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The ARES FML-100 laboratory impact mill from Filtra is an ideal device for reducing the volume and particle size of hard, semi-hard, and brittle materials such as glass, ceramics, grains, spices, and animal feed ingredients. With its optimized design and powerful performance, this equipment is also particularly well-suited for grinding solid and tough materials like rocks, minerals, and electronic waste—commonly encountered in material science, environmental research, construction, and recycling industries. Its flexible sieve replacement system, PLC-based automatic control, and high-quality stainless steel construction enable the machine to meet GMP standards, ensuring efficiency, durability, and safety across a wide range of modern laboratory applications.

The ARES FML-MC Laboratory Cutting Mill is ideal for grinding and reducing the volume of soft, elastic, and fibrous materials such as straw, plastics, and branches. It is also highly effective in processing solid and tough materials like rubber, leather, secondary fuels, and electronic waste. This equipment is suitable for applications in the food, agriculture, pharmaceutical, recycling, and chemical industries.

The ARES FML-MI laboratory impact mill by FILTRA is designed for the volume and size reduction of hard, semi-hard, and brittle materials such as glass, ceramics, or animal feed. The device is also highly effective in processing solid and tough materials like rocks, minerals, electronic waste, and many other types of materials.

Abrasion and Pilling are the most common fabric problems faced by end users. They are caused by pill or beads forming and degrading. These problems are mostly seen in used garments. Before manufacturing garments, fabrics are tested for their change in appearance and performance. This helps the manufacturer meet the required resistance for garments. The YG(B) 401T Martindale Abrasion Tester measures fabric wear and tear and appearance change. Separate methods and different machine settings are used for pilling and abrasion. Fabric is evaluated by change of appearance and difference in weight.

The ATENEA Industrial V-Mixer is used to achieve perfect homogenization of solid with solid (in any proportion) and solid with liquid (10% maximum) products in powder or granulated form. It has a V-shaped body made of AISI-316 stainless steel, with two loading inlets and one outlet, with a butterfly valve to facilitate the unloading of the mixture. Due to the V-shape axial currents are produced when the body is turned through 360º, and these currents separate and unite the product to be mixed. This, along with the radial mixing action, produces an extremely homogeneous result (in the proportion of 1 part in 10.000).

Park FX40 is Park Systems’ latest innovation in atomic force microscopy (AFM), designed for high-resolution imaging of small samples. With a low noise floor, minimal thermal drift, and enhanced mechanical stability, the FX40 delivers unmatched precision and reliability. Like all Park AFMs, FX40 features an orthogonal scan system and True Non-contact™ mode, enabling accurate, high-resolution metrology, even on the most delicate or fragile samples.​ Key features of FX40 include automatic probe exchange, automatic laser beam alignment, and a sample-view camera; the signatures of FX-series AFMs that streamline operation while significantly enhancing productivity. With the powerful FX AFM controller featuring an 8-channel lock-in amplifier and 5 MHz bandwidth for advanced signal processing, FX40 supports a wide range of cutting-edge modes and options. Built for both precision and ease of use, the FX40 is the ideal solution for nanoscale imaging and analysis.

Park NX10 is a flagship atomic force microscope (AFM) designed for small-sample research, delivering unmatched accuracy, reliability, and ease of use. As Park Systems’ original small-sample AFM, it has earned global recognition in both academic and industrial laboratories for producing precise, repeatable nanoscale measurements. At the core of the NX10 are Park’s proprietary orthogonal scan system and True Non-contact™ mode, innovations that virtually eliminate lateral motion artifacts while protecting both tip and sample. Together, these technologies ensure artifact-free, high-resolution imaging even for the most delicate or challenging samples. From materials science to polymers and bioengineering, NX10 delivers robust performance and dependable results, making it a trusted platform for advanced nanoscale metrology.

PURISTER autoclave by CRYSTE, with top loading autoclave used to sterilize a variety of apparatus and supplies by subjecting them to high pressure saturated steam at 121℃.  

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