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  1. Our PMI Analyzers based on XRF have a large selection of positive materials they identify. Magnesium and aluminum alloys, stainless and tool steels, solders, titanium and nickel alloys, copper alloys, brasses and bronzes, zinc and cobalt alloys, low alloy steels, and so on.

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      Opposite to PMI (Positive Material Identification), where...

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  2. PMI can be used to verify that supplied materials conform to the proper standards and specifications. Handheld X-ray fluorescence is the most common PMI method, it is portable, cost-effective and allows PMI to be performed in the field, production floor or in the lab.

  3. 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.

  4. 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. Register now!

  5. 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.

  6. A reliable and comprehensive positive material identification (PMI) program is an essential element to ensuring safe plant operation. Handheld X-ray fluorescence (XRF) analyzers are well suited for fast, easy PMI measurements, providing a cost-effective way to prevent component failures and maintain plant safety.

  7. Through immediate on-site analysis, PMI guns allow for the identification and quantification of various elements within metals and alloys, ensuring they meet the rigorous standards for strength, durability, and corrosion resistance necessary for their specific uses.

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