Layout method based on 3D printing
A 3D printing and layout technology, applied in the field of 3D printing, can solve problems such as the inability to realize batch and orderly production, increase the randomness of layout, and achieve the effect of avoiding uncertainty and low efficiency and realizing automation
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0028] In this embodiment, there are three products of the four specifications.
[0029] The specific operation process of the layout method based on 3D printing is as follows:
[0030] S101, import the three-dimensional models of the four products to be printed into the 3D printing device, and obtain the peripheral contour values of the four three-dimensional models of the products, which are respectively the length, width and height of the product 1 1 =2250mm,w 1 =1500mm, h 1 =500mm, the length, width and height of product 2 l 2 =1200mm,w 2 =750mm, h 2 =300mm, the length, width and height of product 3 l 3 =1000mm,w 3 =500mm, h 3 = 200mm and length, width and height l of product 4 4 =1200mm,w 4 =700mm, h 4 =300mm, and the number of printing required for each product is three;
[0031] S102, setting a printable area, the length of which is L=2200mm, the width is W=1500mm, and the height is H=700mm;
[0032]S103, according to the volume sw of the outer cuboid outl...
Embodiment 2
[0041] This embodiment only changes the algorithm of step S004, taking the four models provided this time as examples, specifically:
[0042] S201. Import the three-dimensional models of the four products to be printed into the 3D printing device, and obtain the peripheral contour values of the four three-dimensional models of the products, which are respectively the length, width and height of the product 1 1 =2250mm,w 1 =1500mm, h 1 =500mm, the length, width and height of product 2 l 2 =1200mm,w 2 =750mm, h 2 =300mm, the length, width and height of product 3 l 3 =1000mm,w 3 =500mm, h 3 = 200mm and length, width and height l of product 4 4 =1200mm,w 4 =700mm, h 4 =300mm, and the number of printing required for each product is three;
[0043] S202, setting a printable area, the length of which is L=2200mm, the width is W=1500mm, and the height is H=700mm;
[0044] S203, according to the volume sw of the outer cuboid outline of the product to be printed, sort the p...
Embodiment 3
[0052] This embodiment only changes the algorithm of step S004, taking the four models provided this time as examples, specifically:
[0053] S301. Import the three-dimensional models of the four products to be printed into the 3D printing device, and obtain the peripheral contour values of the four three-dimensional models of the products, which are the length, width and height of the product 1 respectively. 1 =2250mm,w 1 =1500mm, h 1 =500mm, the length, width and height of product 2 l 2 =1200mm,w 2 =750mm, h 2 =300mm, the length, width and height of product 3 l 3 =1000mm,w 3 =500mm, h 3 = 200mm and length, width and height l of product 4 4 =1200mm,w 4 =700mm, h 4 =300mm, and the number of printing required for each product is three;
[0054] S302, setting a printable area, the length of which is L=2200mm, the width is W=1500mm, and the height is H=700mm;
[0055] S303, according to the volume sw of the outer cuboid outline of the product to be printed, sort the ...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 

