CN206718485U - High speed 3D printing parallel drive mechanism - Google Patents

High speed 3D printing parallel drive mechanism Download PDF

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Publication number
CN206718485U
CN206718485U CN201720535788.5U CN201720535788U CN206718485U CN 206718485 U CN206718485 U CN 206718485U CN 201720535788 U CN201720535788 U CN 201720535788U CN 206718485 U CN206718485 U CN 206718485U
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China
Prior art keywords
supporting plate
hole
lead screw
moving platform
screw assembly
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Expired - Fee Related
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CN201720535788.5U
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Chinese (zh)
Inventor
巩明德
胡孔明
曲中元
李天旭
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Jilin University
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Jilin University
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Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a kind of high speed 3D printing parallel drive mechanism, in order to overcome on the less part of stamp with the size or part the problem of easily not planning a successor or misplace during the less position of size, described high speed 3D printing parallel drive mechanism includes fixed platform (1), support (2), the first moving platform (10), the second moving platform (16), 3 No. 1 side chains in parallel and 3 No. 2 side chains in parallel;Support (2) is located at the underface of fixed platform (1), and it is fixedly connected by the upper fixing end of the first supporting plate (22) to the 3rd supporting plate (29) in support (2) with fixed platform (1), first moving platform (10) is located at the underface of support (2), and 3 No. 1 side chains in parallel are connected between support (2) and the first moving platform (10);Second moving platform (16) is located at the lower section of the first moving platform (10), and 3 No. 2 side chains in parallel are connected between the first moving platform (10) and the second moving platform (16).

Description

High speed 3D printing parallel drive mechanism
Technical field
The drive mechanism in a kind of 3D printing and parallel institution field is the utility model is related to, more precisely, this practicality is new Type is related to a kind of high speed 3D printing parallel drive mechanism.
Background technology
3D printing technique is a kind of emerging rapid shaping technique, in a manner of " every layer of superposition " is processing.From pushing away Since going out, one worldwide scientific and technological whirlwind has been formd, is had in fields such as Aero-Space, medical science, auto industrys extensive Using.The drive mechanism of 3D printer is divided into three kinds of Cartesian coordinate type, series and parallel.
The drive mechanism of 3D printer is in the majority with rectangular co-ordinate structure both at home and abroad at present, but the print space of the kind equipment is straight Receive the limitation of rail length so that printer busy space is larger and print space is smaller, while the printing speed of printer Degree is limited by coordination and response speed on three directions, and print speed is slower.If accessory size is too small, printhead occurs Jitter conditions, influence printing precision.
Chinese patent bulletin (cloth) number is CN203936378U, and bulletin (cloth) day is on November 12nd, 2014, denomination of invention For " a kind of print structure of 3D printer ", the print structure of a kind of tandem 3D printer is provided in the case, can The printing of multi-angle, more height is realized in printer space, secondary printing can be carried out to the product being molded, together When model workbench can also carry out fast clamp positioning to model.Fixed with solving existing 3D printer printhead angle, no The problems such as secondary printing being realized to product.But series connection mechanical arm rigidity is poor, and the inverse kinematics for mechanical arm of connecting As a result it is more solutions, response speed is slower, causes printing precision and print speed is not ideal enough.
Cloudy He Sheng etc. has delivered the document of entitled " the desktop 3D printer based on three arm parallel-connection structures ", literature periodical source 《Machinery》2nd 36-40 pages of the phase in 2015, a kind of desktop 3D printer based on three arm parallel-connection structures is provided in the case, can be with Lift 3D printer vertical direction print space.But the length of connecting rod regardless of side chain, the printer is in terms of level Print space is impossible to the limitation beyond 3 root posts, and print space has much room for improvement.
Chinese patent bulletin (cloth) number is CN203485190U, and bulletin (cloth) day is on March 19th, 2014, entitled " a kind of 3D printer based on parallel institution ", provides that a kind of parallel 2 D translation mechanism is i.e. a kind of to be based on parallel machine in the case The 3D printer of structure, to solve the problems, such as that existing 3D printer print space is small and print speed is slow;
Parallel institution is by repacking, it can also be used to 3D printing field, has applied to the parallel machine of 3D printing system at present Structure includes the remodeling of each DELTA mechanisms.Chang Dingyong of Beijing Jiaotong University etc. has delivered entitled " multi output 3D printing redundant parallel The document of the design and analysis of robot ", literature reference《China Mechanical Engineering》1595-1602 pages of 12 phase of volume 26 in 2015, A kind of new multi output 3D printing robot is devised in the case, the robot mechanism using Delta parallel mechanism as main types, Using Stewart parallel institutions as auxiliary configuration.Auxiliary configuration is the rigidity and motion in order to ensure printer end actuator Precision, support force is provided for moving platform, and performed by controlling vibration caused by moving platform motion to improve printer end The robust motion of device.Multiple printheads are arranged on end effector, to realize multi output.
Xu Yihua etc. has delivered the document of entitled " Serial-Parallel Micro-manipulator kinematics analysis ", literature reference《Mechanical division And technology》The 6th 862-866 pages of the phase of volume 20 in 2001, the operation that two 3-PRS parallel institutions are in series is proposed in the case Refer to and be used for inching operation.Will very little into 3D printing equipment, print space by the structural modification.
Chinese patent bulletin (cloth) number is CN204367426U, and bulletin (cloth) day is on June 3rd, 2015, entitled " a kind of parallel institution 3D printer ", a kind of 3D printer being made up of Delta parallel mechanism is provided in the case, to solve mesh The problem of preceding three-shaft linkage 3D printer space-consuming is greatly and print speed is slow.But the 3D printer is straight using column design Connecing causes the print space of the 3D printer limited.
Chinese patent bulletin (cloth) number be CN105818381U, and bulletin (cloth) day is August in 2016 3 days, entitled " a kind of 3D printer based on plane parallel mechanism ", a kind of 3D printing being made up of plane parallel mechanism is provided in the case Machine, it is simple and compact for structure, but influenceed by plane print range, it is only suitable for printing the less part of part length width;Printing Platform moves up and down, and is limited by its bearing capacity, and it is overweight to be not suitable for printing part.
Cartesian coordinate type, series and parallel 3D printer, its maximum printing space with printhead to printer bottom The maximum distance of seat is proportional.And 3D printing rate request is higher, typically using motor drive mode.If the maximum distance Excessive, then at the less position of size on the less part of stamp with the size or part, motor needs frequent rotating, now by The larger-size influence of drive mechanism, the speed that the direction of printhead changes lag, and cause printing not plan a successor or wrong Position, has a strong impact on printing precision;If the maximum distance is too small, maximum printing space is with regard to small.Current research equipment, there is no Method solves the contradiction for not planning a successor or misplacing when print space prints with small size.
The content of the invention
Technical problem to be solved in the utility model is to overcome print space existing for prior art to beat with small size A kind of the problem of contradiction for not planning a successor or misplacing during print, there is provided high speed 3D printing parallel drive mechanism.
In order to solve the above technical problems, the utility model adopts the following technical scheme that realization:Described high speed 3D is beaten Printing parallel drive mechanism includes No. 1 fixed platform, support, the first moving platform, the second moving platform, 3 structure identicals side chain in parallel With No. 2 side chains in parallel of 3 structure identicals.
Described support is located at the lower section of fixed platform, and passes through the first supporting plate in support, the second supporting plate and the 3rd The upper fixing end of supporting plate is fixedly connected with fixed platform bolt, and the first supporting plate, the second supporting plate are upper solid with the 3rd supporting plate Fixed end is uniformly distributed on fixed platform;First moving platform is located at the lower section of support, 3 branch chain links in parallel of structure identical 1 Between support and the first moving platform;Second moving platform is located at the lower section of the first moving platform, 3 branch in parallel of structure identical 2 Chain link is between the first moving platform and the second moving platform.
Fixed platform described in technical scheme is disc-shaped structure part, and 3 structure identical gap and 3 groups are distributed with thereon Supporting plate mounting hole, 3 structure identical gap and 3 groups of supporting plate mounting holes are supporting setting, and 3 gap are along the circumferential direction equal Arrange evenly, the width of the first supporting plate, the second supporting plate or the 3rd supporting plate in the width and support of gap is equal, 3 groups Supporting plate mounting hole is uniformly distributed on fixed platform and in the inboard of 3 structure identical gap, every group of supporting plate mounting hole It is made up of 2 tapped through holes, every group of supporting plate mounting hole and the first supporting plate, the second supporting plate or the 3rd supporting plate in support The supporting plate positioning hole of upper fixing end aligns.
Support described in technical scheme includes supporting plate, support bar and support baseboard;Wherein:Supporting plate includes first Fagging, the second supporting plate and the 3rd supporting plate, the first supporting plate, the second supporting plate are identical with the 3rd supporting plate structure;Support bar Including first support bar, second support bar and the 3rd support bar, first support bar, second support bar and the 3rd supporting bar structure phase Together;Described first support bar is the straight-bar class formation part of rectangular cross section, and the lower end of first support bar is welded on the first support Middle on the inside of plate, the top plan of first support bar is parallel with the baseplane of the first supporting plate upper fixing end, and two is parallel flat The distance in face is the thickness of fixed platform.
The first described supporting plate is waits the plate structure part of rectangular cross section, and the first supporting plate both ends are to the same side bending Into upper fixing end and lower fixing end, upper fixing end is parallel with lower fixing end, and the upper fixing end of the first supporting plate is provided with 1 pair of branch Fagging positioning hole, is tapped through hole, and 1 pair of supporting plate positioning hole aligns with 1 pair of supporting plate mounting hole on fixed platform;First support The fixed platform lead screw assembly mounting hole that 2 structure identicals are used to connect fixed platform lead screw assembly is provided with the middle part of plate, is spiral shell Line through hole;The lower fixing end of first supporting plate is provided with 1 pair of supporting plate fastener hole;First supporting plate, the second supporting plate and the 3rd Supporting plate is arranged on support baseboard by its lower end, the first supporting plate, the second supporting plate and any two in the 3rd supporting plate Angle between person is equal.
The first moving platform described in technical scheme is the plate-type structural piece of hexagon, and the first moving platform of the hexagon is Cut what 3 small equilateral triangles obtained in three vertex of 1 big equilateral triangle, at every short side of the first moving platform The U-shaped contiguous block mounting hole of 2 structure identicals first is provided with, the U-shaped contiguous block mounting hole of 2 structure identicals first is screw thread Through hole, the U-shaped contiguous block mounting hole of 2 structure identicals first and the first U-shaped contiguous block being fixedly connected on the first moving platform The first U-shaped contiguous block lower opening align, at every hexagon short side midpoint with being provided with 2 structure phases on hexagonal centre line With moving platform lead screw assembly mounting hole, moving platform lead screw assembly mounting hole is tapped through hole, 2 structure identical moving platform silks Thick stick component mounting hole aligns with the moving platform lead screw assembly positioning hole on the first moving platform lead screw assembly, the center of the first moving platform Place is provided with 1 harness cord hole.
The second moving platform described in technical scheme is the plate-type structural piece of hexagon, and the second moving platform of the hexagon is Cut what 3 small equilateral triangles obtained in three vertex of 1 big equilateral triangle, at every short side of the second moving platform The U-shaped contiguous block mounting hole of 2 structure identicals second is provided with, the U-shaped contiguous block mounting hole of 2 structure identicals second is screw thread The of through hole, the U-shaped contiguous block mounting hole of 2 structure identicals second and the second U-shaped contiguous block for being fixed on the second moving platform Two U-shaped contiguous block lower opening align, and are provided centrally with printhead mounting hole in the second moving platform, printhead mounting hole leads to for light Hole;3 structure identical printhead positioning holes are equably provided with around printhead mounting hole, printhead positioning hole is spiral shell Line through hole.
No. 1 side chain in parallel described in technical scheme includes fixed platform lead screw assembly, first order feed screw nut, the first order Hooke's hinge, long connecting rod, second level Hooke's hinge and the first U-shaped contiguous block;Described fixed platform lead screw assembly is fixed using bolt to be connected On the bottom surface for connecing the first supporting plate in the bracket, first order feed screw nut is arranged on fixed platform lead screw assembly, between the two To be slidably connected;The upper end of long connecting rod is connected by first order Hooke's hinge with first order feed screw nut, and the lower end of long connecting rod passes through Second level Hooke's hinge is connected with the first U-shaped contiguous block, and the first U-shaped contiguous block is arranged on the upper surface of the first moving platform using bolt On.
Fixed platform lead screw assembly described in technical scheme includes fixed platform motor, fixed platform motor slows down Device, fixed platform lead screw assembly support, 2 root architecture identical fixed platform lead screw assembly feed rods and fixed platform lead screw assembly ball wire Thick stick;Described fixed platform motor is arranged on using bolt on the right-hand member of fixed platform motor decelerator, fixed platform driving The output end of motor is fixedly connected with the input of fixed platform motor decelerator, and fixed platform motor decelerator uses spiral shell Bolt is arranged on the right support arm of fixed platform lead screw assembly support, and it is fixed that fixed platform lead screw assembly ball-screw is arranged on using bearing The left support arm of platform lead screw assembly support in the fixed platform lead screw assembly ball-screw mounting hole on right support arm with rotating Connection, the output end of fixed platform motor decelerator are fixedly connected with the right-hand member of fixed platform lead screw assembly ball-screw, 2 knots Structure identical fixed platform lead screw assembly feed rod is arranged on the left support arm of fixed platform lead screw assembly support and allocating for right support arm It is located at fixed platform silk in platform lead screw assembly feed rod mounting hole for threaded connection, 2 structure identical fixed platform lead screw assembly feed rods The both sides of thick stick component ball-screw, 2 structure identical fixed platform lead screw assembly feed rods and fixed platform lead screw assembly ball-screw It is parallel.
The top of first order feed screw nut described in technical scheme is provided with 2 structure identical first order feed screw nuts Ear, the upper end of each first order feed screw nut ear are provided with hole on 1 first order feed screw nut, on first order feed screw nut Hole is the light through hole for installing first order Hooke's hinge, the first order silk in 2 structure identical first order feed screw nut ears The rotation conllinear in hole on thick stick nut, the bottom of the cuboid of first order feed screw nut are provided with 2 structure identicals First order feed screw nut feed rod hole and 1 first order feed screw nut lead screw hole, 2 structure identical first order feed screw nut feed rods Hole position is in the both sides of first order feed screw nut lead screw hole, the axis of rotation in 2 structure identical first order feed screw nut feed rod holes In and coexistence same level parallel with the axis of rotation of first order feed screw nut lead screw hole;2 first order feed screw nut ears On first order feed screw nut on the axis of rotation in hole and the axis of rotation in 2 structure identical first order feed screw nut feed rod holes It is parallel with plane where the axis of rotation of first order feed screw nut lead screw hole and with the gyroaxis of first order feed screw nut lead screw hole Line square crossing.
The first U-shaped contiguous block described in technical scheme pitches class formation part for "U" shaped, and the first U-shaped contiguous block is by left branch Brace, right support arm and base form, and left support arm is identical with right support arm configuration, left support arm, right support arm and base Width is equal with thickness, and the both ends Symmetrical vertical of left support arm, the bottom of right support arm and base is simultaneously connected, left support Arm, right support arm are parallel to each other, and the left support arm of the first U-shaped contiguous block, the upper end of right support arm are respectively arranged with 1 the first U Hole on type contiguous block, the structure in hole is identical on 2 the first U-shaped contiguous blocks, hole on 2 the first U-shaped contiguous blocks of structure identical Rotation conllinear is simultaneously parallel with base, and 2 the first U-shaped connections of structure identical are provided with the base of the first U-shaped contiguous block Block lower opening, hole is the light through hole for connecting second level Hooke's hinge on 2 the first U-shaped contiguous blocks of structure identical, 2 structure phases The first same U-shaped contiguous block lower opening is light through hole, the U-shaped contiguous block lower opening of 2 structure identicals first and 2 on the first moving platform The individual U-shaped contiguous block mounting hole of structure identical first aligns.
No. 2 side chains in parallel described in technical scheme include the first moving platform lead screw assembly, second level feed screw nut, the 3rd Level Hooke's hinge, short connecting rod, fourth stage Hooke's hinge and the second U-shaped contiguous block.The first described moving platform lead screw assembly passes through wherein Moving platform lead screw assembly support be arranged on the bottom surface of the first moving platform, the first moving platform lead screw assembly and the first moving platform it Between be connected by screw bolts;Second level feed screw nut is sleeved on the moving platform lead screw assembly ball wire in the first moving platform lead screw assembly On thick stick and 2 root architecture identical moving platform lead screw assembly feed rods, second level feed screw nut and moving platform lead screw assembly ball-screw It is to be slidably connected between 2 root architecture identical moving platform lead screw assembly feed rods;The upper end of short connecting rod passes through third level Hooke's hinge It is connected with second level feed screw nut;The lower end of short connecting rod is connected by fourth stage Hooke's hinge with the second U-shaped contiguous block;Second is U-shaped Contiguous block is arranged on using bolt on the upper surface of the second moving platform.
The beneficial effects of the utility model are compared with prior art:
1. high speed 3D printing parallel drive mechanism described in the utility model can not only realize that large scale prints, and small During size marking, the situation for not planning a successor or misplacing can be reduced.
2. high speed 3D printing parallel drive mechanism described in the utility model improves simultaneously while three-dimensional translating is kept Join the print space of drive mechanism.
3. high speed 3D printing parallel drive mechanism described in the utility model is only made up of low pair, degree of freedom of kinematic pair sum It is less, it is simple in construction, it is easy to manufacture, process and assemble, production cost is low;
4. high speed 3D printing parallel drive mechanism described in the utility model is when printing complex component, it is only necessary to clamping one It is secondary, it is not necessary to change printing device or printhead, clamping error can be reduced, improve printing precision.It is adapted as high-speed motion And the executing agency of complex component printing occasion.
To sum up, high speed 3D printing parallel drive mechanism described in the utility model has higher practical value and wide Application prospect, a kind of new structure is provided for technical fields such as parallel robot, Digit Control Machine Tool, coordinate measuring machine and remote operatings.
Brief description of the drawings
The utility model is further described below in conjunction with the accompanying drawings:
Fig. 1 is the axonometric projection view of high speed 3D printing parallel drive mechanism structure described in the utility model composition;
Fig. 2 is the fixed platform structure composition employed in high speed 3D printing parallel drive mechanism described in the utility model Front view;
Fig. 3 is the axle of the supporting structure composition employed in high speed 3D printing parallel drive mechanism described in the utility model Survey projection view;
Fig. 4 is the fixed platform lead screw assembly knot employed in high speed 3D printing parallel drive mechanism described in the utility model The axonometric projection view of structure composition;
Fig. 5 is the first order feed screw nut knot employed in high speed 3D printing parallel drive mechanism described in the utility model The axonometric projection view of structure composition;
Fig. 6 is the first U-shaped connection agllutination employed in high speed 3D printing parallel drive mechanism described in the utility model The axonometric projection view of structure composition;
Fig. 7 is the moving platform lead screw assembly knot employed in high speed 3D printing parallel drive mechanism described in the utility model The axonometric projection view of structure composition;
Fig. 8 is the first moving platform structure group employed in high speed 3D printing parallel drive mechanism described in the utility model Into axonometric projection graph;
Fig. 9 is the second level feed screw nut knot employed in high speed 3D printing parallel drive mechanism described in the utility model The axonometric projection view of structure composition;
Figure 10 is the second U-shaped connection agllutination employed in high speed 3D printing parallel drive mechanism described in the utility model The axonometric projection view of structure composition;
Figure 11 is the second moving platform structure employed in high speed 3D printing parallel drive mechanism described in the utility model The axonometric projection view of composition;
In figure:1. fixed platform, 2. supports, 3. fixed platform lead screw assemblies, 4. first order feed screw nuts, 5. first order Hookes Hinge, 6. long connecting rods, 7. second level Hooke's hinges, 8. first U-shaped contiguous blocks, 9. first moving platform lead screw assemblies, 10. first is dynamic flat Platform, 11. second level feed screw nuts, 12. third level Hooke's hinges, 13. short connecting rods, 14. fourth stage Hooke's hinges, 15. second U-shaped connections Block, 16. second moving platforms, 17. gap, 18. supporting plate mounting holes, 19. supporting plate positioning holes, 20. fixed platform lead screw assemblies peace Dress hole, 21. first supporting plates, 22. first support bars, 23. second supporting plates, 24. second support bars, 25. supporting plate fastener holes, 26. support baseboard, 27. support baseboard mounting holes, 28. the 3rd support bars, 29. the 3rd supporting plates, 30. fixed platform motors, 31. fixed platform motor decelerator, 32. fixed platform lead screw assembly supports, 33. fixed platform lead screw assembly feed rods, 34. fixed platforms Lead screw assembly positioning hole, 35. fixed platform lead screw assembly ball-screws, 36. fixed platform lead screw assembly feed rod mounting holes, 37. allocate Platform lead screw assembly ball-screw mounting hole, hole on 38. first order feed screw nuts, 39. first order feed screw nut ears, 40. first Level feed screw nut feed rod hole, 41. first order feed screw nut lead screw hole, hole on 42. first U-shaped contiguous blocks, 43. first U-shaped connections Block lower opening, 44. moving platform motors, 45. moving platform motor decelerators, 46. moving platform lead screw assembly supports, 47. is dynamic Platform lead screw assembly feed rod, 48. moving platform lead screw assembly positioning holes, 49. moving platform lead screw assembly ball-screws, 50. moving platforms Lead screw assembly feed rod mounting hole, 51. moving platform lead screw assembly ball-screw mounting holes, 52. first U-shaped contiguous block mounting holes, 53. Moving platform lead screw assembly mounting hole, 54. harness cord holes, hole on 55. second level feed screw nuts, 56. second level feed screw nut ears, 57. second level feed screw nut feed rod hole, 58. second level feed screw nut lead screw hole, hole on 59. second U-shaped contiguous blocks, 60. the 2nd U Type contiguous block lower opening, 61. second U-shaped contiguous block mounting holes, 62. printhead positioning holes, 63. printhead mounting holes.
Embodiment
The utility model is explained in detail below in conjunction with the accompanying drawings:
Refering to Fig. 1, a kind of high speed 3D printing parallel drive mechanism described in the utility model includes fixed platform 1, support 2nd, the first moving platform 10, the second moving platform 16,3 No. 1 of connecting bracket 2 and the first moving platform 10 side chain in parallel, be connected first 3 No. 2 side chains in parallel of moving platform 10 and the second moving platform 16.
Refering to Fig. 2, described fixed platform 1 is disc-shaped structure part, and 3 structure identical gap 17 and 3 are distributed with thereon Group 18,3 structure identical gap 17 of supporting plate mounting hole and 3 groups of supporting plate mounting holes 18 are supporting setting, 3 edges of gap 18 Circumferencial direction equably arranges that the first supporting plate 22, the second supporting plate 23 or the 3rd in the width and support 2 of gap 18 support The width of plate 29 is equal, limits 1 translation freedoms of supporting plate;3 groups of supporting plate mounting holes 18 are uniformly distributed in fixed platform 1 Above and in the inboard of 3 structure identical gap 18, every group of supporting plate mounting hole 18 it is made up of 2 through holes, every group of supporting plate peace Fill hole 18 and the first supporting plate 21, the second supporting plate 23 or the supporting plate positioning hole 19 of the upper end of the 3rd supporting plate 29 in support 2 Align, and be connected the supporting plate 21 of fixed platform 1 and first, the second supporting plate 23 with the upper end of the 3rd supporting plate 29 using bolt, limit Make 6 frees degree of the first supporting plate 21, the second supporting plate 23 or the 3rd supporting plate 29.The connection of fixed platform 1 and support 2 is super Static determinacy connects, in order to the rigidity of enhancing structure.
Refering to Fig. 3, described support 2 is claw-type structure part, including supporting plate, support bar and support baseboard 26.Wherein:Branch Fagging includes the first supporting plate 21, the second supporting plate 23 and the 3rd supporting plate 29, the first supporting plate 21, the second supporting plate 23 and The structure of three supporting plate 29 is identical;Support bar includes first support bar 22, the support bar 28 of second support bar 24 and the 3rd, the first support Bar 22, second support bar 24 are identical with the structure of the 3rd support bar 28.The support 2 for setting the type is in order to which drive mechanism is being moved During occur avoiding unusual pose;The power that ball-screw can be subject to is decomposed, and reducing makes ball-screw produce moment of flexure Power;The displacement on first order feed screw nut vertical direction can be increased, and then increase the working space of whole mechanism.
First supporting plate 21 forms first connection unit, the second supporting plate 23 and second support bar with first support bar 22 24 second connection unit of composition, the 3rd supporting plate 29 and the 3rd support bar 28 form the 3rd connection unit, 3 connection units Structure it is identical with connected mode.In first supporting plate 21, the second supporting plate 23 and the 3rd supporting plate 29 it is any both Between angle it is equal.Any angle between the two in first support bar 22, the support bar 28 of second support bar 24 and the 3rd It is equal.Only illustrate annexation by taking first connection unit as an example below.
Described first support bar 22 is the straight-bar class formation part of rectangular cross section, and the lower end of first support bar 22 is welded on The baseplane of the middle of the inner side of first supporting plate 21, the top plan of first support bar 22 and the upper fixing end of the first supporting plate 21 Parallel, two plane-parallel distances are the thickness of fixed platform 1, are allocated when the upper fixing end of the first supporting plate 21 is bolted on During 1 upper surface of platform, the top plan of first support bar 22 just fully contacts with the lower surface of fixed platform 1;Support bar can be shared The power that supporting plate is subject to, and can reduce the deformation quantity of supporting plate with the synergy of support baseboard 26, the rigidity of enhancing structure, enter And ensure printing precision.
The first described supporting plate 21 is waits the plate structure part of rectangular cross section, and the both ends of the first supporting plate 21 are to the same side Upper fixing end and lower fixing end are bent into, upper fixing end is parallel with lower fixing end, and the upper fixing end of the first supporting plate 21 is set There is 1 pair of supporting plate positioning hole 19, be that 1 pair of supporting plate mounting hole 18 on through hole, with fixed platform 1 is aligned and will allocated using bolt Platform 1 is connected with the first supporting plate 21;The middle part of first supporting plate 21 is provided with 2 structure identical fixed platform lead screw assembly installations Hole 21, it is tapped through hole, for connecting fixed platform lead screw assembly 3;The lower fixing end of first supporting plate 22 is provided with 1 pair of supporting plate Fastener hole 25, it is attached by bolt and support baseboard 26.
Described support baseboard 26 is hexagonal plate class formation part, and the hexagon is to remove 1 by each angle of equilateral triangle Obtained from individual small equilateral triangle;3 groups of support baseboard mounting holes 27 are provided with support baseboard 26;3 groups of support baseboard installations Hole 27 is uniformly distributed in close to the inboard of hexagon short side on support baseboard 26, and every group of support baseboard mounting hole 27 is by 2 spiral shells Line through hole forms, every group of support baseboard mounting hole 27 and the first supporting plate 21 in support 2, the second supporting plate 23 or the 3rd support The supporting plate fastener hole 25 of the lower end of plate 29 aligns, and uses bolt by the supporting plate 21 of support baseboard 27 and first, the second supporting plate 23 are connected with the lower end of the 3rd supporting plate 29.
Support baseboard 26 is bolted installed in the lower end of 3 supporting plates;Between support baseboard 26 and 3 supporting plates In the presence of coupling, the coupling and 3 support bar synergy limit the frees degree of 3 supporting plates, and by the upper of 3 supporting plates End, which is fixed on, equally limits their 6 frees degree on fixed platform 1, therefore is redundant structure herein.Setting herein to reduce Supporting plate ensures printing precision in deformation quantity caused by stress, the rigidity of enhancing structure.
Described connecting bracket 2 is identical with the structure of 3 No. 1 side chains in parallel of the first moving platform 10, and they It is identical with the connected mode of support 2, the first moving platform 10;Connect 3 No. 2 of the first moving platform 10 and the second moving platform 16 The structure of side chain in parallel is identical, and they are identical with the connected mode of the first moving platform 10, the second moving platform 16.
Described support 2 is located at the lower section of fixed platform 1, passes through the first supporting plate 21, the second supporting plate 23 and the 3rd support The upper fixing end of plate 29 is connected with fixed platform 1, the upper fixing end of the first supporting plate 21, the second supporting plate 23 and the 3rd supporting plate 29 It is connected by screw bolts with fixed platform 1;The upper fixing end of first supporting plate 21, the second supporting plate 23 and the 3rd supporting plate 29 is allocating It is uniformly distributed on platform 1, and the first supporting plate 21, the second supporting plate 23 and any two supporting plate in the 3rd supporting plate 29 Projection of the longitudinally asymmetric line on fixed platform 1 is in 120 degree of angles.
The first described moving platform 10 is located at the lower section of support 2, connecting bracket 2 and 3 structure phases of the first moving platform 10 No. 1 same side chain in parallel is located between the moving platform 10 of support 2 and first;No. 1 side chain in parallel of 3 structure identicals during initial position Projection on fixed platform 1 is in Y-shaped, and the angle between every two lines is 120 degree.Now with wherein No. 1 side chain in parallel Exemplified by illustrate structure and connected mode of the connecting bracket 2 with No. 1 side chain in parallel of 3 structure identicals of the first moving platform 10.
No. 1 described side chain in parallel include fixed platform lead screw assembly 3, first order feed screw nut 4, first order Hooke's hinge 5, Long connecting rod 6,7 and first U-shaped contiguous block 8 of second level Hooke's hinge.
Described fixed platform lead screw assembly 3 is fixedly connected on the bottom surface of the first supporting plate 21 on support 2 using bolt, First order feed screw nut 4 is arranged on fixed platform lead screw assembly 3, to be slidably connected;The upper end of long connecting rod 6 and first order leading screw spiral shell First order Hooke's hinge 5 is provided between mother 4 to connect both, i.e., the upper end of long connecting rod 6 uses bolt with first order feed screw nut 4 It is attached with first order Hooke's hinge 5;Second level Hooke's hinge 7 is provided between the lower end of long connecting rod 6 and the first U-shaped contiguous block 8 Both are connected, i.e., the lower end of long connecting rod 6 is attached with the first U-shaped contiguous block 8 using bolt and second level Hooke's hinge 7;The One U-shaped contiguous block 8 is arranged on using bolt on the upper surface of the first moving platform 10.
Refering to Fig. 4, described fixed platform lead screw assembly 3 includes fixed platform motor 30, fixed platform motor slows down Device 31, fixed platform lead screw assembly support 32,2 root architecture identical fixed platform lead screw assembly feed rods 33 and the rolling of fixed platform lead screw assembly Ballscrew 35.
Described fixed platform motor 30 is arranged on using bolt on the right-hand member of fixed platform motor decelerator 31, fixed The output end of platform motor 30 is fixedly connected with the input of fixed platform motor decelerator 31, fixed platform motor Decelerator 31 is arranged on using bolt on the right support arm of fixed platform lead screw assembly support 32, fixed platform lead screw assembly ball-screw The 35 fixed platform lead screw assembly ball using bearing on the left support arm, right support arm of fixed platform lead screw assembly support 32 It is rotation connection in leading screw mounting hole 37, output end and the fixed platform lead screw assembly ball wire of fixed platform motor decelerator 31 The right-hand member of thick stick 35 is fixedly connected, and 2 structure identical fixed platform lead screw assembly feed rods 33 are arranged on fixed platform lead screw assembly support In 32 left support arm, the fixed platform lead screw assembly feed rod mounting hole 36 of right support arm, the two of fixed platform lead screw assembly feed rod 33 End is provided with screw thread, is connected through a screw thread the left side that fixed platform lead screw assembly feed rod 33 is fixed on to fixed platform lead screw assembly support 32 On right support arm, 2 structure identical fixed platform lead screw assembly feed rods 33 are located at the two of fixed platform lead screw assembly ball-screw 35 Side, 2 structure identical fixed platform lead screw assembly feed rods 33 are parallel with fixed platform lead screw assembly ball-screw 35.
Described fixed platform lead screw assembly support 32 is "U" shaped structural member, is made up of left plate, right plate and bottom plate. 2 structure identical fixed platform lead screw assembly feed rod mounting holes 36 and 1 fixed platform lead screw assembly ball are provided with left plate Leading screw mounting hole 37, fixed platform lead screw assembly feed rod mounting hole 36 is through hole, for installing fixed platform lead screw assembly feed rod 33 Left end;Fixed platform lead screw assembly ball-screw mounting hole 37 is shoulder hole, for installing fixed platform lead screw assembly ball-screw 35 Left end and bearing.2 and fixed platform lead screw assembly feed rod mounting hole No. 2 fixed platform leading screws of 36 identical are provided with right plate Component feed rod mounting hole, 1 and fixed platform lead screw assembly ball-screw mounting hole No. 2 fixed platform lead screw assembly balls of 37 identical Leading screw mounting hole and 4 decelerator mounting holes equably arranged around No. 2 fixed platform lead screw assembly ball-screw mounting holes; No. 2 fixed platform lead screw assembly feed rod mounting holes are through hole, for installing the right-hand member of fixed platform lead screw assembly feed rod 33;No. 2 allocate Platform lead screw assembly ball-screw mounting hole is shoulder hole, for installing the right-hand member and axle of fixed platform lead screw assembly ball-screw 35 Hold;Decelerator mounting hole is used to assemble motor reducer.2 fixed platform lead screw assembly positioning holes 34 are provided with bottom plate, are logical Fixed platform lead screw assembly mounting hole 20 on hole, and the first supporting plate 21, the second supporting plate 23 or the 3rd supporting plate 29 aligns, and adopts Be connected with the first supporting plate 21, the second supporting plate 23 or the 3rd support fixed platform lead screw assembly 3 being arranged in support 2 On plate 29.
Refering to Fig. 5, described first order feed screw nut 4 is the block structure part with ear.First order feed screw nut 4 it is upper Portion is provided with 2 structure identical first order feed screw nut ears 39, and the upper end of each first order feed screw nut ear 39 is set There is hole 38 on 1 first order feed screw nut, it is through hole, for installing 7,2 first order feed screw nut ears of first order Hooke's hinge The rotation conllinear in hole 38 on first order feed screw nut in portion 39.The bottom of first order feed screw nut 4 is provided with 2 first Level feed screw nut feed rod hole 40 and 1 first order feed screw nut lead screw hole, 41,2 structure identical first order feed screw nut feed rods Hole 40 is located at the both sides of first order feed screw nut lead screw hole 41, time in 2 structure identical first order feed screw nut feed rod holes 40 Shaft axis are parallel with the axis of rotation of first order feed screw nut lead screw hole 41 and coexist in same level;2 first order leading screws The axis of rotation in hole 38 and 2 structure identical first order feed screw nut feed rods on first order feed screw nut in nut ear 39 Plane where the axis of rotation of the axis of rotation in hole 40 and first order feed screw nut lead screw hole 41 it is parallel and with first order leading screw spiral shell The axis of rotation square crossing in master screw hole 41.First order feed screw nut feed rod hole 40 is carried out with fixed platform lead screw assembly feed rod 33 Coordinate, for supporting and positioning first order feed screw nut 4, and there is guide effect;First order feed screw nut lead screw hole 41 is with determining Platform lead screw assembly ball-screw 35 is coordinated, for output displacement.
First can be limited using 1 fixed platform lead screw assembly feed rod 33 and 1 fixed platform lead screw assembly ball-screw 35 5 frees degree of level feed screw nut 4, are allowed to be moved along the axial direction of leading screw, while share first order feed screw nut 4 It is applied to the power of the half of fixed platform lead screw assembly ball-screw 35;And the utility model sets 2 fixed platform lead screw assembly feed rods 33,1/3rd power born first order feed screw nut 4 and be applied to of fixed platform lead screw assembly ball-screw 35 can be made;Simultaneously The system stiffness of fixed platform lead screw assembly 3 can be strengthened, improve printing precision.
Refering to Fig. 6, the described first U-shaped contiguous block 8 is that "U" shaped pitches class formation part, and the first U-shaped contiguous block 8 is by left branch Brace, right support arm and base form, and left support arm is identical with right support arm configuration, left support arm, right support arm and base Width is equal with thickness, and the both ends Symmetrical vertical of left support arm, the bottom of right support arm and base is simultaneously connected, left support Arm, right support arm are parallel to each other, and the left support arm of the first U-shaped contiguous block 8, the upper end of right support arm are respectively arranged with 1 the first U Hole 42 on type contiguous block, the structure in hole 42 is identical on 2 the first U-shaped contiguous blocks, the revolution in hole 42 on 2 the first U-shaped contiguous blocks Axis collinear is simultaneously parallel with base, is provided with the base of the first U-shaped contiguous block 8 under 2 the first U-shaped contiguous blocks of structure identical Hole 43.Hole 42 is through hole on 2 the first U-shaped contiguous blocks, for connecting second level Hooke's hinge 7;2 the first U-shaped contiguous block lower opening 43 be through hole, is aligned with 2 the first U-shaped contiguous block mounting holes 52 on the first moving platform 10, using bolt by the first U-shaped connection Block 8 is arranged on the first moving platform 10.
The second described moving platform 16 is located at the lower section of the first moving platform 10, connects the first moving platform 10 and the second moving platform 16 No. 2 side chains in parallel of 3 structure identicals are between the first moving platform 10 and the second moving platform 16;3 during initial position Projection of No. 2 side chains in parallel of structure identical on the second moving platform 16 is in Y-shaped, and the angle between every two lines is 120 Degree.Now illustrate its structure and connected mode by taking wherein No. 2 side chains in parallel as an example.
No. 2 described side chains in parallel include the first moving platform lead screw assembly 9, second level feed screw nut 11, third level Hooke Hinge 12, short connecting rod 13,14 and second U-shaped contiguous block 15 of fourth stage Hooke's hinge.
First moving platform lead screw assembly 9 is arranged on the first moving platform 10 by moving platform lead screw assembly support 46 therein On lower surface, it is connected by screw bolts between the first moving platform lead screw assembly 9 and the first moving platform 10;11 sets of second level feed screw nut On the moving platform lead screw assembly ball-screw 49 in the first moving platform lead screw assembly 9, second level feed screw nut 11 is put down with dynamic It is to be slidably connected between platform lead screw assembly ball-screw 49;The upper end of short connecting rod 13 is using bolt and third level Hooke's hinge 12 and the Two level feed screw nut 11 connects;The lower end of short connecting rod 13 is connected using bolt with fourth stage Hooke's hinge 14 and the second U-shaped contiguous block 15 Connect;Second U-shaped contiguous block 15 is arranged on the upper surface of the second moving platform 16, the second U-shaped moving platform 16 of contiguous block 15 and second Between be connected by screw bolts.
Refering to Fig. 7, the first described moving platform lead screw assembly 9 includes moving platform motor 44, moving platform motor Decelerator 45, moving platform lead screw assembly support 46,2 root architecture identical moving platform lead screw assembly feed rods 47 and moving platform leading screw group Part ball-screw 49.
Described moving platform motor 44 is arranged on moving platform motor decelerator 45, is connected by bolt Connect;Moving platform motor decelerator 45 is arranged on moving platform lead screw assembly support 46, is attached by bolt;Moving platform Lead screw assembly feed rod 47 is arranged on moving platform lead screw assembly support 46, for threaded connection;Moving platform lead screw assembly ball-screw 49 are arranged on moving platform lead screw assembly support 46, for threaded connection.
Described moving platform lead screw assembly support 46 is "U" shaped structural member, is made up of left wall, right wall and bottom wall.Left wall On be provided with 2 structure identical moving platform lead screw assembly feed rod mounting holes 50 and 1 moving platform lead screw assembly ball-screw is pacified It is light through hole to fill 51,2, hole structure identical moving platform lead screw assembly feed rod mounting hole 50, for installing moving platform lead screw assembly The left end of feed rod 47;The left end of moving platform lead screw assembly feed rod 47, which is connected through a screw thread, is fixed on moving platform lead screw assembly support 46 Left wall on.Moving platform lead screw assembly ball-screw mounting hole 51 is ladder hole, for installing moving platform lead screw assembly ball The left end and bearing of leading screw 49.2 and moving platform lead screw assembly feed rod mounting hole No. 2 moving platforms of 50 identical are provided with right wall Lead screw assembly feed rod mounting hole, 1 and moving platform lead screw assembly ball-screw mounting hole No. 2 moving platform lead screw assemblies of 51 identical Ball-screw mounting hole and 4 decelerator peaces equably arranged around No. 2 moving platform lead screw assembly ball-screw mounting holes Fill hole;Moving platform lead screw assembly feed rod mounting hole 50 is light through hole, for positioning the right-hand member of moving platform lead screw assembly feed rod 47;It is dynamic The right-hand member of platform lead screw assembly feed rod 47, which is connected through a screw thread, to be fixed in the right wall of moving platform lead screw assembly support 46.Moving platform Lead screw assembly ball-screw mounting hole 51 is ladder hole, for installing the left end and axle of moving platform lead screw assembly ball-screw 49 Hold;Decelerator mounting hole is used to install moving platform motor decelerator 45.2 moving platform lead screw assemblies are provided with bottom wall to determine 48,2, the hole in position moving platform lead screw assembly positioning hole 48 is light through hole, 2 moving platform lead screw assembly positioning holes 48 and moving platform silk Thick stick component mounting hole 53 aligns, and is connected by screw bolts the following table that the first moving platform lead screw assembly 9 is arranged on to the first moving platform 10 On face.
Refering to Fig. 8, the first described moving platform 10 be hexagon plate-type structural piece, the first moving platform 10 of the hexagon It is to cut 3 small equilateral triangles in three vertex of equilateral triangle and get.Set at every short side of hexagon It is screw thread to have 52,2 U-shaped contiguous block mounting holes 52 of structure identical first of the U-shaped contiguous block mounting hole of 2 structure identicals first Through hole, the first U-shaped contiguous block lower opening on the U-shaped 52 and first U-shaped contiguous block 8 of contiguous block mounting hole of 2 structure identicals first 43 are aligned, and the first U-shaped contiguous block 8 is fixedly connected on the top end face of the first moving platform 10.At every hexagon short side midpoint With being provided with 2 structure identical moving platform lead screw assembly mounting holes 53, moving platform lead screw assembly peace on hexagonal centre line Dress hole 53 is tapped through hole, on 2 structure identical moving platform lead screw assembly mounting holes 53 and the first moving platform lead screw assembly 9 Moving platform lead screw assembly positioning hole 48 aligns, and the first moving platform lead screw assembly 9 is arranged on the bottom surface of the first moving platform 10.Six 1 harness cord hole 54 is provided with the shape center of side, printing silk passes therethrough, and avoids the occurrence of the situation of winding.
Refering to Fig. 9, described second level feed screw nut 11 is the square structural member with ear.Second level feed screw nut 11 Top be provided with 2 second level feed screw nut ears 56, the upper end of each second level feed screw nut ear 56 is provided with 1 Hole 55 on one-level feed screw nut, it is light through hole, for installing third level Hooke's hinge 12.The bottom of second level feed screw nut 11 is set It is equipped with 2 structure identical second level feed screw nut feed rod hole 57 and 1 second level feed screw nut lead screw hole 58;2 structure phases Same second level feed screw nut feed rod hole 57 is located at the both sides of second level feed screw nut lead screw hole 58,2 structure identicals second The axis of rotation in level feed screw nut feed rod hole 57 is parallel and coplanar with the axis of rotation of second level feed screw nut lead screw hole 58;2 The axis of rotation in hole 55 and 2 structure identical second level silks on second level feed screw nut in second level feed screw nut ear 56 Plane where the axis of rotation of the axis of rotation in thick stick nut feed rod hole 57 and second level feed screw nut lead screw hole 58 is parallel and with the The axis of rotation square crossing of two level feed screw nut lead screw hole 58.Second level feed screw nut feed rod hole 57 and moving platform lead screw assembly Feed rod 47 is coordinated, and for support and positioning second stage feed screw nut 11, and has guide effect;Second level feed screw nut silk Thick stick hole 58 is coordinated with moving platform lead screw assembly ball-screw 49, for output displacement.
Described second level feed screw nut 11 duplicates with the structure type of first order feed screw nut 4, simply poor in size It is different;The working method of the two is identical with principle.
Refering to Figure 10, the described second U-shaped contiguous block 15 is "U" shaped structural member, and the second U-shaped contiguous block 15 is by left branch Arm, right support arm and mounting seat form, and the left support arm of the second U-shaped contiguous block 15, the upper end of right support arm are respectively arranged with 1 second Hole 59 on U-shaped contiguous block, the structure in hole 59 is identical on 2 the second U-shaped contiguous blocks, the revolution in hole 59 on 2 the second U-shaped contiguous blocks Axis collinear is simultaneously parallel with mounting seat, and 2 the second U-shaped companies of structure identical are provided with the base of the second U-shaped contiguous block 15 Connect block lower opening 60.Hole 59 is through hole on second U-shaped contiguous block, for connecting fourth stage Hooke's hinge 14.2 structure identicals second U-shaped contiguous block lower opening 60 is the U-shaped contiguous block mounting hole 61 of 2 structure identicals second on light through hole, with the second moving platform 16 Align, the second U-shaped contiguous block 15 is arranged on the second moving platform 16 by bolt.
Refering to Figure 11, the second described moving platform 16 is the plate-type structural piece of hexagon, and the hexagon is in big positive triangle Cut what 3 small equilateral triangles obtained at three angles of shape.2 the second U-shaped companies are being provided with every short side of hexagon Block mounting hole 61 is connect, is tapped through hole, is aligned with the second U-shaped contiguous block lower opening 60, the second U-shaped contiguous block 15 is connected in second On the upper surface of moving platform 16.Printhead mounting hole 63 is provided centrally with hexagon, is light through hole;Printhead is from printhead Mounting hole 63 stretches out.3 printhead positioning holes 62 are equably being provided with around printhead mounting hole 63, it is screw thread Through hole, for fixing printing head.
A kind of operation principle of high speed 3D printing parallel drive mechanism described in the utility model:
At larger-size position on stamp with the size larger part or part, fixed platform motor 30 is put down with dynamic Platform motor 44 is in working condition.Fixed platform motor 30 is driven by first order feed screw nut 4, first order Hooke's hinge 5th, long connecting rod 6,3 No. 1 branch chain movements in parallel of 7 and first U-shaped contiguous block 8 of second level Hooke's hinge composition, and then drive first Three-dimensional translating is realized in the motion of moving platform 10.Moving platform motor 44 is driven by the first moving platform lead screw assembly 9, second level leading screw 3 No. 2 parallel connections that nut 11, third level Hooke's hinge 12, short connecting rod 13, fourth stage Hooke's hinge 14, the second U-shaped contiguous block 15 form Branch chain movement, and then drive printhead to realize three-dimensional translating.
When printhead, which is run to, to need the position commutated, fixed platform motor 30 first slows down and inverted, and moves flat Platform motor 44 continues to run with;When printhead just runs to the position for needing to commutate, fixed platform motor 30 continues Operation, moving platform motor 44 invert;Because the load that No. 2 side chains in parallel are born is lighter, inertia is small, and commutating speed is fast, can Avoid the situation due to the excessively slow caused printing layering of drive mechanism commutating speed or dislocation.
At the less position of size on the less part of stamp with the size or part, fixed platform motor 30, which is in, shuts down State, by first order feed screw nut 4, first order Hooke's hinge 5, long connecting rod 6,8 groups of the U-shaped contiguous block of second level Hooke's hinge 7 and first Into 3 long-chain branch remain static, now fixed platform 1, the first moving platform 10 and by first order feed screw nut 4, first Level Hooke's hinge 5, long connecting rod 6,3 No. 1 side chains in parallel of 7 and first U-shaped contiguous block 8 of second level Hooke's hinge composition can be considered fixed Platform.Moving platform motor 44 is driven by the first moving platform lead screw assembly 9, second level feed screw nut 11, third level Hooke's hinge 12nd, 3 No. 2 branch chain movements in parallel that short connecting rod 13, fourth stage Hooke's hinge 14, the second U-shaped contiguous block 15 form, and then drive and beat Print head realizes the translation of 3 frees degree.
At the less position of size on the less part of stamp with the size or part, it is easiest to cause tomography and dislocation.And The parallel drive mechanism of the design, which can just overcome, solves the problem.
The utility model can only realize the translation of 3 frees degree, limit rotational freedom, can be directly realized by compound fortune Dynamic, positive kinematics can be with explicit algorithm, and inverse kinetics solution is unique, improves the computing speed and real time problems of system, can be real Existing flying print, and hold when can overcome on the part or part of the existing printing reduced size of prior art the less position of size Not the problem of easily not planning a successor or misplace.

Claims (10)

1. a kind of high speed 3D printing parallel drive mechanism, it is characterised in that described high speed 3D printing parallel drive mechanism includes Fixed platform (1), support (2), the first moving platform (10), the second moving platform (16), No. 1 side chain in parallel of 3 structure identicals and 3 No. 2 side chains in parallel of structure identical;
Described support (2) is located at the lower section of fixed platform (1), and passes through the first supporting plate (21) in support (2), the second support Plate (23) is fixedly connected with the upper fixing end and fixed platform (1) bolt of the 3rd supporting plate (29), the first supporting plate (21), second Fagging (23) and the upper fixing end of the 3rd supporting plate (29) are uniformly distributed on fixed platform (1);First moving platform (10) is positioned at branch The lower section of frame (2), No. 1 side chain in parallel of 3 structure identicals are connected between support (2) and the first moving platform (10);Second is dynamic Platform (16) is located at the lower section of the first moving platform (10), and No. 2 side chains in parallel of 3 structure identicals are connected to the first moving platform (10) Between the second moving platform (16).
2. according to the high speed 3D printing parallel drive mechanism described in claim 1, it is characterised in that described fixed platform (1) is Disc-shaped structure part, is distributed with 3 structure identical gap (17) and 3 groups of supporting plate mounting holes (18) thereon, and 3 structures are identical Gap (17) and 3 groups of supporting plate mounting holes (18) be supporting setting, 3 gap (17) are along the circumferential direction equably arranged, open-minded The width of the first supporting plate (21), the second supporting plate (23) or the 3rd supporting plate (29) in the width and support (2) of mouth (17) Equal, 3 groups of supporting plate mounting holes (18) are uniformly distributed on fixed platform (1) and inner in 3 structure identical gap (17) Side, every group of supporting plate mounting hole (18) are made up of 2 tapped through holes, every group of supporting plate mounting hole (18) and the in support (2) The supporting plate positioning hole (19) of one supporting plate (21), the second supporting plate (23) or the 3rd supporting plate (29) upper fixing end aligns.
3. according to the high speed 3D printing parallel drive mechanism described in claim 1, it is characterised in that described support (2) includes Supporting plate, support bar and support baseboard (26);Wherein:Supporting plate includes the first supporting plate (21), the second supporting plate (23) and the Three supporting plates (29), the first supporting plate (21), the second supporting plate (23) are identical with the 3rd supporting plate (29) structure;Support bar includes First support bar (22), second support bar (24) and the 3rd support bar (28), first support bar (22), second support bar (24) with 3rd support bar (28) structure is identical;
Described first support bar (22) is the straight-bar class formation part of rectangular cross section, and the lower end of first support bar (22) is welded on Middle on the inside of first supporting plate (21), the top plan of first support bar (22) and the first supporting plate (21) upper fixing end Baseplane is parallel, and two plane-parallel distances are the thickness of fixed platform (1);
Described the first supporting plate (21) is waits the plate structure part of rectangular cross section, and the first supporting plate (21) both ends are to the same side Upper fixing end and lower fixing end are bent into, upper fixing end is parallel with lower fixing end, and the upper fixing end of the first supporting plate (21) is set 1 pair of supporting plate positioning hole (19) is equipped with, is tapped through hole, 1 pair of supporting plate positioning hole (19) supports with 1 Dui on fixed platform (1) Plate mounting hole (18) aligns;2 structure identicals are provided with the middle part of first supporting plate (21) to be used to connect fixed platform leading screw group The fixed platform lead screw assembly mounting hole (20) of part (3), it is tapped through hole;The lower fixing end of first supporting plate (21) is provided with 1 pair Supporting plate fastener hole (25);
First supporting plate (21), the second supporting plate (23) and the 3rd supporting plate (29) are arranged on support baseboard (26) by its lower end On, the first supporting plate (21), the second supporting plate (23) are equal with any angle between the two in the 3rd supporting plate (29).
4. according to the high speed 3D printing parallel drive mechanism described in claim 1, it is characterised in that the first described moving platform (10) it is the plate-type structural piece of hexagon, the first moving platform (10) of the hexagon is on three tops of 1 big equilateral triangle Cut what 3 small equilateral triangles obtained at angle, 2 structure identicals are provided with every short side of the first moving platform (10) One U-shaped contiguous block mounting hole (52), the U-shaped contiguous block mounting hole (52) of 2 structure identicals first are tapped through hole, 2 structures The U-shaped contiguous block mounting hole (52) of identical first and the first U-shaped contiguous block (8) for being fixedly connected on the first moving platform (10) First U-shaped contiguous block lower opening (43) is aligned, and 2 structures are provided with every hexagon short side midpoint and hexagonal centre line Identical moving platform lead screw assembly mounting hole (53), moving platform lead screw assembly mounting hole (53) are tapped through hole, and 2 structures are identical Moving platform lead screw assembly mounting hole (53) and the first moving platform lead screw assembly (9) on moving platform lead screw assembly positioning hole (48) Align, 1 harness cord hole (54) is provided with the center of the first moving platform (10).
5. according to the high speed 3D printing parallel drive mechanism described in claim 1, it is characterised in that the second described moving platform (16) it is the plate-type structural piece of hexagon, the second moving platform (16) of the hexagon is on three tops of 1 big equilateral triangle Cut what 3 small equilateral triangles obtained at angle, 2 structure identicals are provided with every short side of the second moving platform (16) Two U-shaped contiguous block mounting holes (61), the U-shaped contiguous block mounting hole (61) of 2 structure identicals second are tapped through hole, 2 structures The of the U-shaped contiguous block mounting hole (61) of identical second and the second U-shaped contiguous block (15) for being fixed on the second moving platform (16) Two U-shaped contiguous block lower opening (60) are aligned, and printhead mounting hole (63), printhead peace are provided centrally with the second moving platform (16) It is light through hole to fill hole (63);3 structure identical printhead positioning are equably provided with around printhead mounting hole (63) Hole (62), printhead positioning hole (62) are tapped through hole.
6. according to the high speed 3D printing parallel drive mechanism described in claim 1, it is characterised in that No. 1 described side chain in parallel Include fixed platform lead screw assembly (3), first order feed screw nut (4), first order Hooke's hinge (5), long connecting rod (6), second level tiger Gram hinge (7) and the first U-shaped contiguous block (8);
Described fixed platform lead screw assembly (3) is fixedly connected on the bottom surface of the first supporting plate (21) in support (2) using bolt On, first order feed screw nut (4) is arranged on fixed platform lead screw assembly (3), between the two to be slidably connected;Long connecting rod (6) Upper end is connected by first order Hooke's hinge (5) with first order feed screw nut (4), and the lower end of long connecting rod (6) passes through second level Hooke Hinge (7) is connected with the first U-shaped contiguous block (8), and the first U-shaped contiguous block (8) is arranged on the upper of the first moving platform (10) using bolt On surface.
7. according to the high speed 3D printing parallel drive mechanism described in claim 6, it is characterised in that described fixed platform leading screw group Part (3) includes fixed platform motor (30), fixed platform motor decelerator (31), fixed platform lead screw assembly support (32), 2 Root architecture identical fixed platform lead screw assembly feed rod (33) and fixed platform lead screw assembly ball-screw (35);
Described fixed platform motor (30) is arranged on using bolt on the right-hand member of fixed platform motor decelerator (31), fixed The output end of platform motor (30) is fixedly connected with the input of fixed platform motor decelerator (31), fixed platform driving Motor reducer (31) is arranged on using bolt on the right support arm of fixed platform lead screw assembly support (32), fixed platform lead screw assembly Ball-screw (35) is arranged on the left support arm of fixed platform lead screw assembly support (32) and allocating on right support arm using bearing It is rotation connection in platform lead screw assembly ball-screw mounting hole (37), the output end of fixed platform motor decelerator (31) is with determining The right-hand member of platform lead screw assembly ball-screw (35) is fixedly connected, 2 structure identical fixed platform lead screw assembly feed rod (33) peaces Mounted in the fixed platform lead screw assembly feed rod mounting hole (36) of the left support arm and right support arm of fixed platform lead screw assembly support (32) In for threaded connection, 2 structure identical fixed platform lead screw assembly feed rods (33) are located at fixed platform lead screw assembly ball-screw (35) both sides, 2 structure identical fixed platform lead screw assembly feed rods (33) and fixed platform lead screw assembly ball-screw (35) are flat OK.
8. according to the high speed 3D printing parallel drive mechanism described in claim 6, it is characterised in that described first order leading screw spiral shell The top of female (4) is provided with 2 structure identical first order feed screw nut ears (39), each first order feed screw nut ear (39) upper end is provided with hole (38) on 1 first order feed screw nut, and hole (38) is for installing the on first order feed screw nut The light through hole of one-level Hooke's hinge (7), on the first order feed screw nut on 2 structure identical first order feed screw nut ears (39) The rotation conllinear in hole (38), the bottom of the cuboid of first order feed screw nut (4) are provided with 2 structure identicals One-level feed screw nut feed rod hole (40) and 1 first order feed screw nut lead screw hole (41), 2 structure identical first order leading screw spiral shells Female feed rod hole (40) is located at the both sides of first order feed screw nut lead screw hole (41), 2 structure identical first order feed screw nut light The axis of rotation in thick stick hole (40) is parallel with the axis of rotation of first order feed screw nut lead screw hole (41) and coexists in same level; The axis of rotation and 2 structure identicals in hole (38) on first order feed screw nut on 2 first order feed screw nut ears (39) The axis of rotation in first order feed screw nut feed rod hole (40) where the axis of rotation of first order feed screw nut lead screw hole (41) with putting down Face it is parallel and with the axis of rotation square crossing of first order feed screw nut lead screw hole (41).
9. according to the high speed 3D printing parallel drive mechanism described in claim 6, it is characterised in that the first described U-shaped connection Block (8) is that "U" shaped pitches class formation part, and the first U-shaped contiguous block (8) is made up of left support arm, right support arm and base, left support Arm is identical with right support arm configuration, and left support arm, right support arm are equal with thickness with the width of base, left support arm, right support The bottom of arm and the both ends Symmetrical vertical of base are simultaneously connected, and left support arm, right support arm are parallel to each other, the first U-shaped connection The left support arm of block (8), the upper end of right support arm are respectively arranged with hole (42) on 1 the first U-shaped contiguous block, 2 the first U-shaped companies Connect that the structure in hole on block (42) is identical, the rotation conllinear in hole (42) and and bottom on 2 the first U-shaped contiguous blocks of structure identical Seat is parallel, and the U-shaped contiguous block lower opening (43) of 2 structure identicals first, 2 knots are provided with the base of the first U-shaped contiguous block (8) Hole (42) is the light through hole for connecting second level Hooke's hinge (7) on the first U-shaped contiguous block of structure identical, 2 structure identicals First U-shaped contiguous block lower opening (43) is light through hole, the U-shaped contiguous block lower opening (43) of 2 structure identicals first and the first moving platform (10) the U-shaped contiguous block mounting hole (52) of 2 structure identicals first on aligns.
10. according to the high speed 3D printing parallel drive mechanism described in claim 1, it is characterised in that No. 2 described side chains in parallel Including the first moving platform lead screw assembly (9), second level feed screw nut (11), third level Hooke's hinge (12), short connecting rod (13), the 4th Level Hooke's hinge (14) and the second U-shaped contiguous block (15);
The first described moving platform lead screw assembly (9) is dynamic flat installed in first by moving platform lead screw assembly support (46) therein On the bottom surface of platform (10), it is connected by screw bolts between the first moving platform lead screw assembly (9) and the first moving platform (10);Second level silk Thick stick nut (11) is sleeved on moving platform lead screw assembly ball-screw (49) and 2 root architectures in the first moving platform lead screw assembly (9) On identical moving platform lead screw assembly feed rod (47), second level feed screw nut (11) and moving platform lead screw assembly ball-screw (49) It is to be slidably connected between 2 root architecture identical moving platform lead screw assembly feed rods (47);The upper end of short connecting rod (13) passes through the 3rd Level Hooke's hinge (12) is connected with second level feed screw nut (11);The lower end of short connecting rod (13) passes through fourth stage Hooke's hinge (14) and the Two U-shaped contiguous block (15) connections;Second U-shaped contiguous block (15) is arranged on using bolt on the upper surface of the second moving platform (16).
CN201720535788.5U 2017-05-15 2017-05-15 High speed 3D printing parallel drive mechanism Expired - Fee Related CN206718485U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106945279A (en) * 2017-05-15 2017-07-14 吉林大学 High speed 3D printing parallel drive mechanism
US11745289B2 (en) 2019-02-21 2023-09-05 General Electric Company Additive manufacturing systems and methods including rotating build platform

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106945279A (en) * 2017-05-15 2017-07-14 吉林大学 High speed 3D printing parallel drive mechanism
CN106945279B (en) * 2017-05-15 2022-02-18 吉林大学 High-speed 3D prints parallelly connected actuating mechanism
US11745289B2 (en) 2019-02-21 2023-09-05 General Electric Company Additive manufacturing systems and methods including rotating build platform

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