Alexander J Dunbar, Age 36Sandown, NH

Alexander Dunbar Phones & Addresses

Sandown, NH

Chester, NH

Plaistow, NH

Haverhill, MA

Temple Terrace, FL

Mentions for Alexander J Dunbar

Resumes & CV records

Resumes

Alexander Dunbar Photo 29

Graphic Designer / Media Facilitator

Location:
Chicago, Illinois
Industry:
Design
Work:
MERIT PUMP AND EQUIPMENT CO Jan 2005 - Feb 2011
Shop Manager/ Promotional Designer
THE PEOPLE'S MUSIC SCHOOL Mar 2010 - Jun 2010
Promotional Designer
SEATTLE'S BAR & GRILL Mar 2006 - Sep 2008
Promotional designer
BARNES & NOBLE BOOK STORE Nov 2007 - Feb 2008
Cashier / Customer Service Represenative
Education:
DePaul University 2007 - 2010
DePaul University
Bachelor of Arts, Communication Studies
Alexander Dunbar Photo 30

Senior Technical Recruiter For Tekmark, Global Solutions, Llc

Position:
Senior Technical Recruiter at Tekmark Global Solutions
Location:
Cary, North Carolina
Industry:
Staffing and Recruiting
Work:
Tekmark Global Solutions - Cary, North Carolina since Jul 2013
Senior Technical Recruiter
Skills:
Sourcing, Recruiting, Talent Acquisition, Applicant Tracking Systems, Technical Recruiting, Internet Recruiting, Onboarding, Benefits Negotiation, Staffing Services, Contract Recruitment, Management, Temporary Placement, Interviews, Employee Relations, Human Resources, CRM, Outsourcing, Networking, College Recruiting, Screening Resumes, Temporary Staffing

Publications & IP owners

Wikipedia

Alexander Dunbar Photo 31

Dean Of Moray

The deanery was resigned to David Dunbar in 1548, though David was denied the fruits of the office. Alexander Dunbar however was dead by December 18, ...

Us Patents

Angled Scanning Of Laser Arrays In Additive Manufacturing

US Patent:
2021038, Dec 16, 2021
Filed:
Jun 2, 2021
Appl. No.:
17/337000
Inventors:
- Burlington MA, US
Alexander Dunbar - Waltham MA, US
Raghav Aggarwal - Somerville MA, US
Matthew Sweetland - Bedford MA, US
Martin C. Feldmann - Somerville MA, US
Assignee:
VulcanForms Inc. - Burlington MA
International Classification:
B22F 10/85
B23K 26/06
B23K 26/082
B23K 26/342
B33Y 10/00
B33Y 30/00
B33Y 50/02
B22F 10/28
B22F 12/41
Abstract:
Systems and methods for additive manufacturing are described. In some embodiments, a method of controlling the one or more laser energy sources of an additive manufacturing system may be based at least in part on a scan angle and/or desired energy density. Systems and methods for controlling melt pool spacing are also described.

Laser Control Systems For Additive Manufacturing

US Patent:
2020023, Jul 23, 2020
Filed:
Jan 22, 2020
Appl. No.:
16/749464
Inventors:
- Waltham MA, US
Alexander Dunbar - Waltham MA, US
Matthew Sweetland - Bedford MA, US
Assignee:
VulcanForms Inc. - Waltham MA
International Classification:
B23K 26/342
B23K 26/082
B23K 26/062
B23K 26/03
B33Y 10/00
B33Y 30/00
B33Y 50/02
Abstract:
Laser control systems and related methods for controlling arrays of lasers are disclosed. A laser control system may include a first controller configured to generate a trigger signal based on a position of a laser array, and a second controller configured to send a firing signal to one or more lasers of the laser array upon receiving the trigger signal. The one or more lasers may be selected based on a desired pattern of laser energy to be formed at a particular position of the laser array.

Multi-Spectral Method For Detection Of Anomalies During Powder Bed Fusion Additive Manufacturing

US Patent:
2020006, Feb 27, 2020
Filed:
Aug 14, 2019
Appl. No.:
16/540243
Inventors:
- University Park PA, US
Alexander J. Dunbar - Waltham MA, US
Edward W. Reutzel - State College PA, US
International Classification:
B22F 3/105
G01J 3/02
G01J 3/443
B33Y 50/02
Abstract:
Embodiments of the systems can be configured to receive electromagnetic emissions of a substrate (e.g., a build material of a part being made via additive manufacturing) by a detector (e.g., a multi-spectral sensor) and generate a ratio of the electromagnetic emissions to perform spectral analysis with a reduced dependence on location and orientation of a surface of the substrate relative to the multi-spectral sensor. The additive manufacturing process can involve use of a laser to generate a laser beam for fusion of the build material into the part. The system can be configured to set the multi-spectral sensor off-axis with respect to the laser (e.g., an optical path of the multi-spectral sensor is at an angle that is different than the angle of incidence of the laser beam). This can allow the multi-spectral sensor to collect spectral data simultaneously as the laser is used to build the part.

Isbn (Books And Publications)

His And Hers: Together

Author:
Alexander Dunbar
ISBN #:
0933446004

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