Mechanical Engineering

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Mechanical Engineering

Mechanical Engineering is the art of using problem-solving techniques and applying them to the design and manufacturing of an object. Essentially, a mechanical engineer uses creative design and analytical knowledge to turn a concept into something real.

JSCOE Mechanical Engineering Department was established in 2004 offers UG, PG & Ph.D. programs. This department is specially known for excellence in academics, acquiring research projects & placements.

The department has bagged gold medals in the university examination for three consecutive years and created a record. The Department has well equipped laboratories including a state-of-art research center.

The department has completed projects as also a few are in progress in collaboration with IITs, ONGC, and ISRO etc. under the research laboratory. Student innovation club “Discovery” in the department promotes students to work on real-time industry projects.

Every year the projects accomplished in the club are sent for National & International project competitions.

The Mechanical Department has won several National Level Project Competition awards like; Most Popular Project Award 2019 (Prize of Rs. 1 Lakh) - KPIT, Best Design & Aesthetic Award 2019 “ Auto India Racing Championship 2019” Second Prize in Hackethon 2019 and .., etc , Students are placed in core companies like Tata Motors, Piaggo, John Deere, Vishay as well as software industries like TCS, Infosys, L&T etc. with a highest package of 12 lakhs per year and an average package of 3.5 lakhs per year.

  • Degrees Offered: Mechanical, ME Design Engineering & Ph.D.
  • Duration: UG: 4 Years, PG: 2 Years & Ph.D.: 3 Years
  • Intake: UG 180 Seats, PG 24 Seats & As Per University Norms

course

To be recognized globally as a center of quality education and research for aspiring mechanical engineer to cater to the ever changing demands of industry and society.

M1: To develop responsible mechanical engineers with strong technical skills to meet the needs of the profession and society.
M2: To develop the problem solving & research abilities in the students to meet the needs of the demanding challenges of society and other interdisciplinary areas.
M3: To inculcate moral values, leadership and professional skills for a long productive & influencing professional career.

At the end of this program, student will be able to,

  • PEO1: The graduates will have a successful career in mechanical engineering with strong technical, research & professional skills.
  • PEO2: The graduates will possess an ability to work in diversified fields along with team work and leadership qualities.
  • PEO3: The graduates will continue to learn and to adapt in a society of constantly evolving technological environment.

At the end of this program, student will be able to,

  • PSO1: Specify, design and evaluate mechanical components and systems using modeling and analysis software.
  • PSO2: Apply knowledge of machines, tools, automation, properties of advanced materials and modern management methods for manufacturing of mechanical components and systems.
  • PSO3: Apply core aspects of thermal and fluid engineering to determine the performance of mechanical systems including power absorbing and power generating systems.

  • PO 1: Engineering knowledge: Apply the knowledge of mathematics, science, engineering fundamentals, and an engineering specialization for the solution of complex engineering problems.
  • PO 2:Problem analysis: Identify, formulate, research literature, and analyse complex engineering problems reaching substantiated conclusions using first principles of mathematics, natural sciences, and engineering sciences.
  • PO 3: Design/Development of Solutions: Design solutions for complex engineering problems and design system components or processes that meet the specified needs with appropriate consideration for public health and safety, and cultural, societal, and environmental considerations.
  • PO 4: Conduct investigations of complex problems: Use research-based knowledge and research methods including design of experiments, analysis and interpretation of data, and synthesis of the information to provide valid conclusions.
  • PO 5: Modern tool usage: Create, select, and apply appropriate techniques, resources, and modern engineering and IT tools including prediction and modelling to complex engineering activities with an understanding of the limitations
  • PO 6: The engineer and society: Apply reasoning informed by the contextual knowledge to assess societal, health, safety, legal, and cultural issues and the consequent responsibilities relevant to the professional engineering practice.
  • PO 7: Environment and sustainability: Understand the impact of the professional engineering solutions in societal and environmental contexts, and demonstrate the knowledge of, and need for sustainable development.
  • PO 8: Ethics: Apply ethical principles and commit to professional ethics and responsibilities and norms of the engineering practice
  • PO 9: Individual and team work: Function effectively as an individual, and as a member or leader in diverse teams, and in multidisciplinary settings.
  • PO 10: Communication: Communicate effectively on complex engineering activities with the engineering community and with the society at large, such as, being able to comprehend and write effective reports and design documentation, make effective presentations, and give and receive clear instructions
  • PO 11: Project management and finance: Demonstrate knowledge and understanding of the engineering and management principles and apply these to one’s own work, as a member and leader in a team, to manage projects and in multidisciplinary environments.
  • PO12: Life-long learning: Recognize the need for, and have the preparation and ability to engage in independent and life-long learning in the broadest context of technological changes.
courses

Fluid Mechanics

The lab is set with an intention to become an outstanding knowledge dissemination center by bridging the gap between the theoretical and practical knowledge with the help of cutting edge and state of art laboratory. Setup like Redwood Viscometer among the others is available for various research work for the students.

courses

Turbo-Machinery

The Turbomachines Lab practical session is conducted for Power developing and Power absorbing machines. Students study the impulse moment principle using Impact of jet apparatus. Power developed and Efficiency is calculated for Water Turbines (Pelton, Francis and Kaplan). The basic concepts of Fluid mechaniocs is used to study the performance in Centrifugal and Reciprocating pump.

courses

Hydraulic and Pneumatic

The lab is set with an intention to gain an outstanding knowledge of hyradulics & pneumatics related study which differenciate between the theoretical and practical knowledge.Setup like Hydraulic Trainer, Pneumatic Trainer kit, vane pump test ring helps the students to understand the basic concepts and create prototype models as a project.

courses

Thermodynamics

The laboratory is equipped with number of equipment & experimental setups to study the fundamental & applied aspects of the Thermodynamics & Internal Combustion (IC) engines. The laboratory facilitates experimental based performance evaluations of a wide variety of boiler mountings, accessories, also IC engines using a wide variety of fuels including the 2nd, 3rd and 4th generation Biofuels. With wide varieties of engines, associated computer assisted equipment, dynamometers the lab caters to the needs of all tiers of students of JSCOE viz. undergraduate, post graduate and research students. With the state-of-the-art equipment, the lab is well equipped to undertake any consultancy work related to IC engines testing which work on conventional fuels as well as Bio fuels. Available equipment include: Maruti 800; 3 Cylinder 4 Stroke Petrol Engine for variable loading condition; Computerized Research Engine Test Set up Single Cylinder, 4-Stoke, Multi-Fuel VCR (Variable Compression Ratio) with open ECU for Petrol Rig.

courses

Fluid Mechanics

The lab is set with an intention to become an outstanding knowledge dissemination center by bridging the gap between the theoretic ...

Read More
courses

Turbo-Machinery

The Turbomachines Lab practical session is conducted for Power developing and Power absorbing machines. Students study the impulse ...

Read More
courses

Hydraulic and Pneumatic

The lab is set with an intention to gain an outstanding knowledge of hyradulics & pneumatics related study which differenciate bet ...

Read More
courses

Thermodynamics

The laboratory is equipped with number of equipment & experimental setups to study the fundamental & applied aspects of the Thermo ...

Read More
  • skilled

    Dr. Patil Pradeep

    Head of Department

    • Ph.D. (Mechanical)

      head_mechjscoe@jspmjscoe.edu.in

  • skilled

    Prof. Phadkule Suneeta

    Associate Professor

    • M.E (Design Engineering) Ph.D. (Pursuing)

      suneetaphadkule@jspmjscoe.edu.in

  • skilled

    Dr. Dandavate Abhijit

    Associate Professor

    • Ph.D. (Manufacturing )

      abhijitdandavate@jspmjscoe.edu.in

  • skilled

    Dr. Kadam Prakash

    Associate Professor

    • Ph.D. (Mechanical)

      prakashkadam@jspmjscoe.edu.in

  • skilled

    Dr. Kulkarni Chandrkant

    Associate Professor

    • Ph.D. (Production Management)

      ckjscoe@gmail.com

  • skilled

    Prof. Patil Nagesh

    Assistant professor

    • M.Tech (CIM)

      patilngsh881@gmail.com

  • skilled

    Prof. Alone Nilesh

    Assistant professor

    • M.E (Design Engineering) Ph.D. (Pursuing)

      alonenilesh@gmail.com

  • skilled

    Prof. Mohammed Zubairuddin Naimuddin

    Assistant professor

    • Ph.D. (Thesis Submitted), MTech, BE, DME

      zubersiddiqi12@gmail.com

  • skilled

    Prof. Kelkar Satej

    Assistant professor

    • M.E (Design Engineering) Ph.D. (Pursuing)

      satejkelkar@jspmjscoe.edu.in

  • skilled

    Prof. Kosbe Pradnya

    Assistant professor

    • M.E (Design Engineering) Ph.D. (Pursuing)

      pradnyakosbe@jspmjscoe.edu.in

Mechanical Engineering Student Association (MESA)

Our main aim is to produce graduates to become future leaders for industry, academia, government and society in India whose vision is founded upon fundamental knowledge, creative and analytical skills, local/regional perspective and ethics.
The MESA endows students with the ability to apply knowledge of science, mathematics and engineering to work effectively & efficiently in multidisciplinary teams, provide leadership and technical expertise, and practice engineering with ethical approaches and concern for society and environment. Main objective of MESA is to involve active participation of students in various co-curricular and extra- curricular activities of the department. MESA focuses on overall performance improvement of students by enhancing qualities

  • Develop student’s leadership and management skills

  • To enhance the professionalism and profitability of students through effective conduction of events.

The broad objectives behind the formation of Mechanical Engineering Student Association (MESA) at JSCOE are as follows.

  • To assist mechanical engineering students by arranging different events in order to develop their skills.
  • Develop students ' leadership and management skills
  • To focus on the cutting edge technology and present it to the students in an interesting manner by means of lectures/talk, articles and workshops.
  • To provide a forum for faculty-student communication.

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# NAME OF THE STUDENTS YEAR/DIVISION DESIGNATION
1  MOTE TEJES BALASAHEB TE/C PRESIDENT
2  JAYDEEP SURYAWANSHI TE/B VICE PRESIDENT
3  RANJIT JAGTAP TE/C TREASURER
4  NAGRE RAMPRASAD TE/C ANCHORING
5  SHREYASH GADHAWE TE/C
6  VIRAJ KOKANE TE/C FIELD WORK
7  SHUBHAM KIRME TE/C
8  JAYESH PATIL TE/C COMPUTER WORK
9  NIRANJAN LANDE TE/C
10  NIRANJAN PATKAR TE/C
11  SURAJ BORUDE TE/C VOLUNTEERS
12  RAKESH PATEL TE/C
13  SHUBHAM AWACHITE TE/C
14  GAURAV BAGUL SE/B
15  VICKY NANNAWARE SE/C
16  PRASAD GIRBANWAD SE/A
17  YASH JADHAV SE/A

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