CN205581620U - Biax linkage digit control machine tool simulation debugging device - Google Patents
Biax linkage digit control machine tool simulation debugging device Download PDFInfo
- Publication number
- CN205581620U CN205581620U CN201620161373.1U CN201620161373U CN205581620U CN 205581620 U CN205581620 U CN 205581620U CN 201620161373 U CN201620161373 U CN 201620161373U CN 205581620 U CN205581620 U CN 205581620U
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- Prior art keywords
- cabinet
- machine tool
- control machine
- digit control
- movable plate
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Abstract
The utility model belongs to five -axle linkage digit control machine tool debugging equipment field, especially a biax linkage digit control machine tool simulation debugging device, including frame, debugging equipment, host computer, power and biax controller, host computer connection biax controller, debugging equipment and power, the frame is one through many crossbeams with perpendicular roof beam looks fixed mounting and founds square cabinet body, the crossbeam will found square cabinet body and separate for the over -The -Counter body, the well cabinet body and the lower cabinet body, the over -The -Counter is internal to have one to go up the movable plate along horizontal direction slidable mounting, and should go up the movable plate internal rotation and install one and go up the returning face plate, upward the returning face plate is embedded is equipped with debugging equipment, the internal horizontal direction slidable mounting that follows of well cabinet has a well movable plate, returning face plate during the movable plate internal rotation installs in being somebody's turn to do, well returning face plate is embedded to be equipped with host computer, power and biax controller, lower internal two motors of installing of cabinet, the control end of motor is connected the biax controller.
Description
Technical field
This utility model belongs to 5-shaft linkage numerical control lathe commissioning device field, and especially a kind of Dual-spindle linked Digit Control Machine Tool simulation is adjusted
Electricity testing device.
Background technology
Dual-spindle linked Digit Control Machine Tool is a kind of common equipment, and the core component of this equipment is main frame, power supply, twin shaft controller, main
The PLC installed in machine and software are for receiving the signal of various sensor and providing control instruction, and twin shaft controller controls two electricity
Machine.
After equipment uses in varying environment, operating mode for a long time, it may appear that various faults, such as: software fault, hardware fault
Or hardware and software failure etc., the most relatively frequently with maintenance process be that the equipment that will appear from fault removes, complete software or hardware repaiied
Test after Fu, by after put into production, there are some problems in said process: 1. owing to mechanical discipline is the strongest, it is necessary to by
The maintenance producer of specialty repairs, so needing to take off equipment, impacts production;2. equipment is carrying out software upgrading
Rear needs are debugged, but debug with real lathe, the parts damages that misoperation causes easily occur;The most existing debugging
In, on the table, wiring is the most inconvenient for equipment after test equipment, maintenance and motor placement at random, and very
Dangerous.
Utility model content
The purpose of this utility model is to overcome the deficiencies in the prior art, it is provided that the function such as test, spare part is integrated and made
With a kind of Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus.
This utility model adopts the technical scheme that:
A kind of Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus, including frame, commissioning device, main frame, power supply and twin shaft controller,
Main frame connects twin shaft controller, commissioning device and power supply, it is characterised in that: described frame is fixed by many crossbeams and vertical beam
Being installed as a cube cabinet, cube cabinet is divided into upper wardrobe body, middle cabinet and lower cabinet body, described upper wardrobe body by described crossbeam
It is slidably fitted with a upper shifting board the most in the horizontal direction, in this upper shifting board, is rotatablely equipped with returning face plate on, described upper returning face plate
Inside it is embedded with described commissioning device, in described middle cabinet, is slidably fitted with movable plate in the horizontal direction, this turns in movable plate
Move and returning face plate in is installed, be embedded with described main frame, power supply and twin shaft controller in described middle returning face plate, in described lower cabinet body
Being provided with two motors, the control end of described motor connects described twin shaft controller.
And, described cube cabinet uses 4 vertical beams and 12 crossbeams to be fixedly mounted with mutually, and described 4 vertical beam parallel interval are arranged,
Between two the most adjacent vertical beams, equal horizontal interval is provided with 3 crossbeams, is formed between these 3 crossbeams and 2 vertical beams installed mutually
One vertical end face, the 3 crossbeam positions correspondence respectively in the most adjacent two vertically end face, form 3 spaced and vertical beams
Three perpendicular horizontal end faces, these three horizontal end faces cube cabinet is from top to bottom divided into upper wardrobe body, middle cabinet and under
Cabinet.
And, it being separately installed with an auxiliary support beam in described lower cabinet body below every crossbeam, described four auxiliary support beams are positioned at
In same level, these four auxiliary support beams form a platform, to being installed with motor described in two in platform.
And, described Over-The-Counter and middle cabinet be positioned at two vertical end faces that its front end face both sides are oppositely arranged the most in the horizontal direction between
Every being provided with two slide bars, the both side ends of every slide bar is fixed in the both ends of the surface of two adjacent vertical beam homonymies respectively.
And, it being shaped with 4 suitable with slide bar position through hole in described upper shifting board, described upper shifting board is led to by these 4
Hole slip cap is contained in corresponding 4 piece slide bar outer rim, and described upper shifting board can move forward and backward along direction perpendicular with slide bar, described
The both side ends of an extension spring it is separately installed with, in described upper shifting board between upper shifting board rear end face and the montant end face being oppositely arranged
Edge hollow out is shaped with a square hole, and the top and bottom, inner edge that this square hole is oppositely arranged are respectively symmetrically and are provided with a rotary shaft, this two rotation
The upper and lower end of described upper returning face plate it is rotatablely equipped with between axle.
And, it being shaped with 4 suitable with slide bar position through hole in described middle movable plate, described middle movable plate is led to by these 4
Hole slip cap is contained in corresponding 4 piece slide bar outer rim, and described middle movable plate can move forward and backward along direction perpendicular with slide bar, described
The both side ends of an extension spring it is separately installed with, in described middle movable plate between middle movable plate rear end face and the montant end face being oppositely arranged
Edge hollow out is shaped with a square hole, and the top and bottom, inner edge that this square hole is oppositely arranged are respectively symmetrically and are provided with a rotary shaft, this two rotation
The upper and lower end of described middle returning face plate it is rotatablely equipped with between axle.
And, described each vertical beam bottom is respectively mounted the castor of a band limit switches.
And, from top to bottom it being divided into Shang Qu and Xia Qu in described upper returning face plate, described upper district is embedded in display module and upper key-press module,
Described lower district setting-in lower knob module.
And, make multirow horizontal elongated hole group in described middle returning face plate, the middle panel between two adjacent horizontal elongated hole groups is made
Go out vertical elongated hole group, horizontal elongated hole group or vertically elongated hole group be bolted described main frame, power supply and twin shaft controller upper end and
The lifting plate that lower end is made.
Advantage of the present utility model and good effect be:
In this utility model, cube cabinet uses crossbeam and vertical beam fixed installation to make, wherein in upper shifting board and middle movable plate
Coordinate slide bar be used for being embedded in commissioning device, main frame, power supply and twin shaft controller, the platform made in lower cabinet body for installing motor,
Upper shifting board and lower shifting board coordinate slide bar can move forward and backward in upper wardrobe body and middle cabinet, before and after determining according to standby shared space
The position of movement, extension spring can assist upper shifting board and lower shifting board to reset, and upper returning face plate and middle returning face plate can turn over when the equipment of installation
Turn, it is simple to the installation of equipment and the grafting of circuit, easy to use;And each parts arrange according to the mode of upper, middle and lower, if
Standby easy for installation, wiring is in good order;The castor that vertical beam lower end is installed is easy to cube cabinet and is moved to suitable position, it is simple to set
Standby test, i.e. can carry out the debugging of new software, it is to avoid the damage of actual lathe, it is also possible to the equipment after test and maintenance whether
Recover normal, it is also possible to be supplied directly to the equipment in framework cause the lathe stopped production to use because equipment of itself damages.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the right view of Fig. 1;
Fig. 3 be in Fig. 1 A-A to partial sectional view;
Fig. 4 is to go up the structural representation under returning face plate and middle returning face plate rollover states in this utility model.
Detailed description of the invention
Below in conjunction with embodiment, further illustrating this utility model, following embodiment is illustrative, is not determinate,
Protection domain of the present utility model can not be limited with following embodiment.
A kind of Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus, including frame, commissioning device, main frame 19, power supply 20 and twin shaft
Controller 18, main frame connects twin shaft controller, commissioning device and power supply, and innovation of the present utility model is, described frame is passed through
Many crossbeams 3 and vertical beam 1 fix and are installed as a cube cabinet, described crossbeam cube cabinet is divided into upper wardrobe body, in
Cabinet and lower cabinet body, be slidably fitted with a upper shifting board 2 in the horizontal direction in described upper wardrobe body, rotate and install in this upper shifting board
There are returning face plate 4 on, are embedded with described commissioning device in described upper returning face plate, are slidably installed in the horizontal direction in described middle cabinet
Have movable plate 9 in, this be rotatablely equipped with in movable plate returning face plate 10 in, be embedded with in described middle returning face plate described main frame,
Power supply and twin shaft controller, be provided with two motors in described lower cabinet body, the control end of described motor connects described twin shaft controller.
In the present embodiment, described cube cabinet uses 4 vertical beams and 12 crossbeams to be fixedly mounted with mutually, described 4 vertical beam parallel interval
Arrange, between two the most adjacent vertical beams, equal horizontal interval is provided with 3 crossbeams, these 3 crossbeams and 2 vertical beams installed mutually it
Between form a vertical end face, 3 crossbeam positions in the most adjacent two vertically end face are the most corresponding, formed 3 spaced
Three the horizontal end faces perpendicular with vertical beam, cube cabinet is from top to bottom divided into upper wardrobe body, middle cabinet by these three horizontal end faces
Body and lower cabinet body.An auxiliary support beam 14 it is separately installed with below every crossbeam, below every auxiliary support beam in described lower cabinet body
And being provided with the fixture 15 of a L-shaped between vertical beam for disperseing to assist the stress of support beam, described four auxiliary support beams are positioned at
In same level, these four auxiliary support beams form a platform, to being installed with motor 13 described in two in platform.
In this enforcement, for realize upper shifting board and lower shifting board stable before and after the work purpose of movement, described Over-The-Counter and middle cabinet
It is positioned at that two vertical end faces that its front end face both sides are oppositely arranged are the most horizontally spaced is provided with two slide bars 24, every slide bar
Both side ends be fixed on respectively in the both ends of the surface of two adjacent vertical beam homonymies.
Being shaped with 4 suitable with slide bar position through hole in described upper shifting board, described upper shifting board is slided by these 4 through holes
Being sleeved on corresponding 4 piece slide bar outer rim, described upper shifting board can move forward and backward along direction perpendicular with slide bar, described upper movement
Being separately installed with the both side ends of an extension spring 25 between plate rear end face and the montant end face being oppositely arranged, described upper shifting board inner edge is engraved
Sky is shaped with a square hole, and the top and bottom, inner edge that this square hole is oppositely arranged are respectively symmetrically and are provided with a rotary shaft 26, this two rotary shaft
Between be rotatablely equipped with the upper and lower end of described upper returning face plate.
Being shaped with 4 suitable with slide bar position through hole in described middle movable plate, described middle movable plate is slided by these 4 through holes
Being sleeved on corresponding 4 piece slide bar outer rim, described middle movable plate can move forward and backward along direction perpendicular with slide bar, described middle movement
The both side ends of an extension spring, described middle movable plate inner edge hollow out it is separately installed with between plate rear end face and the montant end face being oppositely arranged
Being shaped with a square hole 22, the top and bottom, inner edge that this square hole is oppositely arranged are respectively symmetrically and are provided with a rotary shaft, this two rotary shaft it
Between be rotatablely equipped with the upper and lower end of described middle returning face plate.
In the present embodiment, moving integrally for ease of equipment, described each vertical beam bottom is respectively mounted the foot of a band limit switches
Wheel 16.
In the present embodiment, in described upper returning face plate, from top to bottom it is divided into district 6 and lower district 7, described upper district setting-in display module 27
With upper key-press module 5, described lower district setting-in lower knob module 8.Multirow horizontal elongated hole group 11 is made in described middle returning face plate, two
Making vertical elongated hole group 12 on middle panel between individual adjacent horizontal elongated hole group, horizontal elongated hole group or vertically elongated hole group pass through bolt
21 fix the lifting plate 17 that described main frame, power supply and twin shaft controller top and bottom are made.
In this utility model, cube cabinet uses crossbeam and vertical beam fixed installation to make, wherein in upper shifting board and middle movable plate
Coordinate slide bar be used for being embedded in commissioning device, main frame, power supply and twin shaft controller, the platform made in lower cabinet body for installing motor,
Upper shifting board and lower shifting board coordinate slide bar can move forward and backward in upper wardrobe body and middle cabinet, before and after determining according to standby shared space
The position of movement, extension spring can assist upper shifting board and lower shifting board to reset, and upper returning face plate and middle returning face plate can turn over when the equipment of installation
Turn, it is simple to the installation of equipment and the grafting of circuit, easy to use;And each parts arrange according to the mode of upper, middle and lower, if
Standby easy for installation, wiring is in good order;The castor that vertical beam lower end is installed is easy to cube cabinet and is moved to suitable position, it is simple to set
Standby test, i.e. can carry out the debugging of new software, it is to avoid the damage of actual lathe, it is also possible to the equipment after test and maintenance whether
Recover normal, it is also possible to be supplied directly to the equipment in framework cause the lathe stopped production to use because equipment of itself damages.
Claims (9)
1. a Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus, controls including frame, commissioning device, main frame, power supply and twin shaft
Device, main frame connects twin shaft controller, commissioning device and power supply, it is characterised in that: described frame is by many crossbeams and vertical beam phase
Fixed installation is a cube cabinet, and cube cabinet is divided into upper wardrobe body, middle cabinet and lower cabinet body by described crossbeam, described on
Be slidably fitted with a upper shifting board in cabinet in the horizontal direction, in this upper shifting board, be rotatablely equipped with returning face plate on, described on turn over
It is embedded with described commissioning device in flap, is slidably fitted with movable plate in the horizontal direction in described middle cabinet, movable plate in this
Inside it is rotatablely equipped with returning face plate in, in described middle returning face plate, is embedded with described main frame, power supply and twin shaft controller, described lower cabinet
Internal two motors that are provided with, the control end of described motor connects described twin shaft controller.
A kind of Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus the most according to claim 1, it is characterised in that: described cube
Shape cabinet uses 4 vertical beams and 12 crossbeams to be fixedly mounted with mutually, and described 4 vertical beam parallel interval are arranged, between two the most adjacent vertical beams
All horizontal intervals are provided with 3 crossbeams, form a vertical end face between these 3 crossbeams and 2 vertical beams installed mutually, the most adjacent
Two vertical end faces in 3 crossbeam positions correspondence respectively, form 3 spaced three horizontal ends perpendicular with vertical beam
Face, cube cabinet is from top to bottom divided into upper wardrobe body, middle cabinet and lower cabinet body by these three horizontal end faces.
A kind of Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus the most according to claim 2, it is characterised in that: described lower cabinet
Being separately installed with an auxiliary support beam below internal every crossbeam, described four auxiliary support beams are located in the same horizontal plane, and these are four years old
Root auxiliary support beam forms a platform, to being installed with motor described in two in platform.
A kind of Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus the most according to claim 2, it is characterised in that: described Over-The-Counter
It is positioned at two the most horizontally spaced two slide bars that are provided with of vertical end face that its front end face both sides are oppositely arranged, often with middle cabinet
The both side ends of root slide bar is fixed in the both ends of the surface of two adjacent vertical beam homonymies respectively.
A kind of Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus the most according to claim 4, it is characterised in that: described upper shifting
Being shaped with 4 suitable with slide bar position through hole in dynamic plate, described upper shifting board is contained in corresponding by these 4 through hole slip caps
4 slide bar outer rims, described upper shifting board can along direction perpendicular with slide bar move forward and backward, described upper shifting board rear end face and phase
Being separately installed with the both side ends of an extension spring between montant end face to setting, described upper shifting board inner edge hollow out is shaped with a square hole,
The top and bottom, inner edge that this square hole is oppositely arranged are respectively symmetrically and are provided with a rotary shaft, are rotatablely equipped with institute between this two rotary shaft
State the upper and lower end of returning face plate.
A kind of Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus the most according to claim 4, it is characterised in that: described middle shifting
Being shaped with 4 suitable with slide bar position through hole in dynamic plate, described middle movable plate is contained in corresponding by these 4 through hole slip caps
4 slide bar outer rims, described middle movable plate can along direction perpendicular with slide bar move forward and backward, described middle movable plate rear end face and phase
Being separately installed with the both side ends of an extension spring between montant end face to setting, described middle movable plate inner edge hollow out is shaped with a square hole,
The top and bottom, inner edge that this square hole is oppositely arranged are respectively symmetrically and are provided with a rotary shaft, are rotatablely equipped with institute between this two rotary shaft
State the upper and lower end of middle returning face plate.
A kind of Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus the most according to claim 4, it is characterised in that: described each
Vertical beam bottom is respectively mounted the castor of a band limit switches.
A kind of Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus the most according to claim 5, it is characterised in that: turn on described
Shang Qu and Xia Qu, described upper district setting-in display module and upper key-press module, described lower district setting-in backspin from top to bottom it is divided in flap
Button module.
A kind of Dual-spindle linked Digit Control Machine Tool analogue debugging apparatus the most according to claim 6, it is characterised in that: turn in described
Make multirow horizontal elongated hole group in flap, the middle panel between two adjacent horizontal elongated hole groups makes vertical elongated hole group, laterally
Elongated hole group or vertically elongated hole group are bolted the lifting plate that described main frame, power supply and twin shaft controller top and bottom are made.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620161373.1U CN205581620U (en) | 2016-03-03 | 2016-03-03 | Biax linkage digit control machine tool simulation debugging device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620161373.1U CN205581620U (en) | 2016-03-03 | 2016-03-03 | Biax linkage digit control machine tool simulation debugging device |
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CN205581620U true CN205581620U (en) | 2016-09-14 |
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CN201620161373.1U Expired - Fee Related CN205581620U (en) | 2016-03-03 | 2016-03-03 | Biax linkage digit control machine tool simulation debugging device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112369988A (en) * | 2020-10-29 | 2021-02-19 | 华帝股份有限公司 | Hidden control panel structure, household appliance and control method |
-
2016
- 2016-03-03 CN CN201620161373.1U patent/CN205581620U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112369988A (en) * | 2020-10-29 | 2021-02-19 | 华帝股份有限公司 | Hidden control panel structure, household appliance and control method |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160914 Termination date: 20170303 |
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CF01 | Termination of patent right due to non-payment of annual fee |