Fracture Toughness Analysis Instrument For Industrial Equipment

Fracture Toughness Analysis Instrument For Industrial Equipment

Portable Indentation Instrument — Technical Specifications INDENTER Indenter diameter: Ø 1 mm DEPTH Maximum indentation depth: 150 μm LOAD Maximum load capacity: 3,000 N Load resolution: 0.1 N DISPLACEMENT Displacement resolution: 0.01 μm Z-axis travel range: ±15 mm SPEED Indenter moving speed range: 0.0001 – 10 mm/min SAMPLING Data sampling rate: 10 kHz MATERIALS Compatible material types: Carbon steel, low-alloy steel, high-strength steel, austenitic stainless steel MEASURABLE PROPERTIES Tensile strength, yield strength, yield-point behavior, strain-hardening exponent, elastic modulus, Brinell hardness, fracture toughness (KIC / KIIC), residual stress, fatigue strength STANDARDS Reference standards: ISO/TR 29381, GB/T 39635-2020 POWER Main unit power supply: Built-in rechargeable battery with charge-level indicator; dedicated charger included CONTROL Operating terminal: Tablet (wired connection); mouse support HARDWARE KIT Standard components: Indenter main unit, main controller, tablet, controller charger, tablet charger, device-to-controller connection cable
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Description
Technical Parameters

1. Introduction
Fracture toughness represents a material's resistance to crack propagation and is an important parameter for the safety assessment of industrial machinery and metallic structures. The product obtains relevant data through instrumented indentation and applies analytical methods for fracture toughness evaluation. The testing method is suitable for localized material assessment on site.

2. Application Scenarios

The function can be used for industrial machinery components, metallic structures, welded areas and long-service equipment for material property assessment, safety inspection and failure analysis. Suitable locations can be selected for on-site testing when conventional sampling is difficult.

3. Product Description

The product evaluates fracture toughness through critical indentation strain energy analysis and can be used for analysis of Mode I and Mode II critical stress intensity factors, KIC and KIIC. Fracture toughness results can be combined with strength, hardness and residual stress data for comprehensive mechanical property assessment.

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