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Graduate Mechanical Design Engineers

Advanced Selection Ltd have been appointed by our exclusive specialist manufacturing client based in Hampshire to find a motivated graduate Mechanical Design Engineer to work predominantly on original design projects and will see them through to installation/commissioning.

Our client is a highly reputable, well established, global and market leading specialist manufacturing company offering excellent career opportunities at this exciting time in their growth and expansion plans. Now is the perfect opportunity to join and be part of their success.

 

The ideal candidates will have covered these typical subjects in their degree qualifications:

Stress analysis and or FEA

Dynamics

Fluid mechanics

Thermo Dynamics

Heat Transfer

materials science and or strength of Materials or engineering Materials

Production/manufacturing engineering

Instrumentation and Controls

 

More detailed skills would include:

Basic structural design and simple stress analysis of structures

Calculation of dynamic loads

Sheet metal design, particularly design for manufacture.

Piping systems for saturated and superheated steam

Basic thermodynamics

Air handling and ducting systems

Selection and specification of centrifugal fans

Design and selection of drives with geared motors

Automatic positioning systems – electrical and pneumatic

Process instrumentation for pressure, flow and temperature

Combustion and heat transfer

Heat and mass-balance

Safety of machinery

Awareness of cost implications of design

Practical engineering (hands on) of fabrication, sheet metal work, welding, machining, assembly work.

Applied Mechanics:

Stress analysis (of simple structures)

Properties of materials.

Thermodynamics:

Heat & mass balance, i.e. appraisal of energy requirements, passing from one system to another.

Heat transfer, i.e. temperature gradient appraisal, from process to machine outer skin (to calculate heat emissions into the plant room and for personnel protection).

  • Chemistry:

Theory of combustion.

Appraisal of fuel properties from a given composition.

  • Fluid dynamics:

Air flow through ducts – to calculate pressure drops, leading to fan and static pressure requirements.

Fan laws.

Theory of venturis and orifice plates – to measure flow (mass or volumetric).

P&ID’s personally produced would be of distinct advantage

Ref: SD-GMDE-44744

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