TSI Inhalation Toxicology Solution

Many people know that the material properties exhibited by nanomaterials are very unique; similarly, nanomaterials may also have unique effects on human health. Humans are primarily exposed to nanomaterials through respiration, and therefore toxicological studies in organisms (in organisms) need to be targeted for potential health risks.

Nanomaterials of specific composition and size are produced, and these materials are loaded into the inhalation chamber. Accurate dose testing is performed on the test subjects to record specific biological responses at each dose level. The diameter and concentration of the aerosol species selected for the test have a greater impact on exposure (breathing deposition rate) and specific toxicological levels.

TSI is aware of nanomaterials and their possible negative health effects. TSI provides testing equipment for inhalation toxicological studies of nanoparticles. TSI aerosol generating equipment (eg electrospray aerosol generator 3480 or electronic static classifier 3080) is used to generate Reproducible controlled aerosol with narrow particle size distribution. Scanning Mobility ParticleSizerTM (SMPS) Scanning Electromigration The high-precision aerosol size and count detection devices such as the particle size spectrometer* and the condensed particle counter (CPC) are used to determine the exact dose provided to the test subject.

Contact TSI's application experts to learn more about TSI aerosol generators, particle size analyzers, and counters for information on inhalation toxicology tests for specific nanomaterials.

* Strictly follow ISO10808:2010 related standards: Qualitative inhalation of the nanoparticles in the contact chamber involved in toxicological testing.

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Welding Rope

Tungsten carbide welding rope is a type of welding filler material that is used for hardfacing applications. It is made by combining tungsten carbide particles with a binding material, such as nickel or cobalt, to create a rope-like form.

Tungsten carbide is known for its exceptional hardness and wear resistance, making it ideal for applications where the welded surface needs to withstand extreme abrasion and impact. The welding rope is typically used in industries such as mining, oil and gas, construction, and agriculture.

When the tungsten carbide welding rope is heated during the welding process, the binding material melts and fuses the tungsten carbide particles to the base metal, creating a hard and durable surface. This helps to extend the lifespan of equipment and machinery by protecting it from wear and tear.

Tungsten carbide welding rope can be applied using various welding processes, including manual metal arc welding (MMA), gas tungsten arc welding (GTAW), and flux-cored arc welding (FCAW). The choice of welding process depends on the specific application and the equipment available.

Overall, tungsten carbide welding rope offers a cost-effective solution for protecting and repairing high-wear surfaces, making it a popular choice in industries where durability and longevity are essential.

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