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Sales Representative Design Engineer

Location:
Brooklyn, NY
Posted:
January 28, 2021

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Resume:

MOHAMMED SAIFUL ISLAM

New York, NY 929-***-**** adjrju@r.postjobfree.com

OBJECTIVE

Self-motivated Mechanical Engineering major with excellence analytical thinking, problem solving and research skills. Team player with proven leadership and organizational skills gained from various professional experience and academic projects. Detail-oriented, client focused and has the ability to meet deadlines in a timely manner.

EDUCATION

The City College of New York, The Grove School of Engineering New York, NY Bachelor of Engineering in Mechanical Engineering, GPA: 3.0 Graduated June 2020

Thomas A. Edison CTE High School Queens, NY

Career and Technical Education Endorsed Diploma – Automotive Technology, GPA: 3.7/4.0 Graduated June 2016

SKILLS/ QUALIFICATIONS

Certifications: Automotive Service Excellence (ASE) – A1, A4, A5, A6, A7, A8, & Maintenance and Light Repair

Design Software: SolidWorks (2 years’ Experience), AutoCAD, MATLAB, CATIA, Arduino, & Eclipse C++

Hands-On Skills: Automotive mechanic/technician, CNC milling machine, CNC lathe, & 3D printing

Applications: Microsoft Office (Word, Excel, PowerPoint etc.); Google Suite (Docs, Slides, Sheets, etc.)

Languages: Fluent in English/Bangla; Conversational Urdu/Hindi

PROFESSIONAL EXPERIENCE

NB Electrical Enclosures Manufacture, INC. Brooklyn, NY

Industrial Fabrication and Design Engineer June 2020 – Present

Gained and applied knowledge of mechanical engineering/manufacturing concepts, low and high frequency power suppliers, nominal pipe size/nominal bore piping standards (NPS/NB), and meeting the standards of the National Electrical Manufacturers Association (NEMA) enclosure codes.

Drafted AutoCAD drawings in 2D and 3D rendering for fabrication of electrical enclosures. Designed equipment’s and parts for manufacturing and sales purposes.

Additionally, work with 2D fabrication programs to create machine profiles for the Trumpf Trumatic 2000R Punching and Cutting Machine, CNC Equipment, Break, Plasma, Shear, Iron Worker, and all various types of machines used in welding and fabricating of structural metal work.

Ability to design, reverse engineer and troubleshoot. Demonstrate time management skills to oversee ongoing projects from conception to completion.

AutoZone Queens, NY

Customer Sales Representative and Parts Management July 2016 – July 2020

Enhanced productivity level and market products to help increase sales and profits; Helped increase overall sales and beat previous year’s sales number by more than 20%

Managed team to focus on complete customer satisfaction, helped maintain customer relationship, and provide WOW! Customer Service.

Operated cash registers and establish cash handling procedures. Processed price changes and assisted in weekly inventory counts.

Utilized ZNET to help customers locate merchandise or find suitable alternatives.

Maintained product knowledge and current promotions through AutoZone systems and information sources

Practiced GOTTChA and assisted with the installation of wipers blades, batteries, light bulbs, & engine parts.

Utilized OBDII to read codes from customer’s automobiles; Diagnosed automobile problems and recommended proper solutions.

Department of Mechanical Engineering, City College of New York New York, NY

Mechanical Shop Technician Sept 2019 – Dec 2019

Oversee and provide guidance to manufacturing class (ME 462) projects from CAD design to manufacturing.

Operate various machines including CNC milling machine, CNC lathe, 3D printer, Laser cutter, etc.

Help researchers design and build experimental devices and research projects.

Manufacture project parts for senior design groups and student clubs.

Ensure safety of students in the shop and maintain inventory of the shop.

NYPD Fleet Service Division Shop 1 – Truck Shop New York, NY

Automotive Student Mechanic June 2015 – September 2015

Advanced skillset with hands-on experience and excellent training to perform service, diagnostics, and repairs on domestic and imported automobiles and trucks.

Developed and implemented strong organizational, technical, and analytical skills

Skill assets include diagnostic and repair of Automotive: Electrical Systems, Engine Performance and Drivability, Engine Diagnostics and Troubleshooting, Steering and Suspension, Brakes, and HVAC

Demonstrated talent for quickly and accurately diagnosing mechanical failures and determining corrective actions; Used scan tools such as the Solus Ultra and the OBD II function for vehicle diagnoses

Participated in continuous training and professional development activities to maintain current knowledge of rapidly advancing automotive technologies

LEADERSHIP EXPERIENCE

Muslim Student Organization (MSO) – CCNY Chapter New York, NY

Executive Treasurer Jan 2018 – Present

Created budget expenses for the school year; Completed Auxiliary Enterprise Corporation and SSC forms for club reimbursements.

Collaborated with clubs such as Muslims Giving Back to coordinate Blessing Bags event which contained necessary hygienic products for the homeless community in New York.

Tracked monthly expenditures and planned appropriately for monthly club events.

Oversaw merger of SOCS club space and MSO club space that ultimately expanded MSO club space to meet the accommodations of its members.

Collaborated with Islamic Relief and coordinated with MSO to participate in Charity Week 2019 to raise more than $55,000 in one week.

PROJECTS

U.S. Army Natick Soldier Research, Development and Engineering Center (NSRDEC) – Senior Design Project.

Aug 2019 – May 2020

Goal of Project: To develop a quick automatic release/retract system for an enclosure that will provide storage and, when set up, the structure for the deployment of an Ultra Lightweight Camouflage Net System (ULCANS).

Applied design for manufacturing methods and process improvement to develop the product from concept to the final model.

Analyzed the strength of materials and design, static load, and motion study of the ULCANS Tent System (Rollabrella) using simulations tools and other software’s to assist in the design and manufacturing process; SolidWorks (CAD, CAM, & FEA), MATLAB, Arduino, and 3–D Printing using Creo.

Built the tent’s final model through hands-on experience in City College of New York in-house manufacturing shops using CNC milling machine and CNC lathe.

Led a collaborative team of 5 associates to ensure task distribution and designing quality of the deployment and retractive system for the ULCANS Tent System.

Solar Photovoltaic (PV) Systems Design for New York Residential Homes Jan 2020 – May 2020

Design of a solar power energy conversion system for a residential building. The design is based on solid engineering concepts, and the performance presented for typical operating conditions.

Design of solar PV system that will provide space heating, electricity for appliances, and space cooling for a residential building in Long Island, New York, of a family of 4. using HDKR Model to estimate the solar irradiation and PVwatt NREL calculator. Calculate the Heating System using electric heat pump. Calculate the Cooling System using complementary A/C system or the same heat pump system (operating in reverse).

Drafting of HVAC plans using AutoCAD. Selection and layout of equipment and surveying of buildings.

Performing heating and cooling load calculations. Monthly energy demands in kWh/Month.

Solar PV system components (i.e. PV module, inverters, and manufacturers).

Sizing of solar PV system (in number of collectors, total peak capacity in W, and total area).

Monthly performance of solar PV in terms of power delivered and solar fraction.

Analyzing the Failure of Standard Screwdriver Using Finite Element Analysis (FEA) Sept 2019 – Dec 2019

Solid-modeled a screwdriver and performed structural analysis (FEA) on the product using 3D CAD design tools.

Determined the failure mods in using a screwdriver as a pry tool and improving the design to accommodate misuse.

Determined the maximum von Misses stress values and hotspots to assign an ideal safety factor and improve.

Applied different boundary conditions, global and local h-refinement at the stress concentrated areas.

Performed convergence and sensitivity tests to verify the results obtained.



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