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BSL-HX handheld spectrometer is a handheld spectrometer based on the fluorescence interaction between X-rays and substances, mainly used to detect the elemental content in materials. This handheld spectrometer can be used for rapid detection of metals, powders, and liquid materials such as stainless steel, medium low alloy steel, tool steel, mold steel, brass, pure copper, bronze, aluminum alloy, ternary catalytic platinum palladium rhodium, gold silver platinum precious metals, soil, ore, oil products, etc.
Support detection of multiple metals
The content of elements in the material can be detected, and the range of element composition that can be detected varies from ppm to% depending on the material. The detectable elements include but are not limited to:
Au Ag Pt Pd Rh Cu Co Ni
Fe Al Ti Cr Mn Mg Si W Pb Sn In Sb
Ta Zn Zr Ca V Mo Nb Hf Sr Y Re
Support the detection of material thickness
Detecting the thickness of materials, BSL-HX can usually detect the thickness of metal coatings on the surface of metal materials, such as silver plating on copper, tin plating on copper, zinc plating on iron, etc. Depending on the material, the thickness range that can be detected varies from 1um to 50um.
Support the detection of different forms of materials
The BSL-HX handheld spectrometer uses X-ray fluorescence spectroscopy technology, it can perform completely non-destructive testing on materials. Any material can maintain its original form during the testing process without special pre-treatment. Usually, the BSL-HX handheld spectrometer can detect materials in different forms such as solids, liquids, powders, etc.
Handheld alloy analyzer
Handheld alloy analyzer is a handheld X-ray fluorescence spectrometer used for detecting alloys and metals. It is mainly based on the basic parameter method of BSL instrument and combined with specific algorithms generated by alloy detection big data. It is widely used for detecting element content in metal materials. This handheld alloy analyzer can be used for rapid detection of metals such as stainless steel, medium low alloy steel, tool steel, mold steel, brass, pure copper, bronze, aluminum alloy, nickel alloy, and powder metallurgy materials.
Material Reliability Identification (PMI):
Mainly for the analysis of metal alloys to determine the percentage of constituent element content. Through Material Reliability Identification (PMI), users can confirm whether the alloy used complies with relevant regulations and check whether the alloy grade is correct. The traditional methods for identifying material reliability include handheld spectrometers and direct reading spectrometers.
Quality Control (QA/QC) in Mechanical Manufacturing:
Quality control is very important for the metal manufacturing industry, and ensuring the qualification of metal materials is a key link in it. If unqualified or incorrect metal alloys are used, it can cause product quality problems and even lead to accidents. According to the quality management system and Six Sigma methodology, the quality control department needs to rely on scientific and rigorous quality inspection methods to test the composition of metal alloy input materials.
The handheld alloy analyzer can quickly detect the elemental composition and material grade of materials within seconds, including but not limited to medium low alloy steels such as Q235, 40B, 40Cr, 35CrMo, stainless steels such as 304, 316, 321, 430, 630, special steels such as H13 and CrWMn, T2 purple copper, H62 brass, Inconel, Monel, Nickel, Duranickel, Incoloy, Hastelloy, Haynes, Mar M, Nimonic, Nilo, Rene, Udimet, Kovar and other nickel alloys, GH series, 4J series and other high-temperature alloys, 1 series to 8 series deformed aluminum alloys, ZL series cast aluminum alloys, ADC series die cast aluminum alloys.
APPLICATION:
Metal (high-end measurable aluminum alloy)
ROHS
Ternary catalyst
Coating thickness (single coating only)
soil
mineral
Oils




