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GD&T stands for Geometric Dimensioning and Tolerancing.
GD&T is a system used to define and communicate engineering tolerances.
It provides a standardized language for specifying the form, size, orientation, and location of features on a part.
GD&T uses symbols, feature control frames, and datums to convey the desired tolerances and requirements.
It ensures that parts are manufactured and inspected consistently, leading to...
QA QC is crucial in ensuring the quality and reliability of mechanical engineering products and processes.
QA QC helps identify and prevent defects in mechanical engineering products and processes.
It ensures compliance with industry standards and regulations.
It helps improve efficiency and reduce costs by identifying areas for improvement.
Examples include testing and inspecting mechanical components, monitoring producti...
Different measuring instruments and their least count, along with hands-on experience.
Vernier caliper - 0.02 mm
Micrometer screw gauge - 0.01 mm
Dial gauge - 0.01 mm
Height gauge - 0.02 mm
Thread pitch gauge - 0.01 mm
Using instruments requires proper calibration and handling
Hands-on experience can be gained through practice and training
5S principles are Sort, Set in order, Shine, Standardize, and Sustain. Quality is important to ensure customer satisfaction and business success.
Sort - eliminate unnecessary items to improve efficiency
Set in order - organize items for easy access and productivity
Shine - maintain cleanliness and prevent defects
Standardize - establish consistent processes for quality control
Sustain - continuously improve and maintain the...
There are several types of welding, including MIG, TIG, Stick, and Flux-Cored welding.
MIG (Metal Inert Gas) welding uses a wire electrode and a shielding gas to join two pieces of metal together.
TIG (Tungsten Inert Gas) welding uses a tungsten electrode and a shielding gas to create a precise and clean weld.
Stick welding (also known as Shielded Metal Arc Welding) uses a consumable electrode coated in flux to create a s...
Spatter is formed while welding due to the expulsion of molten metal from the weld pool.
Spatter is caused by the high temperature of the welding process.
It can be reduced by adjusting the welding parameters such as voltage, current, and wire feed speed.
Using a welding gun with a shorter nozzle can also help reduce spatter.
Spatter can cause defects in the weld and may need to be removed before finishing.
It can also be a
Welding defects include porosity, cracks, incomplete fusion, and distortion. Measures to reduce defects include proper training, inspection, and maintenance.
Porosity: caused by gas entrapment, can be reduced by proper shielding gas and electrode selection
Cracks: caused by high stress or improper cooling, can be reduced by preheating and controlling cooling rate
Incomplete fusion: caused by insufficient heat or improper ...
Types of fit include clearance fit, interference fit, and transition fit.
Clearance fit: parts have a gap between them
Interference fit: parts are pressed or forced together
Transition fit: parts have both clearance and interference
Examples: piston and cylinder, gears and shafts
HR Executive
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BHEL
Siemens
Larsen & Toubro Limited
Thermax Limited