Additively manufactured component with locator element for aligning sub-components
10532515 ยท 2020-01-14
Assignee
Inventors
- Michael Evans Graham (Slingerlands, NY)
- John Broddus Deaton, Jr. (Niskayuna, NY, US)
- Mark Allen Cheverton (Mechanicville, NY, US)
- Thomas Charles Adcock (Glenville, NY, US)
- Andrew David Deal (Niskayuna, NY, US)
- Marshall Gordon Jones (Scotia, NY, US)
- Prabhjot Singh (Guilderland, NY, US)
Cpc classification
B33Y10/00
PERFORMING OPERATIONS; TRANSPORTING
B29C64/40
PERFORMING OPERATIONS; TRANSPORTING
B22F5/10
PERFORMING OPERATIONS; TRANSPORTING
B22F7/08
PERFORMING OPERATIONS; TRANSPORTING
G05B19/4099
PHYSICS
B22F10/28
PERFORMING OPERATIONS; TRANSPORTING
B33Y50/02
PERFORMING OPERATIONS; TRANSPORTING
Y02P10/25
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B22F7/062
PERFORMING OPERATIONS; TRANSPORTING
B29C64/153
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C64/386
PERFORMING OPERATIONS; TRANSPORTING
B29C64/153
PERFORMING OPERATIONS; TRANSPORTING
G05B19/4099
PHYSICS
B22F7/08
PERFORMING OPERATIONS; TRANSPORTING
B22F7/06
PERFORMING OPERATIONS; TRANSPORTING
B22F3/105
PERFORMING OPERATIONS; TRANSPORTING
B22F5/10
PERFORMING OPERATIONS; TRANSPORTING
B29C64/40
PERFORMING OPERATIONS; TRANSPORTING
B33Y10/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method that includes additively manufacturing with an additive manufacturing (AM) system a sub-component that has a locator element. Using a control system of the AM system for positioning a first location of the locator element. Selectively placing a portion of another sub-component adjacent to the locator element, based on the positioning. Then attaching the second sub-component to the first sub-component in a region, wherein the region is based on the positioning knowledge from the control system so as to make a component. A component that comprises a first sub-component that has an AM locator element; and a second sub-component attached to the first sub-component, wherein the locator element is attached to the second sub-component within the same additive manufacturing build chamber as the first sub-component.
Claims
1. A component comprising: a first sub-component, wherein the first sub-component has an additively manufactured locator element; and a second sub-component attached to the first sub-component, wherein the additively manufactured locator element is attached to the second sub-component within the same additive manufacturing build chamber as the first sub-component, wherein the first sub-component and the second-component are additively manufactured as a single monolithic piece and are connected by a narrowed region such that the second sub-component is rotatable relative to the first sub-component.
2. The component of claim 1, wherein at least one of the first and second sub-components has at least one substantially downward facing surface.
3. The component of claim 2, wherein the at least one substantially downward facing surface comprises a portion of one of: a tube, an arch, a sculpted surface, and an overhang.
4. The component of claim 1, the first sub-component comprises a support element and the second sub-component comprises a bearing surface configured to bear on the support element.
5. The component of claim 4, the support element and the bearing surface define a connection region, wherein the connection region is thermally welded.
6. The component of claim 5, wherein the connection region is thermally welded with a laser operating in a pulsed-mode.
7. The component of claim 5, further comprising a space beneath the connection region.
8. The component of claim 5, wherein a portion of the connection region is recessed.
9. The component of claim 1, further comprising: a third sub-component positioned on a top of the second sub-component.
10. The component of claim 9, wherein the third sub-component is additively deposited directly on the second sub-component.
11. The component of claim 1, wherein the first sub-component defines a plurality of locator element intermittently placed around a periphery of the first sub-component.
12. The component of claim 5, wherein the connection region is thermally welded with an electron beam.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The drawings illustrate one embodiment presently contemplated for carrying out the invention.
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DETAILED DESCRIPTION
(8) Unless defined otherwise, technical and scientific terms used herein have the same meaning as is commonly understood by one of ordinary skill in the art with respect to the presently disclosed subject matter. The terms first, second, and the like, as used herein do not denote any order, quantity, or importance, but rather are used to distinguish one element from another. The terms a, an, and the do not denote a limitation of quantity, but rather denote the presence of at least one of the referenced item, and the terms front, back, bottom, and/or top, unless otherwise noted, are used for convenience of description only, and are not limited to any one position or spatial orientation.
(9) If ranges are disclosed, the endpoints of all ranges directed to the same component or property are inclusive and independently combinable (e.g., ranges of up to about 25 wt. %, is inclusive of the endpoints and all intermediate values of the ranges of about 5 wt. % to about 25 wt. %, etc.). The modified about used in connection with a quantity is inclusive of the stated value and has the meaning dictated by the context (e.g., includes the degree of error associated with measurement of the particular quantity). Accordingly, the value modified by the term about is not necessarily limited only to the precise value specified.
(10) Aspects of the present invention have been shown to offer advantages over previous additive manufacturing methodologies by, for example, enabling enhanced design freedom (e.g., the ability to make large overhung structures), improving efficiencies in manufacturing (e.g., fewer steps), and making functional improvements. Ultimately, opportunities for improved componentry manufacturing are made available.
(11) Referring to
(12) Referring to
(13) Referring to
(14) The second sub-component 20 may be made or processed via one or more of the following techniques: additive manufacturing, casting, forging, machining, rolling, extrusion, and other material processing methods.
(15) Referring to
(16) As shown in
(17) Various methods may be used to attach the second sub-component 20 to the first sub-component 10. Attaching may be done by welding. Various welding methods may be used including, but not limited to, gas welding, e-beam welding, friction stir welding, ultrasonic welding, and thermal welding. The welding source may comprise any suitable source including, but not limited to, a laser.
(18) Referring to
(19) A variety of additive manufacturing techniques, now known or later developed may be employed to make one or all of the sub-components that lead to the finished component. For example, direct metal laser melting (DMLM) may be used. Alternatively, electron beam (EB) additive manufacturing methods may be used.
(20) A variety of structures and shapes of components than just those depicted may be made with the methods herein. For example, the component may comprise a chamber (open or closed), an arch, a tube, a structure having an overhang, a structure having a sculpted surface, and the like. Similarly, the component may comprise a combination of these attributes.
(21) Referring to
(22) Referring to
(23) Referring to
(24) Referring to
(25) While the embodiments illustrated and described herein may be used wherein the additive manufacturing and thermal welding are typically done by a laser and laser system, other means can be used. For example and not by limitation, the additive manufacturing and/or thermal welding may alternatively be done by induction heating.
(26) Therefore, in accordance with one aspect of the invention, a method comprises: additively manufacturing with an additive manufacturing system a first sub-component having at least one locator element, thereby using a control system of the additive manufacturing system for positioning a first location of the at least one locator element; selectively placing a portion of a second sub-component adjacent to the at least one locator element of the first sub-component, based on the positioning; and attaching the second sub-component to the first sub-component in a region, wherein the region is based on the positioning from the control system of said additive manufacturing system, thereby defining a component.
(27) Therefore, in accordance with another aspect of the invention, a component comprises: a first sub-component, wherein the first sub-component has an additively manufactured locator element; and a second sub-component attached to the first sub-component, wherein the locator element is attached to the second sub-component within the same additive manufacturing build chamber as the first subcomponent.
(28) The present invention has been described in terms of the preferred embodiment, and it is recognized that equivalents, alternatives, and modifications, aside from those expressly stated, are possible and within the scope of the appending claims.