Stereolithography apparatus for improving planarity of a transparent sheet
A 3D printing system includes a build vessel, a carriage, and a light engine. The build vessel includes a vessel base having a downward extending tension ring that tensions a transparent sheet. The transparent sheet laterally bounds a build plane that is defined over orthogonal lateral axis X and Y. The carriage includes a roller that extends between two opposing sides of the tension ring. The roller exerts an upward force on the transparent sheet and the two opposing sides of the tension ring. The vertical constraint of the roller biased against the tension ring provides a location and improved planarity of a supported portion of the transparent sheet adjacent to the roller. The light engine light engine is configured to selectively apply radiation to a projected area of the build plane through the supported portion of the transparent sheet.
1 . A three-dimensional (3D) printing system configured to manufacture a 3D article, the 3D printing system comprising:
a machine chassis including a vessel support;
a build vessel supported by the vessel support, the build vessel including:
a vessel base having a downward extending tension ring; and
a transparent sheet that is tensioned over the tension ring and laterally bounds a build plane defined along orthogonal lateral axes X and Y of the 3D printing system;
a carriage including a roller that extends laterally below two opposing sides of the tension ring, wherein the roller engages and exerts an upward force upon the two opposing sides of the tension ring with the transparent sheet between the roller and the tension ring, the upward force of the roller against the tension ring constrains a vertical location of and improves planarity of a portion of the transparent sheet adjacent to and supported by the roller; and
a light engine configured to selectively apply radiation to a projected area of the build plane through the supported portion of the transparent sheet.
2 . The 3D printing system of claim 1 wherein the vessel base defines a recess that extends around the tension ring and further comprises a support frame within the recess that clamps a peripheral edge of the transparent sheet.
3 . The 3D printing system of claim 1 wherein the carriage is slidingly mounted to the vessel base by a pair of linear bearings to constrain motion of the carriage along the lateral axis X.
4 . The 3D printing system of claim 3 further comprising a lateral movement mechanism configured to translate and position the carriage along the lateral axis X, the roller extending along the lateral axis Y.
5 . The 3D printing system of claim 4 wherein the light engine is configured to be positioned together with the carriage along the lateral axis X.
6 . The 3D printing system of claim 5 wherein the roller is one of two rollers of the carriage, the supported portion of the transparent sheet arranged between the two rollers.
7 . The 3D printing system of claim 5 wherein the light engine is configured to translate relative to the carriage along the lateral axis Y.
8 . The 3D printing system of claim 1 wherein the roller is coupled to the carriage at two ends thereof by a pair of circular bearings, the circular bearings biased upward to provide the upward force of the roller upon the tension ring.
9 . The 3D printing system of claim 1 further comprising a source of pressurized gas configured to apply fluid pressure to a lower surface of the transparent sheet.
10 . The 3D printing system of claim 1 wherein the light engine is configured to project a pixelated radiation field through the supported portion of the transparent sheet and to the build plane, and further comprising:
a lateral movement mechanism including:
an X motor configured to move the carriage along the lateral axis X; and
a Y motor configured to move the light engine relative to the carriage along the lateral axis Y;
a build plate; and
a vertical movement mechanism configured to vertically position the build plate.
11 . The 3D printing system of claim 10 further comprising a controller configured to fabricate the 3D article through the sequential formation of individual layers of the 3D article, wherein for the individual layers the controller is further configured to:
operate the vertical movement mechanism to position a lower face of the build plate or the 3D article in a partially fabricated state at the build plane;
operate the X motor to sequentially position the carriage at a plurality of X-stop locations along the lateral axis X, for individual X stop locations;
operate the Y motor to scan the light engine along the lateral axis Y; and
operate the light engine to selectively illuminate a column along the build plane as the light engine is being scanned.
12 . A method of manufacturing the 3D article using the 3D printing system of claim 10 , the method comprising:
operating the vertical movement mechanism to position a lower face of the build plate or the 3D article in a partially fabricated state at the build plane;
operating the X motor to sequentially position the carriage at a plurality of X-stop locations along the lateral axis X, for individual X-stop locations;
operating the Y motor to scan the light engine along the lateral axis Y; and
operating the light engine to selectively illuminate a column along the build plane as the light engine is being scanned.
13 . The 3D printing system of claim 1 wherein the roller has an outer surface that has a lower scratch resistance than a lower surface of the transparent sheet.
14 . The 3D printing system of claim 1 wherein the roller includes a coating of a material selected from the group consisting of a polymer and an oil.
15 . A three-dimensional (3D) printing system configured to manufacture a 3D article, the 3D printing system comprising:
a machine chassis including a vessel support;
a build vessel supported by the vessel support, the build vessel including:
a vessel base having a downward extending tension ring; and
a transparent sheet that is tensioned over the tension ring and laterally bounds a build plane defined along orthogonal lateral axes X and Y of the 3D printing system;
a carriage mounted to the vessel base by a linear bearing, the carriage including a roller mounted to the carriage by a pair of roller bearings located at opposed ends of the roller, the carriage including a spring that biases the roller upward, wherein the roller spans the build plane and presses upon laterally opposed portions of the tension ring that are laterally outside of the build plane; and
a light engine configured to selectively apply radiation to an area of the build plane adjacent to the roller.
16 . The 3D printing system of claim 15 wherein the vessel base defines a recess that extends around the tension ring and further comprises a support frame within the recess that clamps a peripheral edge of the transparent sheet.
17 . The 3D printing system of claim 15 further comprising a lateral movement mechanism coupled to the light engine and the carriage and configured to:
position the carriage and the light engine together along the lateral axis X; and
position and translate the light engine relative to the carriage along the lateral axis Y.
18 . The 3D printing system of claim 17 further including a vertical movement mechanism, a build plate, and a controller, the controller configured to:
operate the vertical movement mechanism to position a lower face of the build plate or the 3D article in a partially fabricated state at the build plane;
operate the lateral movement mechanism to position the carriage at a plurality of locations along the lateral axis X, wherein at individual ones of the plurality of adjacent locations the roller bounds a column of the build plane so that the plurality of adjacent locations of the build plane correspond to a plurality of adjacent columns, the adjacent columns contiguously covering a region of the build plane to be selectively irradiated, at a respective one of the columns;
operate the lateral movement mechanism to scan the light engine over the respective columns along the lateral axis Y; and
operate the light engine to selectively irradiate the respective columns.
19 . A method of manufacturing the 3D article using the 3D printing system of claim 18 , the method comprising:
operating the vertical movement mechanism to position a lower face of the build plate or the 3D article in a partially fabricated state at the build plane;
operating the lateral movement mechanism to position the carriage at a plurality of locations along the lateral axis X;
operating the lateral movement mechanism to scan the light engine over the respective columns along the lateral axis Y; and
operating the light engine to selectively irradiate the respective columns.
20 . The three-dimensional (3D) printing system of claim 15 wherein the roller has an outer surface that has a lower scratch resistance than a lower surface of the transparent sheet, the outer surface formed from a material that is one or more of a polymer, an oil, and a felt material.
21 . The three-dimensional (3D) printing system of claim 15 wherein the roller is one of two rollers of the carriage that support the transparent sheet therebetween.
22 . The three-dimensional (3D) printing system of claim 15 further comprising a source of pressurized fluid configured to apply fluid pressure to a lower surface of the transparent sheet.