3D Printer Bed
Disclosed is a heated printer bed mounted to a kinematic coupling system that permits thermal expansion of both the bed and a support truss. One kinematic couple couples the bed to the support truss and a second kinematic couple couples the support truss to a frame of the printer. Both kinematic couples ensure that a common geometric center along each kinematic couple is maintained despite thermal expansion of the printer bed and the support truss occurring at different rates. The kinematic coupling system mitigates deformations to 3D-printed items from the effects of thermal expansion.
1 . A printer bed for a 3D printer, comprising:
a heated printer bed;
a support truss configured to support the printer bed;
a frame configured to support the support truss;
a first kinematic couple configured to couple the heated printer bed to the support truss for controlling thermal expansion of the printer bed, wherein the first kinematic couple comprises two kinematic coupling units;
a second kinematic couple configured to couple the support truss to the frame for controlling thermal expansion of the support truss; and
wherein a first centroid of the first kinematic couple is aligned with a second centroid of the second kinematic couple to provide a common geometric center during thermal expansion of the printer bed occurring at a different rate than thermal expansion of the support truss.
2 . The printer bed of claim 1 , wherein any of the kinematic couples comprise a Kelvin-style kinematic coupling.
3 . The printer bed of claim 1 , wherein any of the kinematic couples comprise a Maxwell-style kinematic coupling.
4 . The printer bed of claim 1 , wherein the second kinematic couple comprises three kinematic coupling units.
5 . The printer bed of claim 4 , wherein each of the three kinematic coupling units provides a vertex of the second kinematic couple.
6 . The printer bed of claim 1 , wherein any of the kinematic coupling units comprise an insert with a truncated V-shaped lower portion and a receptacle with a V-shaped groove.
7 . The printer bed of claim 1 , wherein any of the kinematic coupling units comprise a conical protrusion and a conical receptacle configured to receive the conical protrusion.
8 . The printer bed of claim 1 , comprising a plurality of linear actuators disposed on the frame such that said linear actuators may move supports on the printer bed in a linear direction relative to the frame.
9 . The printer bed of claim 1 , comprising a plurality of heating elements disposed on a portion of the printer bed.
10 . The printer bed of claim 1 , comprising a plurality of stands disposed on a portion of the printer bed.
11 . The printer bed of claim 10 , wherein the stands disposed under the printer bed align with stands disposed on the support truss thereby preventing the printer bed from sagging.
12 . The printer bed of claim 10 , wherein at least one of the plurality of stands comprises a kinematic coupling unit configured to enable thermal expansion of the heated printer bed independently from thermal expansion of the support truss.
13 . The printer bed of claim 1 , comprising a plurality of support members disposed on the frame and a plurality of receptacles extending from each corner of the support truss, wherein the support members are each configured to couple with a respective one of the receptacles.
14 . The printer bed of claim 13 , wherein one or more of the support members comprises a kinematic coupling unit for coupling to a corresponding one of the receptacles.
15 . The printer bed of claim 1 , wherein the common geometric center remains positioned at a common XY position shared by the support truss and the printer bed such that the support truss and the printer bed each thermally expand from the common XY position.