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Job Title: Mechanical Design Engineer
Roles and Responsibilities:
§ Creation of design models/drawing as per detail instruction/design intent requirement by using pre-selected item.
§ Creating/unit design as per selected item.
§ Layout preparation and modification as per instruction.
§ Rework and modification update as per Instruction also shop changes update.
§ Checking of design content and correctness as per instruction.
§ Problem solving skill in delegated task.
§ Creation of sub system level assembly.
§ Selection of std. unit as per specification.
Desired Candidate Profile:
§ Project based Industrial Automation company / SPM machine mfg. / Conveyors / Machine Tool.
§ Well versed with MS Office & Design Softwares.
Transport facility shall be provided for Pune - Shirwal (Work location) - Pune.
Key Skills:
§ SPM Design.
§ Design Calculations.
§ Design Conceptualization.
§ Design Specifications.
§ Conveyor Design.
§ Material Handling Equipment.
Work Experience: 1 â 6 Years.
Location: Pune.
Industry: Office Equipment / Industrial Automation.
Function Area: Mechanical Design.
Qualification: Diploma-Mechanical, B.Tech/B.E.-Mechanical, M.E. /M.Tech-Mechanical.
Email ID: sharadpa@parirobotics.com
Joinđ @MechTutorials
đ #ShortNotes
âŞď¸Heat Treatment ProcessesâŞď¸
Summarizes and definitions of the some common heat treatment processes like annealed, normalized, quench hardened and tempered are given below.
âď¸Annealed:
Annealed is the condition of a metal that has been heated above a specific temperature, depending upon its composition and then cooled down in the furnace itself or by burying it in ashes or lime. This annealing process makes the metal very soft and ductile. Annealing usually precedes flow-forming operations such as sheet metal pressing and wire tube drawing.
âď¸Normalized:
Normalizing is the condition of a metal that has been heated above a specific temperature, depending upon its composition and then cooled down in free air. Although the cooling is slow, it is not as for annealing so the metal is less soft and ductile. This condition is not suitable for flow forming but more suitable machining. Normalizing is often used to stress relieve castings and forgings after rough machining.
âď¸Quench hardened:
Quench hardened is the condition of a metal that has been heated above a specific temperature, depending upon its composition and then cooled down very rapidly by immersing it in cold water or cold oil. Rapid cooling is called quenching and the water or oil is called the quenching bath. This rapid cooling from elevated temperatures makes the metal very hard. Only medium-carbon steels and high-carbon steels can be hardened in this way.
âď¸Tempered:
Quench-hardened steels are brittle as well as hard. To make them suitable for cutting tools they have to be reheated to a specified temperature below 200 to 300°C and again quenched. This makes them slightly less hard but very much tougher. Metals in this condition are said to be tempered.
Joinđ @MechTutorials
http://www.youtube.com/c/MechTutorials?sub_confirmation=1n
Urgently Require: #Design Engineer â Mechanical
Qualification: BE,B.Tech in Mechanical Engineering
Experience: 2 - 3 Years
Job Location: Cochin
Job Description:
¡ Proficiency in Solidworks: part, Assembly and drawing.
¡ Knowledge of machining part design and CAD generation
¡ Experience in Sheetmetal/Plastic mandatory
¡ Experience of medical grade materials and applicable standards
¡ Previous experience of having worked for medical customer will be an advantage.
Interested candidates, please share your CV's at hr@apricitastechnologies.com
đ #ShortNotes
âď¸Advantages of forging:
Some common advantages of choosing forging operation are listed below:
1. Forged parts possess high ductility and offers great resistance to impact and fatigue loads.
2. Forging refines the structure of the metal.
3. It results in considerable saving in time, labor and material as compared to the production process of similar item by cutting from a solid workpiece and then shaping it.
4. Forging distorts the previously created unidirectional fiber as created by rolling and increases the strength by setting the direction of grains.
5. The forged parts can be welded easily.
6. Because of intense working, flaws are rarely found, so have high reliability.
7. High accuracy may be obtained in forging operation.
âď¸Disadvantages of forging:
Few disadvantages of choosing forging operation are listed below:
1. Rapid oxidation in forging of metal surface at high temperature results in scaling which wears the dies.
2. It is difficult to maintain close tolerances in forging operations.
3. Forging is limited to simple shapes and has limitation for parts having undercuts etc.
4. Some materials are not readily worked by forging.
5. The initial cost of forging dies and the cost of their maintenance is high.
6. The metals gets cracked or distorted if worked below a specified temperature limit.
7. The maintenance cost of forging dies is also very high.
Joinđ @MechTutorials
đ #ShortNotes
âŞď¸Forging ProcessâŞď¸
 Forging process is perhaps the oldest metal working process and was known even during prehistoric days when metallic tools were made by heating and hammering.
Forging is basically involves plastic deformation of material between two dies to achieve desired configuration. Depending upon complexity of the part forging is carried out as open die forging and closed die forging.
In open die forging process, the metal is compressed by repeated blows by a mechanical hammer and shape is manipulated manually.
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In closed die forging, the desired configuration is obtained by squeezing the workpiece between two shaped between two shaped and closed dies.
In forging process the forces are applied on the raw material such that the stresses induced are greater than yield and less than ultimate so that material is experiencing plastic (or) permanent deformation to get required shape. But in forging operation force applied can be either continuous or intermittent impact loads.
âď¸Types of forging methods:
1 Based on the method of force application
1.      Hand forging (Drop hammer type)
2.      Machine forging (Mechanical or hydrostatic forging)
â
1.1 Hand forging:
Hand forging always uses drop hammer type. Because the continuous force by the human hand, it is not sufficient to produce the deformation in work piece.
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1.2 Machine forging:
In machine forging because the required force is obtained from machine it is possible to use either continuous force application or intermittent impact load application.
2. Based on method of shape obtained
1.      Open die forging
2.      Closed die forging
3.      Semi die forging
â
2.1 Open die forging
§  In open die forging operation only drop hammer type of force application will be used.
§  Press forging is not used since there is no time fr changing the position of component.
âď¸Features of open die die forging:
§  Repeated impact blows are given on the work.
§  Less dimensional accuracy.
§  Suitable only for simple shapes of work.
§  Requires more skill of the operator.
§  Usually used for a work before subjecting it to closed die forging (to give approximate shape.
§  Dies are simple and less expensive.
§  It can be analyzed much easily.
§  it is the simplest of all forging operations.
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2.2 Closed die forging
§  Closed die forging is also called as impression die forging because the shape of the dies is impressed on the component.
§  In this the type of forging force application may be either press forging type or drop hammer type will be used.
âď¸Features of closed die forging:
§  Closed die forging involves two or more steps:
1.      Blocking die: Work is rough forged, closed to final shape.
2.      Finishing die: Work is forged to final shape and dimension.
§  Both blocking die and finishing die are machined into the same die block.
§  More number of dies are required depending on the complexity of the job.
§  Two die halves close-in & work is deformed under high pressure.
§  High dimensional accuracy/close control on tolerances.
§  Suitable for complex shapes.
§  Dies are complex and more expensive.
§  Large production rates are necessary to justify high costs.
â
2.3 Semi closed die forging operation
§  Only drop hammer type of force application is possible.
§  In case of open die and closed die forging operations the volume of raw material required is remaining same as that of the volume of final finished component. But in case of closed die forging operation the volume of the raw material is about 10% to 20% more than final component to be obtained.
§  To accommodate the excess volume of material it is required to provide some open space dies also called gutter.
§  Because of provision of gutter the flash is produces in the forged component.
§  This flash is unwanted material which has to be removed by trimming operation.
§  Flash and gutter is used only in case of closed die operation but not in open die or semi closed die forging operation.
Hiring in Edlocus payroll for the opening in renowned Commercial Vehicle OEM in Chennai
Job Title: Engineer: Engineering Change Management & BOM Validation
Experience: 1 â 4 yrs
Qualifications: BE Mechanical/Automobile - mandatory experience in Engineering change management, BOM management, physical validation of MBOM
Duties and responsibilities
¡ Conduct Quality check of received Engr. Change Orders and independently process ECOs
¡ Generate Part numbers, Assembly numbers and ECO numbers requested by designers on day-to-day basis
¡ Analyze codes in code list, conduct feasibility checks, generate variant BoM
¡ Download BoM for selected vehicle variants and publish standard and customized reports
¡ Trouble shooting, issue handling and escalation as appropriate
¡ Engineering change management via ECO release & Variant releases
¡ Up keep of Configurable BoM for variant creation
¡ Validate MBOM physically in plant and inform the cross functional teams on the mismatch between EBOM VS MBOM
Desired Skills
¡ Experience in automotive design, development and releasing.
¡ Hands on experience in CAD tools (CATIA and NX preferred)
¡ Expertise in MS-Excel and Macro creation
¡ Good written and spoken communication skills
¡ Strong analytical skills.
Contact: shirley.a@edlocus.com
We are hiring Design Engineers for following skills:
Experience: 2 to 3 years
Software/ Tool: UG NX/ Unigraphics
Domain: Casting, forging, reverse Engineering , sheet metal
Location: Pune( Candidate should be ready to relocate anywhere in India
Interested candidate may send their resume on ketaki.godbole@designtechsys.com
#urgentrequirement #catiav5 #jigfixture
We have urgent opening for our Client (MNC - Pune Location)
Roles & Responsibility:
Experience : 2 to 3 Years
Good Catia V5 skill with in hand experience.
Development of JIG/FIXTURE experience in Catia
Seating Frame experience will be added advantage
Good communication skill.
Should be join within 15 days.
Only relevant experience candidates can share their resume on - hr@pioneercadsolution.com
Openings for freshers in various departments
Qualification: BE Mech/Auto/Prod/Ele/Etrx
Experience: 0-3 years
Location: Pune
Salary: As per company standard
Share CV at: hr@ab-techsolutions.com
company will directly give call to selected candidates.
Job Title: Mechanical Design Engineer
Roles and Responsibilities:
§ Creation of design models/drawing as per detail instruction/design intent requirement by using pre-selected item.
§ Creating/unit design as per selected item.
§ Layout preparation and modification as per instruction.
§ Rework and modification update as per Instruction also shop changes update.
§ Checking of design content and correctness as per instruction.
§ Problem solving skill in delegated task.
§ Creation of sub system level assembly.
§ Selection of std. unit as per specification.
Desired Candidate Profile:
§ Project based Industrial Automation company / SPM machine mfg. / Conveyors / Machine Tool.
§ Well versed with MS Office & Design Softwares.
Transport facility shall be provided for Pune - Shirwal (Work location) - Pune.
Key Skills:
§ SPM Design.
§ Design Calculations.
§ Design Conceptualization.
§ Design Specifications.
§ Conveyor Design.
§ Material Handling Equipment.
Work Experience: 1 â 6 Years.
Location: Pune.
Industry: Office Equipment / Industrial Automation.
Function Area: Mechanical Design.
Qualification: Diploma-Mechanical, B.Tech/B.E.-Mechanical, M.E. /M.Tech-Mechanical.
Email ID: sharadpa@parirobotics.com
We are hiring Design Engineers for following skills:
Experience: 2 to 3 years
Software/ Tool: UG NX/ Unigraphics
Domain: Casting, forging, reverse Engineering , sheet metal
Location: Pune( Candidate should be ready to relocate anywhere in India
Interested candidate may send their resume on ketaki.godbole@designtechsys.com
Immediate opportunity on #HVAC #Design Engineer
Essential: - Expertise in Catia V5 - 5 to 8 years of Product Design & development experience in automotive HVAC components (Cases, Air Vents/ducts / HVAC Panel, etc.) - Working experience in Component & System level designing. - Work experience with International Automotive Tier- 1 supplier and OEMs. Desirable: - Good knowledge of injection moulded plastic parts manufacturing process & Assembly feasibility study. - German language speaking skill is an added advantage
Location: Germany
Experience: 5 to 9 Years
Qualification: BE / B Tech
Please do send copies of recently updated resumes to Vasudha_katta@satven.com
We have urgent vacancy for Mechanical design Engineer in gurgaon location.
Location: Gurugram
Software : Auto desk inventor, Creo
Experience : 1-2 Years
Company: Centerline india pvt ltd.
Salary : As per market standard
Candidate should have knowledge about jigs and fixture, dowel holes and 3d modeling, detailing and knowledge of material used in fixtures, knowledge of manufacturing process.
Share your resume on mail id mention below :
shri.tiwari@cntrline.com
Required Design Engineer. (Mechanical/Electrical)
Position- 02 nos.
Experience- 3-5 years.
Skills- Creo cabling, Sheet metal
option skill- fuel cell knowledge
location-Pune
Joining- Immediate within 15 days after selection
Email on kishor.mashalkar@kpit.com
đ #ShortNotes
âď¸The important mechanical properties of metals are as follows:
1. Strength.
It is the ability of a material to resist the externally applied forces without breaking or yielding.
2. Stiffness.
It is the, ability of a material to resist deformation under stress. The modulus of elasticity is the measure of stiffness.
3. Elasticity.
It is the property of a material to regain its original shape after deformation when the external forces are removed. This property is desirable for materials used in tools and machines. It may be noted that steel is more elastic than rubber.
4. Plasticity.
It is property of a material which retains the deformation produced under load permanently. This property of material is necessary for forgings, in stamping images on coins, and in ornamental work.
5. Ductility.
It is property of a material enabling it to be drawn into wire with the application of a tensile force. A ductile material commonly used in engineering practice (in order of diminishing ductility) are mild steel, copper, aluminum, nickel, zinc, tin and lead.
6. Brittleness.
It is the property of a material opposite to ductility. It is the property of breaking of a material with little permanent distortion. Cast iron is a brittle material.
7. Malleability.
It is a special case of ductility which permits materials to be rolled or hammered into thin sheets. A malleable material should be plastic but it is not essential to be so strong. The malleable materials commonly used in engineering practice (in order of diminishing malleability) are lead, soft steel, wrought iron, copper and aluminum.
8. Toughness.
It is the property of a material to resist fracture due to high impact loads like hammer blows. The toughness of a material decreases when it is heated. This property is desirable in parts subjected to shock and impact loads.
9. Resilience.
It is property of a material to absorb energy and to resist shock and impact loads. It is measured by the amount of energy absorbed per unit volume within elastic limit. This property is essential for spring materials.
10. Creep.
When a part is subjected to a constant stress at high temperature for a long period of time, it will undergo a slow and permanent deformation called creep. This property is considered in designing internal combustion engines, boilers and turbines.
11. Fatigue.
When a material is subjected to repeated stresses, it fails at stresses below the yield point stresses. Such type of failure of a material is known as fatigue. The failure is caused by means of a progressive crack formation which are usually fine and microscopic size. This property is considered in designing shafts, connecting rods, springs, gears etc.
12. Hardness.
It is a very important property of the metals and has a wide variety of meanings. It embraces many different properties such as resistance to wear, scratching, deformation and machinability etc. It also means the ability of a metal to cut another metal. The hardness is usually expressed in numbers which are dependent on the method of making the test.
Joinđ @MechTutorials
We are hiring for Bulk openings â #Purchase/Buyer Positions â #Plant Positions #Pune for an #Automotive company.
Exp-2 to 7 Years
Level- AM / M
Position:âBuyer -Casting forging
eed CVs From OEMs/ Ancillary
Qualification â B.E/ B.Tech(Full Time)
Interested candidates can apply sweta.anand@stmpl.co.in
Position â Design Engineer
Company â Epiroc Mining India Ltd.
Location â Bengaluru, Karnataka, IN
Experience:
2-4yrs. of experience â Mining / Earth moving equipment /off road vehicles
Knowledge:
Good knowledge on drilling Products
Awareness on Hydraulic basic system and application
Good knowledge on structures design and Engineering materials.
Knowledge of design standards
Modelling and detailing.
Preparation & release of BOM and Engineering change management.
Basic project management knowledge
Location: This position is located in Bangalore, India.
Apply Link - https://www.epirocgroup.com/en/careers/job-overview/job-detail/26156-all
