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Young Modulus of a Metal Rod by an Interference Method
Young Modulus of a Metal Rod by an Interference Method

Young Modulus of a Metal Rod by an Interference Method

Young Modulus of a Metal Rod by an Interference Method Specification

  • Automation Grade
  • Manual Operation
  • Temperature Range
  • 10C to 40C
  • Capacity
  • Single rod measurement, up to 1 meter length supported
  • Core Components
  • Metal Rod, Micrometer Screw, Mirrors, Slit Plate, Weight Hanger, Pan, Scale, Bench Stand, Laser or White Light Source
  • Feature
  • High Accuracy, Rugged Design, Adjustable Supports, Clear Visibility of Interference Fringes
  • Power Source
  • Electricity (for Laser Source) or Battery (if portable setup)
  • Measurement Range
  • Extension up to 2 mm; Youngs Modulus 0.1 x 10^11 to 2.2 x 10^11 N/m
  • Accuracy
  • Up to 0.01 mm in length measurement, Youngs Modulus resolved to 0.5% or better (with good setup)
  • Equipment Materials
  • Metal Rod (Stainless Steel or Brass), Aluminum/Forged Steel Frame, Glass Mirror, Heavy Duty Base, Knurled Screws
  • Type
  • Physics Laboratory Apparatus, Mechanical Property Measurement
  • Dimension (L*W*H)
  • Approx. 900 x 220 x 320 mm
 
 

About Young Modulus of a Metal Rod by an Interference Method



Spotlight your laboratory studies with this distinguished Young Modulus of a Metal Rod apparatus, designed by top-tier manufacturers in India. Utilising an interference method with fringe width adjustment, its astounding sensitivity detects microstrain through fine micrometer screw pitch (0.5 mm/rotation). Pick yours with rod diameters of 3, 5, or 10 mm and personalise experiments for different setups using advanced accessories, including calibration weights and Allen keys. Featuring adjustable supports, clear interference fringes, robust frame, and high-accuracy readings (up to 0.01 mm), this rugged device ensures reliable mechanical property measurement. Power options include electricity or battery, making the setup adaptable for various environments.

Extensive Applications Across Scientific Fields

The Young Modulus of a Metal Rod by an Interference Method excels far beyond standard laboratory exercises, finding its place in material science research, educational institutes, engineering testing, and industrial quality control. Its ability to precisely measure elastic properties supports studies in mechanical, civil, and materials engineering. This apparatus has distinguished itself in research laboratories, universities, and manufacturing units, demonstrating reliability in diverse environments where accurate mechanical property assessment is fundamental.


Sample Availability and Domestic Shipping Assurance

Sample units of the Young Modulus of a Metal Rod apparatus are available for demonstration to ensure suitability before purchase. We supply and dispatch equipment efficiently, offering express shipping across Indias main domestic markets. Each unit carries industry-recognised certifications for safety and performance, giving you peace of mind. Certifications include quality assurance and calibration traceability. Our streamlined logistics guarantee rapid delivery, whether for classroom integration, research supply, or industrial application.


FAQs of Young Modulus of a Metal Rod by an Interference Method:


Q: How does the fringe width adjustment mechanism enhance measurement accuracy?

A: The fine adjustment for fringe contrast permits precise tuning of the interference pattern, ensuring that even minimal shifts caused by microstrain are clearly visible and measurable. This optimisation leads to highly accurate modulus calculations.

Q: What rod diameter options are available for this apparatus?

A: You can personalise your experiments by choosing from rod diameters of 3 mm, 5 mm, or 10 mm, depending on your testing requirements and research focus.

Q: Where can this apparatus be effectively used?

A: It is ideally suited for use in physics laboratories at educational institutions, R&D centers, engineering colleges, material testing labs, and industrial quality control departments.

Q: What benefits does the rugged design offer to users?

A: The robust aluminum/forged steel frame and heavy-duty base provide outstanding stability and durability, ensuring consistent results even during repeated experimental cycles.

Q: How is the apparatus powered for different setups?

A: The setup can be powered via standard electricity for laser light sources, or by batteries for portable arrangements, accommodating a range of laboratory and field environments.

Q: What is the process for ordering and receiving a sample unit?

A: To request a sample, simply contact our supply team. We coordinate dispatch and offer express shipping, ensuring prompt shipment and delivery across major domestic markets in India.

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SINGHLA SCIENTIFIC INDUSTRIES
GST : 06ACOPS0805K1ZD
No-5309/27, Punjabi Mohalla, Ambala Cantt - 133001, Haryana, India
Phone :07971191038
Mr Devender Singhla (Chief Executive)
Mobile :07971191038