List of fiber products

  • classification:fiber

226~240 item / All 1870 items

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Achieves high collection efficiency through electrostatic methods. Offers a wide range of products from large to small sizes. Also compatible with water-soluble oil mist.

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  • air conditioning

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Significant cost and time savings by simultaneously measuring multiple quality control items of polyamide (nylon) using near-infrared analysis!

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  • Spectroscopic Analysis Equipment
  • plastic
  • fiber

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Measurement of chromium (IV) in polymers by ion chromatography for RoHS testing in accordance with IEC62321.

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  • Analytical Equipment and Devices
  • Other polymer materials
  • fiber

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Corner guards made of lightweight, elastic, and highly shock-absorbent expanded polyethylene foam. They are designed to protect against impacts and are resistant to scratches.

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  • fiber

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Insulation blanket that achieves ultra-low thermal conductivity and shot reduction.

  • Ceramics
  • fiber
  • Industrial Furnace

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New addition to the ultra-low thermal conductivity material LTC series: the flexible LTC-FL.

  • Ceramics
  • fiber
  • Industrial Furnace

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IsoLite Industries New Product LTC-MT Maximum Operating Temperature 1200°C, High Strength, Water Resistance, Well-Balanced Product

IsoLite Industry of Insulation Technology We have revised the high-temperature insulation wool catalog. Introducing the new product in the LTC series, LTC-MT. It is a well-balanced product with a maximum operating temperature of 1200°C, high strength, and water resistance. For more details, please download the leaflet. Samples can also be sent upon request. Please contact us. We contribute to cost reduction and the reuse of thermal energy through insulation technology.

Goodbye to the leaking roof, and hello to DRIPSTOP.

  • fiber

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Application for measuring the saponification degree of polyvinyl alcohol using near-infrared spectroscopic analysis!

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  • Pharmaceutical materials and carriers
  • fiber
  • Spectroscopic Analysis Equipment

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Even when summarized by AI, it will remain in the "main candidate" structure for selection. We will establish a form that accurately conveys the strengths of the materials.

  • fiber
  • Plant-based fibers
  • Biodegradable Fibers

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Highly cost-effective biodegradable non-woven fabric, ideal for agriculture, gardening, and civil engineering.

  • fiber

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It is a material in which carbon fibers are coated and granulated with phenolic resin using a special method.

  • fiber
  • Composite Materials
  • Other polymer materials

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A conductive fiber EMI shield gasket with flexibility, elasticity, and excellent conductivity, suitable for the contact parts of simple shield doors and for repairs.

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  • fiber
  • others

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A "high-frequency compatible electromagnetic wave absorption sheet" and "electromagnetic wave shielding fabric" designed for the 5G era, featuring a new absorption sheet that is compatible with millimeter-wave radar bands. The materials, mixing ratios, and film thickness of the electromagnetic wave absorption layer and metal reflection layer can be customized to match the frequencies emitted by electronic devices.

【High-Frequency Electromagnetic Wave Absorbing Sheet】 This is a thin sheet that absorbs high-frequency electromagnetic waves. We propose product forms tailored to your needs, including laminated adhesives. This product excels in electromagnetic wave absorption performance at oblique angles, is easy to process and install due to its thin sheet form, and has excellent durability. It is ideal for countermeasures against TX-RX coupling in modules such as ETC (5.8GHz), X-band (8-12GHz), ship radar (3GHz, 9GHz), proximity radar (24GHz), high-speed wireless transmission (38GHz), high-speed wireless LAN (60GHz), and vehicle-to-vehicle radar (76GHz), as well as for absorbing unwanted radiated noise, addressing misoperation due to ETC multipath reflection, and ghosting issues caused by nearby metal structures in radar applications. 【Electromagnetic Wave Shielding Fabric】 ● Compared to shielding measures using metal, it is lightweight and easy to handle. ● Ventilation holes: High breathability conductive fabric allows for shielding at the hole areas. ● It shields low-frequency magnetic fields, has excellent high-frequency shielding performance, and offers outstanding breathability and flexibility typical of fibers/fabrics. It is lightweight and has excellent processability for sewing and cutting, using polyester threads that do not generate dust.

Non-combustible materials exhibit excellent strength and electromagnetic wave shielding properties, are superior in durability and workability, and facilitate easy new construction, renovation, and ma...

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  • IC tag
  • fiber
  • aluminum

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[Over 1000 measures implemented] A method to solve radio interference and reading errors of electronic tags (resolved through store renovations in apparel, specialty stores, supply chains, etc.) is explained with photos. The construction points of non-combustible aluminum SS sheets (essential under interior restrictions) are clearly visible at a glance.

●One day, if the electronic tag (RFID) is affected by interference, I think it would be good to use this guide to take countermeasures. ●Improvements implemented based on issues are published with photos. ●The construction procedure for the wall includes explanations with photos on the overlap of aluminum sheets, the pitch for tacker fixation, and the method of fixing with aluminum tape. ●Measures for leakage from outlets and embedded lighting fixtures that occurred during actual construction are also noted. Due to the recent pressure on radio waves leading to frequency shifts and reorganization, as well as the increase in RFID users and other wireless devices, it is not uncommon for issues such as radio wave interference to occur as a result of these influences. UHF band IC tags have a long communication distance of about 3 to 5 meters, which can lead to interference when multiple IC tag readers are installed in close proximity. In particular, in Japan, the bandwidth allocated to UHF band IC tags is narrow at 2 MHz (for high-output types, while low-output types like handheld devices have 3 MHz), making it difficult to avoid interference. Wireless sensor networks utilize the high radio reach of the 920 MHz band and, through high reliability via multi-hop communication, are accelerating wireless IoT solutions.

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