Approx. Rs 32,500 / PieceGet Latest Price
Product Details:Parameter | HRC |
Display Type | Digital |
Automation Grade | Automatic |
I Deal In | New Only |
Country of Origin | Made in India |
Portable Rockwell Hardness Testers are instruments used to measure the hardness of materials in a non-destructive manner. They are designed for on-site or field testing where it may not be practical to bring the sample to a laboratory setting. The Rockwell hardness test method involves applying a known minor load followed by a major load to an indenter (typically a diamond cone or hardened steel ball) in contact with the material surface. The depth of penetration of the indenter under the major load is measured, and this depth correlates with the material's hardness.
Portable Rockwell testers typically consist of a handheld device with a small footprint, making them convenient for use in various locations. They often include a digital display for reading hardness values directly, eliminating the need for manual calculations. Some models may also feature built-in data logging capabilities, allowing for easy record-keeping and analysis of test results.
These testers are commonly used in industries such as manufacturing, construction, and maintenance to assess the hardness of metal components, including welds, forgings, and heat-treated parts, without requiring them to be transported to a central laboratory for testing. They offer the advantage of quick and convenient hardness measurements, making them valuable tools for quality control and material evaluation in various applications.
Approx. Rs 1.95 Lakh / PieceGet Latest Price
Product Details:Product Type | Impact Testing Machine |
Automation Grade | Automatic |
Brand | S M Engineers |
I Deal In | New Only |
Country of Origin | Made in India |
Drop weight impact testing machines are used to assess the impact resistance or toughness of materials, especially metals and composites. These machines subject test specimens to sudden and high-energy impacts, simulating real-world scenarios where materials may experience sudden loads or impacts.
Here's how drop weight impact testing machines typically work:
Specimen Preparation: Test specimens are prepared according to standardized procedures, often with specific dimensions and notch configurations to simulate different types of loading conditions.
Loading: The test specimen is securely clamped or positioned in the test area of the machine. A heavy weight, often in the form of a large mass or hammer, is raised to a predetermined height above the specimen.
Release: The weight is released, allowing it to free-fall under the influence of gravity onto the specimen. The weight's potential energy is converted into kinetic energy as it falls, generating a high-velocity impact when it strikes the specimen.
Impact: The weight impacts the specimen, causing it to deform or fracture. The impact energy absorbed by the specimen is a measure of its toughness or resistance to fracture under dynamic loading conditions.
Measurement: Various parameters may be measured during the test, including the energy absorbed by the specimen, the extent of deformation or fracture, and the behavior of the material during and after impact.
Analysis: The test results are analyzed to evaluate the material's performance under impact loading and to assess its suitability for specific applications. This may involve comparing the results to established standards or specifications.
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