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Mechanical Engineer

Location:
Schaumburg, IL
Salary:
75000
Posted:
August 14, 2020

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Resume:

Jyothi Komatireddy

224-***-****

adfbti@r.postjobfree.com

• MSME with a focus on advanced kinematics, injection molding, additive manufacturing and prototyping.

• 6 years of engineering experience in CAD/manufacturing, new product development and process design.

• Proficient in manufacturing drawings, tolerance analysis, GD&T, material selection, and process routing.

• Experienced in end-end new product introduction, patent filing, and product improvements for re-release.

• Self-motivated individual with proven success in roles with increasing responsibility and complexity. Work History

Kennametal Bangalore, India

Senior Engineer January 2015 – July 2017

• Engineering support for gate wise New Product Development of high precision tooling system products.

• End-end responsibility for design conformity, process selection, surface treatment and validations.

• Utilized data from field trials and sales engineers for design improvement of custom-engineered solutions.

• Mentored junior engineers for custom & standard engineered design projects and lean manufacturing. Patent- US9895755B2: Coolant Channels through cutting materials on flank and/or rake face. Design Engineer July 2011 – January 2015

• Design engineer for custom high precision cutting tool assemblies and machine adapter assemblies.

• Worked on the development of a coolant capable locking system as a part of gated product improvement.

• Experience in design, ECN and improvements as needed for standards & custom engineered solutions.

• Gained experienced in mechanical design, design for assembly, tolerance analysis for CNC machine tooling.

• Worked with global engineering teams to maintain manufacturing standards for standard product lines. Education

Master of Science in Mechanical Engineering January 2018 – Dec 2020 Missouri University of Science and Technology, Rolla, MO GPA – 4.0 Research Assistant June 2018 – Present

• ‘DESIGN OF HAND EXERCISER’ using compliant mechanisms to capture the continuity of motion generated.

• The proposed aim of this research is to build a device to aid in rehabilitation process of arthritis patients.

• Reduce the side-effects in case of improper usage by building compliance into the design.

• Replace conventional molded parts using 3D printing techniques to limit cost and faster turnaround times. Current Phase- Utilizing the force-deflection profile of the human hand in developing the exercising device to increase the mechanical advantage. Based on kinematic analysis, initial 3D prototypes are being developed and validation is aimed to collect a cluster of data for conforming the required behavior. Senior Design Mentor September 2018 – Present

• Responsible for design and project management for senior design projects done for industrial customers.

• Established a data gathering standard to ensure design deliverables v/s customers requirement are met.

• Worked with suppliers for material procurement and use of 3D printing in the new product development.

• Expertise in 3D print software set-ups, machine calibration, and material selection for prototyping. Design Projects

1. Built working prototypes of automated drilling machine to drill 3 holes at 120 on 5mm thick seals Results: The estimated cycle time per washer is approximately 30 seconds. The feeding of washers, drilling and moving to finish bin are automated without damaging the finish. End user: Honeywell

2. Built a 3D printed end effector for handling different operations in additive manufacturing chamber Results: End effectors that withstand deposition environment and no damage to the robot. Easy to attach and operate on existing robotic grippers.

End User: Lamp Labs, Missouri

3. Built working prototypes of a linear guided handling mechanism for a sports industry customer Results: Ergonomic design to pick and place tool that can hold a 2lbs ball. The solution has easy working with high mechanical advantage

End user: Individual sports equipment contractor

Bachelor of Technology in Mechanical Engineering August 2007 - May 2011 Jawaharlal Nehru Technological University, Hyderabad GPA – 3.8 Injection Mold Tool Design for a cooler fan blade December 2010 – April 2011

• Designed the cooler fan, core-cavity design, and performed FE analysis on the component.

• Assisted in mold flow analysis for finding the pressure distribution, air traps lines.

• Prototyped the fan blade using polypropylene and presented for the project defense. Software Skills

CAD Unigraphics-NX, Solidworks, AutoCAD

CAE ANSYS

CAM MasterCAM

Manufacturing GD&T (ASME-Y14.5), Tolerance analysis, Material selection Data Analysis tools MATLAB

PLM and Others SAP-PLM, Microsoft Office

Publications

Integration of QFD and MFD in product development November - 2017 World Academy of Science Engineering and Technology https://waset.org/abstracts/75517

Design methodology of a hand exerciser using kinematic compliant mechanisms August - 2020 ASME – Mechanisms & Robotics, IDETC’2020



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