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Mechanical Engineer Design

Location:
Seattle, WA
Salary:
$100K and up
Posted:
January 16, 2021

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Resume:

ASIF SADIK

MECHANICAL ENGINEER

Seattle, WA *****813-***-****

adjgp1@r.postjobfree.com • LinkedIn: asifsadik

PROFILE

Dynamic and results-driven engineer with expertise in all facets of structural and systems design,

development, testing, and project execution.

Exceptionally adept in crafting innovative solutions that optimize processes and productivity. Well-

versed in business case development and technical

writing. Technically sophisticated across industry best practice tools, systems, and applications.

Articulate communicator and champion of cross-

functional teams.

AREAS OF EXPERTISE

• Electronics/Electronic Packaging

• Structural & Systems Design Engineering

• Full Life Cycle Product Management

• Cross-Functional Team Leadership

• Business Case Development & Reports

• Process & Productivity Improvements

• Rapid Prototype

• Computer-Aided & Concept Design

• Finite Element Stress Analysis

• New Project Introduction (NPI) Process

• Rotor Dynamics/Vibration/Modal Analysis

• Design for Testing (DFT) & Test Methods

• Design for Manufacturing (DFM)

• Design of Experiment (DOE)

• Material Selection & Machining Process

• Procurement & Supplier Integration

• Technical Writing

• Turbomachinery Design (Centrifugal

compressors and pumps)

EDUCATION & CREDENTIALS

B.S., Mechanical Engineering (2016)

University of Minnesota – Minneapolis, MN

SAFe 4 Agilist Certification (2020)

Engineer in Training (EIT) (2018)

TECHNICAL PROFICIENCIES

• SAFe 4 Agile Project Management, 5S

• GD&T, ANSYS, SolidWorks, C++, Creo, Inventor

• Prototypes, Rapid Prototype, MATLAB

• MS Office Suite, Share Point Software

Languages

• English (fluent), Bengali (native)

• Japanese (conversational)

PROFESSIONAL EXPERIENCE

CRANE AEROSPACE AND ELECTRONICS – Lynnwood, WA 7/2020 – Present Mechanical Engineer

Principal mechanical engineer in a small, cross-functioning, fast-paced team responsible for developing the 3D design model, drawings, requirements compliance analysis (thermal, vibration, shock, and stress), and spearheading the mechanical testing of commercial space grade modular power electronics for high volume off the shelf market with strict cost goals.

• Spearhead the mechanical analysis for radiation tolerant and off the shelf modular power electronic units for thermal, shock, vibration, and constant acceleration stress compliance towards MIL standards and market requirements by developing 3D analysis models using Autodesk Inventor and running simulations on ANSYS Mechanical software.

• Develop GD&T standard drawings and manufacturing processes for electronic components in order to create more control over manufacturing of the parts, ensuring 100% quality compliance and reducing manufacturing variability.

• Champion the mechanical analysis for customer failure analysis by completing requested analysis for mechanical failures under stress and presenting the data to subject experts internally and externally at the customer.

• Lead the development and testing of Rapid Prototype units during the development phase by reviewing the design, standards, and specifications and determining the risks within the designs to test. Develop marginal testing necessary to confirm compliance and validity of first pass design within the rapid prototype phase as well as develop coupon testing.

BOEING COMMERCIAL AIRPLANES – Everett, WA 6/2019 – 7/2020 Structural & Payloads Design Engineer – Factory Support Center (12/2019 – 7/2020) Structural & Payloads Design Engineer – Value Engineering (6/2019 – 2/2020) Principal strategist and overseer of product development, technical integration, full life cycle project management, cost savings, process improvements, documentation, business case development, and engineering initiatives. Drive idea generation and brainstorm sessions utilizing Agile concepts and processes with a 26-member cross-functional team of managers, mechanics, and engineers.

• Subject Matter Expert (SME) for Agile Project Management to 12+ Value Engineering Project Managers. Led, developed, and empowered 30+ cross-functional personnel.

• Project Lead for the 777/X dent quality improvement initiative. Eliminated 100% of total defect hours due to airplane skin dents in the final assembly.

• Cut component costs by 78% by championing the redesign of the aircraft stow bins on the 777X. Spearheaded business case development and cost analysis of parts. Drafted the ECR document and presented it to the SME review board, stakeholders, and cross-functional teams for approval.

• Helmed the global workshare process document initiative and collaboration with 29 internal commodity teams. Pinpointed issues and established best practices.

• Conceptualized and delivered virtualization of work tools leveraging MS OneNote and Share Point software for a seamless transition during the “Stay at Home” mandate. DAIKIN APPLIED AMERICAS – Plymouth, MN 11/2014 – 6/2019 Development Engineer (6/2016 – 6/2019)

Development Engineer, Part-Time (11/2014 – 6/2016) Primary leader of HVAC turbomachinery development engineering, structural and mechanical design, testing, comprehensive analyses (FEA, rotor dynamic, GD&T and thermal), KPIs, performance metrics, business case development, workflow, and project management. Streamlined supply chain, procurement, and purchasing management for prototype components. Generated technical documents (i.e. FMEA, TED, product specifications), as well as test plans and reports per certification and regulatory compliance statutes.

• Administered full life cycle project execution of the mechanical design of a centrifugal compressor, including Finite Element Model (FEM) development, FEA stress analysis, dynamic analysis, and structural design. Cut costs by 30%, bolstered efficiency by 5%, and expanded operating range by 50%.

• Trusted liaison between over 50 engineers, technicians, and manufacturers across Daikin global facilities in the US, Italy, Japan, and China during prototype production and testing.

• Drove the design of experiment (DOE) process in partnership with 15+ technicians and engineers to enhance accuracy and reduce total testing time by 20%.

• Achieved a 20-second chiller restart for the Magnitude RapidRestore© software.

• Accomplished a 10% quantity decrease by providing critical oversight of GD&T analysis, mechanical calculations, change implementation, and design revisions.

• Slashed data analysis time by 50% by creating an Excel-based VBA macro.

• Developed hydrostatic pressure vessel testing methods utilizing SolidWorks to create FEM models and ANSYS workbench to simulate test settings and outcomes.



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