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Engineer Engineering

Location:
Farmington, MI
Posted:
December 14, 2016

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Resume:

********@*****.***

804-***-****

EXECUTIVE SUMMARY

Focused, Goal-oriented and hardworking and able to troubleshoot problems related to the job. Analytical Self-starter and effective team member with exceptional skills, able to use strong technical background related to Product Development, Manufacturing, Vehicle Packaging and Ergonomics.

EDUCATIONAL BACKGROUND

Master of Sciences in Automotive Systems Engineering, University of Michigan Dearborn, MI: Sept’13 - April ’15

o3.3/4 GPA

Bachelor of Technology in Mechanical Engineering, JNTU Hyderabad, India: Jun ‘09 - May ‘13

o3.7/4 GPA

PROFESSIONAL EXPERIENCE

APCOTE, Monroeville, PA: Aug 16 - Present

Responsibilities:

Working as Quality Systems Engineer on various quality specifications and testing for product application by applying modern software engineering techniques and processes to create high quality applications as per the requirements.

Develop and implement 8D Corrective and Preventive actions to Production and Warranty issues.

Lead Quality containment campaigns, Develop and Implement permanent corrective actions.

Data collection and analysis using SPC.

Lead Continuous Improvement and Quality Improvement Team projects.

Develop Error Proofing methods to improve Quality and Productivity.

Resolving Design Related Quality Issues by requesting Design improvements.

Ford Motor Company, Livonia, MI: Jul 15 – Jul 16

Responsibilities:

Worked in Global Powertrain Manufacturing Engineering Team as an Ergonomic Engineer (Assembly) to lead the new model programs as per DFE procedure while facilitating ECR (Electrical Connector Review) and JCR (Joint Connector Review) processes on Engine, Transmission, Axle and Battery programs with respect to MA event schedule to evaluate ergonomic acceptability of new product and process design using Siemens JACK and Process Simulate.

Worked with Workstation Engineers Product design engineers on various powertrain programs for evaluating ergonomic acceptability of the new product and process design.

Worked with Virtual Assembly engineers using Siemens Process Simulate and Task Simulation Builder evaluate the ergonomic acceptability.

Worked on various Ergo Web Tools and Ergo related documents while fixing ergo related issues.

Ford Motor Company, Dearborn, MI: Jul 14 – Aug 14

Responsibilities:

Worked as a PMT Engineer on vehicle attributes.

Worked the on cost processes and weight reduction of cross car beam.

Worked in cross functional teams on AVBOM

Power Engineering Services, Hyderabad, India: May 13 – Aug 13

Responsibilities:

Worked as Manufacturing Engineer on “Manufacturing and assembly of Corrugation Box” using conventional machines.

Worked with the design and assembly team on the assembly components of Corrugation box and spare parts.

Worked on conducting design and quality reviews with management and lead engineers.

Coordinated multiple projects simultaneously while working with various teams to develop and support technical presentations under minimal supervision.

Relevant Projects and Papers:

User Interface Design: Evaluating based on benchmarking the Heads up display (HUD) of three vehicles taking a survey with many people to know the pros and cons on the respective driver side door of the cars and finally listed the improvements

Instrument Panel (HMI) and Center Console Evaluation: Learning about features of instrument panel and center console, readability and understanding the display feedback with minimal mental and physical efforts, acquiring necessary information from visual display in few short eye glances. No gross body movement to acquire needed information from display.

Occupant Package Design: Designing seat and restraint components (such as seats for infants) of a car using SAE guidelines with respect to anthropometric data of population using benchmarking in the same segment vehicles.

Vehicle packaging analysis and evaluation: Evaluation based on benchmarking the driver side exterior door trim panel of three vehicles and taking a survey with many people to know the pros and cons on the respective driver side door of the cars and finally listed the improvements.

Exterior and Mechanical Package Evaluations: Evaluations using engine to learn subsystems and then decomposing the engine and making an interface diagram, interface matrix to give right connections, learning various trade-offs in packaging engine chunk.

Vehicle Package Analyses and Evaluations: Evaluation based on benchmarking the cargo space of three vehicles and conducting a survey with many people to find out pros and cons and finally listed the improvements.

Driver Package Evaluation: Measured various exterior and interior dimensions of the vehicle and evaluated vehicle with respect to anthropometric data in terms of SAE dimensions.

Field of View and Lighting Studies: Determining night visibility distances of pedestrian targets (with different reflectance clothing) under low and high beam illuminations at three lateral locations (e.g. right and left road shoulders, center of the driving lane) of the pedestrians.

Vehicle Systems Analyses: Requirements, Interfaces and Trade-Offs: Cascading various attributes, sub attributes to system and sub system requirements, coordinating system design tasks between different design and engineering activities and issues associated with trade-offs.

Customer needs Benchmarking and QFD: Considering customer’s needs/requirements and convert them to engineering specifications. By applying Quality Function Deployment technique, translate customer’s needs into engineering characteristics.

Technical Skills:

oAutoCAD, ANSYS, Catia V5, Siemens JACK, Process Simulate, Teamcenter, VisMockup, WERS, QFD, Seating/Occupant Packaging, Vehicle Package Analyses and Evaluation, Lean Manufacturing, Six sigma, FMEA, DFMEA, DOE, DVP&R, GD&T, User Interface Design.

oComputer literacy: - Microsoft Office, Basics of C and C++, Microsoft Project

Projects: 2013 – 2015:

Entry/Exit and Engine/Trunk Compartment Evaluations

Assembly and Disassembly of Carburetor of GX-160

Total Quality Management (TQM)

The automobile Tire Pressure Monitoring System (TPMS)

Study on Effect of Usage of Light Weight Materials

Benchmarking and Preliminary Design Specifications

QFD, Vehicle Attributes and Cascading Requirements

Business Plan Development

Conceptual Design of the Proposed Vehicle and Technology Plan

Systems Engineering Management Plan and Vehicle Brochure

Project Management and Control for work management and evaluation of risks management.

Manufacturing of a gear box.

Manufacturing of Mild Steel INGOTS.

Basic CNC concepts and Workshop practices in the shop floor and Study on Steam turbine and Gas turbine construction and working.

Study on Effect of Usage of Light Weight Materials

Manufacturing of Piston, Piston pins and piston rings



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