Rapid cooling device for wire cutting
By designing a second housing, corrugated pipe fittings, scraping module, and limiting components, the problems of coolant sedimentation and failure to replenish in time were solved, achieving continuous cooling and inner wall cleaning during wire cutting and improving cutting efficiency.
Patent Information
- Application Number
- CN202423099104.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-16
Smart Images

Figure CN223518819U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to cutting cooling technical field, specifically a kind of quick cooling device for wire cutting. BACKGROUND
[0002] In order to reduce temperature and reduce thermal deformation, protect electrode wire and improve service life, deslagging and keep processing environment clean and other purposes, the need for wire cutting, carry out the synchronous cooling liquid spray operation.
[0003] However, in actual use, the container for containing cooling liquid can indeed cause cooling liquid to be deposited, i.e. some components are separated, insoluble substances are precipitated by chemical reaction, and the phenomenon of sticking to the bottom of the container, and the cooling liquid can not be replenished in time, and then lead to the situation that the cooling liquid is used up during wire cutting, and the situation of precipitation and sticking can greatly reduce the effect of wire cutting, so it needs to be improved. UTILITY MODEL CONTENTS
[0004] To solve the problem of the container for containing cooling liquid in the background art that can indeed cause cooling liquid to be deposited, i.e. some components are separated, insoluble substances are precipitated by chemical reaction, and the phenomenon of sticking to the bottom of the container, and the cooling liquid can not be replenished in time, and then lead to the situation that the cooling liquid is used up during wire cutting, and then affect the cutting cooling effect, the utility model provides a quick cooling device for wire cutting, by setting the cooperation of the second shell and the corrugated pipe, and then supplementing the cooling liquid in the first shell in time, to prevent the operator from being careless and causing the cooling liquid to be not replenished in time, and affecting the wire cutting effect, by setting the cooperation of the scraping module and the limiting component, and then preventing the cooling liquid from being deposited and sticking for a long time in the gap of cooling liquid use, by setting the cooperation of the limiting column and the corrugated pipe, and then guiding the additional cooling liquid to impact the inner wall of the first shell, and improving the anti-deposition effect of the lower end of the first shell cavity again.
[0005] To achieve the above purpose, the utility model provides the following technical scheme: a quick cooling device for wire cutting, comprising a cutting machine body and a wire cutting module, further comprising:
[0006] A cooling liquid storage module is installed on the cutting machine body.
[0007] The liquid supplementing module is provided with two, symmetrically installed on the two sides of the cooling liquid storage module.
[0008] A scraping module is movably connected to the lower end of the inner cavity of the cooling liquid storage module.
[0009] The cooling liquid storage module comprises a first shell, an outer wall of a lower end of the first shell is fixedly connected with a support, the first shell is fixedly connected with the cutting machine body through the support, and a flow control module is fixedly installed at a bottom end of the first shell.
[0010] The liquid supplementing module comprises a second shell, the second shell is placed above the support, a corrugated pipe is movably connected to one side of each of the two second shells close to the first shell, and the second shell is communicated with the inner cavity of the first shell through the corrugated pipe.
[0011] The scraping module comprises a scraping rod movably connected to the inside of the first shell, the scraping rod comprises a rod body, an abutting plate is movably connected to the inside of the rod body, and one end of the abutting plate away from the rod body is abuttingly connected with a limiting assembly.
[0012] Preferably, the lower end of the inner cavity of the first shell is funnel-shaped, and a circular groove allowing the corrugated pipe to move is formed in each of the two sides of the lower end of the first shell.
[0013] The outer wall of the upper end of the first shell is sleeved with a power module.
[0014] Preferably, a spring telescopic cylinder is fixedly connected to the bottom of the second shell, the bottom of the spring telescopic cylinder is fixedly connected with the top surface of the support, a cover plate is boltedly connected to the top of the second shell, and the top surface of the cover plate is arc-shaped and protrudes upward.
[0015] Preferably, the bottom surface of the inner cavity of the second shell is hemispherical and protrudes upward, and the surface is smooth.
[0016] Preferably, the corrugated pipe is composed of a corrugated pipe, a folded rubber arc plate and a limiting shaft, the two ends of the corrugated pipe are provided with the folded rubber arc plates, one side of the folded rubber arc plate away from the corrugated pipe is slidably connected with the limiting shaft, one end of the limiting shaft is fixedly connected with the second shell, and the other end of the limiting shaft is fixedly connected with the first shell.
[0017] Preferably, a connecting frame is installed at the top of the scraping rod, the scraping rod is fixedly connected with the power module through the connecting frame, the connecting frame stably connects the scraping rod, and the scraping rod is tightly attached to the inner wall of the first shell.
[0018] Preferably, the outer shape of the rod body is consistent with the shape of the inner wall of the first shell, and the rod body is attached to the inner wall of the first shell, the abutting plate is elastically connected with the rod body through a first spring, and inclined grooves are formed in the two sides of the rod body.
[0019] Preferably, the limiting assembly comprises a limiting column, which is located inside the first shell, and the limiting column penetrates the first shell and is fixed to the cutting machine body, the lower end of the limiting column is a outwardly convex disc, and corresponds to the position of the bellows, the design of the outwardly convex disc at the lower end of the limiting column can guide the cooling liquid to fill the inner wall of the first shell when the cooling liquid in the bellows fills the inside of the first shell, and the adhesion of the inner wall of the lower end of the inner cavity of the first shell can be treated by the impact of the cooling liquid.
[0020] Preferably, the outer side of the lower end of the limiting column is annularly and equiangularly fixed with a plurality of protrusions abutting against the abutting plate.
[0021] Preferably, the power module comprises a gear transmission assembly, one side of the gear transmission assembly is engagedly connected with a fixing frame, the bottom of the fixing frame is fixedly connected with a baffle, and the fixing frame is fixedly connected with the connecting frame at the bottom of one end of the top surface of the first shell.
[0022] The bottom of the baffle is abuttingly connected with the cover plate.
[0023] Compared with the prior art, the utility model has the advantages that:
[0024] The second shell and the bellows are matched to supplement the cooling liquid in the first shell in time, prevent the cooling liquid from not being supplemented in time due to the negligence of the operator, affect the wire cutting effect, the rotation of the baffle removes the blocking of the top of the cover plate, the cooling liquid in the second shell can enter the inside of the first shell through the bellows due to the upward movement of the spring telescopic cylinder, the bellows gradually move and rotate to supplement the cooling liquid in the first shell, prevent the sudden interruption of the cooling liquid, reduce the cutting effect, and ensure the rapid cooling effect of the wire cutting.
[0025] The scraping module and the limiting assembly are matched to prevent the deposition and adhesion of the cooling liquid in the gap of the suspension of the cooling liquid, the gear transmission assembly drives the connecting frame to rotate through the fixing frame, the abutting plate moves back and forth intermittently through the first spring and the plurality of protrusions during the rotation, the rod body scrapes the inner wall of the first shell during the rotation, and the intermittent movement of the abutting plate in the rod body can make the cooling liquid in the rod body impact the inner wall of the first shell through the inclined groove, and the treatment effect of the adhesion and deposition of the inner wall of the first shell is improved.
[0026] The utility model discloses a cooperation of the structure of limiting column and bellows piece etc. is further guided to the cooling liquid of additional supplement, makes it to the impact of first casing inner wall, promotes the anti -precipitation effect of first casing inner chamber lower end again, when cooling liquid passes through bellows piece and enters the inside of second casing, will be guided to cooling liquid through the outer convex disc of limiting column lower end, makes it to the inner wall of first casing and washes, and further promotes the processing effect of first casing inner wall stick wall and deposition condition. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 It is the structure schematic drawing of the utility model;
[0028] Figure 2 It is the structure cooperation relation schematic drawing of first casing and support of the utility model;
[0029] Figure 3 It is the structure cooperation relation schematic drawing of limiting assembly and fixed frame of the utility model;
[0030] Figure 4 It is the structure cooperation relation schematic drawing of second casing and bellows piece of the utility model;
[0031] Figure 5 It is the subdivision structure schematic drawing of liquid supplement module of the utility model;
[0032] Figure 6 It is the structure cooperation relation schematic drawing of limiting assembly and scraping module of the utility model;
[0033] Figure 7 It is the structure cooperation relation schematic drawing of limiting column and lug of the utility model;
[0034] Figure 8 It is the subdivision structure schematic drawing of scraping rod of the utility model;
[0035] Figure 9 It is the split structure schematic drawing of bellows piece of the utility model.
[0036] In the drawing: 1, cutting machine body;2, wire cutting module;3, flow control module;4, cooling liquid storage module;41, first casing;42, support;5, liquid supplement module;51, second casing;52, cover plate;53, spring telescopic cylinder;54, bellows piece;6, scraping module;61, scraping rod;611, rod body;612, stop plate;613, first spring;614, inclined groove;62, connecting frame;7, power module;71, gear transmission assembly;72, fixed frame;73, baffle;8, limiting assembly;81, limiting column;82, lug. DETAILED DESCRIPTION
[0037] Clearly, the described embodiments are merely a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0038] As shown in Figures 1 to 9 The utility model provides a kind of quick cooling device for wire cutting, including cutting machine body 1 and wire cutting module 2, further comprising:
[0039] Cooling liquid storage module 4, cooling liquid storage module 4 is installed on cutting machine body 1;
[0040] Liquid supplementing module 5, liquid supplementing module 5 is provided with two, symmetrically installed on the two sides of cooling liquid storage module 4;
[0041] Scraping module 6, scraping module 6 is movably connected in the lower end of the inner cavity of cooling liquid storage module 4;
[0042] Cooling liquid storage module 4 includes first shell 41, the outer wall of the lower end of first shell 41 is fixedly connected with support 42, first shell 41 is fixedly connected with cutting machine body 1 by support 42, and the bottom end of first shell 41 is fixedly installed with flow control module 3;
[0043] Liquid supplementing module 5 includes second shell 51, second shell 51 is placed above support 42, and the side close to first shell 41 of the two second shell 51 is movably connected with bellow 54, and second shell 51 is communicated with the inner cavity of first shell 41 by bellow 54;
[0044] Scraping module 6 includes scraping rod 61, and scraping rod 61 is movably connected in the inside of first shell 41, and scraping rod 61 includes rod body 611, and the inside of rod body 611 is movably connected with abutment plate 612, and the end away from rod body 611 of abutment plate 612 is abuttingly connected with limiting assembly 8.
[0045] As shown in Figure 3 、 Figure 4 and Figure 6 The lower end of the inner cavity of first shell 41 is funnel-shaped, and the two sides of the lower end of first shell 41 are provided with circular grooves for allowing bellow 54 to move;
[0046] The outer wall of the upper end of first shell 41 is sleeved with power module 7.
[0047] Adopting the above scheme: the funnel-shaped design of the lower end of the first shell 41 facilitates the collection and discharge of the cooling liquid inside the first shell 41, and the bottom of the inner cavity of the first shell 41 will not accumulate cooling liquid, thereby preventing the problem of incomplete discharge of the cooling liquid from the inside of the first shell 41.
[0048] As shown in Figures 3 to 5 , the bottom of the second shell 51 is fixedly connected with a spring telescopic cylinder 53, the bottom of the spring telescopic cylinder 53 is fixedly connected with the top surface of the support 42, and the top of the second shell 51 is bolted with a cover plate 52, and the top surface of the cover plate 52 is in the form of an upwardly convex arc slope.
[0049] Adopting the above scheme: when the top of the cover plate 52 is not covered, the spring telescopic cylinder 53 will release the elastic force to make the second shell 51 gradually move upward, and vice versa, when the top of the cover plate 52 is blocked, the spring telescopic cylinder 53 will be compressed, and the second shell 51 will move downward as a whole.
[0050] As shown in Figure 3 and Figure 5 , the bottom surface of the inner cavity of the second shell 51 is in the form of an upwardly convex hemisphere, and the surface is smooth.
[0051] Adopting the above scheme: by screwing the bolts of the cover plate 52 and the second shell 51, the closing effect of the cover plate 52 on the top of the second shell 51 is removed, so that the operating personnel can supplement the cooling liquid in the inside of the second shell 51, and at the same time, the semicircular convex shape of the inner cavity of the second shell 51 will ensure that the cooling liquid in the inside of the second shell 51 can be discharged through the corrugated pipe 54, and the phenomenon of residual cooling liquid in the inner cavity of the second shell 51 will not occur.
[0052] As shown in Figure 5 and Figure 9 , the corrugated pipe 54 is composed of a corrugated pipe, a folded rubber arc plate and a limiting shaft, the two ends of the corrugated pipe are both provided with the folded rubber arc plate, the side of the folded rubber arc plate away from the corrugated pipe is slidingly connected with the limiting shaft, one end of the limiting shaft is fixedly connected with the second shell 51, and the other end of the limiting shaft is fixedly connected with the first shell 41.
[0053] Adopting the above scheme: the folded rubber arc plate ensures that when the corrugated pipe and the folded rubber arc plate rotate, the connecting end of the limiting shaft with the second shell 51 and the first shell 41 will not have a hollow area, thereby preventing the leakage of the cooling liquid in the inside of the second shell 51 and the first shell 41.
[0054] As shown in Figure 7 , the top of the scraping rod 61 is provided with a connecting frame 62, and the scraping rod 61 is fixedly connected with the power module 7 through the connecting frame 62.
[0055] Adopt the above scheme: through the connecting frame 62 stable connection of scraping rod 61, so that the scraping rod 61 close in the inner wall of the first shell 41.
[0056] As shown in Figure 6 and Figure 8 , the outer shape of the rod body 611 is consistent with the shape of the inner wall of the first shell 41, and the rod body 611 is connected with the inner wall of the first shell 41, the stop plate 612 is elastically connected with the rod body 611 through the first spring 613, and the two sides of the rod body 611 are provided with inclined grooves 614.
[0057] As shown in Figures 6 to 8 , the limiting component 8 includes a limiting column 81, the limiting column 81 is located inside the first shell 41, and the limiting column 81 penetrates through the first shell 41 and is fixedly connected with the cutting machine body 1, the lower end of the limiting column 81 is a disc outwardly protruding, and corresponds to the position of the corrugated pipe 54.
[0058] Adopt the above scheme: the design of the lower end of the limiting column 81 outwardly protruding disc, when the cooling liquid in the corrugated pipe 54 fills the inside of the first shell 41, it will first contact the outwardly protruding disc at the lower end of the limiting column 81, the outwardly protruding disc will guide the cooling liquid, so that the cooling liquid fills the inner wall of the first shell 41, through the impact of the cooling liquid, the sticking phenomenon of the inner wall of the first shell 41 can be treated.
[0059] As shown in Figure 7 and Figure 8 , the outer side of the lower end of the limiting column 81 is annularly and equiangularly fixedly connected with a plurality of protrusions 82 abutting against the stop plate 612.
[0060] Adopt the above scheme: when the connecting frame 62 drives the whole rotation of the rod body 611, it will make the stop plate 612 intermittent abutment with the protrusions 82, so that the rod body 611 can move back and forth in the inner cavity of the rod body 611 when treating the sticking of the inner wall of the first shell 41, so that the cooling liquid in the rod body 611 can be flushed from the inside of the inclined groove 614 to the inner wall of the first shell 41, so that the cooling liquid sprayed from the inclined groove 614 is added to the treatment of the sticking of the inner wall of the first shell 41, thereby improving the treatment of the sticking of the inner wall of the first shell 41.
[0061] As shown in Figure 2 and Figure 3 , the power module 7 includes a gear transmission assembly 71, one side of the gear transmission assembly 71 is engagedly connected with a fixed frame 72, the bottom of the fixed frame 72 is fixedly connected with a baffle 73, and the fixed frame 72 is fixedly connected with the connecting frame 62 at the bottom of one end of the top surface of the first shell 41.
[0062] The bottom of the baffle 73 is in abutment with the cover plate 52.
[0063] With the above scheme: when the gear transmission assembly 71 starts, it will drive the connecting frame 62 to rotate in the first shell 41 through the fixed frame 72, and the fixed frame 72 will be removed from the top of the cover plate 52 with rotation.
[0064] The working principle and use process of the utility model:
[0065] Firstly, when a batch of cutting operation is finished, the gear transmission assembly 71 is started, and the connecting frame 62 is rotated through the fixed frame 72, and the connecting frame 62 rotates, and the rod body 611, the resisting plate 612 and the first spring 613 rotate synchronously in the first shell 41, and the resisting plate 612 moves back and forth intermittently with the first spring 613 and the plurality of protrusions 82 during rotation, so that the rod body 611 scratches the inner wall of the first shell 41 during rotation, and the intermittent movement of the resisting plate 612 in the rod body 611 makes the cooling liquid in the rod body 611 impact the inner wall of the first shell 41 through the inclined groove 614, thereby improving the processing effect of the inner wall and the deposition of the first shell 41;
[0066] Secondly, the baffle 73 rotates and removes the obstruction on the top of the cover plate 52, and the cover plate 52 moves upward due to the spring telescopic cylinder 53, so that the cooling liquid in the second shell 51 can enter the inside of the first shell 41 through the corrugated pipe 54, and the corrugated pipe 54 gradually rotates to supplement the cooling liquid in the first shell 41 through the second shell 51 and the corrugated pipe 54;
[0067] Thirdly, when the cooling liquid in the second shell 51 enters the first shell 41 through the corrugated pipe 54, it is guided by the limiting column 81 lower end outer convex disc to flush the inner wall of the first shell 41, thereby improving the processing effect of the inner wall of the first shell 41.
[0068] It should be noted that in this paper, relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between the entities or operations. Moreover, the terms "include", "contain" or any other variant thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.
[0069] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A rapid cooling device for wire cutting, comprising a cutting machine body (1) and a wire cutting module (2), characterized in that: Also includes: Cooling liquid storage module (4), the cooling liquid storage module (4) is installed on the cutting machine body (1); Liquid supplement module (5), the liquid supplement module (5) is provided with two, symmetrically installed on both sides of the cooling liquid storage module (4); Scrape module (6), the scrape module (6) is movably connected in the lower end of the inner cavity of the cooling liquid storage module (4); The cooling liquid storage module (4) comprises a first shell (41), the outer wall of the lower end of the first shell (41) is fixedly connected with a support (42), the first shell (41) is fixedly connected with the cutting machine body (1) through the support (42), and the bottom end of the first shell (41) is fixedly connected with the flow control module (3). The liquid supplement module (5) comprises a second shell (51), the second shell (51) is placed above the support (42), and the two second shells (51) are movably connected with corrugated pipe fittings (54) on the side close to the first shell (41). The second shell (51) is communicated with the inner cavity of the first shell (41) through the corrugated pipe fitting (54). The scrape module (6) comprises a scrape rod (61), the scrape rod (61) is movably connected in the interior of the first shell (41), the scrape rod (61) comprises a rod body (611), the interior of the rod body (611) is movably connected with a stop plate (612), and the end, away from the rod body (611), of the stop plate (612) is abuttingly connected with a limiting assembly (8).
2. The quick cooling device for wire cutting according to claim 1, characterized by: The lower end of the inner cavity of the first shell (41) is funnel-shaped, and the two sides of the lower end of the first shell (41) are provided with circular grooves for allowing the corrugated pipe fitting (54) to move. The outer wall of the upper end of the first shell (41) is sleeved with a power module (7).
3. The quick cooling device for wire cutting according to claim 1, characterized by: The bottom of the second shell (51) is fixedly connected with a spring telescopic cylinder (53), the bottom of the spring telescopic cylinder (53) is fixedly connected with the top surface of the support (42), the top of the second shell (51) is boltedly connected with a cover plate (52), and the top surface of the cover plate (52) is arc-shaped and protrudes upward.
4. The quick cooling device for wire cutting according to claim 3, characterized by: The bottom surface of the inner cavity of the second shell (51) is hemispherical and protrudes upward, and the surface is smooth.
5. The quick cooling device for wire cutting according to claim 1, characterized by: The corrugated pipe fitting (54) is composed of a corrugated pipe, a folded rubber arc plate and a limiting shaft, both ends of the corrugated pipe are provided with the folded rubber arc plates, one side, away from the corrugated pipe, of the folded rubber arc plate is slidably connected with the limiting shaft, one end of the limiting shaft is fixedly connected with the second shell (51), and the other end of the limiting shaft is fixedly connected with the first shell (41).
6. The quick cooling device for wire cutting according to claim 1, characterized by: The top of the scrape rod (61) is provided with a connecting frame (62), and the scrape rod (61) is fixedly connected with the power module (7) through the connecting frame (62).
7. The quick cooling device for wire cutting according to claim 1, characterized by: The shape of the rod body (611) is consistent with the shape of the inner wall of the first shell (41), and the rod body (611) is connected with the inner wall of the first shell (41) in a fit manner, the stop plate (612) is elastically connected with the rod body (611) through a first spring (613), and both sides of the rod body (611) are provided with inclined grooves (614).
8. The quick cooling device for wire cutting according to claim 1, characterized by: The limiting assembly (8) comprises a limiting column (81), which is located inside the first shell (41), and the limiting column (81) penetrates the first shell (41) and is fixedly connected with the cutting machine body (1), the lower end of the limiting column (81) is a disc outwardly protruding, and is located corresponding to the position of the bellows (54).
9. The quick cooling device for wire cutting according to claim 8, characterized by: A plurality of protrusions (82) are fixedly connected with the outer side of the lower end of the limiting column (81) in an annular equiangular manner, and abut against the abutting plate (612).
10. The quick cooling device for wire cutting according to claim 2, characterized by: The power module (7) comprises a gear transmission assembly (71), one side of the gear transmission assembly (71) is engagedly connected with a fixing frame (72), the bottom of the fixing frame (72) is fixedly connected with a baffle (73), and the fixing frame (72) is fixedly connected with the connecting frame (62) at the bottom of one end of the top surface of the first shell (41). The bottom of the baffle (73) is abuttingly connected with the cover plate (52).