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3D building printing device
The invention belongs to the technical field of building component production, and relates to a 3D building printing device. The 3D building printing device comprises a main body frame, a material providing system and a control system, wherein the main body frame comprises an X-axis cross beam provided with a printing spray head, the printing spray head is connected with a power device and moves left and right along the X-axis cross beam under the driving of the power device and discharges materials for printing, the printing spray head is provided with a detector, the detector can detect the width of a printed building, a movable bearing vehicle is arranged below the printing spray head, the two ends of the X-axis cross beam are installed on a Z-axis cross beam and can move up and down along the Z-axis cross beam, and the bottom end of the Z-axis cross beam is installed on a chassis and can move front and back; and the 3D building printing device further comprises a pipeline cross beam, the pipeline cross beam is provided with a pipeline support, the pipeline support can move left and right along the pipeline cross beam, and a material conveying pipeline in the pipeline support is connected with the printing spray head through a material receiving pipe. The 3D building printing device has the advantage that high-precision and high-speed printing of building components made of concrete can be realized.
本发明属于建筑构件生产技术领域,涉及一种3D建筑打印设备,包括主体框架、材料提供系统和控制系统;其中,主体框架包括安装有打印喷头的X轴横梁,打印喷头连接有动力装置且在动力装置的驱动下沿X轴横梁左右移动以及出料打印,打印喷头安装有检测器且检测器能对打印建筑的宽度进行检测,打印喷头的下方设有可移动的承载车,X轴横梁的两端安装在Z轴横梁且可沿Z轴横梁上下移动,Z轴横梁的底端安装在底盘且可前后移动;还包括管道横梁,管道横梁安装有管道支架且管道支架可沿管道横梁左右移动,管道支架内的材料运输管道通过材料接收管与打印喷头连接。本发明具有可实现以混凝土为材料的建筑构件的高精度、高速度打印的优点。
3D building printing device
The invention belongs to the technical field of building component production, and relates to a 3D building printing device. The 3D building printing device comprises a main body frame, a material providing system and a control system, wherein the main body frame comprises an X-axis cross beam provided with a printing spray head, the printing spray head is connected with a power device and moves left and right along the X-axis cross beam under the driving of the power device and discharges materials for printing, the printing spray head is provided with a detector, the detector can detect the width of a printed building, a movable bearing vehicle is arranged below the printing spray head, the two ends of the X-axis cross beam are installed on a Z-axis cross beam and can move up and down along the Z-axis cross beam, and the bottom end of the Z-axis cross beam is installed on a chassis and can move front and back; and the 3D building printing device further comprises a pipeline cross beam, the pipeline cross beam is provided with a pipeline support, the pipeline support can move left and right along the pipeline cross beam, and a material conveying pipeline in the pipeline support is connected with the printing spray head through a material receiving pipe. The 3D building printing device has the advantage that high-precision and high-speed printing of building components made of concrete can be realized.
本发明属于建筑构件生产技术领域,涉及一种3D建筑打印设备,包括主体框架、材料提供系统和控制系统;其中,主体框架包括安装有打印喷头的X轴横梁,打印喷头连接有动力装置且在动力装置的驱动下沿X轴横梁左右移动以及出料打印,打印喷头安装有检测器且检测器能对打印建筑的宽度进行检测,打印喷头的下方设有可移动的承载车,X轴横梁的两端安装在Z轴横梁且可沿Z轴横梁上下移动,Z轴横梁的底端安装在底盘且可前后移动;还包括管道横梁,管道横梁安装有管道支架且管道支架可沿管道横梁左右移动,管道支架内的材料运输管道通过材料接收管与打印喷头连接。本发明具有可实现以混凝土为材料的建筑构件的高精度、高速度打印的优点。
3D building printing device
一种3D建筑打印设备
WANG RENREN (author) / NING YAXIAO (author) / LU HONGQIAN (author) / CHEN NAN (author)
2021-05-18
Patent
Electronic Resource
Chinese
IPC:
E04G
SCAFFOLDING
,
Baugerüste
/
B33Y
ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
,
Additive (generative) Fertigung, d. h. die Herstellung von dreidimensionalen [3D] Bauteilen durch additive Abscheidung, additive Agglomeration oder additive Schichtung, z. B. durch 3D- Drucken, Stereolithografie oder selektives Lasersintern
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