the thickness of the stone to be cut, the position of the retractable wire coil on the platform can be adjusted to increase the cutting spacing within the range that the processing roller can accommodate, thereby increasing the efficiency of stone cutting and improving the output of stone. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is a structural diagram of the present utility model.
[0023] Figure 2 It is a side plan view of the present utility model.
[0024] Figure 3 This is a schematic diagram of the connection between the guide rail, the tensioning carriage, and the retracting and releasing carriage of the present invention.
[0025] Figure 4 This is the operating mode of the cable arrangement of the utility model.
[0026] Figure 5 This is a bottom view of the utility model with the platform removed.
[0027] Figure 6 It is a bottom view of the tensioning carriage of the present invention.
[0028] In the figure: 1-platform, 2-guiding system, 21-wiring motor, 22-guide screw, 23-long guide rail, 24-short guide rail, 25-cable arrangement motor, 26-cable arrangement screw, 3-tensioning system, 31-tensioning wheel, 32-tensioning motor, 33-tensioning support, 34-tensioning drag plate, 4-reeling system, 41-reeling reel, 42-reeling motor, 43-reeling support, 44-reeling drag plate, 5-connecting block. DETAILED DESCRIPTION
[0029] In order to make the technical means, creative features, objectives and effects of the present invention easier to understand, the present invention is further described below in conjunction with specific embodiments.
[0030] Example 1
[0031] like Figure 1-Figure 5 As shown, a diamond wire saw with a single guide wheel winding arrangement includes a platform 1, a wire retracting and releasing system 4, a tensioning system 3, and a guiding system 2.
[0032] In this embodiment, platform 1 is fixed to a roller frame on the machine frame. The roller frame is equipped with two processing rollers. The roller frame on the machine frame can be moved to adjust the distance between the processing rollers. The frame is equipped with two roller frames, and a diamond wire saw with a single guide wheel is installed on the outer side of the roller frame. The diamond wire is wound around the processing rollers at a predetermined spacing, with both ends positioned inside the diamond wire saw with a single guide wheel.
[0033] Multiple reinforcing ribs are installed on one side of the platform 1 and on the bottom of the diamond wire saw platform 1 to ensure that the platform 1 can withstand sufficient pressure during operation. The platform 1 is equipped with a retractable wire system 4, a tensioning system 3, and a guide system 2. The side of the platform 1 is provided with multiple screw holes, and the platform 1 is fixed near one side of the roller frame by bolts. The platform 1 is set between the two processing rollers on the roller frame. When the diamond wire is not set on the processing roller, the diamond wire on one side is completely wound on the retractable wire reel 41, and the retractable wire reel 41 on the other side is connected to one end of the diamond wire and no diamond wire is wound.
[0034] When starting the diamond wire saw, the diamond wire needs to be wound from one end of the reel 41 to the other end of the reel 41, passing through four processing rollers and connected to the processing rollers according to the set spacing and number of winding layers. The diamond wire also needs to maintain a certain tension on the processing roller to ensure the cutting ability of the diamond wire.
[0035] The platform 1 is provided with a retractable wire system 4, a tensioning system 3, and a guide system 2. The guide system 2 is connected to the tensioning system 3, and the tensioning system 3 is connected to the retractable wire system 4. The tensioning system 3 can adjust the position between the tensioning system and the retractable wire system 4.
[0036] The guide system 2 includes a wiring motor 21, a guide screw 22, a guide rail, a wiring motor 25, and a wiring screw 26. There are four guide rails, two long guide rails 23 and two short guide rails 24, which are arranged laterally symmetrically on the platform 1. The short guide rail 24 is close to the processing roller side of the diamond wire saw, and the long guide rail 23 is arranged on the side away from the processing roller of the diamond wire saw. The wiring motor 21 is arranged at the extension of the long guide rail 23, and the wiring motor 21 is arranged on the platform 1 through the wiring motor fixing frame. A guide screw 22 is arranged between the long guide rails 23, one end of the guide screw 22 is connected to the wiring motor 21, and the other end is connected to the tensioning mechanism 3. The wiring screw 26 connects the wire retracting and unwinding system 4 and the tensioning system 3. The wiring motor 25 is arranged at one end of the wiring screw 26.
[0037] The cross section of the guide rail is a rectangle, with the short side of the rectangle being the bottom, which is connected to the platform 1. A boss is provided on the top of the rectangle, and inward grooves are provided on both sides of the boss. The long guide rail 23 and the short guide rail 24 are respectively provided with a tensioning system 3 and a retracting and releasing system 4. A connecting block 5 is provided at the connection between the guide rail and the tensioning system 3 and the retracting and releasing system 4. Figure 3 The top of the connecting block 5 is flat, with screw holes at the four corners. The top of the connecting block 5 is connected to the tensioning system 3 and the retractable wire system 4 by bolts. A downwardly extending groove is provided at the bottom of the connecting block 5, and a boss is provided on the inner side wall of the groove to cooperate with the top of the guide rail, so that the connecting block 5 can slide on the guide rail.
[0038] Reference Figure 1 The wiring motor 21 is arranged on one side of the platform 1 and is connected to the guide screw 22. The wiring motor 25 is provided with a wiring motor 25 at one end close to the wiring motor 21. The long guide rail 23 and the short guide rail 24 are parallel to the wiring screw 25 and the guide screw 22.
[0039] The tensioning system 3 includes a tensioning wheel 31, a tensioning motor 32, a tensioning support 33, and a tensioning carriage 34. Figure 1-Figure 4 and Figure 5-Figure 6. The bottom of the tensioning slide 34 is provided with a guide screw fixing frame for accommodating the guide screw 22, and the surface of the guide screw 22 is provided with a thread. The inside of the guide screw fixing frame is provided with a screw hole that cooperates with the thread on the surface of the guide screw 22. The guide screw 22 can pass through the guide screw fixing frame. And the guide screw 22 is driven to rotate by the wiring motor 21 to control the position of the tensioning slide 34 on the guide screw 22. Connecting blocks 5 are provided at the four corners of the bottom of the tensioning slide 34 through bolts, and the tensioning slide 34 is slidably set on the long guide rail 23 through the connecting blocks 5. The tensioning system 3 can control the position of the tensioning system 3 on the long guide rail 23 by rotating the guide screw 22 through the wiring motor 21.
[0040] A tensioning support 33 is provided at the top of the tensioning carriage 34. In this embodiment, the tensioning support 33 is provided on the side of the tensioning carriage 34 away from the wiring motor 21. A tensioning motor 32 and a tensioning pulley 31 are provided on either side of the tensioning support 33, respectively. The tensioning motor 32 is provided at the end close to the wiring motor 21, and the tensioning pulley 31 is provided at the end away from the wiring motor 21. The tensioning pulley 31 is connected to the tensioning motor 32. The bottom of the tensioning support 33 is fixed to the top of the tensioning carriage 34 by bolts. A triangular protective frame is provided on the side of the tensioning support 33. The protective frame is provided on the side of the tensioning motor 32 and has an observation window, which allows the connection between the tensioning motor 32 and the tensioning pulley 31 to be observed without disassembling the tensioning motor 32.
[0041] The tensioning wheel 31 consists of a tensioning wheel body and a tensioning wheel swing arm. One end of the tensioning wheel swing arm is mounted on the axis of the tensioning motor 32, and the other end of the tensioning wheel swing arm is mounted on the tensioning wheel body, which can rotate on the tensioning wheel swing arm. The tensioning wheel body is connected to the diamond wire, which is tensioned on the processing roller of the roller frame or in the pay-off and take-up system. The tensioning motor 32 controls the tensioning wheel swing arm of the tensioning wheel 31 to adjust the tension of the diamond wire.
[0042] The retractable / rewinding system 4 includes a retractable / rewinding reel 41, a retractable / rewinding motor 42, a retractable / rewinding support 43, and a retractable / rewinding carriage 44. Connecting blocks 5 are located at each corner of the retractable / rewinding carriage 44, which slides over the short guide rail 24 via these blocks. The retractable / rewinding support 43 is located at the top of the retractable / rewinding carriage 44, with the retractable / rewinding reel 41 and the retractable / rewinding motor 42 attached to each end of the support 43.
[0043] In this embodiment, the size of the bottom of the reel support 43 is consistent with the size of the top of the reel drag plate 44. The reel motor 42 and the reel reel 41 are respectively provided at both ends of the reel support 43, wherein the reel motor 42 is close to the wiring motor 21 side, and the reel reel 41 is on the side away from the wiring motor 21. The reel motor 42 can control the rotation of the reel 41. The reel support 43 is rectangular, and openings are provided on the side of the reel support 43, wherein the reel motor 42 and the reel reel 41 are connected to the reel support 43 through the openings, and the openings of the reel motor 42 and the reel reel 41 are circular, and the shapes of the other two openings are rectangular. The reel drag plate 44 is provided with a drag plate 34 in front of the bottom of one end of the reel motor 42.
[0044] Reference Figure 5 The bottom of the retractable and unretractable drag plate 44 is provided with a wire arrangement screw rod 26, and the bottom of the retractable and unretractable drag plate 44 is provided with a wire arrangement screw rod fixing frame 1. The wire arrangement screw rod 26 is fixed to the bottom of the retractable and unretractable drag plate 44 through the wire arrangement screw rod fixing frame 1. The wire arrangement screw rod 26 is provided with a wire arrangement motor 45 on the side close to the wiring motor 21. Figure 6 A corner of the tensioning carriage 34 extends to the front end of the wire-reeling system 4. A second wire-reeling screw fixing bracket, which cooperates with the wire-reeling screw 26, is provided at the bottom of the tensioning carriage 34. A wire-reeling motor 45 is provided at the top of the wire-reeling screw 26. The rods of the wire-reeling screw 26 are connected in the order of the tensioning carriage 34 and the wire-reeling carriage 44. The wire-reeling motor 25 is fixed to the second wire-reeling screw fixing bracket of the tensioning carriage 34. The wire-reeling motor 25 can control the rotation of the wire-reeling screw 46, adjusting the position of the wire-reeling carriage 44 on the wire-reeling screw 46 and the projected position of the tensioning wheel 31 on the wire-reeling reel 41.
[0045] In this embodiment, the travel of the pay-and-reel carriage 44 on the wire arrangement screw 26 is the length of the pay-and-reel reel 41. The projection of the tensioning wheel 31 on the pay-and-reel reel 41 always remains within the length of the reel 41. The tensioning wheel 31 provides the appropriate angle and tension to position the diamond wire within the pay-and-reel reel 41.
[0046] In this embodiment, diamond wires of a predetermined length are placed on the processing rollers of the machine frame at intervals required for stone cutting. The diamond wires are parallel to the stone on the cutting surface, and are connected from the top of one end to the bottom of the right side. The surface of the processing rollers of the diamond wire gang saw is provided with multiple grooves, and the diamond wires are placed in these grooves at the desired cutting intervals, ensuring that the diamond wires do not deviate from the set intervals.
[0047] The operator can control the wiring motor 21 to rotate and adjust the position between the tensioning wheel 31 and the processing roller of the diamond wire saw. When wiring the diamond wire, the staff needs to set the diamond wire on the processing roller at a certain interval. At this time, the tensioning wheel 31 of the diamond wire saw on one side is fixed on one side, and only the reel 41 rotates to release the diamond wire fixed to the reel 41 to the processing roller. The diamond wire saw on the other side is adjusted to the appropriate position by the wiring motor 21, and the tensioning motor 32 sets the diamond wire on the processing roller with a set tension. The diamond wire is set on the processing roller with a certain gap, and the gap between the diamond wires is equal to the thickness of the stone to be cut. When wiring, each time a layer of cutting is added, the diamond wire saw on the other side adjusts its position by the wiring motor 21 and moves to the position where the number of cutting layers is added.
[0048] When the diamond wire is released and collected inside the reel 41, a certain tension needs to be set to ensure the cutting effect of the diamond wire. The tensioning wheel 31 adjusts the appropriate tension to fix the diamond wire on the reel 41 through the swing of the tensioning motor 32.
[0049] The processing roller rotates during cutting. In this embodiment, it is divided into a rotating roller and a driven roller. A drive motor located on one side of the rotating roller provides power for the diamond wire cutting, and the driven roller rotates along with the rotating roller. The rotating roller's rotational speed is the cutting speed during diamond wire cutting. The speed at which the diamond wire leaves or enters the processing roller is approximately equal to the processing roller's rotational speed.
[0050] A control device is located on one side of the diamond wire gang saw or near the construction site. It controls the rotation of the tensioning motor 32, the routing motor 21, the retracting and unreeling motor 42, and the traversing motor 25. In this embodiment, the control device is located on one side of the frame. A thickness sensor is located on the sidewall of the retracting and unreeling reel 41 to detect the number of layers of diamond wire wound around it.
[0051] The guidance system is precisely calculated for wiring:
[0052] Provides a method to calculate the 45 speed of the cable motor, refer to Figure 2 When the diamond wire is wound on the reel 41, the wire arrangement motor 45 starts to adjust the position of the reel 41 to ensure that the diamond wire is wound on the reel 41 in a layer before the next layer. This prevents the diamond wire from being stacked on one side of the reel 41. The length of the diamond wire wound on the reel 41 satisfies the following relationship:
[0053]
[0054] Where n is the number of layers wound on the take-up and pay-off reel 41, x nThe length of the diamond wire required to be wound to the nth layer; the radius of the coil of the use portion of the reel 41 is R, and the length is L; the diameter of the diamond wire is d.
[0055] In order to further determine the length of the diamond wire on the reel 41, the total length of the diamond wire on the reel 41 satisfies the following relationship:
[0056]
[0057] Where θ is the rotation angle of the wire arrangement screw rod 46, and the lead is l; s n It is the total length of the diamond wire wound on the reel 41.
[0058] The cutting rate of the diamond wire is approximately the rate at which the diamond wire is released or collected on the diamond wire gang saw, where v is the rate at which the processing roller of the diamond wire gang saw releases the diamond wire. The instantaneous speed θ of the wire motor 45 at the nth layer is n The following relationship is satisfied:
[0059]
[0060] A diamond wire saw with a single guide roller is secured to the roller frame via screw holes on the side of platform 1. Each roller frame on either side is equipped with a diamond wire saw with a single guide roller. The guide system 2, tensioning system 3, and pay-off and retracting system 4 are all mounted on platform 1. The guide system 2 is connected to the tensioning system 3, and the pay-off and retracting system 4 is connected to the tensioning system 3 via the guide system 2.
[0061] The guide system 2 controls the rotation of the guide screw 22 through the wiring motor 21 to control the position of the tensioning system 3 on the platform 1. The guide system 2 controls the rotation of the wire arrangement screw 26 through the wire arrangement motor 25 to control the relative position between the wire retracting and releasing system 4 and the tensioning system 3.
[0062] A reel 41 loaded with diamond wire is installed on one diamond wire gang saw, while the other reel is empty. Diamond wire is placed between the processing rollers at a fixed gap, wound a predetermined number of times, and then connected to the reel 41 of the other diamond wire gang saw. One diamond wire gang saw releases the wire, while the other collects it. As the processing rollers rotate, the diamonds move to cut the stone material between them into the desired product.
[0063] When all the diamond wire wound inside the reel 41 is released to the inside of the reel 41 on the other side, the moving direction of the diamond wire needs to be reversed. The moving direction of the diamond wire is reversed by the reverse rotation of the reel motor 42 and the processing roller.
[0064] During cutting, the diamond wire is released from the processing roller onto the pay-off reel. The diamond wire remains stationary at the release position of the processing roller, and the processing roller itself rotates to release the diamond wire. By adjusting the wiring motor 21 to control the rotation of the guide screw 22, the tensioning pulley 31 moves to the position where the processing roller releases the diamond wire. This prevents the diamond wire from deflecting at the point where it connects to the tensioning pulley, reducing the force applied to the diamond wire in other directions.
[0065] When the reel 41 releases or collects the diamond wire, it moves. After wrapping one layer around the reel 41, the diamond wire reverses and continues to wrap the next layer. The wire-laying motor 25 controls the rotation of the wire-laying screw 26, adjusting the position of the reel 41 so that the diamond wire does not deflect when it is connected from the reel 41 to the processing roller. The diamond wire does not stack on one side of the reel 41 when it is connected from the processing roller to the reel 41. This ensures that the diamond wire is arranged in an orderly manner on the reel 41, reducing the force applied to the diamond wire in other directions and minimizing the risk of wire breakage.
[0066] The present invention ensures that the wire winding motor 45 has a corresponding rotational speed under different cutting rates, different diameters of the diamond wire, and different winding diameters of the reel 41, thereby ensuring that the diamond wire can be smoothly wound into the reel 41 during winding and preventing the diamond wire from being entangled on one side of the reel 41. The winding quality of the diamond wire is improved, and the risk of the diamond wire breaking during the winding process is reduced.
[0067] When cutting stone with a diamond wire, if the stone is thin, most of the diamond wire is not in contact with the stone. In this case, the diamond wire that is not in contact with the stone needs to be recovered and the guide system 2 on both sides is adjusted to recover the excess diamond wire into the reel 41 to prevent the excess diamond wire from spinning idly and unevenly with other diamond wires, resulting in an offset cutting effect.
[0068] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art will appreciate that the present invention is not limited to the above embodiments and that various modifications and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such modifications and improvements fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.
Claims
1. A diamond wire saw with a single guide wheel winding, comprising Platform, pay-off and retractable system, tensioning system, guide system, The retractable and retractable system, the tensioning system and the guiding system are arranged above the platform. Its characteristics are: The platform is arranged on the roller frame of the diamond wire gang saw, the guide system is connected to the tensioning system, and the tensioning system is connected to the retractable wire system through the guide system; The guide system is capable of adjusting the position of the tensioning system on the platform, and the guide system is capable of adjusting the relative position between the tensioning system and the retractable wire system; The wire-reeling and -paying system can collect or release the diamond wire, and the tensioning system can wind the diamond wire into the wire-reeling and -paying system at a set tension.
2. The diamond wire saw with a single guide wheel winding arrangement according to claim 1, characterized in that: The guiding system includes a wiring motor, a guide rail, a guide screw, a wiring motor, and a wiring screw. The guide rail is provided with the wiring retractable system and the tensioning system; the wiring motor can adjust the position of the tensioning system on the guide rail through the guide screw; the wiring motor adjusts the relative position between the wiring retractable system and the tensioning system through the wiring screw.
3. The diamond wire saw with a single guide wheel as claimed in claim 1, characterized in that: The tensioning system includes a tensioning wheel, a tensioning motor, a tensioning carriage, and a tensioning support. The tensioning motor is arranged above the tensioning carriage through the tensioning support, and the tensioning wheel passes through the tensioning support and is connected to the tensioning motor.
4. The diamond wire saw with a single guide wheel winding arrangement according to claim 2, characterized in that: The pay-off and take-up system includes a pay-off and take-up reel, a pay-off and take-up motor, a pay-off and take-up support, and a pay-off and take-up drag plate. The pay-off and take-up drag plate is arranged above the guide rail, and the pay-off and take-up support is arranged above the pay-off and take-up drag plate. The pay-off and take-up motor is arranged at one end of the pay-off and take-up support, and the pay-off and take-up reel is arranged at the other end of the pay-off and take-up support.
5. A diamond wire saw with a single guide wheel as claimed in any one of claims 3 to 4, characterized in that: The cable arrangement motor controls the tensioning system and the retractable cable system to ensure that the projection of the tensioning wheel is always within the retractable cable reel.
6. The diamond wire saw with a single guide wheel as claimed in claim 2, characterized in that: There are four guide rails.
7. The diamond wire saw with a single guide wheel winding arrangement according to claim 6, characterized in that: The guide rails are divided into two long guide rails and two short guide rails; wherein the tensioning system is provided on the long guide rails, and the retracting and releasing system is provided on the short guide rails.
8. A diamond wire saw with a single guide wheel according to any one of claims 1 to 4, characterized in that: The guiding system arranges the lines through precise calculations.