IP Library › Granted Patent US 11,590,712
Granted Patent B2
US 11,590,712 · App. 17/518,510 · Granted Feb 28, 2023

Method and system for interlayer feedback control and failure detection in an additive manufacturing process

Inventors: Joel Ong (San Francisco, CA); Christopher Prucha (San Francisco, CA)
Assignee: Stratasys, Inc.
B29C64/393B33Y30/00B33Y50/02B29C64/124B33Y10/00
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Quick Facts
Patent No.
US 11,590,712
App. No.
17/518,510
Granted
Feb 28, 2023
Kind
B2
Abstract

An additive manufacturing system configured to: during a first build cycle of an additive manufacturing process for manufacturing a first layer of a build, sampling a first set of sensor data streams via the sensor suite; calculate a first likelihood of failure of the build based on the first set of sensor data streams; in response to calculating the first likelihood of failure within a first likelihood range, flag the build to indicate the first likelihood of failure; and in response to calculating the first likelihood of failure within a second likelihood range greater than the first likelihood range, pause the additive manufacturing process, and notify an operator of the additive manufacturing system of the first likelihood of failure.

Claims (146)

1. An additive manufacturing system comprising:

a build window;

a projection system:

arranged below a lower surface of the build window; and

configured to project electromagnetic radiation toward the build window;

a build platform:

facing the build window; and

configured to retract and advance relative to the build window;

a separation membrane:

arranged across an upper surface of the build window opposite the projection system; and

defining an interstitial region between the upper surface of the build window and a lower surface of the separation membrane;

a pressure sensor configured to detect pressures within the interstitial region; and

a controller configured to:

during a first build cycle of an additive manufacturing process for manufacturing a first layer of a build:

access a first target inflation profile representing:

a first target pressure; and

a first target inflation duration;

trigger injection of fluid into the interstitial region to inflate the separation membrane according to the first target inflation profile;

record a first separation profile comprising:

a first pressure within the interstitial region; and

a first inflation duration of the separation membrane; and

calculate, via a failure detection model, a first likelihood of failure of the build based on the first separation profile;

during a second build cycle of the first additive manufacturing process for manufacturing a second laver of the build:

in response to the first likelihood of failure of the build exceeding a first failure threshold, access a second target inflation profile different from the first target inflation profile and defining:

a second target pressure different from the first target pressure; and

a second target inflation duration different from the first inflation duration;

trigger injection of fluid into the interstitial region to inflate the separation membrane according to the second target inflation profile;

record a second separation profile representing:

a second pressure within the interstitial region; and

a second inflation duration of the separation membrane:

calculate, via the failure detection model, a second likelihood of failure of the build based on the second separation profile; and

in response to the second likelihood of failure of the build falling below the first failure threshold, assigning the second target inflation profile to a third build cycle of the first additive manufacturing process for manufacturing a third laver of the build.

2. The additive manufacturing system of claim 1 , wherein the controller is further configured to:

during the third build cycle of the first additive manufacturing process for manufacturing the third layer of the build:

trigger injection of fluid into the interstitial region to inflate the separation membrane according to the second target inflation profile;

record a third separation profile representing:

a third pressure within the interstitial region; and

a third inflation duration of the separation membrane; and

calculate, via the failure detection model, a third likelihood of failure of the build based on the third separation profile.

3. The additive manufacturing system of claim 1 , wherein the controller is further configured to:

in response to the third likelihood of failure of the build falling below the first failure threshold:

record successful inflation of the interstitial region in a build record corresponding to the third build cycle for manufacturing the third layer of the build; and

associate the third likelihood of failure of the build with successful inflation of the interstitial region to reinforce the failure detection model.

4. The additive manufacturing system of claim 1 , wherein the controller is further configured to:

during the third build cycle of the first additive manufacturing process for manufacturing the third layer of the build:

trigger injection of fluid into the interstitial region to inflate the separation membrane according to the second target inflation profile;

record a third separation profile representing:

a third pressure within the interstitial region;

a third inflation duration of the separation membrane; and

calculate, via the failure detection model, a third likelihood of failure of the build based on the third separation profile;

in response to the third likelihood of failure of the build exceeding the first failure threshold:

pause the additive manufacturing process; and

output a notification indicating the third likelihood of failure.

5. The additive manufacturing system of claim 1 ,

further comprising a fluid reservoir fluidly coupled to the interstitial region; and

wherein the controller is further configured to, during the first build cycle of the first additive manufacturing process for manufacturing the first layer of the build:

detect a first pressure deviation between the first target pressure and the first pressure within the interstitial region;

in response to detecting a first pressure deviation greater than a first threshold deviation, exchange fluid between a fluid reservoir and the interstitial region to reduce the first pressure deviation below the first threshold deviation.

6. The additive manufacturing system of claim:

further comprising a pressure regulation system configured to inject fluid into the interstitial region; and

wherein the controller is further configured to, during the first build cycle of the first additive manufacturing process for manufacturing the first layer of the build:

in response to the first pressure deviation exceeding a second threshold deviation:

detect a failure of the pressure regulation system;

pause the first additive manufacturing process; and

notify an operator of the additive manufacturing system of the failure of the pressure regulation system.

7. The additive manufacturing system of claim 1 , wherein the controller is further configured to, during the first build cycle of the first additive manufacturing process for manufacturing the first layer of the build:

in response to the first pressure within the interstitial region falling below a second threshold pressure during injection of fluid into the interstitial region to inflate the separation membrane according to the first target inflation profile, detect a failure of an interstitial region seal; and

in response to detection of the failure of the interstitial region seal:

pause the additive manufacturing process; and

notify an operator of the additive manufacturing system of the failure of the interstitial region seal.

8. An additive manufacturing system comprising:

a build window;

a projection system:

arranged below a lower surface of the build window; and

configured to project electromagnetic radiation toward the build window;

a build platform:

facing the build window; and

configured to retract and advance relative to the build window;

a separation membrane:

arranged across an upper surface of the build window opposite the projection system; and

defining an interstitial region between the upper surface of the build window and a lower surface of the separation membrane;

a build chamber:

extending from the separation membrane opposite the build window; and

configured to constrain a volume of resin;

a pressure sensor configured to detect pressures within the build chamber; and

a controller configured to:

during a first build cycle of an additive manufacturing process for manufacturing a first layer of a build:

access a first target inflation profile defining:

a first target pressure of the build chamber; and

a first target inflation duration of the separation membrane; and

trigger inflating of the interstitial region according to the first target pressure; and

record a first separation profile comprising:

a first pressure within the build chamber; and

a first inflation duration of the separation membrane; and

calculate a first deviation of the first separation profile from the first target inflation profile;

during a second build cycle of the additive manufacturing process for manufacturing a second layer of the build:

access a second target inflation profile defining:

a second target pressure of the build chamber; and

a second target inflation duration of the separation membrane; and

trigger inflation of the interstitial region according to the second target pressure; and

record a second separation profile comprising:

a second pressure within the build chamber; and

a second inflation duration of the separation membrane; and

calculate a second deviation of the second separation profile from the second target inflation profile; and

in response to the second deviation exceeding a second deviation threshold greater than the first deviation threshold:

pause the additive manufacturing process; and

generate a notification indicating failure of the build according to the second deviation.

9. The additive manufacturing system of claim 8 :

further comprising a pressure regulation system:

fluidly coupled to the build chamber;

fluidly coupled to the interstitial region;

configured to exchange fluid between the build chamber and the interstitial region to inflate the separation membrane; and

wherein the build chamber and interstitial region are fluidly isolated from ambient atmosphere.

10. The additive manufacturing system of claim 9 , wherein the controller is further configured to, during the first build cycle of the first additive manufacturing process for manufacturing the first layer of the build:

detect a first pressure deviation between the first target pressure and the first pressure within the build chamber;

in response to the first pressure deviation exceeding the first threshold deviation, exchange fluid between the build chamber and the interstitial region to reduce the first pressure deviation below the first threshold deviation.

11. The additive manufacturing system of claim 9 , wherein the controller is further configured to, during the first build cycle of the first additive manufacturing process for manufacturing the first layer of the build:

detect a second pressure deviation between the second target pressure and the second pressure within the build chamber;

in response to the second pressure deviation between the first target pressure and the first pressure within the build chamber exceeding the second threshold deviation:

detect failure of the pressure regulation system;

pause the first additive manufacturing process; and

generate a second notification indicating failure of the pressure regulation system according to the second deviation.

12. The additive manufacturing system of claim 8 , wherein the controller is further configured to, during the second build cycle of the additive manufacturing process for manufacturing a second layer of the build:

access a second target inflation profile comprising:

a second target pressure of the build chamber corresponding to a second target resin viscosity for the second layer of the build; and

a second inflation duration of the separation membrane;

trigger injection of fluid into a head space above the volume of resin constrained within the build chamber according to the second target inflation profile;

record a second separation profile comprising:

a second pressure within the build chamber; and

a second inflation duration of the separation membrane; and

calculate a second deviation of the second separation profile from the second target inflation profile;

in response to the second deviation exceeding the second deviation threshold greater than the first deviation threshold:

pause the additive manufacturing process; and

notify an operator of the additive manufacturing system of the second likelihood of failure.

13. The additive manufacturing system of claim 8 , wherein the controller is further configured to, during a third build cycle of the additive manufacturing process for manufacturing a third layer of the build:

access a third separation profile comprising:

a third target pressure of the build chamber corresponding to a first geometry of the first layer of the build; and

a third inflation duration of the separation membrane;

trigger injection of fluid into a head space above the volume of resin constrained within the build chamber according to the third target inflation profile to force resin between the first layer of the build and the separation membrane;

record a third separation profile comprising:

a third pressure within the build chamber; and

a third inflation duration of the separation membrane; and

calculate a third deviation of the third separation profile from the third target inflation profile;

in response to the third deviation exceeding the third deviation threshold greater than the first deviation threshold:

pause the additive manufacturing process; and

generate a notification indicating failure of the build according to the third deviation.

Continuity (3)
Continuation 16984102 · Aug 3, 2020
Provisional Application 62882464 · Aug 2, 2019
Related Publication 20220055311A1 · Feb 24, 2022