Cutting fluid spraying device and wire cutting machine

CN224726173UActive Publication Date: 2026-09-08ZHEJIANG JINGSHENG MECHANICAL & ELECTRICAL CO LTD
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Patent Information

Application Number
CN202521658413.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-05
Publication Date
2026-09-08
Estimated Expiration
2035-08-05

AI Technical Summary

Technical Problem

[0006]本申请的目的是针对现有技术中存在的上述问题,提出了一种切割液喷淋装置及线切机,解决了现有技术切割液难以准确落至晶棒和线网上的问题,提高了切割液喷淋的落点位置精度

Benefits of technology

[0019]This application improves the accuracy of the cutting fluid spray's landing point by setting at least two sets of adjustment components to adjust the installation position at both ends of the cutting fluid tank. This changes the position and angle of the guide plate. Each set of adjustment components includes a first adjustment element and a second adjustment element, which are detachably connected and can be adjusted relative to each other. The adjustment can occur in at least two directions, such as horizontal and vertical, thereby increasing the range of motion of the cutting fluid tank.

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Abstract

The application provides a cutting liquid spraying device and a wire cutting machine, and belongs to the technical field of crystal bar processing. The application solves the problem that the cutting liquid in the prior art cannot accurately fall on the crystal bar and the wire net. The application comprises a cutting liquid tank, a flow guide plate, and an adjusting assembly. The flow guide plate is arranged on one side of the cutting liquid tank in the width direction, and is arranged to be inclined relative to the horizontal plane to guide the cutting liquid overflowing in the cutting liquid tank. The adjusting assembly is located at the end of the cutting liquid tank in the length direction. The adjusting assembly comprises a first adjusting member and a second adjusting member. The relative position of the second adjusting member and the first adjusting member is adjustable. At least two adjusting assemblies are arranged to adjust the installation position at both ends of the cutting liquid tank, so as to change the position and angle of the flow guide plate. The output falling point of the cutting liquid is also changed accordingly, so as to improve the falling point position accuracy of the cutting liquid spraying.
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Description

Technical Field

[0001] This application belongs to the field of crystal rod processing technology, specifically, it relates to a cutting fluid spraying device and a wire cutting machine. Background Technology

[0002] Wire cutting machines are commonly used for cutting many materials. Among them, multi-wire cutting machines are often used for cutting materials such as silicon, sapphire, and silicon carbide. Their working principle mainly involves the main roller driving the cutting wire to move at high speed, causing friction against the material to achieve cutting.

[0003] The wire cutting machine releases a lot of heat during the wire cutting process. As the crystal rod is cut to different depths, the heat generated by the cutting is also variable. The variable heat causes the crystal rod to undergo variable deformation. Finally, the resulting sheet after cooling will have different morphologies. Therefore, it is necessary to cool down the crystal rod and the wire mesh.

[0004] However, because the position of the existing cutting fluid spray device in the wire cutting machine is fixed, the location where the cutting fluid falls onto the wire mesh is basically fixed. When the flow rate of the cutting fluid changes, it is difficult for the cutting fluid to fall accurately onto the crystal rod and the wire mesh, resulting in a reduction in cooling effect.

[0005] Based on the above, the technical problem to be solved by this application is: how to improve the accuracy of the landing point of the cutting fluid spray. Utility Model Content

[0006] The purpose of this application is to address the aforementioned problems in the prior art by proposing a cutting fluid spraying device and a wire cutting machine, which solves the problem that the cutting fluid is difficult to accurately fall onto the crystal rod and wire mesh in the prior art, and improves the accuracy of the landing point of the cutting fluid spray.

[0007] The objective of this application can be achieved through the following technical solution: a cutting fluid spraying device and a wire cutting machine, comprising: a cutting fluid tank; a guide plate, the guide plate being disposed on one side of the width direction of the cutting fluid tank, and the guide plate being inclined relative to the horizontal plane to guide the cutting fluid overflowing from the cutting fluid tank; and an adjusting component, the adjusting component being located at the end of the length direction of the cutting fluid tank, the adjusting component comprising: a first adjusting member, the first adjusting member being disposed at one end of the length direction of the cutting fluid tank; a second adjusting member, the second adjusting member being connected to the vertical direction of the first adjusting member, and the relative position of the second adjusting member and the first adjusting member being adjustable, one of the first adjusting member and the second adjusting member being used to connect to the cutting fluid tank, and the other being used to connect to the wire cutting machine. It is understood that the cutting fluid tank is used to contain the cutting fluid, which is generally a slurry. The guide plate is used to guide the cutting fluid overflowing from the cutting fluid tank out. The guide plate is inclined, and the length of the guide plate and the cutting fluid tank are basically the same, so that the cutting fluid is output to the wire mesh and crystal rod in a water curtain shape. While a single adjustment assembly can adjust the position of the cutting fluid tank, a more preferable solution is to install an adjustment assembly at each end along the length of the cutting fluid tank. This allows for adjustment of the installation position at each end, thereby changing the position and angle of the guide plate and consequently altering the output landing point of the cutting fluid, thus improving the accuracy of the cutting fluid spray's landing point. Each adjustment assembly includes a first adjustment component and a second adjustment component, which are detachably connected and adjustable relative to each other. The relative position can be adjusted in at least two directions, such as horizontal and vertical, thereby increasing the range of motion of the cutting fluid tank.

[0008] In the aforementioned cutting fluid spraying device, the first adjusting member and the second adjusting member can be raised and lowered and / or rotated and / or translated relative to each other to adjust their relative positions. It is understood that by raising, rotating, or translating one of the first and second adjusting members, the cutting fluid tank can be moved, thereby changing the spray point of the cutting fluid.

[0009] In the above-mentioned cutting fluid spraying device, the first adjusting component includes: a first horizontal plate, which is connected to the second adjusting component. The first horizontal plate has at least two first lifting screws along its length direction. The at least two first lifting screws pass through the first horizontal plate in the vertical direction and are threadedly connected to the first horizontal plate. The bottom end of the first lifting screw in the vertical direction is used to abut against the second adjusting component; a first vertical plate, which is perpendicular to and connected to the first horizontal plate. The first vertical plate has at least two second lifting screws and at least two first oblong holes. The positions of each second lifting screw and the first oblong hole correspond one-to-one. The second lifting screw passes through the first oblong hole and is threadedly connected to the second adjusting component. The positions of the at least two second lifting screws can be adjusted relative to each other along the hole wall of the first oblong hole, so that the positions of the first vertical plate and the second adjusting component can be adjusted relative to each other and / or rotated. Understandably, the first lifting screw can rotate and rise to adjust the vertical distance between itself and the second adjusting member. The second lifting screw changes position synchronously with the first lifting screw, and is connected to the second adjusting member, ultimately achieving vertical height adjustment of the first adjusting member relative to the second adjusting member, while maintaining a connection between the two. For example, the first horizontal plate of the first adjusting member is connected to the first vertical plate, and the overall cross-section can be "L"-shaped or approximately "L"-shaped.

[0010] In the aforementioned cutting fluid spraying device, the second adjusting component includes a first translation plate, which is parallel to the first horizontal plate. The first translation plate has a first translation screw and a second oblong hole. The first translation screw passes through the second oblong hole and is used to connect to the wire cutting machine. The position of the first translation screw can be adjusted relative to the wall of the second oblong hole, allowing for relative translation adjustment between the first translation plate and the wire cutting machine. A first lifting plate is also included, perpendicular to and connected to the first translation plate. The first lifting plate is connected to the first vertical plate via the second lifting screw. It is understood that the first translation screw can move along the wall of the second oblong hole and then be rotated and locked in place, thereby achieving relative position adjustment between the second adjusting component and the first adjusting component in the horizontal direction.

[0011] In the aforementioned cutting fluid spraying device, as another embodiment, the second adjusting component includes: a second horizontal plate connected below the first adjusting component, the second horizontal plate having at least two third lifting screws, each of the at least two third lifting screws penetrating the second horizontal plate vertically and threadedly connected to it, the bottom end of each third lifting screw in the vertical direction for contacting the wire cutting machine; and a second vertical plate perpendicular to and connected to the second horizontal plate, the second vertical plate having at least two fourth lifting screws and at least two third oblong holes, the positions of each fourth lifting screw and the third oblong hole corresponding one-to-one, the fourth lifting screws passing through the third oblong holes for connection to the wire cutting machine, and the positions of at least two fourth lifting screws being adjustable relative to each other along the wall of the third oblong holes, so as to allow the relative lifting and / or rotation adjustment of the position of the second vertical plate and the wire cutting machine. Understandably, the third lifting screw can rotate and rise to adjust the vertical distance between it and the wire cutting machine, while the fourth lifting screw changes position synchronously with the third lifting screw. The fourth lifting screw is connected to the wire cutting machine, ultimately achieving vertical height adjustment of the second adjusting component relative to the wire cutting machine, while maintaining a connection between the two. For example, the second horizontal plate of the second adjusting component is connected to the second vertical plate, and the overall cross-section can be "L"-shaped or approximately "L"-shaped.

[0012] In the aforementioned cutting fluid spraying device, the first adjusting component includes a second translation plate, which is parallel to the second horizontal plate. The second translation plate has a second translation screw and a fourth oblong hole. The second translation screw passes through the fourth oblong hole and is used to connect with the second horizontal plate. The position of the second translation screw can be adjusted relative to the wall of the fourth oblong hole, allowing for relative translational adjustment of the positions of the second translation plate and the second adjusting component. A second lifting plate is also included, perpendicular to and connected to the second translation plate. The second lifting plate is connected to the second vertical plate via the fourth lifting screw. It is understood that the second translation screw can move along the wall of the fourth oblong hole and then be rotated and locked in place, thereby achieving relative position adjustment of the first and second adjusting components in the horizontal direction.

[0013] In the aforementioned cutting fluid spraying device, the cutting fluid tank includes: a first chamber, which is connected to the guide plate; and a second chamber, which is spaced apart from the first chamber, with an outlet at the bottom for discharging fluid. It is understood that by dividing the cutting fluid tank into a first chamber and a second chamber, for example, the first chamber is connected to a first inlet pipe through which cutting fluid is input, and the second chamber is connected to a second inlet pipe through which cutting fluid is input. The cutting fluid in the first chamber can flow to the guide plate and ultimately spray onto the crystal rod and the wire mesh of the cutting crystal rod, while the cutting fluid in the second chamber can flow onto the main roller of the wire cutting machine, improving the cooling effect of each area.

[0014] In the aforementioned cutting fluid spraying device, a partition plate is provided between the first chamber and the second chamber. A first baffle plate is provided on the partition plate, and a first overflow port is formed at the top of the first baffle plate. It can be understood that by setting the first baffle plate, the cutting fluid can be prevented from flowing out too quickly, and the overflow port formed by the baffle plate enables overflow, thereby improving the uniformity of the cutting fluid.

[0015] In the aforementioned cutting fluid spraying device, a second baffle plate is provided between the first baffle plate and the guide plate. The second baffle plate is lower than the first baffle plate. A cover plate is also provided inside the cutting fluid tank. The cover plate is at least partially located above the first overflow port and at least partially located between the first baffle plate and the second baffle plate. It can be understood that by providing the second baffle plate, the cutting fluid in the cutting fluid tank can overflow secondaryly, further improving the uniformity of the cutting fluid.

[0016] In the aforementioned cutting fluid spraying device, a third chamber is further provided within the cutting fluid tank. This third chamber is located between the partition plate and the guide plate, and a slide valve is installed at the bottom of the third chamber. It is understood that by installing the slide valve at the bottom of the third chamber, excess cutting fluid can be discharged, preventing excessive sand powder concentration in the cutting fluid from affecting the cutting quality during the next processing cycle.

[0017] Another object of this application is to provide a wire cutting machine, including the cutting fluid spraying device as described above.

[0018] Compared with the prior art, this application has the following beneficial effects:

[0019] This application improves the accuracy of the cutting fluid spray's landing point by setting at least two sets of adjustment components to adjust the installation position at both ends of the cutting fluid tank. This changes the position and angle of the guide plate. Each set of adjustment components includes a first adjustment element and a second adjustment element, which are detachably connected and can be adjusted relative to each other. The adjustment can occur in at least two directions, such as horizontal and vertical, thereby increasing the range of motion of the cutting fluid tank. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of the cutting fluid spraying device of this application;

[0021] Figure 2 yes Figure 1 Enlarged structural diagram of region A in the middle;

[0022] Figure 3 yes Figure 2 A schematic diagram of the structure shown from another perspective after some parts have been hidden.

[0023] Figure 4 yes Figure 1 A magnified structural diagram of region B in the middle;

[0024] Figure 5 yes Figure 4 A schematic diagram of the structure shown from another perspective after some parts have been hidden.

[0025] Figure 6 This is a schematic cross-sectional view of the cutting fluid spraying device of this application. Figure 1 ;

[0026] Figure 7 This is a schematic cross-sectional view of the cutting fluid spraying device of this application. Figure 2 ;

[0027] Figure 8 This is a schematic diagram of the overall structure of the cutting fluid spraying device of this application from another perspective.

[0028] In the diagram, 100 is the cutting fluid tank; 110 is the first chamber; 111 is the first inlet pipe; 120 is the second chamber; 121 is the outlet; 122 is the second inlet pipe; 130 is the partition plate; 140 is the first baffle plate; 141 is the first overflow port; 150 is the second baffle plate; 160 is the cover plate; 170 is the third chamber; 180 is the slide valve; 200 is the guide plate; 300 is the adjusting assembly; 310 is the first adjusting component; 311 is the first horizontal plate; 3111 is the first lifting screw; 3112 is the first bolt; 312 is the first vertical... Plate; 3121, Second lifting screw; 3122, First oblong hole; 313, Second translation plate; 3131, Second translation screw; 3132, Fourth oblong hole; 314, Second lifting plate; 320, Second adjusting component; 321, First translation plate; 3211, First translation screw; 3212, Second oblong hole; 322, Second horizontal plate; 3221, Third lifting screw; 3222, Second bolt; 323, Second vertical plate; 3231, Fourth lifting screw; 3232, Third oblong hole; 324, First lifting plate. Detailed Implementation

[0029] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.

[0030] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0031] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0032] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0033] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0034] It should be noted that when an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or there may be an intervening element. When an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "upper," "lower," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only embodiments.

[0035] Please refer to the attached diagram in the instruction manual. Figure 1 , Figure 2 or Figure 4The cutting fluid spraying device of this application includes a cutting fluid tank 100, a guide plate 200, and an adjusting assembly 300. The guide plate 200 is disposed on one side of the cutting fluid tank 100 in the width direction and is inclined relative to the horizontal plane. For example, two sets of adjusting assemblies 300 are provided, located at opposite ends of the cutting fluid tank 100 in the length direction. Each adjusting assembly 300 includes a first adjusting member 310 and a second adjusting member 320. The first adjusting member 310 is disposed at one end of the cutting fluid tank 100 in the length direction, and the second adjusting member 320 is located in the vertical direction of the first adjusting member 310. The second adjusting member 320 is detachably connected to the first adjusting member 310. The first adjusting member 310 and the second adjusting member 320 have adjustable relative positions in at least two directions. One of the first adjusting member 310 and the second adjusting member 320 is used to connect to the cutting fluid tank 100, and the other is used to connect to a wire cutting machine. It is understood that the cutting fluid tank 100 is used to hold the cutting fluid, which is generally a slurry. The guide plate 200 is used to guide the cutting fluid overflowing from the cutting fluid tank 100. The guide plate 200 is inclined, and its length is basically the same as that of the cutting fluid tank 100, so that the cutting fluid is output to the wire mesh and crystal rod in a water curtain shape. By setting at least two sets of adjustment components 300, the installation positions at both ends of the cutting fluid tank 100 can be adjusted, thereby changing the position and angle of the guide plate 200. The output landing point of the cutting fluid is also changed accordingly, thereby improving the accuracy of the landing point of the cutting fluid spray. Each set of adjustment components 300 includes a first adjustment element 310 and a second adjustment element 320. The first adjustment element 310 and the second adjustment element 320 are detachably connected and can be adjusted relative to each other. The direction of movement is at least two, such as horizontal and vertical, thereby increasing the range of motion of the cutting fluid tank 100.

[0036] refer to Figure 2 and Figure 3In some embodiments, the first adjusting member 310 includes a first horizontal plate 311 and a first vertical plate 312. The first horizontal plate 311 is connected to the second adjusting member 320. At least two first lifting screws 3111 are provided along the length of the first horizontal plate 311. These two screws penetrate the first horizontal plate 311 vertically and are threadedly connected to it. The bottom end of each screw abuts against the second adjusting member 320 in the vertical direction. The first vertical plate 312 is connected to the first horizontal plate 311. The two vertical plates are perpendicular and connected, and the first vertical plate 312 is provided with at least two second lifting screws 3121 and at least two first oblong holes 3122. The positions of each second lifting screw 3121 and the first oblong hole 3122 correspond one-to-one. The second lifting screws 3121 pass through the first oblong hole 3122 and are threadedly connected to the second adjusting member 320. The positions of the at least two second lifting screws 3121 can be adjusted relative to each other along the hole wall of the first oblong hole 3122, so as to allow the relative lifting and / or rotational adjustment of the positions of the first vertical plate 312 and the second adjusting member 320. It can be understood that the first lifting screws 3111 can be rotated and raised to adjust the vertical distance between them and the second adjusting member 320, while the second lifting screws 3121 change synchronously with the position of the first lifting screws 3111. The second lifting screws 3121 are connected to the second adjusting member 320, ultimately realizing the vertical height adjustment of the first adjusting member 310 relative to the second adjusting member 320, and the two still maintain a connected state. For example, the first horizontal plate 311 of the first adjusting member 310 is connected to the first vertical plate 312, and the overall cross-section can be "L" shaped or approximately "L" shaped.

[0037] Continue to refer to Figure 2 and Figure 3 In some embodiments, the second adjusting member 320 includes a first translation plate 321 and a first lifting plate 324. The first translation plate 321 is parallel to the first horizontal plate 311. The first translation plate 321 is provided with a first translation screw 3211 and a second oblong hole 3212. The first translation screw 3211 passes through the second oblong hole 3212 and is used to connect with the wire cutting machine. The position of the first translation screw 3211 can be adjusted relative to the wall of the second oblong hole 3212 to allow the first translation plate 321 to be adjusted relative to the wire cutting machine. The first lifting plate 324 is perpendicular to and connected to the first translation plate 321. The first lifting plate 324 is connected to the first vertical plate 312 by the second lifting screw 3121. It can be understood that the first translation screw 3211 can move along the wall of the second oblong hole 3212 and then be rotated and locked to achieve the adjustment of the relative position of the second adjusting member 320 and the first adjusting member 310 in the horizontal direction.

[0038] See Figure 4 and Figure 5 In some embodiments, the second adjusting member 320 includes a second horizontal plate 322 and a second vertical plate 323. The second horizontal plate 322 is connected below the first adjusting member 310. At least two third lifting screws 3221 are provided on the second horizontal plate 322. The at least two third lifting screws 3221 penetrate the second horizontal plate 322 in the vertical direction and are threadedly connected to it. The bottom end of the third lifting screws 3221 in the vertical direction is used to abut against the wire cutting machine. The second vertical plate 323 and the second horizontal plate 322... 2. The components are perpendicular to each other and connected. The second vertical plate 323 is provided with at least two fourth lifting screws 3231 and at least two third oblong holes 3232. The positions of each fourth lifting screw 3231 and third oblong hole 3232 correspond one-to-one. The fourth lifting screws 3231 pass through the third oblong holes 3232 for connection with the wire cutting machine. The positions of the at least two fourth lifting screws 3231 can be adjusted relative to each other along the hole wall of the third oblong holes 3232 to allow for relative adjustment of the position of the second vertical plate 323 and the wire cutting machine. It can be understood that the third lifting screw 3221 can be rotated and raised to adjust the vertical distance between it and the wire cutting machine, while the fourth lifting screw 3231 changes synchronously with the position of the third lifting screw 3221. The fourth lifting screw 3231 is connected to the wire cutting machine, ultimately realizing the vertical height adjustment of the second adjusting member 320 relative to the wire cutting machine, and the two remain connected. For example, the second horizontal plate 322 of the second adjusting member 320 is connected to the second vertical plate 323, and the overall cross-section can be "L" shaped or approximately "L" shaped.

[0039] Continue to refer to Figure 4 and Figure 5 In some embodiments, the first adjusting member 310 includes a second translation plate 313 and a second lifting plate 314. The second translation plate 313 is parallel to the second horizontal plate 322. The second translation plate 313 is provided with a second translation screw 3131 and a fourth oblong hole 3132. The second translation screw 3131 passes through the fourth oblong hole 3132 and is used to connect with the second horizontal plate 322. The position of the second translation screw 3131 can be adjusted relative to the hole wall of the fourth oblong hole 3132 so that the positions of the second translation plate 313 and the second adjusting member 320 can be adjusted relative to each other. The second lifting plate 314 is perpendicular to and connected to the second translation plate 313. The second lifting plate 314 is connected to the second vertical plate 323 through the fourth lifting screw 3231. Understandably, the second translation screw 3131 can move along the wall of the fourth oblong hole 3132 and then be rotated and locked in place, thereby achieving the adjustment of the relative position of the first adjusting member 310 and the second adjusting member 320 in the horizontal direction.

[0040] See Figure 6 and Figure 7In some embodiments, the cutting fluid tank 100 includes a first chamber 110 and a second chamber 120. The first chamber 110 is connected to the guide plate 200, and the second chamber 120 is spaced apart from the first chamber 110. The bottom of the second chamber 120 is provided with a liquid outlet 121 for discharging liquid. It can be understood that by dividing the cutting fluid tank 100 into the first chamber 110 and the second chamber 120, for example, the first chamber 110 is also connected to a first inlet pipe 111, through which cutting fluid is input into the first chamber 110, and the second chamber 120 is also connected to a second inlet pipe 122, through which cutting fluid is input into the second chamber 120. The cutting fluid in the first chamber 110 can flow to the guide plate 200 and finally spray onto the crystal rod and the wire mesh of the cutting crystal rod, while the cutting fluid in the second chamber 120 can flow to the main roller of the wire cutting machine, improving the cooling effect of each area.

[0041] In some embodiments, a partition plate 130 is provided between the first chamber 110 and the second chamber 120, and a first baffle plate 140 is provided on the partition plate 130. A first overflow port 141 is formed on the top of the first baffle plate 140. It can be understood that by providing the first baffle plate 140, the cutting fluid can be prevented from flowing out too quickly, and the overflow port 141 formed therein can be used to achieve overflow, thereby improving the uniformity of the cutting fluid.

[0042] In some embodiments, a second baffle plate 150 is provided between the first baffle plate 140 and the guide plate 200. The second baffle plate 150 is lower than the first baffle plate 140. A cover plate 160 is also provided inside the cutting fluid tank 100. The cover plate 160 is at least partially located above the first overflow port 141, and at least partially located between the first baffle plate 140 and the second baffle plate 150. It can be understood that by providing the second baffle plate 150, the cutting fluid in the cutting fluid tank 100 can overflow secondaryly, further improving the uniformity of the cutting fluid.

[0043] See Figure 7 and Figure 8 In some embodiments, the cutting fluid tank 100 is further provided with a third chamber 170, which is located between the partition plate 130 and the guide plate 200. A slide valve 180 is provided at the bottom of the third chamber 170. It can be understood that by providing a slide valve 180 at the bottom of the third chamber 170, excess cutting fluid can be discharged, avoiding excessive sand powder concentration in the cutting fluid during the next processing, which would affect the cutting quality.

[0044] The wire cutting machine of this application (not shown) includes the cutting fluid spraying device of this application, and also includes a cutting chamber (not shown). The cutting chamber is equipped with a main roller (not shown), and a wire mesh is laid on the main roller. The cutting fluid spraying device is disposed in the cutting chamber and located on both sides above the wire mesh.

[0045] Beneficial effects:

[0046] This application improves the accuracy of the cutting fluid spraying point by setting at least two sets of adjusting components 300 to adjust the installation position at both ends of the cutting fluid tank 100. This changes the position and angle of the guide plate 200, and consequently alters the output landing point of the cutting fluid. Each set of adjusting components 300 includes a first adjusting member 310 and a second adjusting member 320. The first adjusting member 310 and the second adjusting member 320 are detachably connected and can be adjusted relative to each other. The movement can occur in at least two directions, such as horizontal and vertical, thereby improving the accuracy of the cutting fluid tank 100. The range of motion of 0; by dividing the cutting fluid tank 100 into a first chamber 110 and a second chamber 120, the second inlet pipe 122 inputs the cutting fluid into the second chamber 120, the cutting fluid in the first chamber 110 can flow to the guide plate 200, and finally spray onto the wire mesh of the crystal rod and the cutting crystal rod, while the cutting fluid in the second chamber 120 can flow to the main roller of the wire cutting machine, improving the cooling effect of each area; by setting a slide valve 180 at the bottom of the third chamber 170, excess cutting fluid can be discharged to avoid the sand powder concentration in the cutting fluid being too high during the next processing, which would affect the cutting quality.

[0047] The specific embodiments described herein are merely illustrative examples of the spirit of this application. Those skilled in the art to which this application pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this application or exceeding the scope defined by the appended claims.

Claims

1. A cutting fluid spraying device characterized by, include: Cutting fluid tank (100); A guide plate (200) is provided on one side of the cutting fluid tank (100) in the width direction, and the guide plate (200) is inclined relative to the horizontal plane to guide the cutting fluid overflowing from the cutting fluid tank (100); as well as An adjustment assembly (300) is located at the end of the cutting fluid tank (100) along its length, the adjustment assembly (300) comprising: The first adjusting member (310) is disposed at one end of the cutting fluid tank (100) along its length. The second adjusting member (320) is connected to the first adjusting member (310) in the vertical direction, and the relative position of the second adjusting member (320) and the first adjusting member (310) is adjustable. One of the first adjusting member (310) and the second adjusting member (320) is used to connect to the cutting fluid tank (100), and the other is used to connect to the wire cutting machine.

2. The cutting fluid shower of claim 1, wherein, The first adjusting member (310) and the second adjusting member (320) can be raised and lowered and / or rotated and / or translated relative to each other to adjust their relative positions.

3. The cutting fluid shower of claim 2, wherein, The first adjusting member (310) includes: A first horizontal plate (311) is connected to the second adjusting member (320). The first horizontal plate (311) has at least two first lifting screws (3111) along its length. The at least two first lifting screws (3111) pass through the first horizontal plate (311) in the vertical direction and are threadedly connected to the first horizontal plate (311). The bottom end of the first lifting screw (3111) in the vertical direction is used to abut against the second adjusting member (320). A first vertical plate (312) is perpendicular to and connected to the first horizontal plate (311). The first vertical plate (312) is provided with at least two second lifting screws (3121) and at least two first waist-shaped holes (3122). The positions of each second lifting screw (3121) and the first waist-shaped hole (3122) are in one-to-one correspondence. The second lifting screw (3121) passes through the first waist-shaped hole (3122) and is threadedly connected to the second adjusting member (320). The positions of at least two second lifting screws (3121) can be adjusted relative to each other along the hole wall of the first waist-shaped hole (3122) so that the positions of the first vertical plate (312) and the second adjusting member (320) can be adjusted relative to each other and / or rotated.

4. The cutting fluid shower of claim 3, wherein, The second adjusting member (320) includes: A first translation plate (321) is provided on the first translation plate (321) and parallel to the first horizontal plate (311). The first translation plate (321) is provided with a first translation screw (3211) and a second oblong hole (3212). The first translation screw (3211) passes through the second oblong hole (3212) and is used to connect with the wire cutting machine. The position of the first translation screw (3211) can be adjusted relative to the hole wall of the second oblong hole (3212) so that the position of the first translation plate (321) and the wire cutting machine can be adjusted relative to each other. The first lifting plate (324) is perpendicular to and connected to the first translation plate (321). The first lifting plate (324) is connected to the first vertical plate (312) by the second lifting screw (3121).

5. The cutting fluid shower of claim 2, wherein, The second adjusting member (320) includes: The second horizontal plate (322) is connected below the first adjusting member (310). The second horizontal plate (322) is provided with at least two third lifting screws (3221). The at least two third lifting screws (3221) pass through the second horizontal plate (322) in the vertical direction and are threadedly connected to the second horizontal plate (322). The bottom end of the third lifting screw (3221) in the vertical direction is used to abut against the wire cutting machine. The second vertical plate (323) is perpendicular to and connected to the second horizontal plate (322). The second vertical plate (323) is provided with at least two fourth lifting screws (3231) and at least two third waist-shaped holes (3232). The positions of each of the fourth lifting screws (3231) and the third waist-shaped holes (3232) correspond one-to-one. The fourth lifting screws (3231) pass through the third waist-shaped holes (3232) for connection with the wire cutting machine. The positions of at least two of the fourth lifting screws (3231) can be adjusted relative to each other along the hole wall of the third waist-shaped holes (3232) so that the positions of the second vertical plate (323) and the wire cutting machine can be adjusted relative to each other and / or rotated.

6. The cutting fluid shower of claim 5, wherein, The first adjusting member (310) includes: The second translation plate (313) is parallel to the second horizontal plate (322). The second translation plate (313) is provided with a second translation screw (3131) and a fourth oblong hole (3132). The second translation screw (3131) passes through the fourth oblong hole (3132) and is used to connect with the second horizontal plate (322). The position of the second translation screw (3131) can be adjusted relative to the hole wall of the fourth oblong hole (3132) so that the positions of the second translation plate (313) and the second adjusting member (320) can be adjusted relative to each other. The second lifting plate (314) is perpendicular to and connected to the second translation plate (313). The second lifting plate (314) is connected to the second vertical plate (323) by the fourth lifting screw (3231).

7. The cutting fluid shower of claim 1, wherein, The cutting fluid tank (100) includes: The first chamber (110) is connected to the guide plate (200); The second chamber (120) is separated from the first chamber (110). The bottom of the second chamber (120) is provided with a liquid outlet (121) for discharging liquid.

8. The cutting fluid shower of claim 7, wherein, A partition plate (130) is provided between the first chamber (110) and the second chamber (120), and a first baffle plate (140) is provided on the partition plate (130), with a first overflow port (141) formed at the top of the first baffle plate (140).

9. The cutting fluid shower of claim 8, wherein, A second baffle plate (150) is provided between the first baffle plate (140) and the guide plate (200). The second baffle plate (150) is lower than the first baffle plate (140). A cover plate (160) is also provided in the cutting liquid tank (100). The cover plate (160) is at least partially located above the first overflow port (141), and the cover plate (160) is at least partially located between the first baffle plate (140) and the second baffle plate (150).

10. A wire cutting machine characterized by, Includes the cutting fluid spraying device as described in any one of claims 1-9.