CN206162994U - Real device of instructing is debug in motion of three axis rails - Google Patents

Real device of instructing is debug in motion of three axis rails Download PDF

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Publication number
CN206162994U
CN206162994U CN201620373694.8U CN201620373694U CN206162994U CN 206162994 U CN206162994 U CN 206162994U CN 201620373694 U CN201620373694 U CN 201620373694U CN 206162994 U CN206162994 U CN 206162994U
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China
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axis
support seat
fixed
feed screw
screw nut
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Expired - Fee Related
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CN201620373694.8U
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Chinese (zh)
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周敏
刘小芽
刘小娟
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Zhongshan Polytechnic
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Zhongshan Polytechnic
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Abstract

The utility model discloses a real device of instructing is debug in motion of three axis rails, including Y axle slip table, X axle slip table, Z axle slip table, X axle slip table horizontal bracket establishes on Y axle slip table, and Z axle slip table vertical frame establishes the one end on Y axle slip table. Above -mentioned design combines three slip tables to form the real device of instructing of lathe teaching of a space three -dimensional together. This device can satisfy the installation of multiaxis digit control machine tool machinery, adjustment, the teaching requirement of typical task such as electromechanical uniting and adjustment, the requirement of modularization teaching in the ability realization integration teaching, can realize the geometrical accuracy adjustment practice of multiaxis digit control machine tool to the three dimensions geometrical accuracy that can realize country or ministry standard detects the practice.

Description

Actual training device is debug in a kind of three axis rails motion
Technical field
The utility model is related to a kind of instructional device, and actual training device is debug in a kind of especially three axis rail motion.
Background technology
Slide unit, is the typical structure of lathe also known as mechanical skid plateform;Mainly it is made up of lathe bed, screw mandrel, slide plate etc..Modern machine In tool lathe Integrated Teaching, it is desirable to produce reality of imparting knowledge to students, and traditional teaching slide unit structure bulky, operation inconvenience, work( Can be larger with the machine tool structure difference in produce reality;In produce reality, Digit Control Machine Tool mostly is 3 axles or more axle construction, passes The mono-axial teaching slide unit of system can not meet the typical tasks such as multi-axis NC Machine Tools mechanical erection, adjustment, electromechanical setting Teaching request;The geometric accuracy adjustment practice of multi-axis NC Machine Tools, and the three dimensions of country or ministry standard can not be realized Geometric accuracy detection practice.
The content of the invention
To solve above-mentioned technical problem, the purpose of this utility model is to provide a kind of three axis rail motion and debugs real training dress Put.
The technical solution adopted in the utility model is:Actual training device, including Y-axis slide unit, X are debug in a kind of three axis rails motion Axle slide unit, Z axis slide unit;The X-axis slide unit is set on Y-axis slide unit and can move horizontally along Y direction, and Z axis slide unit is vertical It is fixed on one end of Y-axis slide unit.
Actual training device is debug in a kind of three axis rail motion described in the utility model, and it further designs and is:The Y-axis Slide unit include before underframe, Y-axis guide rail, Y-axis adjustment plate after adjustment plate, Y-axis, Y-axis front support seat, Y-axis rear support seat, Y-axis screw mandrel, Y-axis handle, Y-axis shaft coupling, Y-axis handle set, Y-axis handwheel;The Y-axis guide rail is fixed on underframe, and the Y-axis front support seat is consolidated One end of underframe is scheduled on, the Y-axis rear support seat is fixed on the other end of underframe, and adjustment plate is arranged on underframe and Y before the Y-axis Between axle front support seat, adjustment plate is arranged between underframe and Y-axis rear support seat after the Y-axis, and one end of the Y-axis screw mandrel is consolidated It is scheduled in Y-axis front support seat, the other end of the Y-axis screw mandrel is fixed in Y-axis rear support seat and by Y-axis shaft coupling and Y-axis One end of handle is fixedly connected, and the other end of Y-axis handle is fixedly connected with Y-axis handwheel, and Y-axis handle set is fixed on Y-axis rear support On seat and Y-axis handle therethrough.
Actual training device is debug in a kind of three axis rail motion described in the utility model, and it further designs and is:The Y-axis Rear support seat is arranged to horizontal or rectilinear.
Actual training device is debug in a kind of three axis rail motion described in the utility model, and it further designs and is:The X-axis Slide unit includes that adjustment plate, X-axis front support seat, X-axis rear support seat, X-axis are slided after adjustment plate, X-axis before X-axis lathe bed, X-axis guide rail, X-axis Plate, X-axis slide block, X-axis screw mandrel, X-axis feed screw nut, X-axis feed screw nut's seat, X-axis handle, X-axis shaft coupling, X-axis handle set, X-axis Handwheel, Y-axis feed screw nut, Y-axis feed screw nut's seat, Y-axis slide block;The Y-axis slide block and Y-axis guide rail match and are fixed on X-axis The corner of lathe bed bottom;The Y-axis feed screw nut seat is fixed on X-axis lathe bed bottom centre, and the Y-axis feed screw nut is fixed on Y In axial filament stem nut seat, the Y-axis screw mandrel is applied in Y-axis feed screw nut and is provided with the screw thread matched with Y-axis feed screw nut, The X-axis guide rail is fixed on X-axis lathe bed, and the X-axis front support seat is fixed on one end of X-axis lathe bed, the X-axis rear support seat The other end of X-axis lathe bed is fixed on, adjustment plate is arranged between X-axis lathe bed and X-axis front support seat, after the X-axis before the X-axis Adjustment plate is arranged between X-axis lathe bed and X-axis rear support seat, and the X-axis slide block matches with X-axis guide rail and is fixed on X-axis and slides The corner of plate bottom, the X-axis feed screw nut seat is fixed on X-axis slide plate bottom centre, and the X-axis feed screw nut is fixed on X-axis In feed screw nut's seat, the X-axis screw mandrel is applied in X-axis feed screw nut and is provided with the screw thread matched with X-axis feed screw nut, institute The one end for stating X-axis screw mandrel is fixed in X-axis front support seat, and the other end of the X-axis screw mandrel is fixed in X-axis rear support seat and leads to Cross X-axis shaft coupling to be fixedly connected with one end of X-axis handle, the other end of X-axis handle is fixedly connected with X-axis handwheel, X-axis handle set Be fixed on X-axis rear support seat and X-axis handle therethrough.
Actual training device is debug in a kind of three axis rail motion described in the utility model, and it further designs and is:The X-axis Lathe bed has axially symmetric structure.
Actual training device is debug in a kind of three axis rail motion described in the utility model, and it further designs and is:The X-axis Rear support seat is arranged to horizontal or rectilinear.
Actual training device is debug in a kind of three axis rail motion described in the utility model, and it further designs and is:The Y-axis Back-to-back type angular contact bearing is provided with front support seat and X-axis front support seat.
Actual training device is debug in a kind of three axis rail motion described in the utility model, and it further designs and is:The Z axis Slide unit includes that adjustment plate, Z axis front support seat, Z axis rear support seat, Z axis are slided after adjustment plate, Z axis before Z axis stand, Z axis guide rail, Z axis Plate, Z axis slide block, Z axis screw mandrel, Z axis feed screw nut, Z axis feed screw nut's seat, Z axis handwheel;The Z axis stand is fixed on underframe One end, the Z axis guide rail is fixed in Z axis stand, and the Z axis front support seat is fixed on one end of Z axis stand, the Z axis Rear support seat is fixed on the other end of Z axis stand, and adjustment plate is arranged between Z axis stand and Z axis front support seat before the Z axis, Adjustment plate is arranged between Z axis stand and Z axis rear support seat after the Z axis, and the Z axis slide block matches and consolidate with Z axis guide rail Z axis slide plate two bottom sides are scheduled on, the Z axis feed screw nut seat is fixed on Z axis slide plate bottom centre, and the Z axis feed screw nut consolidates It is scheduled in Z axis feed screw nut's seat, the Z axis screw mandrel is applied in Z axis feed screw nut and is provided with and matches with Z axis feed screw nut Screw thread, one end of the Z axis screw mandrel is fixed in Z axis front support seat, and the other end of the Z axis screw mandrel is fixed on Z axis rear support It is fixedly connected in seat and with Z axis handwheel.
Actual training device is debug in a kind of three axis rail motion described in the utility model, and it further designs and is:The Z axis Back-to-back type angular contact bearing is provided with front support seat and Z axis rear support seat.
The beneficial effects of the utility model:
Actual training device is debug in a kind of three axis rail motion described in the utility model, by the way that three sections of slide units are combined one Rise, devise a kind of lathe teaching training apparatus of the coordinate of space three.This device can meet multi-axis NC Machine Tools mechanical erection, adjust It is whole, the teaching request of the typical tasks such as electromechanical setting;The requirement of modularization teaching in Integrated Teaching can be realized;Can realize The geometric accuracy adjustment practice of multi-axis NC Machine Tools, and it is real to be capable of achieving the three dimensions geometric accuracy detection of country or ministry standard Practise.
Description of the drawings
Specific embodiment of the present utility model is described further below in conjunction with the accompanying drawings.
Fig. 1 is the structural representation that the utility model debugs actual training device;
Fig. 2 is the structural representation that the utility model debugs actual training device Y-axis slide unit;
Fig. 3 is the structural representation that the utility model debugs actual training device X-axis slide unit;
Fig. 4 is the X-axis lathe bed polycrystalline substance schematic diagram that the utility model debugs actual training device;
Fig. 5 is the X-axis slide plate dependency structure schematic diagram that the utility model debugs actual training device;
Fig. 6 is the structural representation of the Z axis slide unit that the utility model debugs actual training device;
Fig. 7 is the Z axis slide plate dependency structure schematic diagram that the utility model debugs actual training device.
Specific embodiment
Fig. 1 is the structural representation that actual training device is debug in a kind of three axis rail motion described in the utility model.This real training is filled Put including Y-axis slide unit 1, X-axis slide unit 2, Z axis slide unit 3;The level of X-axis slide unit 2 is set on Y-axis slide unit 1 and can be along Y-axis Direction moves horizontally, and Z axis slide unit 3 is vertically fixed on one end of Y-axis slide unit 1.
Fig. 2 is the structural representation of this actual training device Y-axis slide unit 1.The Y-axis slide unit 1 include underframe 101, Y-axis guide rail 102, Adjustment plate 104, Y-axis front support seat 105, Y-axis rear support seat 106, Y-axis screw mandrel 107, Y-axis hand after adjustment plate 103, Y-axis before Y-axis Handle 108, Y-axis shaft coupling 109, Y-axis handle set 110, Y-axis handwheel 111.Wherein, Y-axis guide rail 102 is fixed on underframe 101, Y-axis Front support seat 105 is fixed on one end of underframe 101, and Y-axis rear support seat 106 is fixed on the other end of underframe 101;Adjust before Y-axis Plate 103 is arranged between underframe 101 and Y-axis front support seat 105, and adjustment plate 104 is arranged on after underframe 101 and Y-axis and props up after Y-axis Between support seat 106.One end of Y-axis screw mandrel 107 is fixed in Y-axis front support seat 105, and the other end of Y-axis screw mandrel 107 is fixed on Y Be fixedly connected in axle rear support seat 106 and with one end of Y-axis handle 108 by Y-axis shaft coupling 109, Y-axis handle 108 it is another End is fixedly connected with Y-axis handwheel 111, and Y-axis handle set 110 is fixed on Y-axis rear support seat 106 and Y-axis handle 108 runs through it In.
In said structure, underframe 101 is major bearing structures, for undertaking the weight of whole actual training device, its material one As be cast iron.One end of underframe 101 is provided with a platform for installing Z axis slide unit 3.
Fig. 3 is the structural representation of this actual training device X-axis slide unit 2.The X-axis slide unit 2 includes X-axis lathe bed 201, X-axis guide rail 202nd, adjustment plate 204, X-axis front support seat 205, X-axis rear support seat 206, X-axis slide plate 207, X after adjustment plate 203, X-axis before X-axis Axle slide block 208, X-axis screw mandrel 209, X-axis feed screw nut 210, X-axis feed screw nut seat 211, X-axis handle 212, X-axis shaft coupling 213, X-axis handle set 214, X-axis handwheel 215, Y-axis feed screw nut 216, Y-axis feed screw nut seat 217, Y-axis slide block 218.Wherein, X-axis is led Rail 202 is fixed on X-axis lathe bed 201, and X-axis front support seat 205 is fixed on one end of X-axis lathe bed 201, and X-axis rear support seat 206 is consolidated The other end of X-axis lathe bed 201 is scheduled on, adjustment plate 203 is arranged between X-axis lathe bed 201 and X-axis front support seat 205 before X-axis, X-axis Afterwards adjustment plate 204 is arranged between X-axis lathe bed 201 and X-axis rear support seat 206, and one end of X-axis screw mandrel 209 is fixed on before X-axis props up In support seat 205, the other end of X-axis screw mandrel 209 is fixed in X-axis rear support seat 206 and by X-axis shaft coupling 213 and X-axis handle 212 one end is fixedly connected, and the other end of X-axis handle 212 is fixedly connected with X-axis handwheel 215, and X-axis handle set 214 is fixed on X On axle rear support seat 206 and X-axis handle 212 therethrough.
Fig. 4 is the polycrystalline substance schematic diagram of this actual training device X-axis lathe bed 201.X-axis lathe bed 201 is erected in Y-axis guide rail 102, Can be movable along Y direction;Y-axis slide block 218 and Y-axis guide rail 102 match and are fixed on the four of the bottom of X-axis lathe bed 201 Angle;Y-axis feed screw nut seat 217 is fixed on the bottom centre of X-axis lathe bed 201, and Y-axis feed screw nut 216 is fixed on Y-axis feed screw nut In seat 217, Y-axis screw mandrel 107 is applied in Y-axis feed screw nut 216 and is provided with the screw thread matched with Y-axis feed screw nut 216.
By the way of manual actuation, this mode is reliable, safety, is suitable to teaching process for Y-axis slide unit 1.When shake Y-axis handwheel When 111, Y-axis handle 108 drives Y-axis screw mandrel 107 to rotate, the direction difference that X-axis lathe bed 201 rotate according to Y-axis handwheel 111 and edge Y-axis guide rail 102 to move forward and backward.In the moving process of X-axis lathe bed 201, in order to avoid Y-axis screw mandrel 107 because of Impact direction not Deform together, between Y-axis front support seat 105 and Y-axis screw mandrel 107 back-to-back type angular contact bearing is configured with.
Fig. 5 is the dependency structure schematic diagram of this actual training device X-axis slide plate 207.X-axis slide plate 207 is erected in X-axis guide rail 202, Can move left and right along X-direction;X-axis slide block 208 and X-axis guide rail 202 match and are fixed on the four of the bottom of X-axis slide plate 207 Angle, the X-axis feed screw nut seat 211 is fixed on the bottom centre of X-axis slide plate 207, and the X-axis feed screw nut 210 is fixed on X-axis silk In stem nut seat 211, the X-axis screw mandrel 209 is applied in X-axis feed screw nut 210 and is provided with and the phase of X-axis feed screw nut 210 The screw thread matched somebody with somebody.
Also by the way of manual actuation, manually during shake X-axis handwheel 215, X-axis handle 212 drives X-axis to X-axis slide unit 2 Screw mandrel 209 rotates, the direction that X-axis slide plate 207 is rotated according to X-axis handwheel 215 is different and move left and right along X-axis guide rail 202. In the moving process of X-axis slide plate 207, in order to avoid X-axis screw mandrel 209 deforms, X-axis front support seat 205 because Impact direction is different Back-to-back type angular contact bearing is configured between X-axis screw mandrel 209.
Fig. 6 is the structural representation of the Z axis slide unit 3 of this actual training device.The Z axis slide unit 3 is led including Z axis stand 301, Z axis Adjustment plate 304 after adjustment plate 303, Z axis before rail 302, Z axis, Z axis front support seat 305, Z axis rear support seat 306, Z axis slide plate 307, Z axis slide block 308, Z axis screw mandrel 309, Z axis feed screw nut 310, Z axis feed screw nut seat 311, Z axis handwheel 312;The Z axis stand 301 are fixed on the one end on underframe 101, and the Z axis guide rail 302 is fixed in Z axis stand 301, the Z axis front support seat 305 One end of Z axis stand 301 is fixed on, the Z axis rear support seat 306 is fixed on the other end of Z axis stand 301, is adjusted before the Z axis Whole plate 303 is arranged between Z axis stand 301 and Z axis front support seat 305, and adjustment plate 304 is arranged on Z axis stand after the Z axis Between 301 and Z axis rear support seat 306, one end of the Z axis screw mandrel 309 is fixed in Z axis front support seat 305, the Z axis silk The other end of bar 309 is fixed in Z axis rear support seat 306 and is fixedly connected with Z axis handwheel 312.
Fig. 7 is the dependency structure schematic diagram of Z axis slide plate 307 of this actual training device.Z axis slide plate 307 is erected at Z axis guide rail 302 On, can move up and down along Z-direction;Z axis slide block 308 and Z axis guide rail 302 match and are fixed on the bottom two of Z axis slide plate 307 Side, the Z axis feed screw nut seat 311 is fixed on the bottom centre of Z axis slide plate 307, and the Z axis feed screw nut 310 is fixed on Z axis silk In stem nut seat 311, the Z axis screw mandrel 309 is applied in Z axis feed screw nut 310 and is provided with and the phase of Z axis feed screw nut 310 The screw thread matched somebody with somebody.
Also by the way of manual actuation, manually during shake Z axis handwheel 312, Z axis handwheel 312 drives Z axis to Z axis slide unit 3 Screw mandrel 309 rotates, the direction that Z axis slide plate 307 is rotated according to Z axis handwheel 312 is different and move up and down along Z axis guide rail 302. In the moving process of Z axis slide plate 307, in order to avoid Z axis screw mandrel 309 deforms, Z axis front support seat 305 because Impact direction is different Back-to-back type angular contact bearing is each equipped with Z axis rear support seat 306.
This actual training device is combined together on Y-axis slide unit 1, X-axis slide unit 2, Z axis slide unit 3, devises a kind of coordinate of space three Lathe teaching training apparatus.The typical tasks such as mechanical erection, adjustment, the electromechanical setting of multi-axis NC Machine Tools can be met Teaching operation is required;The geometric accuracy adjustment practice of achievable multi-axis NC Machine Tools and the geometric accuracy of country or ministry standard Detection practice.
In order to realize the installation of X-axis platform two-way mechanical, adjustment, electromechanical setting etc., X-axis lathe bed during practice teaching 201 are designed to axially symmetric structure.
The depth of parallelism and axiality training requirement in order to realize teaching request, Y-axis rear support seat 106 and X-axis rear support seat 206 are disposed as horizontal or rectilinear.Wherein, rectilinear rear support seat is practised hanging down for student in training process is debug Nogata is to installation Y-axis rear support seat 106 and X-axis rear support seat 206;The adjustment plate 204 after adjustment plate 104 and X-axis after to Y-axis Supporting surface carry out vertical direction shovel scrape, remove surplus, be capable of achieving teaching request coaxial accuracy adjusting training;Without shovel scraping ring During section, the achievable depth of parallelism debugs training.Horizontal rear support seat is practised in level side for student in training process is debug To installation Y-axis rear support seat 106 and X-axis rear support seat 206;After to Y-axis after adjustment plate 104 and X-axis adjustment plate 204 Support face carries out horizontal direction shovel and scrapes, and removes surplus, is capable of achieving the axiality and parallelism precision adjusting training of teaching request.
This actual training device is capable of achieving following training practice in addition to it can carry out the above-mentioned depth of parallelism, axiality training practice, also:
1. the Level-adjusting of underframe 101 training;For practising the use and the training of Level-adjusting method of level meter.2. lead The installation training of rail;Linearity, the depth of parallelism, the detection of flatness and calibration including guide rail, and the use of optical collimator Training.3. the installation training of screw mandrel;Fix including one end, the screw mandrel that the other end floats or two ends are all fixed installs training.4. thread The combined training of bar upper bearing (metal) and the elimination training in screw mandrel upper bearing (metal) gap.5. the calibration of screw mandrel side bus.6. X-Y crosses The installation of slide unit and the adjustment of perpendicularity;In installation process, first carry out the installation of Y-axis slide unit 1, after carry out X-axis slide unit 2 and pacify Dress, is to ensure that each part perpendicularity of X-Y cross slid platforms is required, can shovel the contact surface for scraping slide block 218 and X-axis lathe bed 201, makes Y-axis The perpendicularity of platform 1 and X-axis platform 2 reaches technical requirements.It is the perpendicularity for ensureing Z axis slide unit 3, also when Z axis slide unit 3 is installed The bottom surface for scraping Z axis stand 301 can be shoveled with the contact surface of underframe 101 to meet the requirements.7. the foundation of plane geometry precision concept with Plane geometry precision is adjusted.8. three-dimensional geometric accuracy adjustment(The axle geometric accuracies of X-Y-Z tri-), and Z axis and main shaft put down The global function geometric accuracy adjusting trainings such as row degree adjustment.
In practical operation, above-mentioned several training practices can be simultaneously carried out on a playscript with stage directions actual training device, student passes through 4 to 6 People group team unity, study completes different " lathe typical tasks ", defines in workshop is debug in numerical control different " project island ", so as to meet integration and the characteristics of Itemized teachings.
Preferred embodiments of the present utility model are the foregoing is only, the utility model is not limited to above-mentioned embodiment party Formula, if with essentially identical means realize the technical scheme of the utility model purpose belong to protection domain of the present utility model it It is interior.

Claims (9)

1. actual training device is debug in a kind of three axis rail motion, it is characterised in that:Including Y-axis slide unit(1), X-axis slide unit(2), Z axis slide Platform(3);The X-axis slide unit(2)It is set in Y-axis slide unit(1)Go up and can move horizontally along Y direction, Z axis slide unit(3)Vertically It is fixed on Y-axis slide unit(1)One end.
2. actual training device is debug in a kind of three axis rail motion according to claim 1, it is characterised in that:The Y-axis slide unit (1)Including underframe(101), Y-axis guide rail(102), adjustment plate before Y-axis(103), adjustment plate after Y-axis(104), Y-axis front support seat (105), Y-axis rear support seat(106), Y-axis screw mandrel(107), Y-axis handle(108), Y-axis shaft coupling(109), Y-axis handle set (110), Y-axis handwheel(111);The Y-axis guide rail(102)It is fixed on underframe(101)On, the Y-axis front support seat(105)It is fixed In underframe(101)One end, the Y-axis rear support seat(106)It is fixed on underframe(101)The other end, adjustment plate before the Y-axis (103)It is arranged on underframe(101)With Y-axis front support seat(105)Between, adjustment plate after the Y-axis(104)It is arranged on underframe (101)With Y-axis rear support seat(106)Between, the Y-axis screw mandrel(107)One end be fixed on Y-axis front support seat(105)It is interior, institute State Y-axis screw mandrel(107)The other end be fixed on Y-axis rear support seat(106)It is interior and by Y-axis shaft coupling(109)With Y-axis handle (108)One end be fixedly connected, Y-axis handle(108)The other end and Y-axis handwheel(111)It is fixedly connected, Y-axis handle set(110) It is fixed on Y-axis rear support seat(106)Upper and Y-axis handle(108)Therethrough.
3. actual training device is debug in a kind of three axis rail motion according to claim 2, it is characterised in that:Prop up after the Y-axis Support seat(106)It is arranged to horizontal or rectilinear.
4. actual training device is debug in a kind of three axis rail motion according to claim 2, it is characterised in that:The X-axis slide unit (2)Including X-axis lathe bed(201), X-axis guide rail(202), adjustment plate before X-axis(203), adjustment plate after X-axis(204), X-axis front support Seat(205), X-axis rear support seat(206), X-axis slide plate(207), X-axis slide block(208), X-axis screw mandrel(209), X-axis feed screw nut (210), X-axis feed screw nut's seat(211), X-axis handle(212), X-axis shaft coupling(213), X-axis handle set(214), X-axis handwheel (215), Y-axis feed screw nut(216), Y-axis feed screw nut's seat(217), Y-axis slide block(218);The Y-axis slide block(218)With Y-axis Guide rail(102)Match and be fixed on X-axis lathe bed(201)The corner of bottom;The Y-axis feed screw nut seat(217)It is fixed on X-axis Lathe bed(201)Bottom centre, the Y-axis feed screw nut(216)It is fixed on Y-axis feed screw nut's seat(217)It is interior, the Y-axis screw mandrel (107)It is applied in Y-axis feed screw nut(216)It is interior and be provided with and Y-axis feed screw nut(216)The screw thread for matching, the X-axis guide rail (202)It is fixed on X-axis lathe bed(201)On, the X-axis front support seat(205)It is fixed on X-axis lathe bed(201)One end, the X Axle rear support seat(206)It is fixed on X-axis lathe bed(201)The other end, adjustment plate before the X-axis(203)It is arranged on X-axis lathe bed (201)With X-axis front support seat(205)Between, adjustment plate after the X-axis(204)It is arranged on X-axis lathe bed(201)With X-axis rear support Seat(206)Between, the X-axis slide block(208)With X-axis guide rail(202)Match and be fixed on X-axis slide plate(207)The four of bottom Angle, the X-axis feed screw nut seat(211)It is fixed on X-axis slide plate(207)Bottom centre, the X-axis feed screw nut(210)It is fixed In X-axis feed screw nut's seat(211)It is interior, the X-axis screw mandrel(209)It is applied in X-axis feed screw nut(210)It is interior and be provided with and X-axis silk Stem nut(210)The screw thread for matching, the X-axis screw mandrel(209)One end be fixed on X-axis front support seat(205)It is interior, the X Axial filament bar(209)The other end be fixed on X-axis rear support seat(206)It is interior and by X-axis shaft coupling(213)With X-axis handle(212) One end be fixedly connected, X-axis handle(212)The other end and X-axis handwheel(215)It is fixedly connected, X-axis handle set(214)It is fixed In X-axis rear support seat(206)Upper and X-axis handle(212)Therethrough.
5. actual training device is debug in a kind of three axis rail motion according to claim 4, it is characterised in that:The X-axis lathe bed (201)With axially symmetric structure.
6. actual training device is debug in a kind of three axis rail motion according to claim 4, it is characterised in that:Prop up after the X-axis Support seat(206)It is arranged to horizontal or rectilinear.
7. actual training device is debug in a kind of three axis rail motion according to claim 4, it is characterised in that:Prop up before the Y-axis Support seat(105)And X-axis front support seat(205)Inside it is provided with back-to-back type angular contact bearing.
8. actual training device is debug in a kind of three axis rail motion according to claim 2, it is characterised in that:The Z axis slide unit (3)Including Z axis stand(301), Z axis guide rail(302), adjustment plate before Z axis(303), adjustment plate after Z axis(304), Z axis front support Seat(305), Z axis rear support seat(306), Z axis slide plate(307), Z axis slide block(308), Z axis screw mandrel(309), Z axis feed screw nut (310), Z axis feed screw nut's seat(311), Z axis handwheel(312);The Z axis stand(301)It is fixed on underframe(101)On one End, the Z axis guide rail(302)It is fixed on Z axis stand(301)On, the Z axis front support seat(305)It is fixed on Z axis stand (301)One end, the Z axis rear support seat(306)It is fixed on Z axis stand(301)The other end, adjustment plate before the Z axis (303)It is arranged on Z axis stand(301)With Z axis front support seat(305)Between, adjustment plate after the Z axis(304)It is arranged on Z axis to stand Frame(301)With Z axis rear support seat(306)Between, the Z axis slide block(308)With Z axis guide rail(302)Match and be fixed on Z axis Slide plate(307)Two bottom sides, the Z axis feed screw nut seat(311)It is fixed on Z axis slide plate(307)Bottom centre, the Z axis silk Stem nut(310)It is fixed on Z axis feed screw nut's seat(311)It is interior, the Z axis screw mandrel(309)It is applied in Z axis feed screw nut(310) It is interior and be provided with and Z axis feed screw nut(310)The screw thread for matching, the Z axis screw mandrel(309)One end be fixed on Z axis front support Seat(305)It is interior, the Z axis screw mandrel(309)The other end be fixed on Z axis rear support seat(306)It is interior and with Z axis handwheel(312)Gu Fixed connection.
9. actual training device is debug in a kind of three axis rail motion according to claim 8, it is characterised in that:Prop up before the Z axis Support seat(305)And Z axis rear support seat(306)Inside it is provided with back-to-back type angular contact bearing.
CN201620373694.8U 2016-04-27 2016-04-27 Real device of instructing is debug in motion of three axis rails Expired - Fee Related CN206162994U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108637453A (en) * 2018-07-19 2018-10-12 力信(江苏)能源科技有限责任公司 A kind of lithium ion battery ultrasonic wave hand-held welder
CN110310540A (en) * 2019-07-24 2019-10-08 贵州师范大学 Logistics information training platform
CN111862770A (en) * 2020-06-09 2020-10-30 深圳市未来十新交通科技有限公司 Device and method capable of quickly generating three-dimensional variable solid model
CN112037637A (en) * 2020-06-02 2020-12-04 合肥中捷教仪科技有限公司 Pure electric vehicles motor is real standard platform directional positioning mechanism

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108637453A (en) * 2018-07-19 2018-10-12 力信(江苏)能源科技有限责任公司 A kind of lithium ion battery ultrasonic wave hand-held welder
CN110310540A (en) * 2019-07-24 2019-10-08 贵州师范大学 Logistics information training platform
CN112037637A (en) * 2020-06-02 2020-12-04 合肥中捷教仪科技有限公司 Pure electric vehicles motor is real standard platform directional positioning mechanism
CN112037637B (en) * 2020-06-02 2024-06-11 合肥中捷教仪科技有限公司 Directional positioning mechanism of real standard platform of pure electric vehicles motor
CN111862770A (en) * 2020-06-09 2020-10-30 深圳市未来十新交通科技有限公司 Device and method capable of quickly generating three-dimensional variable solid model

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