CN206663799U - The modularization print components of 3D printer - Google Patents

The modularization print components of 3D printer Download PDF

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Publication number
CN206663799U
CN206663799U CN201621248233.4U CN201621248233U CN206663799U CN 206663799 U CN206663799 U CN 206663799U CN 201621248233 U CN201621248233 U CN 201621248233U CN 206663799 U CN206663799 U CN 206663799U
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China
Prior art keywords
moving parts
fixed
upper substrate
axis
infrabasal plate
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Active
Application number
CN201621248233.4U
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Chinese (zh)
Inventor
朱俊
曽绍连
唐建宁
韩李松
管显显
王亮
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Anhui Top Technology Co Ltd
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Anhui Top Technology Co Ltd
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Priority to CN201621248233.4U priority Critical patent/CN206663799U/en
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Abstract

The utility model discloses a kind of modularization print components of 3D printer, including XY axles moving parts and Z axis moving parts, printhead is fixed with the XY axles moving parts, print platform is fixed with the Z axis moving parts, the XY axles moving parts, which are arranged on the upper substrate of middle part hollow out, forms upper component, the side that the Z axis moving parts are fixed on infrabasal plate forms lower component, the upper substrate is fixed on infrabasal plate by four connecting poles positioned at corner, and the Z axis moving parts are between upper substrate and infrabasal plate.It is not directly installed on shell, and is mounted on one piece of substrate the utility model has the advantage of print components, then substrate is fixed with shell again, can effectively improve the assembly precision of 3D printer, while is easy to assembling and the maintaining in later stage.

Description

The modularization print components of 3D printer
Technical field
It the utility model is related to 3D printing component, and in particular to a kind of modularization print components of FDM 3D printers.
Background technology
3D printing technique is a kind of based on mathematical model file, with cohesive materials such as metal or plastics, is passed through Successively accumulation mode carrys out a kind of technology of processing object.FDM 3D printers common at present, print components are all much direct On the shell of printer.Carried out one by one in the assembling process of reality, it is necessary to which these parts are put into enclosure Installation is fixed, and so as to cause assembly difficulty big, also make it that the regular maintenance of printer and trouble hunting are greatly inconvenient;Shell simultaneously The external disturbance such as easily it is deformed in use so that the reference for assembling of print components is changed, and influences to print Precision and effect.
Utility model content
Technical problem to be solved in the utility model is to realize a kind of assembly precision that can improve 3D printer, simultaneously It is easy to the 3D printer modularization print components of assembling and later maintenance maintenance.
To achieve these goals, the technical solution adopted in the utility model is:The modularization print components of 3D printer, Including XY axles moving parts and Z axis moving parts, printhead, the Z axis moving parts are fixed with the XY axles moving parts On be fixed with print platform, the XY axles moving parts, which are arranged on the upper substrate of middle part hollow out, forms upper component, the Z axis fortune The side that dynamic component is fixed on infrabasal plate forms lower component, and the upper substrate is fixed on down by four connecting poles positioned at corner On substrate, the Z axis moving parts are between upper substrate and infrabasal plate.
The upper substrate is the rectangular frame structure connected and composed by four strip boards.
Four orthogonal optical axises of the XY axles moving parts are fixed on the side of upper substrate four, every institute by bearing block State optical axis receipts and be equipped with a sliding block, wherein two adjacent optical axises are line shaft, the optical axis as line shaft is screw thread Bar, the sliding block being fixed on the optical axis as line shaft are provided with internal thread, and the every optical axis as line shaft is distinguished Driven and rotated by ring-shaped synchronous belt by motor, connected between relative two sliding blocks by connecting rod, two connecting rods pass through The pilot hole of central slider is worn, printhead is fixed with the central slider.
The limit switch of sensing slide position is equipped with the upper substrate at the every optical axis both ends.
The Z axis moving parts are provided with screw mandrel fixed vertically, and the screw mandrel both sides or side are provided with the axis of guide, the silk Feed screw nut is fixed with bar, the print platform is by being oriented to sheath on traverse shaft, the print platform and screw mandrel Nut is connected, and the screw mandrel is driven by Z axis motor to be rotated.
The limit switch of sensing print platform position is equipped with the upper substrate, infrabasal plate.
The upper substrate, infrabasal plate and print platform are parallel to each other.
It is not directly installed on shell, and is mounted on one piece of substrate the utility model has the advantage of print components, Then substrate and shell are fixed again, can effectively improves the assembly precision of 3D printer, while be easy to assembling and later stage Maintaining.
Brief description of the drawings
The content of every width accompanying drawing expression in the utility model specification and the mark in figure are briefly described below:
Fig. 1 is the modularization print components schematic perspective view of 3D printer;
Fig. 2 is the modularization print components side view of 3D printer;
Fig. 3 is the modularization print components top view of 3D printer;
Mark in above-mentioned figure is:1st, infrabasal plate;2nd, connecting pole;3rd, upper substrate;4th, XY axles moving parts;5th, Z axis is transported Dynamic component;6th, print platform;
41st, y-axis motor;42nd, X-axis motor;43rd, ring-shaped synchronous belt;44th, sliding block;45th, bearing block;46th, synchronous pulley;47、 Optical axis;48th, central slider;49th, Y-axis limit switch;410th, X-axis limit switch;51st, screw mandrel;52nd, the axis of guide;53rd, Z axis is spacing Switch;54th, Z axis motor.
Embodiment
The modularization print components of 3D printer realize the fortune of 3D printing by XY axles moving parts 4 and Z axis moving parts 5 Make, be fixed with printhead on XY axles moving parts 4, print platform 6 is fixed with Z axis moving parts 5.
As Figure 1-3, XY axles moving parts 4 are arranged on the upper substrate 3 of middle part hollow out and formed by the utility model Component, the side that Z axis moving parts 5 are fixed on to infrabasal plate 1 form lower component, form two modules that can be split, upper base Plate 3 is fixed on infrabasal plate 1 by four connecting poles 2 positioned at corner, and Z axis moving parts 5 are located at upper substrate 3 and infrabasal plate 1 Between, such structure is convenient for assembly, reduces assembly difficulty, while also allow for later maintenance.
Upper substrate 3 is the rectangular frame structure connected and composed by four strip boards, and connecting pole 2 can be fixed by screws in On upper substrate 3 and infrabasal plate 1, it is easy for installation and removal.Upper substrate 3, infrabasal plate 1 and print platform 6 are parallel to each other, it is ensured that work The stability of work.
XY axles moving parts 4 are fixedly mounted on upper substrate 3, including y-axis motor 41, X-axis motor 42, ring-shaped synchronous belt 43, Sliding block 44, bearing block 45, synchronous pulley 46, optical axis 47, central slider 48, Y-axis limit switch 49, X-axis limit switch 410;Light The both ends of axle 47 are fixedly mounted on bearing block 45, and synchronous pulley 46, sliding block 44 are provided with inside optical axis 47, and bearing block 45 is fixed on On substrate 3;Ring-shaped synchronous belt 43 is connected around synchronous pulley 46 with sliding block 44, and central slider 48 is connected to cunning by optical axis 47 Between block 44.
Z axis moving parts 5 are fixedly mounted between infrabasal plate 1 and upper substrate 3, including screw mandrel 51, the axis of guide 52, Z axis limit Bit switch 53, Z axis motor 54;The side of print platform 6 sets screw mandrel 51 and the axis of guide 52, the axis of screw mandrel 51 and the axis of guide 52 flat OK, screw mandrel 51 and the axis of guide 52 are located between infrabasal plate 1 and upper substrate 3, and the side of print platform 6 also sets up the nut of screw mandrel 51 and silk Bar 51 coordinates;Upper substrate 3 is provided with Z axis motor 54, and the output shaft of Z axis motor 54 is fixedly connected with the end of screw mandrel 51;Print platform 6 The position carried out by Z axis limit switch 53 in Z-direction controls.
The present invention is exemplarily described above in conjunction with accompanying drawing, it is clear that the utility model is implemented not by above-mentioned The limitation of mode, if the improvement of the various unsubstantialities of inventive concept and technical scheme of the present invention progress is employed, or not It is improved by the present invention design and technical scheme directly apply to other occasions, the scope of protection of the utility model it It is interior.

Claims (4)

  1. The modularization print components of 1.3D printers, including XY axles moving parts and Z axis moving parts, the XY axles moving parts On be fixed with printhead, be fixed with print platform on the Z axis moving parts, it is characterised in that:The XY axles moving parts peace Upper component is formed on the upper substrate of middle part hollow out, the side that the Z axis moving parts are fixed on infrabasal plate forms lower component, The upper substrate is fixed on infrabasal plate by four connecting poles positioned at corner, the Z axis moving parts be located at upper substrate and Between infrabasal plate;
    Four orthogonal optical axises of the XY axles moving parts are fixed on the side of upper substrate four, the every light by bearing block Axle is received and is equipped with a sliding block, wherein two adjacent optical axises are line shaft, the optical axis as line shaft is threaded rod, Gu The sliding block being scheduled on the optical axis as line shaft is provided with internal thread, and the every optical axis as line shaft is respectively by motor Driven and rotated by ring-shaped synchronous belt, connected between relative two sliding blocks by connecting rod, two connecting rods run through center The pilot hole of sliding block, printhead is fixed with the central slider;
    The Z axis moving parts are provided with screw mandrel fixed vertically, and the screw mandrel both sides or side are provided with the axis of guide, on the screw mandrel Feed screw nut is fixed with, the print platform is by being oriented to sheath on traverse shaft, the print platform and feed screw nut Connection, the screw mandrel is driven by Z axis motor to be rotated;
    The upper substrate is the rectangular frame structure connected and composed by four strip boards.
  2. 2. the modularization print components of 3D printer according to claim 1, it is characterised in that:The every optical axis both ends Upper substrate on be equipped with sensing slide position limit switch.
  3. 3. the modularization print components of 3D printer according to claim 1, it is characterised in that:The upper substrate, lower base The limit switch of sensing print platform position is equipped with plate.
  4. 4. the modularization print components of the 3D printer according to claim 1 or 3, it is characterised in that:The upper substrate, under Substrate and print platform are parallel to each other.
CN201621248233.4U 2016-11-22 2016-11-22 The modularization print components of 3D printer Active CN206663799U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201621248233.4U CN206663799U (en) 2016-11-22 2016-11-22 The modularization print components of 3D printer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201621248233.4U CN206663799U (en) 2016-11-22 2016-11-22 The modularization print components of 3D printer

Publications (1)

Publication Number Publication Date
CN206663799U true CN206663799U (en) 2017-11-24

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Application Number Title Priority Date Filing Date
CN201621248233.4U Active CN206663799U (en) 2016-11-22 2016-11-22 The modularization print components of 3D printer

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108016033A (en) * 2018-01-24 2018-05-11 深圳市北点科技有限公司 A kind of new 3D printing structure
CN108058260A (en) * 2018-02-09 2018-05-22 华北理工大学 Ceramic material 3D printing equipment and its method of work
CN111153138A (en) * 2018-11-07 2020-05-15 天津职业技术师范大学 Novel plane carrying device
CN111823585A (en) * 2020-07-27 2020-10-27 金华市飞熊智能科技有限公司 Novel 3D printer

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108016033A (en) * 2018-01-24 2018-05-11 深圳市北点科技有限公司 A kind of new 3D printing structure
CN108058260A (en) * 2018-02-09 2018-05-22 华北理工大学 Ceramic material 3D printing equipment and its method of work
CN111153138A (en) * 2018-11-07 2020-05-15 天津职业技术师范大学 Novel plane carrying device
CN111823585A (en) * 2020-07-27 2020-10-27 金华市飞熊智能科技有限公司 Novel 3D printer

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GR01 Patent grant
GR01 Patent grant
CB03 Change of inventor or designer information

Inventor after: Wang Liang

Inventor after: Zhou Bingbing

Inventor after: Zhao Fangzhen

Inventor after: Huang Wentao

Inventor after: Zong Jin

Inventor before: Zhu Jun

Inventor before: Zeng Shaolian

Inventor before: Tang Jianning

Inventor before: Han Lisong

Inventor before: Guan Xianxian

Inventor before: Wang Liang

CB03 Change of inventor or designer information