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  1. Positive Material Identification (PMI) can prevent mix-ups that can result in component failure, which can cause costly downtime, repair and replacement, lost (leaking) material, environmental and fire hazards, or batch contamination.

  2. Positive material identification can prevent potential product failure in manufacturing. At oil and gas, power generation and pharmaceutical plants, pre-service and in-service inspection of critical components and welds with PMI can prevent breakdown and its costly consequences.

  3. In industrial inspections, Positive Material Identification (PMI) plays a critical role in verifying metal alloys’ composition and quality. In layman’s terms, a PMI gun is like a magic wand that can tell you what any metal is made of by just pointing at it and zapping it with a special light.

  4. Positive Material Identification (PMI) analyzers for safety inspection and pipeline integrity. Tough legislation around material testing has set the bar high for the instruments used for positive material identification (PMI) within petrochemical, petroleum, power and chemical plants.

  5. Learn about two key technologies of choice for positive material identification (PMI) in midstream and downstream operations: handheld XRF and LIBS analysis, including the latest capabilities for PMI in the commissioning process or for retroactive inspection of existing assets.

  6. Positive Material Identification (PMI) is a fast and non-destructive testing (NDT) method for verifying the chemical composition of metals and alloys. PMI can be used to verify that supplied materials conform to the proper standards and specifications.

  7. Ensure Your Material Conforms to the Proper Specifications. Positive material identification (PMI) is an essential non-destructive testing (NDT) method utilized to verify that supplied materials conform to the proper standards and specifications.

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