Flow guide box assembly and wire cutting machine

By introducing a position adjustment component into the flow casing assembly, the problem that the flow casing assembly cannot adapt to the change in the diameter of the main roller is solved, and the distance adjustment between the flow casing assembly and the main roller is realized, which improves the cutting fluid reception effect and cutting efficiency, and reduces production costs.

CN223147456UActive Publication Date: 2025-07-25QINGDAO GAOCE TECH CO LTD
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Patent Information

Application Number
CN202422243889.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-07-25
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

The existing flow guide box assembly is fixedly installed on the cutting machine, which cannot adapt to changes in the main roller diameter, affecting the reception effect of cutting fluid and cutting debris, resulting in poor cutting and reduced efficiency.

Method used

A flow guide box assembly is designed, including a debris box and a flow guide box. The position adjustment component drives its distance adjustment from the main roller of the wire cutting machine, which is compatible with the changes in the diameter of different main rollers, ensuring the effective reception of cutting fluid and debris.

Benefits of technology

The distance adjustment between the flow guide box assembly and the main roller is achieved, and the phenomenon of changing the main roller diameter is avoided, the production cost is reduced, and the cutting liquid reception effect and cutting efficiency are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a flow guide box assembly and a wire cutting machine, and belongs to the technical field of wire cutting. The flow guide box assembly is used for the wire cutting machine and comprises a fragment box, a flow guide box and a position adjusting assembly, the fragment box is provided with a containing cavity with the top open, and the containing cavity is used for receiving cutting liquid generated after the wire cutting machine cuts a to-be-cut piece; the flow guide box is arranged on one side of the bottom of the fragment box and provided with a water inlet communicated with the containing cavity. The position adjusting assembly is used for driving the flow guide box and the fragment box to move together so as to adjust the distance between the flow guide box assembly and a main roller of the wire cutting machine. According to the flow guide box assembly, the distance between the flow guide box assembly and the main roller of the wire cutting machine can be adjusted, and the cutting liquid receiving effect of the flow guide box assembly is ensured.
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Description

Technical Field

[0001] The present application relates to the technical field of wire cutting, and more specifically, to a diversion box assembly and a wire cutting machine. Background Art

[0002] Wire cutting is a processing method in which a cutting wire moves reciprocally at a high speed and moves relative to a workpiece to be cut (such as materials like photovoltaic silicon rods, semiconductors, silicon carbide, sapphires, magnetic materials, etc.), so that the cutting wire cuts the workpiece to be cut.

[0003] During the process of cutting the workpiece to be cut, the dropped slices, fragments or scraps are likely to enter the wire mesh, causing wire jumping or wire breakage, resulting in poor cutting and reducing the cutting efficiency. Therefore, a wire cutting machine is provided with a diversion box assembly for receiving cutting fluid, cutting debris, etc., and the waste liquid entering the diversion box assembly is discharged from the bottom of the diversion box assembly.

[0004] However, the existing diversion box assembly is fixedly installed on the cutting machine, and the position of the diversion box assembly relative to the main roller of the cutting machine is relatively fixed, which cannot meet the requirement of adjusting the position of the diversion box assembly due to the change in the diameter of the main roller, affecting the effect of the diversion box assembly in receiving cutting fluid and cutting debris. Summary of the Utility Model

[0005] The embodiments of the present application provide a diversion box assembly and a wire cutting machine, which can adjust the distance between the diversion box assembly and the main roller of the wire cutting machine to ensure the material receiving effect of the diversion box assembly for receiving cutting fluid.

[0006] In a first aspect, the embodiments of the present application provide a diversion box assembly for a wire cutting machine. The diversion box assembly includes a debris box, a diversion box and a position adjustment component. The debris box has a receiving cavity with an open top for receiving the cutting fluid after the wire cutting machine cuts the workpiece to be cut. The diversion box is arranged on one side of the bottom of the debris box and has a water inlet, and the water inlet is communicated with the receiving cavity. The position adjustment component is used to drive the diversion box and the debris box to move together to adjust the distance between the diversion box assembly and the main roller of the wire cutting machine.

[0007] In this solution, the top of the accommodating cavity of the debris box is open. When the wire cutting machine is working, the top opening of the debris box can receive the cutting fluid when the wire cutting machine cuts the workpiece to be cut, as well as the slices or fragments dropped when the workpiece to be cut is cut. The debris box is connected to the water inlet of the guide box, and the cutting fluid and a part of the debris collected by the debris box are transferred to the guide box, and then guided and discharged from the guide box to a preset position. By setting the guide box on the bottom side of the debris box, the guide box and the debris box are equivalent to a whole. The setting of the position adjustment component can drive the guide box and the debris box to move together, adjust the distance between the guide box component and the main roller of the wire cutting machine, so as to be compatible with the diameter change of different main rollers of the wire cutting machine, so that the guide box component can always maintain a preset distance from the main roller of the wire cutting machine, so as to better receive the cutting fluid when the wire cutting machine is cutting. Compared with the prior art in which the guide box component is fixedly set on the frame of the wire cutting machine, the phenomenon of replacing the guide box component due to the diameter change of the main roller of the wire cutting machine is avoided, thereby reducing the production cost.

[0008] In some embodiments, the position adjustment assembly includes a base, a connecting rod and an adjusting member, the base is used to be connected to the frame of the wire cutting machine, the base has a guide hole extending along a first direction; the connecting rod is passed through the guide hole along the first direction, and one end of the connecting rod is connected to the guide box; the adjusting member is arranged on the base, and the adjusting member is used to drive the connecting rod to move along the first direction to adjust the distance between the guide box assembly and the main roller of the wire cutting machine; the first direction is the distribution direction of the guide box assembly and the main roller.

[0009] In the above technical solution, the base has a guide hole extending in the first direction, the connecting rod is inserted into the guide hole, one end of the connecting rod is connected to the guide box, and the guide hole plays a guiding role, guiding the connecting rod to drive the guide box and the debris box to move along the first direction. Through the setting of the adjustment member, the adjustment member can drive the connecting rod to move along the first direction, so that the connecting rod drives the guide box to move relative to the base along the first direction, and the distance between the guide box assembly and the main roller of the wire cutting machine is adjusted. The structure is simple, and the position of the guide box assembly in the first direction can be adjusted to adapt to the diameter change of the main roller of the wire cutting machine.

[0010] In some embodiments, the adjusting member includes an adjusting screw, which is threadedly engaged with the base; the adjusting screw supports the end of the connecting rod away from the guide box, and the adjusting screw is used to drive the connecting rod to move along the first direction when rotating along its own axial direction.

[0011] In the above technical solution, the adjusting component is adopted as an adjusting screw, and the adjusting screw and the base are threadedly matched. The connecting rod is driven to move along the first direction by rotating the adjusting screw. The structure is simple and the cost is low. The adjusting screw and the base are threadedly matched, and only the rotation amount of the adjusting screw needs to be controlled. The position adjustment accuracy of the guide box assembly is high and the controllability is strong.

[0012] In some embodiments, the position adjustment assembly further includes a locking member, which is in threaded cooperation with the base. One end of the locking member extends into the guiding hole for locking the connecting rod.

[0013] In the above technical solution, through the arrangement of the locking member, when the position of the flow guiding box assembly is adjusted in place, the locking member can lock the connecting rod, so that the position of the flow guiding box assembly is fixed, with higher stability, reducing the risk of the flow guiding box assembly moving due to external forces. When it is necessary to adjust the position of the flow guiding box assembly, loosen the locking member. After the locking function of the connecting rod is lost, the adjusting member can adjust the position of the connecting rod.

[0014] Multiple position adjustment assemblies can cooperate together to support the flow guiding box at multiple points, and the overall stability of the flow guiding box assembly is higher.

[0015] In some embodiments, the debris box includes a bottom wall and four side walls. The four side walls are sequentially connected and arranged around the bottom wall to form a receiving cavity; the four side walls include two first side walls distributed along the length direction of the debris box and two second side walls distributed along the width direction of the debris box.

[0016] In the above technical solution, the debris box is adopted as a rectangular box structure. The two first side walls and the two second side walls are arranged around the bottom wall to form a rectangular box. The receiving cavity can receive the cutting fluid during wire cutting of the wire cutting machine, realizing the function of collecting the cutting fluid.

[0017] In some embodiments, the first side wall is provided with a grasping hole.

[0018] In the above technical solution, through the arrangement of the grasping hole, it is convenient for the staff to grasp the debris box from both sides in the length direction of the debris box, providing a force application point for the staff, so as to realize the removal, separation and installation of the debris box and the flow guiding box.

[0019] In some embodiments, drainage parts are respectively arranged at both ends in the length direction of the debris box. The drainage parts are used to drain the cutting fluid in the receiving cavity to the flow guiding box; the number of the flow guiding boxes is set to two, and the two flow guiding boxes are respectively arranged at both ends in the length direction of the debris box.

[0020] In the above technical solution, by arranging drainage parts at both ends in the length direction of the debris box and corresponding two flow guiding boxes, the cutting fluid in the debris box can be discharged into the two flow guiding boxes at both ends in the length direction of the debris box through the drainage ports at both ends in the length direction of the debris box, completing the discharge of the cutting fluid in the debris box.

[0021] In some embodiments, the liquid discharging part includes a liquid discharging port and a drainage member. The liquid discharging port extends along the width direction of the debris box; the drainage member extends from the bottom wall towards the liquid guiding box along the direction of the liquid discharging port, and at least a part of the drainage member is inserted into the water inlet of the liquid guiding box.

[0022] In the above technical solution, the liquid discharging port extends along the width direction of the debris box. The liquid in the debris box can be discharged through the liquid discharging port arranged along the width direction of the debris box, and is drained into the corresponding liquid guiding box through the drainage member. The drainage member can play a guiding role. The drainage member can block the cutting liquid splashing back due to hitting the side wall of the liquid guiding box, and drain the cutting liquid splashing back and the cutting liquid flowing downward, so as to guide the liquid in the debris box to enter the liquid guiding box more smoothly from the water inlet. Moreover, at least a part of the drainage member is inserted into the water inlet of the liquid guiding box, and the drainage member can also limit the displacement of the debris box in the length direction. And when disassembling the debris box, it is not necessary to disassemble the liquid guiding box at the same time, which is convenient for the picking and installation of the debris box.

[0023] In some embodiments, the liquid discharging port is formed on the bottom wall, the first side wall and the second side wall.

[0024] In the above technical solution, since the liquid discharging port is formed on the bottom wall, the first side wall and the second side wall, the opening range of the liquid discharging port is larger. The liquid in the debris box can be discharged simultaneously from both sides in the length direction and the width direction of the debris box and from the bottom direction of the debris box, increasing the liquid discharging direction of the liquid discharging port, which is conducive to quickly discharging the cutting liquid in the debris box from the liquid discharging port to the liquid guiding box, and correspondingly reducing the accumulated amount of the cutting liquid in the debris box.

[0025] In some embodiments, the debris box and the liquid guiding box are detachably connected.

[0026] In the above technical solution, by detachably connecting the debris box and the liquid guiding box, it is convenient to realize the quick assembly and disassembly of the debris box and the liquid guiding box, and the debris box and the liquid guiding box can be separated according to the actual situation.

[0027] In some embodiments, a clamping member is arranged on the outer side of the first side wall of the debris box, and a clamping portion is correspondingly arranged at the top of the liquid guiding box. The clamping member and the clamping portion are in clamping cooperation to make the debris box and the liquid guiding box detachably connected; the clamping portion includes a clamping groove section and a guiding section. The guiding section is farther away from the liquid guiding box than the clamping groove section, and the guiding section is used to guide the clamping member to be clamped into the clamping groove section.

[0028] In the above technical solution, a clamping portion is correspondingly provided at the top of the diversion box, and a clamping member is provided on the outer side of the first side wall of the debris box. In this way, under the action of its own gravity, the debris box is clamped to the diversion box through the cooperation of the clamping member and the clamping portion, and the diversion box provides the functions of supporting and limiting the debris box. When removing or disassembling the debris box, only the debris box needs to be lifted upward to separate the clamping member from the clamping portion, and the disassembly of the debris box can be completed. The installation and disassembly are convenient and fast, and the structure is simple. Through the setting of the guiding section on the clamping portion, when the debris box is installed on the diversion box, under the guiding action of the guiding section, it is easier for the clamping member of the debris box to be inserted into the clamping groove section of the clamping portion, reducing the installation difficulty of the debris box.

[0029] In some embodiments, along the length direction of the debris box, the diversion box is provided with limiting portions on both sides of the water inlet, and the limiting portions are used to prevent the debris box from moving relative to the diversion box in the length direction of the debris box.

[0030] In the above technical solution, by providing limiting portions on both sides of the water inlet of the diversion box, after the debris box is clamped to the diversion box, the limiting portions can prevent the debris box from moving relative to the diversion box in the length direction of the debris box. After the clamping portion and the clamping member are clamped, on the basis of restricting the displacement of the debris box relative to the diversion box in the width direction of the debris box, relative movement between the debris box and the diversion box cannot occur, ensuring the installation stability of the debris box on the diversion box.

[0031] In some embodiments, the diversion box has an avoidance portion for avoiding the main roller of the wire cutting machine. The number of the position adjustment components is two, and the two position adjustment components are respectively arranged at the bottom of the diversion box and on both sides of the avoidance portion.

[0032] In the above technical solution, by forming an avoidance portion on the diversion box, the avoidance portion can avoid the main roller of the wire cutting machine and will not interfere with the main roller of the wire cutting machine, providing an installation space for the installation of the diversion box assembly on the wire cutting machine. The two position adjustment components are located on both sides of the avoidance portion and can cooperate together to support the diversion box at two points, and the overall stability of the diversion box assembly is higher.

[0033] In some embodiments, the diversion box includes a first box body and a second box body, the first box body and the second box body are arranged opposite to each other to form an avoidance portion; the first box body has a first channel, the second box body has a second channel, the first channel and the second channel are arranged opposite to each other and the first ends of the two are jointly communicated with the water inlet, the end of the first channel is provided with a first outlet, and the end of the second channel is provided with a second outlet.

[0034] In the above technical solution, the cutting fluid collected by the debris box can be simultaneously diverted and drained through the first channel of the first box body and the second channel of the second box body, with high drainage efficiency and reduced probability of the cutting fluid remaining in the debris box.

[0035] In a second aspect, an embodiment of the present application further provides a wire cutting machine, which includes the aforementioned diversion box assembly.

[0036] Other features and advantages of the present application will be described in detail in the subsequent specific implementation section. Description of the Drawings

[0037] To more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of the present application, and thus should not be regarded as limiting the scope. For those of ordinary skill in the art, without creative efforts, other relevant drawings can also be obtained based on these drawings.

[0038] Figure 1 Structural schematic diagram of the diversion box assembly provided for some embodiments of the present application;

[0039] Figure 2 Side view of the diversion box assembly provided for some embodiments of the present application;

[0040] Figure 3 Structural schematic diagram of the debris box in the diversion box assembly provided for some embodiments of the present application;

[0041] Figure 4 Bottom view of the debris box in the diversion box assembly provided for some embodiments of the present application;

[0042] Figure 5 Structural schematic diagram of the diversion box in the diversion box assembly provided for some embodiments of the present application;

[0043] Figure 6 Structural schematic diagram of the diversion box in the diversion box assembly provided for some embodiments of the present application from another angle.

[0044] Icons: 100 - Flow - guiding box assembly; 10 - Debris box; 11 - Accommodating cavity; 12 - Bottom wall; 13 - Side wall; 131 - First side wall; 132 - Second side wall; 133 - Gripping hole; 14 - Drainage part; 141 - Drainage port; 142 - Drainage piece; 15 - Snap - fitting part; 151 - Limiting part; 152 - Supporting part; 20 - Flow - guiding box; 21 - Water inlet; 22 - Snap - fitting part; 221 - Card slot section; 222 - Guide section; 23 - Limiting part; 231 - First limiting plate; 232 - Second limiting plate; 24 - First box body; 241 - First channel; 242 - First outlet; 25 - Second box body; 251 - Second channel; 252 - Second outlet; 26 - Avoidance part; 27 - First flow - guiding box; 28 - Second flow - guiding box; 30 - Position - adjusting assembly; 31 - Base; 32 - Connecting rod; 33 - Adjusting part; 34 - Locking part. Detailed implementation manners

[0045] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. The components of the embodiments of the present application described and illustrated herein generally can be arranged and designed in a variety of different configurations.

[0046] Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the present application claimed, but merely represents selected embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts fall within the scope of protection of the present application.

[0047] It should be noted that like reference numerals and letters denote like items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.

[0048] In the description of the embodiments of the present application, it should be noted that the orientation or positional relationship indicated is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the application is usually placed during use. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of the present application. In addition, the terms "first", "second", "third", etc. are only used for descriptive distinction and cannot be understood as indicating or implying relative importance.

[0049] In the description of the present application, it should also be noted that, unless otherwise clearly specified and defined, the terms "arranged" and "connected" should be understood in a broad sense. For example, they can be fixedly connected, detachably connected, or integrally connected; they can be directly connected, or indirectly connected through an intermediate medium, and can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific situations.

[0050] Embodiment

[0051] An embodiment of the present application provides a diversion box assembly. The diversion box assembly 100 is used for a wire cutting machine. Please refer to Figure 1 and Figure 2 , the diversion box assembly 100 includes a debris box 10, a diversion box 20, and a position adjustment assembly 30. The debris box 10 has a receiving cavity 11 with an open top. The receiving cavity 11 is used to receive the cutting fluid after the wire cutting machine cuts a workpiece to be cut; the diversion box 20 is arranged on one side of the bottom of the debris box 10. The diversion box 20 has a water inlet 21, and the water inlet 21 communicates with the receiving cavity 11; the position adjustment assembly 30 is used to drive the diversion box 20 and the debris box 10 to move together to adjust the distance between the diversion box assembly 100 and the main roller of the wire cutting machine.

[0052] In this solution, the top of the receiving cavity 11 of the debris box 10 is open. When the wire cutting machine is working, the top opening of the debris box 10 can receive the cutting fluid when the wire cutting machine cuts the workpiece to be cut, as well as the slices or debris that fall off when the workpiece to be cut is being cut. Connect the debris box 10 with the water inlet 21 of the diversion box 20. The cutting fluid and a part of the debris collected by the debris box 10 are transferred to the diversion box 20, and then guided out from the diversion box 20 to a preset position. By arranging the diversion box 20 on one side of the bottom of the debris box 10, the diversion box 20 and the debris box 10 are equivalent to a whole. The setting of the position adjustment assembly 30 can drive the diversion box 20 and the debris box 10 to move together to adjust the distance between the diversion box assembly 100 and the main roller of the wire cutting machine to accommodate the diameter changes of different main rollers of the wire cutting machine, so that the diversion box assembly 100 can always maintain a preset distance from the main roller of the wire cutting machine, thereby being able to better receive the cutting fluid during the cutting of the wire cutting machine. Compared with the prior art where the diversion box assembly is fixedly arranged on the frame of the wire cutting machine, the phenomenon of needing to replace the diversion box assembly 100 due to the diameter change of the main roller of the wire cutting machine is avoided, and the production cost is reduced.

[0053] Among them, the workpiece to be cut can be various workpieces. For example, the workpiece to be cut can be a silicon rod.

[0054] The position adjustment assembly 30 can be various adjustment mechanisms, which are specifically determined according to the actual situation. For example, the position adjustment assembly 30 can be an adjustment mechanism such as a cylinder, an electric push rod, a hydraulic cylinder, a lead screw-nut pair mechanism, or a rack and pinion mechanism. When the position adjustment assembly 30 is a cylinder, the cylinder is installed in the cutting chamber of the wire cutting machine, and the driving end of the cylinder is connected to the flow guide box 20. The driving end of the cylinder can drive the flow guide box assembly 100 to move to adjust the distance between the flow guide box assembly 100 and the main roller of the wire cutting machine. When the position adjustment assembly 30 is an electric push rod, the principle is the same. The electric push rod is installed on the frame of the wire cutting machine, and the driving end of the electric push rod is connected to the flow guide box 20. The driving end of the electric push rod can drive the flow guide box assembly 100 to move to adjust the distance between the flow guide box assembly 100 and the main roller of the wire cutting machine.

[0055] In some embodiments, please refer to Figure 2 , the position adjustment assembly 30 includes a base 31, a connecting rod 32, and an adjusting member 33. The base 31 is used to connect with the wire cutting machine, and the base 31 has a guiding hole extending along a first direction; the connecting rod 32 is inserted through the guiding hole along the first direction, and one end of the connecting rod 32 is connected to the flow guide box 20; the adjusting member 33 is arranged on the base 31, and the adjusting member 33 is used to drive the connecting rod 32 to move along the first direction to adjust the distance between the flow guide box assembly 100 and the main roller of the wire cutting machine; the first direction is the distribution direction of the flow guide box assembly 100 and the main roller of the wire cutting machine. The base 31 has a guiding hole extending along the first direction, the connecting rod 32 is inserted into the guiding hole, and one end of the connecting rod 32 is connected to the flow guide box 20. The guiding hole plays a guiding role to guide the connecting rod 32 to drive the flow guide box 20 and the debris box 10 to move along the first direction. Through the arrangement of the adjusting member 33, the adjusting member 33 can drive the connecting rod 32 to move along the first direction, so that the connecting rod 32 drives the flow guide box 20 to move relative to the base 31 along the first direction, realizing the adjustment of the distance between the flow guide box assembly 100 and the main roller of the wire cutting machine. The structure is simple and can realize the position adjustment of the flow guide box assembly 100 in the first direction to adapt to the diameter change of the main roller of the wire cutting machine.

[0056] Among them, the adjusting member 33 can be various manually adjustable adjusting parts. For example, the adjusting part can be an adjusting screw. When the adjusting part is an adjusting screw, the adjusting part can be rotatably installed in the guiding hole of the base 31. The adjusting part has an external thread, and the connecting rod 32 has an internal thread. The connecting rod 32 is in threaded cooperation with the adjusting part. When the adjusting part rotates, the connecting rod 32 moves along the first direction.

[0057] Of course, when the adjusting member is an adjusting screw, it can also be that the adjusting member is in threaded engagement with the threaded hole of the base 31. The threaded hole extends along the first direction and communicates with the guiding hole. By rotating the adjusting member, the adjusting member moves within the guiding hole of the base 31, thereby driving the connecting rod 32 to move along the first direction within the guiding hole.

[0058] In addition, the adjusting member 33 can also be an automatically adjustable adjusting component. For example, the adjusting member 33 can be an electric push rod, a cylinder, or a hydraulic cylinder, etc. The specific type of the adjusting component can be determined according to the actual situation. When the adjusting member 33 is automatically adjustable, a controller and a distance measuring sensor can be installed on the diversion box assembly 100. The distance measuring sensor detects the distance between the debris box 10 and the main roller of the wire cutting machine. When the distance changes, the controller controls the adjusting member 33 to operate, and automatically adjusts the distance between the debris box 10 and the main roller of the wire cutting machine to a preset distance.

[0059] In some embodiments, the adjusting member 33 includes an adjusting screw, and the adjusting screw is in threaded engagement with the base 31; the adjusting screw abuts against one end of the connecting rod 32 away from the diversion box 20, and the adjusting screw is used to drive the connecting rod 32 to move along the first direction when rotating along its own axis direction. By adopting the adjusting screw as the adjusting member, with the threaded engagement between the adjusting screw and the base 31, and the way of driving the connecting rod 32 to move along the first direction by rotating the adjusting screw, the structure is simple, the cost is low, and with the threaded engagement between the adjusting screw and the base 31, only the rotation amount of the adjusting screw needs to be controlled, and the position adjustment accuracy of the diversion box assembly 100 is high and the controllability is strong.

[0060] Optionally, the first direction is the vertical direction, and the diversion box assembly 100 is located below the main roller of the wire cutting machine. That is, when the adjusting member 33 is rotated forward, the adjusting member 33 abuts against the lower end of the connecting rod 32, and the adjusting member 33 can drive the diversion box assembly 100 to approach the main roller of the wire cutting machine. When the adjusting member 33 is rotated in the reverse direction, the adjusting member 33 moves away from the main roller of the wire cutting machine, and the connecting rod 32 can automatically follow the movement of the adjusting member 33 under the gravity of the diversion box assembly 100, and thus also moves away from the main roller of the wire cutting machine.

[0061] In some embodiments, the position adjusting assembly 30 further includes a locking member 34, and the locking member 34 is in threaded engagement with the base 31. One end of the locking member 34 extends into the guiding hole to lock the connecting rod 32. Through the arrangement of the locking member 34, when the position of the diversion box assembly 100 is adjusted in place, the locking member 34 can lock the connecting rod 32, making the position of the diversion box assembly 100 fixed, with higher stability, and reducing the risk of the diversion box assembly 100 moving due to external forces. When the position of the diversion box assembly 100 needs to be adjusted, the locking member 34 is loosened. After the connecting rod 32 loses its locking effect in this way, the adjusting member 33 can adjust the position of the connecting rod 32.

[0062] In some embodiments, please refer to Figure 3 and Figure 4 , the debris box 10 includes a bottom wall 12 and four side walls 13. The four side walls 13 are sequentially connected and arranged around the bottom wall 12 to form a receiving cavity 11; the four side walls 13 include two first side walls 131 distributed along the length direction of the debris box 10 and two second side walls 132 distributed along the width direction of the debris box 10. The debris box 10 is adopted as a rectangular box structure, and the two first side walls 131 and the two second side walls 132 are arranged around the four sides of the bottom wall 12 to form a rectangular box. The receiving cavity 11 can receive the cutting fluid during the cutting of the wire cutting machine, realizing the function of collecting the cutting fluid.

[0063] Of course, in addition to being a rectangular box, the debris box 10 can also have other shapes. For example, the cross-sectional shape of the debris box 10 can also be any shape such as a triangle, a circle or a polygon.

[0064] In some embodiments, please refer to Figure 3 and Figure 4 , the first side wall 131 is provided with a grasping hole 133. Through the setting of the grasping hole 133, it is convenient for the staff to grasp the debris box 10 from both sides in the length direction of the debris box 10, providing a force application point for the staff, so as to realize the detachment and installation of the debris box 10 and the diversion box 20.

[0065] Of course, a handle can also be protrudingly provided on the first side wall 131, which can also provide a force application point for the staff.

[0066] In some embodiments, please refer to Figure 3 and Figure 4 , drainage parts 14 are respectively arranged at both ends in the length direction of the debris box 10. The drainage parts 14 are used to drain the cutting fluid in the receiving cavity 11 to the diversion box 20; the number of the diversion boxes 20 is set to two, and the two diversion boxes 20 are respectively arranged at both ends in the length direction of the debris box 10. By arranging the drainage parts 14 at both ends in the length direction of the debris box 10 and corresponding to two diversion boxes 20, the cutting fluid in the debris box 10 can be discharged into the two diversion boxes 20 at both ends in the length direction of the debris box 10 through the drainage ports 141 at both ends in the length direction of the debris box 10, completing the discharge of the cutting fluid in the debris box 10.

[0067] Among them, the two diversion boxes 20 are respectively a first diversion box 27 and a second diversion box 28, and the first diversion box 27 and the second diversion box 28 are respectively arranged at both ends in the length direction of the debris box 10.

[0068] In some embodiments, the liquid drainage part 14 includes a liquid drainage port 141 and a drainage member 142. The liquid drainage port 141 is arranged to extend along the width direction of the debris box 10; the drainage member 142 is formed by extending from the bottom wall 12 along the direction of the liquid drainage port 141 towards the diversion box 20, and at least part of the drainage member 142 is inserted into the water inlet 21 of the diversion box 20. Since the liquid drainage port 141 is arranged to extend along the width direction of the debris box 10, the liquid in the debris box 10 can be discharged through the liquid drainage port 141 arranged along the width direction of the debris box 10, and is drained into the corresponding diversion box 20 through the drainage member 142. The drainage member 142 can play a guiding role. The drainage member 142 can block the cutting fluid that splashes back due to hitting the side wall 13 of the diversion box 20, and drain the splashed-back cutting fluid and the downward-draining cutting fluid, so as to guide the liquid in the debris box 10 to enter the diversion box 20 more smoothly from the water inlet 21. Moreover, since at least part of the drainage member 142 is inserted into the water inlet 21 of the diversion box 20, the drainage member 142 can also limit the displacement of the debris box 10 in the length direction, and when the debris box 10 is disassembled, it is not necessary to disassemble the diversion box 20 at the same time, which is convenient for the removal and installation of the debris box 10.

[0069] Among them, the liquid drainage port 141 can be formed on the bottom wall 12 of the debris box 10, or on the first side wall 131 of the debris box 10, or on the second side wall 132. Of course, the liquid drainage port 141 can also be formed on the bottom wall 12, the first side wall 131 and the second side wall 132 of the debris box 10.

[0070] In some embodiments, please refer to Figure 3 and Figure 4 , the liquid drainage port 141 is formed on the bottom wall 12, the first side wall 131 and the second side wall 132. By forming the liquid drainage port 141 on the bottom wall 12, the first side wall 131 and the second side wall 132, the opening range of the liquid drainage port 141 is larger, and the liquid in the debris box 10 can be discharged simultaneously from both sides in the length direction and the width direction of the debris box 10 and from the bottom direction of the debris box 10, increasing the liquid drainage direction of the liquid drainage port 141, which is beneficial to quickly discharging the cutting fluid in the debris box 10 from the liquid drainage port 141 to the diversion box 20, and correspondingly reducing the accumulated amount of cutting fluid in the debris box 10.

[0071] Among them, the shape of the water outlet of the debris box 10 is adapted to the shape of the water inlet 21 of the diversion box 20, and the water inlet 21 of the diversion box 20 covers the liquid drainage port 141 of the debris box 10, reducing the risk of liquid leakage.

[0072] In some embodiments, the debris box 10 and the diversion box 20 are detachably connected. By detachably connecting the debris box 10 and the diversion box 20, it is convenient to realize the quick assembly and disassembly of the debris box 10 and the diversion box 20, and the debris box 10 and the diversion box 20 can be separated according to the actual situation.

[0073] Among them, the connection method between the debris box 10 and the diversion box 20 can be various. For example, the connection between the debris box 10 and the diversion box 20 can be a threaded connection, a snap connection, a pin connection, or an interference connection, etc., which is specifically determined according to the actual situation.

[0074] In some embodiments, please refer to Figure 3 and Figure 4 , a snap connector 15 is provided on the outer side of the first side wall 131 of the debris box 10, and a snap portion 22 is correspondingly provided at the top of the diversion box 20. The snap connector 15 and the snap portion 22 are in snap fit to detachably connect the debris box 10 and the diversion box 20. By correspondingly providing the snap portion 22 at the top of the diversion box 20 and the snap connector 15 on the outer side of the first side wall 131 of the debris box 10, under the action of its own gravity, the debris box 10 is snap-fitted with the snap portion 22 through the snap connector 15, so that the debris box 10 is clamped on the diversion box 20, and the diversion box 20 provides the functions of supporting and limiting the debris box 10. When removing or disassembling the debris box 10, only need to lift the debris box 10 upward to separate the snap connector 15 from the snap portion 22, and then the disassembly of the debris box 10 can be completed. The installation and disassembly are convenient and fast, and the structure is simple.

[0075] In some embodiments, please refer to Figure 5 and Figure 6 , the snap portion 22 includes a slot section 221 and a guiding section 222. The guiding section 222 is farther away from the diversion box 20 than the slot section 221, and the guiding section 222 is used to guide the snap connector 15 to snap into the slot section 221. Through the setting of the guiding section 222 on the snap portion 22, when installing the debris box 10 onto the diversion box 20, under the guiding action of the guiding section 222, it is easier for the snap connector 15 of the debris box 10 to snap into the slot section 221 of the snap portion 22, reducing the installation difficulty of the debris box 10.

[0076] Among them, the slot section 221 is a slot, and the slot section 221 is in snap fit with the snap portion 22. The guiding section 222 is connected to the slot section 221, and the distance between the two side walls 13 of the guiding section 222 gradually increases from the slot section 221 to the direction away from the slot section 221, that is, the opening of the guiding section 222 is a V-shaped opening.

[0077] In some embodiments, please refer to Figure 3 and Figure 4, the snap - on part 15 includes a limiting part 151 and a supporting part 152. The limiting part 151 is connected to the supporting part 152 and is distributed in a T - shape. The limiting part 151 is used to be clamped in the clamping groove section 221, and the supporting part 152 is used to be hung on the side of the guiding section 222 away from the clamping groove section 221. By the snap - on part 22 including the limiting part 151 and the supporting part 152, after the limiting part 151 is clamped in the clamping groove section 221 of the snap - on part 22, the supporting part 152 on the snap - on part 15 can be hung on one side of the top of the snap - on part 22, so that the debris box 10 and the diversion box 20 cannot move relative to each other in the width direction of the debris box 10.

[0078] In some embodiments, please refer to Figure 5 and Figure 6 , along the length direction of the debris box 10, the diversion box 20 is provided with limiting parts 23 on both sides of the water inlet 21. The limiting parts 23 are used to prevent the debris box 10 from moving relative to the diversion box 20 in the length direction of the debris box 10. By providing the limiting parts 23 on both sides of the water inlet 21 of the diversion box 20, after the debris box 10 is clamped on the diversion box 20, the limiting parts 23 can prevent the debris box 10 from moving relative to the diversion box 20 in the length direction of the debris box 10. After the snap - on part 22 and the snap - on part 15 are snapped together, on the basis of being able to limit the displacement of the debris box 10 relative to the diversion box 20 in the width direction of the debris box 10, it can prevent the debris box 10 and the diversion box 20 from moving relative to each other, ensuring the installation stability of the debris box 10 on the diversion box 20.

[0079] Among them, the limiting part 23 includes a first limiting plate 231 and a second limiting plate 232. The first limiting plate 231 and the second limiting part 23 are respectively located on both sides of the water inlet 21 of the diversion box 20 along the length direction of the debris box 10. In this way, the first limiting plate 231 and the second limiting plate 232 jointly define a space for the debris box 10 to be inserted.

[0080] Specifically, the first limiting plate 231 is located outside the first side wall 131 of the debris box 10, and the first limiting plate 231 is in limiting cooperation with the first side wall 131 of the debris box 10. The second limiting plate 232 is located inside the drainage part 142, and the second limiting plate 232 is in contact with and in limiting cooperation with the drainage part 142.

[0081] Certainly, the sides of the first limiting plate 231 and the second limiting plate 232 away from the diversion box 20 can be in a flared - mouth shape to increase the opening size formed by the first limiting plate 231 and the second limiting plate 232, so as to facilitate guiding the debris box 10 to be inserted between the first limiting plate 231 and the second limiting plate 232.

[0082] In some embodiments, please refer to Figure 5 and Figure 6, the diversion box 20 has an avoidance portion 26 for avoiding the main roller of the wire cutting machine. The number of the position adjustment assemblies 30 is two, and the two position adjustment assemblies 30 are respectively arranged at the bottom of the diversion box 20 and on both sides of the avoidance portion 26. By forming the avoidance portion 26 on the diversion box 20, the avoidance portion 26 can avoid the main roller of the wire cutting machine and will not interfere with the main roller of the wire cutting machine, providing an installation space for installing the diversion box assembly 100 on the wire cutting machine. The two position adjustment assemblies 30 are located on both sides of the avoidance portion 26 and can cooperate together to support the diversion box 20 at two points, so that the overall stability of the diversion box assembly 100 is higher.

[0083] In some embodiments, the diversion box 20 includes a first box body 24 and a second box body 25 which are oppositely arranged to form the avoidance portion 26. The first box body 24 has a first channel 241, and the second box body 25 has a second channel 251. The first channel 241 and the second channel 251 are oppositely arranged and the first ends of the two are commonly communicated with the water inlet 21. The end of the first channel 241 is provided with a first outlet 242, and the end of the second channel 251 is provided with a second outlet 252. The cutting fluid collected by the debris box 10 can be diverted and drained simultaneously through the first channel 241 of the first box body 24 and the second channel 251 of the second box body 25, with high drainage efficiency and reducing the probability of the cutting fluid staying in the debris box 10.

[0084] The embodiment of the present application also provides a wire cutting machine, which includes the diversion box assembly 100 of the above embodiment.

[0085] It should be noted that, without conflict, the features in the embodiments of the present application can be combined with each other.

[0086] The above are only the preferred embodiments of the present application and are not used to limit the present application. For those skilled in the art, the present application can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A diversion box assembly for a wire cutting machine, characterized in that, Comprising: A debris box having an accommodating cavity with an open top, and the accommodating cavity is used to receive the cutting fluid after the wire cutting machine cuts a workpiece to be cut; A diversion box provided on one side of the bottom of the debris box, the diversion box having a water inlet, and the water inlet communicates with the accommodating cavity; A position adjustment assembly for driving the diversion box and the debris box to move together to adjust the distance between the diversion box assembly and the main roller of the wire cutting machine.

2. The diversion box assembly according to claim 1, wherein The position adjustment assembly includes: A base for connecting with the frame of the wire cutting machine, and the base has a guiding hole extending along a first direction; A connecting rod passing through the guiding hole along the first direction, and one end of the connecting rod is connected to the diversion box; An adjusting member provided on the base, and the adjusting member is used to drive the connecting rod to move along the first direction to adjust the distance between the diversion box assembly and the main roller of the wire cutting machine; the first direction is the distribution direction of the diversion box assembly and the main roller.

3. The flow guiding box assembly according to claim 2, wherein The adjusting member includes an adjusting screw threadedly engaged with the base; the adjusting screw abuts against the end of the connecting rod away from the diversion box, and the adjusting screw is used to drive the connecting rod to move along the first direction when rotating along its own axis direction.

4. The flow guiding box assembly according to claim 2, characterized in that, The position adjustment assembly further includes: A locking member threadedly engaged with the base, and one end of the locking member extends into the guiding hole to lock the connecting rod.

5. The flow guiding box assembly according to claim 1, wherein The debris box includes a bottom wall and four side walls, and the four side walls are sequentially connected and surrounded around the bottom wall to form the accommodating cavity; the four side walls include two first side walls distributed along the length direction of the debris box and two second side walls distributed along the width direction of the debris box.

6. The flow guiding box assembly according to claim 5, wherein, The first side wall is provided with a grasping hole.

7. The flow guiding box assembly according to claim 5, characterized in that, Drainage parts are respectively arranged at both ends of the debris box in the length direction, and the drainage parts are used to drain the cutting fluid in the accommodating cavity to the diversion box; The number of the diversion boxes is set to two, and the two diversion boxes are respectively arranged corresponding to both ends of the debris box in the length direction.

8. The flow guiding box assembly according to claim 7, wherein The drainage part includes: A drainage port extending along the width direction of the debris box; A drainage member formed by the bottom wall extending along the drainage port towards the direction of the diversion box, and at least part of the drainage member is inserted into the water inlet of the diversion box.

9. The flow guiding box assembly according to claim 8, wherein, The drainage port is formed on the bottom wall, the first side wall and the second side wall.

10. The flow guiding box assembly according to claim 5, wherein The debris box and the diversion box are detachably connected.

11. The flow guiding box assembly according to claim 10, wherein A clamping member is arranged on the outer side of the first side wall of the debris box, and a clamping part is correspondingly arranged at the top of the diversion box. The clamping member and the clamping part are in clamping cooperation to make the debris box and the diversion box detachably connected; The clamping part includes a clamping groove section and a guiding section, and the guiding section is farther away from the diversion box than the clamping groove section, and the guiding section is used to guide the clamping member to be clamped into the clamping groove section.

12. The flow guiding box assembly according to claim 10, characterized in that, Along the length direction of the debris box, the diversion box is provided with limiting parts on both sides of the water inlet, and the limiting parts are used to prevent the debris box from moving relative to the diversion box in the length direction of the debris box.

13. The diversion box assembly according to claim 1, characterized in that, The diversion box has an avoidance part for avoiding the main roller of the wire cutting machine; the number of the position adjustment components is two, and the two position adjustment components are respectively arranged at the bottom of the diversion box and on both sides of the avoidance part.

14. The diversion box assembly according to claim 13, wherein The diversion box includes a first box body and a second box body, and the first box body and the second box body are arranged opposite to each other to form the avoidance part. The first box body has a first channel, the second box body has a second channel, the first channel and the second channel are arranged opposite to each other and the first ends of the two are jointly communicated with the water inlet, a first outlet is arranged at the end of the first channel, and a second outlet is arranged at the end of the second channel.

15. A wire cutting machine, characterized in that, It includes the diversion box assembly according to any one of claims 1-14.