CN114850599A - Novel linear cutting machine - Google Patents
Novel linear cutting machine Download PDFInfo
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- CN114850599A CN114850599A CN202210490118.1A CN202210490118A CN114850599A CN 114850599 A CN114850599 A CN 114850599A CN 202210490118 A CN202210490118 A CN 202210490118A CN 114850599 A CN114850599 A CN 114850599A
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23H—WORKING OF METAL BY THE ACTION OF A HIGH CONCENTRATION OF ELECTRIC CURRENT ON A WORKPIECE USING AN ELECTRODE WHICH TAKES THE PLACE OF A TOOL; SUCH WORKING COMBINED WITH OTHER FORMS OF WORKING OF METAL
- B23H7/00—Processes or apparatus applicable to both electrical discharge machining and electrochemical machining
- B23H7/02—Wire-cutting
- B23H7/08—Wire electrodes
- B23H7/10—Supporting, winding or electrical connection of wire-electrode
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23H—WORKING OF METAL BY THE ACTION OF A HIGH CONCENTRATION OF ELECTRIC CURRENT ON A WORKPIECE USING AN ELECTRODE WHICH TAKES THE PLACE OF A TOOL; SUCH WORKING COMBINED WITH OTHER FORMS OF WORKING OF METAL
- B23H7/00—Processes or apparatus applicable to both electrical discharge machining and electrochemical machining
- B23H7/02—Wire-cutting
- B23H7/08—Wire electrodes
- B23H7/10—Supporting, winding or electrical connection of wire-electrode
- B23H7/102—Automatic wire threading
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23H—WORKING OF METAL BY THE ACTION OF A HIGH CONCENTRATION OF ELECTRIC CURRENT ON A WORKPIECE USING AN ELECTRODE WHICH TAKES THE PLACE OF A TOOL; SUCH WORKING COMBINED WITH OTHER FORMS OF WORKING OF METAL
- B23H7/00—Processes or apparatus applicable to both electrical discharge machining and electrochemical machining
- B23H7/02—Wire-cutting
- B23H7/08—Wire electrodes
- B23H7/10—Supporting, winding or electrical connection of wire-electrode
- B23H7/104—Wire tension control
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/10—Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working
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- Mechanical Engineering (AREA)
- Electrical Discharge Machining, Electrochemical Machining, And Combined Machining (AREA)
Abstract
The invention relates to the field of linear cutting machine tools, and particularly discloses a novel linear cutting machine tool, which comprises a T-shaped lower machine body seat, an X-axis carriage, a Y-axis carriage, a V-axis carriage, a U-axis carriage, a Z-axis carriage, a lower eye model adjusting mechanism and an upper eye model adjusting mechanism, wherein the X-axis carriage and the Y-axis carriage are arranged on the T-shaped lower machine body seat in a sliding manner, the V-axis carriage, the U-axis carriage and the Z-axis carriage are arranged on the Y-axis carriage in a sliding manner, the lower eye model adjusting mechanism is connected with the Y-axis carriage, and the upper eye model adjusting mechanism is connected with the Z-axis carriage.
Description
Technical Field
The invention relates to the technical field of linear cutting machine tools, in particular to a novel linear cutting machine tool.
Background
The wire cutting is a short name of numerical control wire cut electrical discharge machining, and the wire cut machining is to cut and machine a workpiece by using a moving metal wire as a tool electrode, passing pulse current between the metal wire and the workpiece and using the corrosion action of pulse discharge. The wire-threading constant tension adjusting mechanism, the wire-threading mechanism, the wire feeding mechanism, the wire electrode position detecting mechanism and the automatic wire clamping and detaching mechanism are important components of wire-threading wire cutting processing, the wire needs to be detached when the wire is moved to the next processing hole position during processing, the wire electrode diameter is very small, the efficiency of detaching the wire by means of manual wire threading is extremely low, the requirement of high-efficiency production cannot be met, the wire threading and detaching of the wire during wire-threading wire cutting at present are manual operations, the efficiency is very low, and the full-automatic processing of the wire-threading wire cutting machine tool is greatly restricted. Since the wire-cut electrical discharge machine uses a continuously moving fine wire as an electrode to machine a workpiece, the eye die is an indispensable component of the wire-cut electrical discharge machine. By using the eye die, the stable thin metal wire can be continuously cut and moved without shaking, so that the aims of high shape precision and high surface smoothness of a workpiece cut by spark discharge are fulfilled. However, the position of the existing eye die is difficult to adjust, and the efficiency and the precision of the wire cutting are influenced.
Disclosure of Invention
The invention aims to solve the defects that the position of an eye die is difficult to adjust and the efficiency and the precision of linear cutting are influenced in the prior art, and provides a novel linear cutting machine tool.
In order to achieve the purpose, the invention adopts the following technical scheme:
a novel wire cutting machine tool comprises a T-shaped lower machine body seat, an X-axis carriage, a Y-axis carriage, a V-axis carriage, a U-axis carriage and a Z-axis carriage, wherein the X-axis carriage and the Y-axis carriage are arranged on the T-shaped lower machine body seat in a sliding manner;
the lower eye mold adjusting mechanism comprises a wire feeding mechanism fixing plate, a lower eye mold fixing plate movably arranged on the wire feeding mechanism fixing plate, a lower Y-direction adjusting plate and a lower X-direction adjusting plate, wherein a lower eye mold adjusting block is arranged on one side of the lower eye mold fixing plate, the lower Y-direction adjusting plate can push the lower eye mold adjusting block to move along the Y direction, and the lower X-direction adjusting plate can push the lower eye mold adjusting block to move along the X direction;
the upper eye die adjusting mechanism comprises an XY-direction dovetail groove locking block, an XY-direction adjusting nut block arranged in the XY-direction dovetail groove locking block, an X-direction dovetail adjusting slide block movably arranged at the top end of the XY-direction dovetail groove locking block along the X direction, a Y-direction dovetail adjusting slide block movably arranged at the bottom end of the XY-direction dovetail groove locking block along the Y direction, and an upper eye die fixing plate arranged at the bottom end of the Y-direction dovetail adjusting slide block, wherein a Y-direction adjusting pressing sheet is arranged on one side of the X-direction dovetail adjusting slide block, the Y-direction adjusting pressing sheet is connected with the XY-direction dovetail groove locking block through an X-direction adjusting screw, an X-direction adjusting pressing sheet is arranged on one side of the Y-direction dovetail adjusting slide block, and the X-direction adjusting pressing sheet is connected with the XY-direction dovetail groove locking block through a Y-direction adjusting screw.
The novel wire cutting machine tool as claimed in claim, wherein the wire feeding mechanism fixing plate is provided with a wire feeding mechanism, the lower Y-direction adjusting plate is U-shaped, one end of a U-shaped opening of the lower Y-direction adjusting plate abuts against one end of the lower eye mold adjusting block, a lower X-direction adjusting threaded hole is formed in the X-direction of the U-shaped opening of the lower Y-direction adjusting plate, a lower Y + direction adjusting threaded hole is formed in one end of the U-shaped opening of the lower Y-direction adjusting plate in the Y-direction, a lower Y-direction adjusting threaded hole is formed in the other end of the U-shaped opening of the lower Y-direction adjusting plate in the Y-direction, the X-direction adjusting threaded hole, the Y + direction adjusting threaded hole and the Y-direction adjusting threaded hole are connected with the wire feeding mechanism fixing plate through adjusting bolts, and a lower X + direction sliding adjusting hole is formed in the middle of the lower X-direction adjusting plate, and a locking screw hole is formed in the lower eye die fixing plate, and a protective cover is arranged at one end of the wire feeding mechanism fixing plate.
The novel linear cutting machine according to the claim is characterized in that the XY-direction dovetail groove locking block is provided with an X-direction dovetail groove in the X direction, the X-direction dovetail adjusting slide block is arranged in the X-direction dovetail groove in a sliding mode, the XY-direction dovetail groove locking block is provided with a Y-direction dovetail groove in the Y direction, the Y-direction dovetail adjusting slide block is arranged in the Y-direction dovetail groove in a sliding mode, the XY-direction dovetail groove locking block is provided with a Y-direction locking jackscrew in the X direction, and the XY-direction dovetail groove locking block is provided with an X-direction locking jackscrew in the Y direction.
The novel wire cutting machine tool as claimed in, wherein a first insulating base plate is arranged at the bottom end of the working platform, an upper insulating piece is arranged at the top end of the upper eye mold adjusting mechanism, a lower insulating piece is arranged at one end of the wire feeding mechanism, and a second insulating base plate is arranged on the Y-axis carriage.
The novel wire cutting machine tool as claimed in the claim, wherein one end of the upper insulator is provided with a wire electrode power transmission bracket, and the top end of the wire electrode power transmission bracket is provided with a tapered groove anti-wire falling channel block and an upper power transmission block.
The novel wire cutting machine tool of claim, wherein the middle of the wire electrode power transmission support is provided with a wear-resistant hole block seat, the bottom end of the wire electrode power transmission support is provided with a wear-resistant hole block, one side of the wire electrode power transmission support is provided with a wear-resistant hole block hole seat jackscrew, and the wire electrode power transmission support is provided with a wire falling prevention channel block adjusting hole.
The novel linear cutting machine according to the claim is characterized in that one side of the conical groove anti-wire-dropping channel block is provided with a conical groove anti-wire-dropping channel, and the conical groove anti-wire-dropping channel block and the upper power supply block form a channel hole.
The novel wire cutting machine tool according to the claim, wherein the top end of the Y-axis carriage is provided with a column, the bottom end of the column is connected with the wire feeding mechanism through a lower cantilever, the lower side of the column is provided with the wire electrode position detection mechanism, the upper side of the column is provided with the wire threading constant tension adjustment mechanism, and the Z-axis carriage is provided with the wire threading mechanism.
The novel wire cutting machine tool according to the claim, wherein the Y-axis carriage is provided with a fixed base, the fixed base is slidably provided with a wire storage barrel swing seat, the wire storage barrel swing seat is provided with a wire storage barrel bearing seat, a bearing is installed in the wire storage barrel bearing seat, the bearing is rotatably connected with a wire storage barrel, the wire storage barrel is provided with an automatic wire clamping and detaching mechanism, the wire storage barrel bearing seat is provided with a wire storage barrel rotating motor, and the output end of the wire storage barrel rotating motor is connected with a rotating shaft of the wire storage barrel.
The novel linear cutting machine as claimed in, wherein the cross laser positioner is arranged on the Z-axis carriage, and the filtering water tank is arranged on one side of the T-shaped lower body seat.
The invention has the beneficial effects that:
the invention has high automation degree, can conveniently adjust the positions of the upper eye die and the lower eye die, can reduce the labor intensity, improve the working efficiency, solve the problem of continuous wire threading and wire detaching in the processing of some complex workpieces, and simultaneously improve the safety factor in operation.
Drawings
Fig. 1 is a perspective view of a novel linear cutting machine according to the present invention;
FIG. 2 is a left side view of the novel wire cutting machine shown in FIG. 1;
FIG. 3 is a rear view of the novel wire cutting machine shown in FIG. 1;
FIG. 4 is a front view of the novel wire cutting machine shown in FIG. 1;
FIG. 5 is a partial enlarged view of the wire feeding mechanism and the lower eye mold adjusting mechanism of the novel wire cutting machine shown in FIG. 1;
FIG. 6 is a perspective view of FIG. 5 from another perspective;
FIG. 7 is a partially enlarged view of the wire feeding mechanism and the upper eye mold adjusting mechanism of the novel wire cutting machine shown in FIG. 1;
FIG. 8 is a front view of FIG. 7;
FIG. 9 is a cross-sectional view taken at A-A of FIG. 8;
fig. 10 is a cross-sectional view at B-B in fig. 8.
In the figure: 1T-shaped lower machine body seat, 2X-axis carriage, 3Y-axis carriage, 4 first insulating base plates, 5 working platforms, 6 upright posts, 7V-axis carriage, 8U-axis carriage, 9Z-axis carriage, 10 cross laser positioner, 11 upper insulating part, 12 upper eye mold adjusting mechanism, 13 wire threading mechanism, 14 wire threading constant tension adjusting mechanism, 15 electrode wire position detecting mechanism, 16 lower cantilever, 17 lower insulating part, 18 wire feeding mechanism, 19 lower eye mold adjusting mechanism, 20 second insulating base plates, 21 fixed base, 22 wire storage barrel swinging seat, 23 wire storage barrel bearing seat, 24 wire storage barrel rotating motor, 25 wire storage barrel body, 26 automatic wire clamping and removing mechanism, 27 filter water tank, 30 wire feeding mechanism fixed plate, 31 lower eye mold fixed plate, 32 lower eye mold adjusting block, 33 lower Y-direction adjusting plate, 34 lower X-direction adjusting plate, 35 lower Y + direction adjusting threaded hole, 36 lower Y-direction adjusting threaded hole, An X-direction adjusting threaded hole below 37, an X + direction sliding adjusting hole below 38, a 39 protective cover, a 40 locking screw hole, a 50X-direction dovetail adjusting slide block, a 51 XY-direction dovetail groove locking block, a 52Y-direction dovetail adjusting slide block, a 53 upper eye die fixing plate, a 54Y-direction locking jackscrew, a 55X-direction locking jackscrew, a 56Y-direction adjusting pressing sheet, a 57X-direction adjusting pressing sheet, a 58X-direction adjusting screw, a 59Y-direction adjusting screw, a 60 XY-direction adjusting nut block, a 61 electrode wire power transmission bracket, a 62 conical groove anti-wire dropping channel block, a 63 upper power transmission block, a 64 wear-resistant hole block seat, a 65 wear-resistant hole block, a 66 wear-resistant hole block seat jackscrew, a 67 anti-wire dropping channel block adjusting hole and a 68 conical groove anti-wire dropping channel.
Detailed Description
To facilitate an understanding of the invention, the invention will now be described more fully with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the drawings. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only and do not represent the only embodiments.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
Referring to fig. 1-10, a novel wire cutting machine includes a T-shaped lower machine body base 1, an X-axis carriage 2 and a Y-axis carriage 3 slidably disposed on the T-shaped lower machine body base 1, a V-axis carriage 7, a U-axis carriage 8 and a Z-axis carriage 9 slidably disposed on the Y-axis carriage 3, a lower eye mold adjusting mechanism 19 connected to the Y-axis carriage 3, and an upper eye mold adjusting mechanism 12 connected to the Z-axis carriage 9.
Specifically, a transverse guide rail is arranged on the T-shaped lower body base 1, the X-axis carriage 2 is arranged on the transverse guide rail in a sliding manner, a longitudinal guide rail is arranged on the T-shaped lower body base 1, and the Y-axis carriage 3 is arranged on the longitudinal guide rail in a sliding manner. It can be understood that the V-axis carriage 7, the U-axis carriage 8 and the Z-axis carriage 9 are all in sliding connection through guide rails.
The lower eye mold adjusting mechanism 19 comprises a wire feeder fixing plate 30, a lower eye mold fixing plate 31 movably arranged on the wire feeder fixing plate 30, a lower Y-direction adjusting plate 33 and a lower X-direction adjusting plate 34, wherein a lower eye mold adjusting block 32 is arranged on one side of the lower eye mold fixing plate 31, the lower Y-direction adjusting plate 33 can push the lower eye mold adjusting block 32 to move along the Y direction, and the lower X-direction adjusting plate 34 can push the lower eye mold adjusting block 32 to move along the X direction;
the upper eye mold adjusting mechanism 12 comprises an XY-direction dovetail groove locking block 51, an XY-direction adjusting nut block 60 arranged in the XY-direction dovetail groove locking block 51, an X-direction dovetail adjusting slide block 50 movably arranged at the top end of the XY-direction dovetail groove locking block 51 along the X direction, a Y-direction dovetail adjusting slide block 52 movably arranged at the bottom end of the XY-direction dovetail groove locking block 51 along the Y direction, and an upper eye mold fixing plate 53 arranged at the bottom end of the Y-direction dovetail adjusting slide block 52, a Y-direction adjusting pressing sheet 56 is arranged on one side of the X-direction dovetail adjusting sliding block 50, the Y-direction adjusting pressing sheet 56 is connected with the XY-direction dovetail groove locking block 51 through an X-direction adjusting screw 58, an X-direction adjusting pressing piece 57 is arranged on one side of the Y-direction dovetail adjusting sliding block 52, and the X-direction adjusting pressing piece 57 is connected with the XY-direction dovetail groove locking block 51 through a Y-direction adjusting screw 59.
Further, be provided with wire feeder 18 on the wire feeder fixed plate 30, Y is to the regulating plate 33U type down, Y supports to hold with the one end of eye mould regulating block 32 down the one end of the U-shaped mouth of regulating plate 33 down, be provided with down X-on the U-shaped mouth of regulating plate 33 on the X direction and adjust threaded hole 37 down, Y + is provided with down Y + on the Y direction and adjusts threaded hole 35 down on the one end of the U-shaped mouth of regulating plate 33 down, Y is provided with down Y-on the Y direction and adjusts threaded hole 36 down on the other end of the U-shaped mouth of regulating plate 33 down, X-on adjust threaded hole 37, Y + all through adjusting bolt with wire feeder fixed plate 30 is connected to adjusting threaded hole 35, Y-on adjusting threaded hole 36, X is provided with down X + on the middle part of regulating plate 34 and slides adjusting hole 38, a locking screw hole 40 is formed in the lower eye mold fixing plate 31, and a protective cover 39 is arranged at one end of the wire feeder fixing plate 30.
Further, an X-direction dovetail groove is formed in the XY-direction dovetail groove locking block 51 in the X direction, the X-direction dovetail adjustment slider 50 is arranged in the X-direction dovetail groove in a sliding manner, a Y-direction dovetail groove is formed in the XY-direction dovetail groove locking block 51 in the Y direction, the Y-direction dovetail adjustment slider 52 is arranged in the Y-direction dovetail groove in a sliding manner, a Y-direction locking jackscrew 54 is arranged in the XY-direction dovetail groove locking block 51 in the X direction, and an X-direction locking jackscrew 55 is arranged in the XY-direction dovetail groove locking block 51 in the Y direction.
Further, a first insulating base plate 4 is arranged at the bottom end of the working platform 5, an upper insulating part 11 is arranged at the top end of the upper eye mold adjusting mechanism 12, a lower insulating part 17 is arranged at one end of the wire feeding mechanism, and a second insulating base plate 20 is arranged on the Y-axis carriage 3.
Further, one end of the upper insulating member 11 is provided with a wire electrode power transmission support 61, and the top end of the wire electrode power transmission support 61 is provided with a tapered groove anti-wire dropping channel block 62 and an upper power transmission block 63.
Further, the middle part of the wire electrode power transmission support 61 is provided with a wear-resistant hole block seat 64, the bottom end of the wire electrode power transmission support 61 is provided with a wear-resistant hole block 65, one side of the wire electrode power transmission support 61 is provided with a wear-resistant hole block seat jackscrew 66, and a wire falling prevention channel block adjusting hole 67 is formed in the wire electrode power transmission support 61.
Furthermore, one side of the taper groove anti-wire-dropping channel block (62) is provided with a taper groove anti-wire-dropping channel 68, and the taper groove anti-wire-dropping channel block 62 and the upper power transmission block 63 form a channel hole.
Further, the top of the Y-axis carriage 3 is provided with a column 6, the column 6 is in a shape like a "7", the top of the column 6 extends forward, the bottom end of the column 6 is connected with a wire feeding mechanism 18 through a lower cantilever 16, the lower side of the column 6 is provided with a wire electrode position detection mechanism 15, the upper side of the column 6 is provided with a wire threading constant tension adjustment mechanism 14, the automatic wire threading and wire detaching mechanism 26 transmits signals through the wire electrode position detection mechanism, the wire threading constant tension adjustment mechanism 14 is controlled to adjust a wire head to position suitable for the automatic wire threading and wire detaching mechanism 26, and the Z-axis carriage 9 is provided with a wire threading mechanism 13.
Further, be provided with unable adjustment base 21 on the Y axle planker 3, unable adjustment base 21 goes up the slip and is provided with storage silk bucket swing seat 22, be provided with storage silk bucket bearing frame 23 on the storage silk bucket swing seat 22, install the bearing in the storage silk bucket bearing frame 23, it is connected with storage silk bucket 25 to rotate on the bearing, be provided with automatic press from both sides silk on the storage silk bucket 25 and tear a mechanism 26 open, install storage silk bucket rotating electrical machines 24 on the storage silk bucket bearing frame 23, storage silk bucket rotating electrical machines 24's output with storage silk bucket 25's rotation axis connection.
Further, a cross laser positioner 10 is arranged on the Z-axis carriage 9, and the cross laser positioner 10 is used for positioning a processing point of a processing workpiece. One side of the T-shaped lower body seat 1 is provided with a filtering water tank 27, and the filtering water tank 27 can play a role in flushing and cooling.
In this embodiment, the positions of the lower eye mold adjusting block 32 and the lower eye mold fixing plate 31 in the Y direction can be adjusted by rotating the adjusting bolts in the Y + direction adjusting threaded holes 35 and the Y-direction adjusting threaded holes 36, and the lower eye mold adjusting block 32 and the lower eye mold fixing plate 31 can be moved in the X direction by rotating the adjusting bolts in the X-direction adjusting threaded holes 37 in cooperation with the X + direction sliding adjusting holes 38, and finally, the positions of the lower eye molds can be adjusted by fixing the lower eye mold adjusting block 32 and the lower eye mold fixing plate 31 through the locking screw holes 40. The positions of the X-direction dovetail adjusting slide block 50 and the Y-direction dovetail adjusting slide block 52 can be adjusted by rotating the X-direction adjusting screw 58 and the Y-direction adjusting screw 59, and then the positions are locked by the Y-direction locking jackscrew 54 and the X-direction locking jackscrew 55, so that the position of the upper eye model can be adjusted.
The invention has high automation degree, can conveniently adjust the positions of the upper eye die and the lower eye die, can reduce the labor intensity, improve the working efficiency, solve the problem of continuous wire threading and wire detaching in the processing of some complex workpieces, and simultaneously improve the safety factor in operation.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention should be equivalent or changed within the scope of the present invention.
Claims (10)
1. A novel wire cutting machine tool is characterized by comprising a T-shaped lower machine body seat (1), an X-axis carriage (2) and a Y-axis carriage (3) which are arranged on the T-shaped lower machine body seat (1) in a sliding manner, a V-axis carriage (7) and a U-axis carriage (8) which are arranged on the Y-axis carriage (3) in a sliding manner, a Z-axis carriage (9), a lower eye mold adjusting mechanism (19) connected with the Y-axis carriage (3) and an upper eye mold adjusting mechanism (12) connected with the Z-axis carriage (9);
the lower eye mold adjusting mechanism (19) comprises a wire feeder fixing plate (30), a lower eye mold fixing plate (31) movably arranged on the wire feeder fixing plate (30), a lower Y-direction adjusting plate (33) and a lower X-direction adjusting plate (34), a lower eye mold adjusting block (32) is arranged on one side of the lower eye mold fixing plate (31), the lower Y-direction adjusting plate (33) can push the lower eye mold adjusting block (32) to move along the Y direction, and the lower X-direction adjusting plate (34) can push the lower eye mold adjusting block (32) to move along the X direction;
the upper eye die adjusting mechanism (12) comprises an XY-direction dovetail groove locking block (51), an XY-direction adjusting nut block (60) arranged in the XY-direction dovetail groove locking block (51), an X-direction dovetail adjusting slide block (50) movably arranged at the top end of the XY-direction dovetail groove locking block (51) along the X direction, a Y-direction dovetail adjusting slide block (52) movably arranged at the bottom end of the XY-direction dovetail groove locking block (51) along the Y direction and an upper eye die fixing plate (53) arranged at the bottom end of the Y-direction dovetail adjusting slide block (52), a Y-direction adjusting pressing sheet (56) is arranged on one side of the X-direction dovetail adjusting slide block (50), the Y-direction adjusting pressing sheet (56) is connected with the XY-direction dovetail groove locking block (51) through an X-direction adjusting screw (58), and an X-direction adjusting pressing sheet (57) is arranged on one side of the Y-direction dovetail adjusting slide block (52), the X-direction adjusting pressing sheet (57) is connected with the XY-direction dovetail groove locking block (51) through a Y-direction adjusting screw (59).
2. The novel wire cutting machine according to claim 1, wherein the wire feeder (18) is arranged on the wire feeder fixing plate (30), the lower Y-direction adjusting plate (33) is U-shaped, one end of a U-shaped opening of the lower Y-direction adjusting plate (33) abuts against one end of the lower eye mold adjusting block (32), a lower X-direction adjusting threaded hole (37) is arranged on the U-shaped opening of the lower Y-direction adjusting plate (33) in the X direction, a lower Y + direction adjusting threaded hole (35) is arranged on one end of the U-shaped opening of the lower Y-direction adjusting plate (33) in the Y direction, a lower Y-direction adjusting threaded hole (36) is arranged on the other end of the U-shaped opening of the lower Y-direction adjusting plate (33) in the Y direction, and the X-direction adjusting threaded hole (37), the Y + direction adjusting threaded hole (35) and the Y-direction adjusting threaded hole (36) are all connected with the wire feeder fixing plate (30) through adjusting bolts The middle part of X is provided with down X + to slip adjustment hole (38) down to regulating plate (34), be provided with locking screw hole (40) down on eye die fixed plate (31), the one end of wire feeder fixed plate (30) is provided with guard shield (39).
3. The novel linear cutting machine according to claim 1, characterized in that the XY-direction dovetail groove locking block (51) is provided with an X-direction dovetail groove in the X direction, the X-direction dovetail adjustment slider (50) is slidably arranged in the X-direction dovetail groove, the XY-direction dovetail groove locking block (51) is provided with a Y-direction dovetail groove in the Y direction, the Y-direction dovetail adjustment slider (52) is slidably arranged in the Y-direction dovetail groove, the XY-direction dovetail groove locking block (51) is provided with a Y-direction locking jackscrew (54) in the X direction, and the XY-direction dovetail groove locking block (51) is provided with an X-direction locking jackscrew (55) in the Y direction.
4. The novel wire cutting machine according to claim 1, characterized in that a first insulating pad (4) is arranged at the bottom end of the working platform (5), an upper insulating piece (11) is arranged at the top end of the upper eye mold adjusting mechanism (12), a lower insulating piece (17) is arranged at one end of the wire feeding mechanism, and a second insulating pad (20) is arranged on the Y-axis carriage (3).
5. The novel wire cutting machine tool according to claim 4, characterized in that one end of the upper insulating part (11) is provided with a wire electrode power transmission bracket (61), and the top end of the wire electrode power transmission bracket (61) is provided with a tapered groove anti-wire falling channel block (62) and an upper power transmission block (63).
6. The novel wire cutting machine tool according to claim 5, characterized in that the middle of the wire electrode power transmission support (61) is provided with a wear-resistant hole block seat (64), the bottom end of the wire electrode power transmission support (61) is provided with a wear-resistant hole block (65), one side of the wire electrode power transmission support (61) is provided with a wear-resistant hole block seat jackscrew (66), and the wire electrode power transmission support (61) is provided with a wire dropping prevention channel block adjusting hole (67).
7. The novel wire cutting machine according to claim 5, characterized in that one side of the tapered groove anti-drop wire channel block (62) is provided with a tapered groove anti-drop wire channel (68), and the tapered groove anti-drop wire channel block (62) and the upper power supply block (63) form a channel hole.
8. The novel wire cutting machine tool according to claim 1, characterized in that a column (6) is arranged at the top end of the Y-axis carriage (3), the bottom end of the column (6) is connected with a wire feeding mechanism (18) through a lower cantilever (16), a wire electrode position detection mechanism (15) is arranged at the lower side of the column (6), a wire threading constant tension adjustment mechanism (14) is arranged at the upper side of the column (6), and a wire threading mechanism (13) is arranged on the Z-axis carriage (9).
9. The novel wire cutting machine tool according to claim 1, wherein a fixed base (21) is arranged on the Y-axis carriage (3), a wire storage barrel swing seat (22) is slidably arranged on the fixed base (21), a wire storage barrel bearing seat (23) is arranged on the wire storage barrel swing seat (22), a bearing is installed in the wire storage barrel bearing seat (23), a wire storage barrel (25) is rotatably connected to the bearing, an automatic wire clamping and disassembling mechanism (26) is arranged on the wire storage barrel (25), a wire storage barrel rotating motor (24) is installed on the wire storage barrel bearing seat (23), and an output end of the wire storage barrel rotating motor (24) is connected with a rotating shaft of the wire storage barrel (25).
10. The novel wire cutting machine tool according to claim 1, characterized in that a cross laser positioner (10) is arranged on the Z-axis carriage (9), and a filtering water tank (27) is arranged on one side of the T-shaped lower machine body seat (1).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202210490118.1A CN114850599A (en) | 2022-05-07 | 2022-05-07 | Novel linear cutting machine |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202210490118.1A CN114850599A (en) | 2022-05-07 | 2022-05-07 | Novel linear cutting machine |
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| CN116275336A (en) * | 2023-05-18 | 2023-06-23 | 泰州市雄峰机械有限公司 | Wire cutting machine tool protective outer cover convenient to install |
| CN119115116A (en) * | 2024-09-05 | 2024-12-13 | 苏州宝玛格精密机械有限公司 | A medium wire automatic threading and disassembling device |
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| CN119115116A (en) * | 2024-09-05 | 2024-12-13 | 苏州宝玛格精密机械有限公司 | A medium wire automatic threading and disassembling device |
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