IP Library › Granted Patent US 11,645,936
Granted Patent B2
US 11,645,936 · App. 17/693,615 · Granted May 9, 2023

Weld training simulations using mobile devices, modular workpieces, and simulated welding equipment

Inventors: William Joshua Becker (Manitowoc, WI); Mitchell James Muske (Neenah, WI); Justin Monroe Blount (Whitefish Bay, WI); Joseph C. Schneider (Greenville, WI); Victor López Márquez (Huelva, ES); Juan Jose Chica Barrera (Huelva, ES); Pedro Gerardo Marquinez Torrecilla (Severna Park, MD); Javier Castilla Gutiérrez (Huelva, ES)
Assignees: Illinois Tool Works Inc.; Seabery North America, Inc.
G09B9/00G09B19/24B23K9/0953B23K9/0956
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Quick Facts
Patent No.
US 11,645,936
App. No.
17/693,615
Granted
May 9, 2023
Kind
B2
Abstract

Systems for simulating joining operations, such as welding, are disclosed. In some examples, a system may use a mobile device for conducting welding simulations, such as for purposes of training. In some examples, the system may additionally, or alternatively, use modular workpieces. In some examples, the system may additionally, or alternatively, conduct the welding simulation based on one or more selected pieces of welding equipment.

Claims (39)

1. A mock workpiece for use with a weld training system, comprising:

an object comprising:

a marker configured for recognition or detection by the weld training system; and

an array of connectors configured for tool-less connection to a complementary array of connectors of a complementary mock workpiece,

the array of connectors arranged asymmetrically in a poka yoke configuration to discourage incorrect connection to the complementary array of connectors.

2. The mock workpiece of claim 1 , wherein each connector of the array of connectors comprises a magnet, a hook fastener, a loop fastener, a snap fastener, a button, a clamping fastener, a prong, a stud, or a socket.

3. The mock workpiece of claim 1 , wherein the array of connectors are positioned along an edge or middle of the object.

4. The mock workpiece of claim 1 , wherein the array of connectors comprise a first array of connectors positioned along a first edge of the object, the object further comprising a second array of connectors positioned along a second edge of the object.

5. The mock workpiece of claim 1 , wherein the object further comprises a first face, a second face, and a plurality of sidewalls connecting the first face to the second face, each of the first face and the second face having a polygon shape and a larger surface area than each of the plurality of sidewalls, the array of connectors being positioned on or in the first face or the second face.

6. The mock workpiece of claim 1 , wherein the connection of the array of connectors and complementary array of connectors creates a joint at an intersection of the mock workpiece and the complementary mock workpiece, the joint comprising a lap joint, a butt joint, a corner joint, a T joint, an edge joint, or a pipe joint.

7. The mock workpiece of claim 1 , wherein a connector of the array of connectors is further configured for removable connection to a complementary connector of a fixturing system.

8. A weld training system, comprising:

a first workpiece having a first connector;

a second workpiece having a second connector configured to tool-lessly engage the first connector to secure the first workpiece to the second workpiece;

a sensor configured to detect data relating to the first workpiece and second workpiece;

processing circuitry; and

memory circuitry comprising computer readable instructions which, when executed by the processing circuitry, cause the processing circuitry to:

determine a spatial relationship between the first workpiece and the second workpiece based on the data detected by the sensor, the spatial relationship comprising a type of joint defined by an intersection of the first workpiece and second workpiece.

9. The weld training system of claim 8 , wherein the type of joint comprises a lap joint, a butt joint, a corner joint, a T joint, an edge joint, or a pipe joint.

10. The weld training system of claim 8 , wherein the memory circuitry further comprises computer readable instructions which, when executed by the processing circuitry, cause the processing circuitry to output a notification in response to determining the spatial relationship is different than an expected spatial relationship.

11. The weld training system of claim 10 , wherein the notification comprises instructions for transitioning from the spatial relationship determined by the processing circuitry to the expected spatial relationship.

12. The weld training system of claim 10 , wherein the expected spatial relationship is based on a parameter of the weld training simulation, the parameter comprising a selected exercise, a selected part, or a selected joint type.

13. The weld training system of claim 10 , wherein the memory circuitry further comprises computer readable instructions which, when executed by the processing circuitry, cause the processing circuitry to determine a training score based on a difference between the spatial relationship determined by the processing circuitry and the expected spatial relationship.

14. The weld training system of claim 8 , wherein the memory circuitry further comprises computer readable instructions which, when executed by the processing circuitry, cause the processing circuitry to conduct the weld training simulation based on the spatial relationship of the first workpiece and second workpiece.

15. A mock workpiece assembly for use with a weld training system, comprising:

a first mock workpiece, comprising:

a first marker configured for recognition or detection by the weld training system, and

a first connector; and

a second mock workpiece comprising:

a second marker configured for recognition or detection by the weld training system,

a second connector configured for tool-less connection to the first connector in a first joint arrangement, and

a third connector configured for tool-less connection to the first connector in a second joint arrangement that is different than the first joint arrangement.

16. The mock workpiece assembly of claim 15 , wherein the first connector, second connector, and third connector comprise a first connector array, second connector array, and third connector array, respectively.

17. The mock workpiece assembly of claim 15 , wherein the first joint arrangement or second joint arrangement comprise a lap joint, a butt joint, a corner joint, a T joint, or an edge joint.

18. The mock workpiece assembly of claim 15 , wherein the second connector and third connector are further configured for tool-less disconnection from the first connector.

19. The mock workpiece assembly of claim 15 , wherein the first connector, second connector, or third connector comprises a magnet, a hook fastener, a loop fastener, a snap fastener, a button, a clamping fastener, a prong, a stud, or a socket.

20. The mock workpiece assembly of claim 15 , further comprising a third mock workpiece comprising:

a third marker configured for recognition or detection by the weld training system, and

a fourth connector configured for tool-less connection to the first connector in a third joint arrangement.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME AND ADDRESS OF THE SECOND ASSIGNEE IN THE ASSIGNMENT PREVIOUSLY RECORDED AT REEL: 059270 FRAME: 0360. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Nov 11, 2022
From: BECKER, WILLIAM JOSHUA; GUTIERREZ, JAVIER CASTILLA; MUSKE, MITCHELL JAMES; BLOUNT, JUSTIN; BARRERA, JUAN JOSE CHICA; TORRECILLA, PEDRO GERARDO MARQUINEZ; MARQUEZ, VICTOR LOPEZ; SCHNEIDER, JOSEPH C
To: ILLINOIS TOOL WORKS INC.; SEABERY NORTH AMERICA INC.
Reel/Frame 061921/0242 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2022
From: BECKER, WILLIAM JOSHUA; GUTIERREZ, JAVIER CASTILLA; MUSKE, MITCHELL JAMES; BLOUNT, JUSTIN; BARRERA, JUAN JOSE CHICA; TORRECILLA, PEDRO GERARDO MARQUINEZ; MARQUEZ, VICTOR LOPEZ; SCHNEIDER, JOSEPH C.
To: ILLINOIS TOOL WORKS INC.; SEABERY SOLUCIONES, S.L., SEABERY NORTH AMERICA, INC.
Reel/Frame 059270/0360 →
Continuity (3)
Continuation 17103428 · Nov 24, 2020
Provisional Application 62940111 · Nov 25, 2019
Related Publication 20220198955A1 · Jun 23, 2022
Cited By (1)
US 12,502,724