CN208628905U - A kind of numerical control machining center cutter mounting structure easy to disassemble - Google Patents
A kind of numerical control machining center cutter mounting structure easy to disassemble Download PDFInfo
- Publication number
- CN208628905U CN208628905U CN201821482186.9U CN201821482186U CN208628905U CN 208628905 U CN208628905 U CN 208628905U CN 201821482186 U CN201821482186 U CN 201821482186U CN 208628905 U CN208628905 U CN 208628905U
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- Prior art keywords
- tool apron
- fixed
- sliding block
- telescopic rod
- convenient
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Abstract
The utility model discloses a kind of numerical control machining center cutter mounting structures easy to disassemble, including tool apron, fixed sliding block and fixing end, fixed sliding block is mounted at the top of the tool apron both ends, one end of fixed sliding block is equipped with fixed block, the two sides of tool apron are mounted on fixing end below the fixed sliding block, hydraulic telescopic rod is all uniformly installed, hydraulic telescopic rod output end is hinged with hinged seat, and the inside of tool apron is uniformly provided with strap between hinged seat and electric telescopic rod on tool apron inner wall.The utility model is by being equipped with tool apron, fixed sliding block and fixing end, the two sides of tool apron are mounted on fixing end below fixed sliding block, fixation hole is all uniformly provided in fixing end, and rubber antiskid pad is mounted at the top of fixing end, it is fixed after being fixed convenient for device by the fixation hole in fixing end, convenient for the fixed installation of device, while convenient for increasing antiskid effect when device is fixed by rubber antiskid pad, convenient for use of the device after fixed.
Description
Technical field
The utility model relates to numerically controlled processing equipment technical field, specially a kind of numerical control machining center easy to disassemble is used
Cutter mounting structure.
Background technique
With the continuous development of industry, numerical control machining center is as a kind of high-efficiency automatic lathe, comprehensive process ability
It is relatively strong, more processing content can be completed after workpiece clamped one time, machining accuracy is higher, is applicable in, essence more complex with various shape
It spends demanding workpiece to be processed, becomes many main production equipments of industry.
Existing numerical control machining center during processing, can adjust different cutters according to production requirement, but existing
Tool apron be not easy to that installation is fixed with numerical control machining center, be also not easy to the fixed installation of cutter, can not be according to cutter
Size is adjusted, and can not adjust the height of cutter when can not fix cutter of different shapes, and process according to process requirements,
It is not easy to device to be processed, while existing tool apron is also easy to produce vibration in process, it is easier that cutter is produced in processing
It is raw to shake or damage, influence cutting-tool's used life.
Utility model content
The purpose of this utility model is to provide a kind of numerical control machining center cutter mounting structures easy to disassemble, with solution
The height height that cutter can not certainly be adjusted when processing mentioned above in the background art according to process requirements, is not easy to device progress
Processing problems.
To achieve the above object, the utility model provides the following technical solutions: a kind of numerical control machining center easy to disassemble
With cutter mounting structure, including tool apron, fixed sliding block and fixing end, it is mounted on fixed sliding block at the top of the tool apron both ends,
One end of fixed sliding block is equipped with fixed block, and one end of fixed block all extends to the inside of fixed sliding block, and passes through the first spring
It is fixedly connected with fixed sliding block, the two sides of tool apron are mounted on fixing end, the tool apron below fixing end below the fixed sliding block
On be mounted on slide, and the center at the top of tool apron is equipped with groove, and the inside of tool apron is uniformly provided with fixing groove on the inside of groove, institute
The center for stating tool apron bottom is equipped with tool bore, and the center of tool apron is equipped with single-chip microcontroller, and the inside of tool apron is equipped with below single-chip microcontroller
Electric telescopic rod, the output end of electric telescopic rod extend to the center of tool bore and are equipped with briquetting, the center of the briquetting bottom
Touch sensor is installed, the output end of touch sensor and the input terminal of single-chip microcontroller are electrically connected, and the pressure on the inside of slide
Laser lamp is mounted on block, laser lamp passes through conducting wire and monolithic mechatronics, tool apron inner wall on the outside of the electric telescopic rod
On hydraulic telescopic rod is all uniformly installed, 2 hydraulic telescopic rod output ends of the same end are hinged with hinged seat, and hinged seat with
The inside of tool apron is uniformly provided with strap between electric telescopic rod, and strap side is hinged with 2 of the same end respectively
Seat is fixedly connected, and the strap is all uniformly equipped with pressure sensor far from the side of hinged seat, pressure sensor it is defeated
Outlet is electrically connected with the input terminal of single-chip microcontroller, and is equipped with second spring, the both ends of second spring on the outside of hydraulic telescopic rod
All it is fixedly connected respectively with the inner wall of tool apron and strap.
Preferably, the fixed sliding block is fixedly connected with fixed block by the first spring, and fixed sliding block and fixed block pass through
First spring constitutes elastic extension structure.
Preferably, fixation hole is all uniformly provided in the fixing end, tool apron constitutes fixation by fixing end and fixation hole and tears open
Assembling structure, and rubber antiskid pad is mounted at the top of fixing end.
Preferably, graduation mark is equipped on the tool apron of the slide two sides.
Preferably, it is fixedly connected between the strap and tool apron by second spring, between strap and tool apron
Shock-damping structure is constituted by second spring, and strap is mounted on rubber mat close to the side of pressure sensor.
Preferably, the bottom of the briquetting is set as arc structure, and the bottom of briquetting and the bottom of tool apron are in same level.
Compared with prior art, the utility model has the beneficial effects that the numerical control machining center cutter easy to disassemble
Mounting structure is mounted on fixed sliding block, fixed cunning by being provided with tool apron, fixed sliding block and fixing end at the top of tool apron both ends
The inside of block is equipped with fixed block by the first spring, convenient for rotating knife seat in device installation process, the card so that fixed block is pressurized
Enter the inside of fixed sliding block, after turning to corresponding position convenient for fixed sliding block, fixed block under the rebound effect of the first spring,
So that fixed block rebound is caught in inside the mounting hole on numerical control machining center knife rest, and convenient for the fixed installation of device, fixed sliding block
The two sides of lower section tool apron are mounted on fixing end, fixation hole are all uniformly provided in fixing end, and be mounted at the top of fixing end
Rubber antiskid pad is fixed after fixing convenient for device by the fixation hole in fixing end, convenient for the fixed installation of device, simultaneously
Convenient for by rubber antiskid pad increase device it is fixed when antiskid effect, convenient for use of the device after fixed, below fixing end
Slide is mounted on tool apron, the inside of tool apron is equipped with briquetting by electric telescopic rod, convenient for leading to during Cutting tool installation manner
Overregulating electric telescopic rod drives briquetting flexible, convenient for adjusting using highly for briquetting according to cutter length, is convenient for Cutting tool installation manner
When be mounted on the briquetting on the inside of slide by the determining use length between tool apron of briquetting convenient for the use of device
Laser lamp, and it is equipped with graduation mark on the tool apron of slide two sides, briquetting is shown convenient for being radiated on slide by laser lamp
Using height, convenient for by graduation mark determine briquetting using height, convenient for device suitable for different length cutter, tool apron
Inside is hinged with hinged seat by hydraulic telescopic rod, and one end of hinged seat is equipped with strap, and the side of strap is all equal
It is even that pressure sensor is installed, convenient for incuding the clamping pressure of strap by pressure sensor, convenient for the fixation of the same end
When pressure sensor on clamping plate senses pressure simultaneously, hydraulic telescopic rod stops stretching, different size of convenient for device clamping
Cutter is equipped with second spring on the outside of the utility model hydraulic telescopic rod, the both ends of second spring are all divided convenient for the use of device
It is not fixedly connected with the inner wall of tool apron and strap, and strap is mounted on rubber bullet close to the side of pressure sensor
Property pad, convenient for increasing the damping effect between strap and tool apron by second spring, convenient for being reduced in device use process
Vibration of the cutter to tool apron, while convenient for increasing elasticity tension when strap clamping by rubber mat, it is convenient for clamping
The damage that cutter is reduced during cutter, convenient for increasing cutting-tool's used life, convenient for the use of device.
Detailed description of the invention
Fig. 1 is the device overlooking structure diagram of the utility model;
Fig. 2 is the device side structure schematic view of the utility model;
Fig. 3 is that the device side of the utility model cuts open structural schematic diagram;
Fig. 4 is enlarged structure schematic diagram at A in Fig. 3 of the utility model;
Fig. 5 is the system block diagram of the utility model.
In figure: 1, tool apron;2, fixed sliding block;3, groove;4, fixing end;5, fixation hole;6, fixing groove;7, fixed block;8,
Slide;9, rubber antiskid pad;10, single-chip microcontroller;11, electric telescopic rod;12, the first spring;13, hydraulic telescopic rod;14, second
Spring;15, hinged seat;16, strap;17, tool bore;18, rubber mat;19, pressure sensor;20, briquetting;21, swash
Light lamp;22, touch sensor.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work
Every other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-5 is please referred to, a kind of embodiment provided by the utility model: a kind of numerical control machining center knife easy to disassemble
Have mounting structure, including tool apron 1, fixed sliding block 2 and fixing end 4, is mounted on fixed sliding block 2 at the top of 1 both ends of tool apron, it is fixed
One end of sliding block 2 is equipped with fixed block 7, and one end of fixed block 7 all extends to the inside of fixed sliding block 2, and passes through the first spring
12 are fixedly connected with fixed sliding block 2, and fixed sliding block 2 is fixedly connected with fixed block 7 by the first spring 12, fixed sliding block 2 and solid
Determine block 7 and elastic extension structure constituted by the first spring 12, convenient for rotating knife seat 1 in device installation process so that fixed block 7 by
Pressure is caught in the inside of fixed sliding block 2, after turning to corresponding position convenient for fixed sliding block 2, rebound of the fixed block 7 in the first spring 12
Under power effect, so that the rebound of fixed block 7 is caught in inside the mounting hole on numerical control machining center knife rest, convenient for the fixed peace of device
The two sides of dress, fixed 2 lower section tool apron 1 of sliding block are mounted on fixing end 4, and fixation hole 5 is all uniformly provided in fixing end 4, and tool apron 1 is logical
It crosses fixing end 4 and fixation hole 5 constitutes fixed disassembly and assembly structure, and the top of fixing end 4 is mounted on rubber antiskid pad 9, convenient for dress
It sets and is fixed after fixing by the fixation hole 5 in fixing end 4, convenient for the fixed installation of device, while convenient for anti-by rubber
Skidding 9 increases antiskid effect when device is fixed, and convenient for use of the device after fixed, is respectively mounted on the tool apron 1 of 4 lower section of fixing end
There is slide 8, and the center at 1 top of tool apron is equipped with groove 3, the inside of 3 inside tool apron 1 of groove is uniformly provided with fixing groove 6, tool apron
The center of 1 bottom is equipped with tool bore 17, and the center of tool apron 1 is equipped with single-chip microcontroller 10, and the model of single-chip microcontroller 10 can be mono- for AT89S51
The inside of piece machine, 10 lower section tool apron 1 of single-chip microcontroller is equipped with electric telescopic rod 11, and the output end of electric telescopic rod 11 extends to tool bore
17 center is simultaneously equipped with briquetting 20, and the bottom of briquetting 20 is set as arc structure, and the bottom of briquetting 20 and the bottom of tool apron 1 are in same
One horizontal plane, convenient for driving briquetting 20 flexible by adjusting electric telescopic rod 11, convenient for long according to cutter during Cutting tool installation manner
Degree adjusts using highly for briquetting 20, convenient for, by the determining use length between tool apron 1 of briquetting 20, being convenient for when Cutting tool installation manner
The use of device, the center of 20 bottom of briquetting are equipped with touch sensor 22, and the model of touch sensor 22 can be EV3-45507
Touch sensor, the output end of touch sensor 22 and the input terminal of single-chip microcontroller 10 are electrically connected, and the briquetting of 8 inside of slide
Laser lamp 21 is mounted on 20, laser lamp 21 is electrically connected by conducting wire with single-chip microcontroller 10, on the tool apron 1 of 8 two sides of slide
It is equipped with graduation mark, convenient for being radiated at the use height for showing briquetting 20 on slide 8 by laser lamp 21, convenient for passing through scale
Line determines using highly for briquetting 20, is suitable for the cutter of different length, convenient for device convenient for the use of device, electric telescopic rod
Hydraulic telescopic rod 13 is all uniformly installed, 2 13 output ends of hydraulic telescopic rod of the same end are hinged on 11 outside tool apron, 1 inner wall
There is hinged seat 15, and the inside of tool apron 1 is uniformly provided with strap 16, strap between hinged seat 15 and electric telescopic rod 11
16 sides are fixedly connected with 2 hinged seats 15 of the same end respectively, and side of the strap 16 far from hinged seat 15 is all uniform
Pressure sensor 19 is installed, the model of pressure sensor 19 can be MPX10 pressure sensor, the output end of pressure sensor 19
It is electrically connected with the input terminal of single-chip microcontroller 10, and is equipped with second spring 14 on the outside of hydraulic telescopic rod 13, second spring 14
Both ends are all fixedly connected with the inner wall of tool apron 1 and strap 16 respectively, pass through second spring between strap 16 and tool apron 1
14 are fixedly connected, and constitute shock-damping structure by second spring 14 between strap 16 and tool apron 1, and strap 16 is close to pressure
The side of force snesor 19 is mounted on rubber mat 18, convenient for increasing strap 16 and tool apron 1 by second spring 14
Between damping effect, convenient for reducing vibration of the cutter to tool apron 1 in device use process, while convenient for passing through rubber mat
18 increase elasticity tension when 16 clamping of strap, convenient for reducing the damage of cutter during clamping cutter, convenient for device
It uses.
Working principle: in use, inside the fixed card slot that fixed sliding block 2 is caught on numerical control machining center knife rest first,
By rotating tool apron 1, so that fixed block 7, which is pressurized, is caught in the inside of fixed sliding block 2, corresponding position is turned to convenient for fixed sliding block 2
Afterwards, fixed block 7 is under the rebound effect of the first spring 12, so that the rebound of fixed block 7 is caught on numerical control machining center knife rest
Convex block and fixed strip inside mounting hole, while on knife rest are caught in the inside (convex block on knife rest of fixing groove 6 by device rotation
Connection method with fixed strip and fixing groove 6 uses state of the art, therefore is no longer described in detail), convenient for the fixation of device
Installation is fixed, convenient for the fixed installation of device, while just by the fixation hole 5 in fixing end 4 after then fixing device
Antiskid effect when passing through the increase device of rubber antiskid pad 9 and fixing, convenient for the fixed dismounting of device, after being fixed convenient for device
It uses, being then turned on external power supply, (external power supply and the electric connection method use of electric telescopic rod 11 are electronic in the prior art
The common connection method of telescopic rod and external power supply, therefore be no longer described in detail), electric telescopic rod is adjusted according to cutter use demand
11 drive briquetting 20 flexible, convenient for using height according to cutter length adjusting briquetting 20, convenient for passing through briquetting when Cutting tool installation manner
The 20 determining use length between tool apron 1, when electric telescopic rod 11 is stretched, single-chip microcontroller 10 controls laser lamp 21 and lights, so that
Laser lamp 21 beats laser beam on slide 8, convenient for determining stretching for electric telescopic rod 11 by the graduation mark on slide 8
Contracting length, convenient for determining being caught in inside tool bore 17 using height, then by cutter for briquetting 20, when briquetting 20 is encountered on cutter top
When, the signal sensed is transferred to single-chip microcontroller 10 by touch sensor 22, so that single-chip microcontroller 10 controls hydraulic telescopic rod 13 and stretches,
Drive strap 16 that clamping is fixed to cutter along cutter shape, pressure sensor 19 can actual induction in clamping process
The clamping pressure of strap 16 will when sensing pressure simultaneously convenient for the pressure sensor 19 on the same end strap 16
Signal is transferred to single-chip microcontroller 10, so that single-chip microcontroller 10 controls hydraulic telescopic rod 13 and stops stretching, is convenient for device clamping different size
Cutter, convenient for the use of device, in cutter use process, second spring 14 can effectively increase strap 16 and tool apron 1 it
Between damping effect, convenient for reducing vibration of the cutter to tool apron 1 in device use process, while convenient for passing through rubber mat increasing
It is fixed elasticity tension when 16 clamping of clamping plate, convenient for reducing the damage of cutter during clamping cutter, convenient for increasing cutter
Service life, convenient for the use of device.
It is obvious to a person skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and
And without departing substantially from the spirit or essential attributes of the utility model, it can realize that this is practical new in other specific forms
Type.Therefore, in all respects, the present embodiments are to be considered as illustrative and not restrictive, this is practical new
The range of type is indicated by the appended claims rather than the foregoing description, it is intended that containing for the equivalent requirements of the claims will be fallen in
All changes in justice and range are embraced therein.It should not treat any reference in the claims as limiting
Related claim.
Claims (6)
1. a kind of numerical control machining center cutter mounting structure easy to disassemble, including tool apron (1), fixation sliding block (2) and fixation
It holds (4), it is characterised in that: be mounted on fixed sliding block (2) at the top of tool apron (1) both ends, the one end of fixed sliding block (2) is set
Have fixed block (7), and one end of fixed block (7) all extends to the inside of fixed sliding block (2), and by the first spring (12) and solid
Fixed slider (2) is fixedly connected, and the two sides of tool apron (1) are mounted on fixing end (4) below the fixed sliding block (2), fixing end (4)
It is mounted on slide (8) on the tool apron (1) of lower section, and the center at the top of tool apron (1) is equipped with groove (3), groove (3) interior side tool
The inside of seat (1) is uniformly provided with fixing groove (6), and the center of tool apron (1) bottom is equipped with tool bore (17), and in tool apron (1)
Centre is equipped with single-chip microcontroller (10), and the inside of tool apron (1) is equipped with electric telescopic rod (11), electric telescopic rod below single-chip microcontroller (10)
(11) output end extends to the center of tool bore (17) and is equipped with briquetting (20), and the center of briquetting (20) bottom is equipped with
Touch sensor (22), the output end of touch sensor (22) and the input terminal of single-chip microcontroller (10) are electrically connected, and slide (8)
It is mounted on laser lamp (21) on the briquetting (20) of inside, laser lamp (21) is electrically connected by conducting wire with single-chip microcontroller (10), institute
It states and is all uniformly equipped with hydraulic telescopic rod (13) on tool apron (1) inner wall on the outside of electric telescopic rod (11), 2 of the same end are hydraulic to stretch
Contracting bar (13) output end is hinged with hinged seat (15), and between hinged seat (15) and electric telescopic rod (11) tool apron (1) it is interior
Portion is uniformly provided with strap (16), and strap (16) side is fixedly connected with 2 hinged seats (15) of the same end respectively,
The strap (16) is all uniformly equipped with pressure sensor (19) far from the side of hinged seat (15), pressure sensor (19)
Output end with the input terminal of single-chip microcontroller (10) be electrically connected, and hydraulic telescopic rod (13) on the outside of be equipped with second spring
(14), the both ends of second spring (14) are all fixedly connected with the inner wall of tool apron (1) and strap (16) respectively.
2. one kind according to claim 1 numerical control machining center cutter mounting structure easy to disassemble, it is characterised in that:
The fixed sliding block (2) is fixedly connected with fixed block (7) by the first spring (12), and fixed sliding block (2) and fixed block (7) pass through
First spring (12) constitutes elastic extension structure.
3. one kind according to claim 1 numerical control machining center cutter mounting structure easy to disassemble, it is characterised in that:
It is all uniformly provided with fixation hole (5) on the fixing end (4), tool apron (1) constitutes fixation by fixing end (4) and fixation hole (5) and tears open
Assembling structure, and rubber antiskid pad (9) are mounted at the top of fixing end (4).
4. one kind according to claim 1 numerical control machining center cutter mounting structure easy to disassemble, it is characterised in that:
Graduation mark is equipped on the tool apron (1) of slide (8) two sides.
5. one kind according to claim 1 numerical control machining center cutter mounting structure easy to disassemble, it is characterised in that:
Be fixedly connected between the strap (16) and tool apron (1) by second spring (14), strap (16) and tool apron (1) it
Between by second spring (14) constitute shock-damping structure, and strap (16) is mounted on close to the side of pressure sensor (19)
Rubber mat (18).
6. one kind according to claim 1 numerical control machining center cutter mounting structure easy to disassemble, it is characterised in that:
The bottom of the briquetting (20) is set as arc structure, and the bottom of briquetting (20) and the bottom of tool apron (1) are in same level.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821482186.9U CN208628905U (en) | 2018-09-11 | 2018-09-11 | A kind of numerical control machining center cutter mounting structure easy to disassemble |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821482186.9U CN208628905U (en) | 2018-09-11 | 2018-09-11 | A kind of numerical control machining center cutter mounting structure easy to disassemble |
Publications (1)
Publication Number | Publication Date |
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CN208628905U true CN208628905U (en) | 2019-03-22 |
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ID=65743857
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Application Number | Title | Priority Date | Filing Date |
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CN201821482186.9U Expired - Fee Related CN208628905U (en) | 2018-09-11 | 2018-09-11 | A kind of numerical control machining center cutter mounting structure easy to disassemble |
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CN (1) | CN208628905U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113770207A (en) * | 2021-11-09 | 2021-12-10 | 佛山市阿玛达机械科技有限公司 | Hydraulic bending machine for manufacturing fireproof door and use method thereof |
-
2018
- 2018-09-11 CN CN201821482186.9U patent/CN208628905U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113770207A (en) * | 2021-11-09 | 2021-12-10 | 佛山市阿玛达机械科技有限公司 | Hydraulic bending machine for manufacturing fireproof door and use method thereof |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20190322 Termination date: 20190911 |
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CF01 | Termination of patent right due to non-payment of annual fee |