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Supplier: Bondex, Inc.
Description: Bondex was selected by DuPont™ to offer a line of products which meet the specifications of E88, E88C and Z11, identified by Bondex product codes as shown below. Additionally, we invite customers of DuPont™ spunlace to challenge the Bondex team to develop custom solutions beyond
- Applications: Aerospace, Apparel / Clothing, Automotive / Transportation, Chemical Process, Industrial OEM
- Material Type: Synthetic / Polymer, Aramid
- Structural Features: Hydroentanglement, Coated / Sized
- Type: Wet-laid / Air-laid Nonwoven, Spunbond / Meltblown Nonwoven, Carded / Needlepunched Nonwoven
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Supplier: DuPont™ Nomex® Energy Solutions
Description: NOMEX® spunlaced fabrics are manufactured by DuPont using SONTARA® fabric made with spunlaced technology. This spunlaced process yields a fabric that is durable and soft, as well as conformable and lightweight, which is independent of fiber used. SONTARA® spunlaced
- Applications: Electrical / Electronics, Other
- Fabric Weight: 67.8 gsm
- Fabric Strength: 29.98 lbs/in
- Material Type: Synthetic / Polymer, Aramid, Specialty / Other
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Supplier: DuPont™ Nomex® Energy Solutions
Description: Type 994 PSB is a densified, rigid board which has a unique combination of superior resistance to compression, even at elevated temperatures, along with relatively high oil absorption characteristics. This combination results in a product which is especially useful as spacers or other structural
- Fabric Weight: 1150 to 11070 gsm
- Material Type: Synthetic / Polymer, Aramid, Specialty / Other
- Overall Thickness: 0.0400 to 0.3800 inch
- Type: Spunbond / Meltblown Nonwoven
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Supplier: Lydall Performance Materials
Description: LyTherm® 970-LH Binderless Grade Paper is a 100% inorganic material, and is manufactured using a patented process that provides high tensile handling strength. Because it is processed from washed, spun, high purity alumina-silica fibers, LyTherm® 970-LH Paper is clean, has low shot content and
- Applications: Aerospace, Fire Proofing / Thermal Protection, Medical, Other
- Electrical Resistivity: 50 Ohm-cm
- Fabric Strength: 0.7937 to 1.28 lbs/in
- Material Type: Ceramic, Alumina, Quartz / Fused Silica
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Supplier: Lydall Performance Materials
Description: LyTherm® Premium Grade Paper is a lightweight refractory material processed from highly washed, spun, high purity alumina silica fibers formed into a highly flexible sheet. It is recommended for continuous use at temperatures up to 2300°F(1260°C) in applications requiring high handling strength,
- Applications: Fire Proofing / Thermal Protection, Other
- Electrical Resistivity: 55 Ohm-cm
- Material Type: Ceramic, Alumina, Quartz / Fused Silica
- Overall Thickness: 0.0625 to 0.3750 inch
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Supplier: DuPont™ Nomex® Energy Solutions
Description: Nomex® 411 is a lower-density version of Nomex® 410. It is available in thicknesses ranging from 0.13 mm (5 mil) to 0.58 mm (23 mil), with a specific gravity of 0.3 and correspondingly lower electrical and mechanical properties. It is used in applications such as motor phase insulation and
- Applications: Electrical / Electronics, Other
- Fabric Weight: 42 to 205 gsm
- Material Type: Synthetic / Polymer, Aramid, Specialty / Other
- Overall Thickness: 0.0051 to 0.0228 inch
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Supplier: DuPont™ Nomex® Energy Solutions
Description: Nomex® 410 is used in almost every known sheet insulation application. This high-density product has high inherent dielectric strength, mechanical toughness, flexibility and resilience. It is produced in thicknesses ranging from 0.05 mm (2 mil) to 0.76 mm (30 mil), with specific gravities ranging
- Applications: Electrical / Electronics, Other
- Fabric Weight: 41 to 839 gsm
- Material Type: Synthetic / Polymer, Aramid, Specialty / Other
- Overall Thickness: 0.0051 to 0.0228 inch
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Supplier: Lydall Performance Materials
Description: LyTherm® 1535-GC Abrasion Resistance Paper is a lightweight refractory composite composed of an inner core of spun, high purity alumina-silica paper quilted with a durable textile cladding. The core material is recommended for continuous use at temperatures up to 2300ºF (1260ºC), and will remain
- Applications: Fire Proofing / Thermal Protection, Other
- Fabric Strength: 17.64 to 28.77 lbs/in
- Material Type: Ceramic, Alumina, Quartz / Fused Silica
- Overall Length: 16.67 yd
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Supplier: Lydall Performance Materials
Description: LyTherm® 880-LH Binderless Grade Paper is a 100% inorganic material processed from washed, spun, high purity alumina-silica fibers. It is recommended for continuous use at temperatures up to 2600°F (1427°C) in applications where off-gassing of the organic binder cannot be tolerated. LyTherm® 880-LH
- Applications: Aerospace, Fire Proofing / Thermal Protection, Medical, Other
- Electrical Resistivity: 50 Ohm-cm
- Fabric Strength: 1.53 lbs/in
- Material Type: Ceramic, Alumina, Quartz / Fused Silica
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Supplier: DuPont Protection Technologies
Description: NOMEX® spunlaced fabrics are manufactured by DuPont using SONTARA® fabric made with spunlaced technology. This spunlaced process yields a fabric that is durable and soft, as well as conformable and lightweight, which is independent of fiber used. SONTARA® spunlaced
- Applications: Electrical / Electronics, Other
- Fabric Weight: 67.8 gsm
- Fabric Strength: 29.98 lbs/in
- Material Type: Synthetic / Polymer, Specialty / Other
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Supplier: Johns Manville Corp.
Description: Johns Manville synthetic spunbond nonwovens are made by spinning continuous polyester fibers onto a moving belt. The continuous fibers come from polyester raw material that has been dried, melted and extruded into a flowing polymer melt. After the spinning process, the polyester
- Applications: Architectural / Construction, Battery / Fuel Cell, Filtration, Industrial OEM, Other
- Material Type: Synthetic / Polymer, Polyester
- Type: Spunbond / Meltblown Nonwoven
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Supplier: Johns Manville Corp.
Description: Johns Manville’s melt-blowing process creates fibrous webs directly from polymers using high-velocity air to attenuate the filaments. Due to differences in filament size, meltblown nonwoven fabrics differ in degree of softness, opacity and porosity.
- Applications: Filtration, Industrial OEM, Other
- Material Type: Synthetic / Polymer, Polyester
- Type: Spunbond / Meltblown Nonwoven
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Supplier: Lydall Filtration/Separation, Inc.
Description: Arioso® High Performance Air Filtration Composite Media delivers extremely low pressure drop to high efficiency filters, allowing your customers to use less energy, and save money. And did we mention that Arioso media contains no fluoropolymers or halogens*, allowing for the potential of
- Applications: Filtration
- Material Type: Synthetic / Polymer, Polyethylene / HDPE
- Structural Features: Microfiber, Coated / Sized
- Type: Wet-laid / Air-laid Nonwoven, Spunbond / Meltblown Nonwoven, Specialty / Other
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Description: proprietary manufacturing technology. Different than for most other porous membranes, SOLUPOR® has a unique pore structure, being highly tortuous, with the membrane itself having a fibrilar structure somewhat similar to nonwovens. This makes these membranes very suitable for many
- Applications: Filtration
- Fabric Weight: 16 gsm
- Material Type: Synthetic / Polymer, Natural (Cotton, Wool, etc.), Glass / Fiberglass
- Overall Thickness: 0.0045 inch
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Supplier: Lydall Filtration/Separation, Inc.
Description: LyPore MB is part of Lydall’s synthetic media platform. LyPore MB is a high efficiency liquid filtration media made from 100% meltblown polypropylene fibers. Individual grades are rated from 1µm to 200 µm efficiencies. There are three different distinct designs within the product family. Calendered
- Applications: Filtration
- Material Type: Synthetic / Polymer, Glass / Fiberglass
- Overall Thickness: 0.0140 inch
- Type: Spunbond / Meltblown Nonwoven, Specialty / Other
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Supplier: Toray Industries (America), Inc.
Description: Polypropylene spunbond, produced by Toray Advanced Materials Korea Inc., has various attractive products such as melt blown spunbond sandwiched between spunbond layers, polyethylene mixed-type, and so on. Polypropylene spunbond from Toray Advanced Materials Korea Inc. is
- Applications: Apparel / Clothing
- Material Type: Synthetic / Polymer, Polypropylene
- Type: Spunbond / Meltblown Nonwoven
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Supplier: Lydall Filtration/Separation, Inc.
Description: LyPore Defender microglass filtration media is Lydall’s newest liquid media series. Extensive R&D coupled with industry leading expertise in wet-laid microglass media results in a series of products that truly push the boundaries of dirt holding, particle removal, and flow. Our unique blend of
- Applications: Filtration
- Fabric Weight: 83 gsm
- Material Type: Glass / Fiberglass
- Overall Thickness: 0.0230 inch
Find Suppliers by Category Top
More Information Top
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Polyolefin Fibers
… reinforcement, sun protection applications (awnings, boat coverings, tents, garden furniture upholstery, etc.), and bicomponent staple fiber applications. Nonwovens Regarding web- formation, thermal bonding and needlepunching are the most used processes, whereas spunlace (hydroentanglement) is the … Although spunbonded nonwovens are not considered part of the fibers industry in Western Europe, it is included …
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Scientific.Net: Materials Science
The advantages of spunbond - spunlace process were emphasized... Dynamic Response of Thermally Bonded Bicomponent Fibre Nonwovens .
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Chemical fibres in 2006 in the World and in Russia
Production of nonwovens is continuing to develop dynamically [14]. Production of NW by spunbond and spunlace methods is increasing at high speeds: by 20 and 15% from 2005 to 2006 (!). … production overall by 11.6%, primarily due to an increase in production of bicomponent fibres, type HMLS …
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http://www.jeffjournal.org/papers/Volume2/FiltrationReview.pdf
The dry laid processes are subcategorized into air laid, dry laid (carding processes), spunbond , melt-blown, and … … treated as one of several bonding mechanisms for carded webs, which also include spunlace , thermobonding, stitch bonding … A number of photographs are used to illustrate the nature of bicomponent fibers. … based fibers, there may be a return to more traditional, plant and animal fiber forms of nonwovens .
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Interconnected, microporous hollow fibers for tissue engineering: Commercially relevant, industry standard scale‐up manufacturing
Island components can also be liberated from the sea matrix through mechanical fibrilla- tion, typically achieved via high-pressure water jets (hydro- entangling or spunlace ), carding, or drawing.91 Durany et … … on the mechanical properties of INS spunbond webs fibrillated via hydroentangling … More energy was required to fibrillate the samples due to increased island/sea interfacial area, compared with other bicompo- nent configurations such as segmented pie. We have attempted to describe in depth current advances in polymer extrusion and nonwovens processing in the …
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The Wiley Encyclopedia of Packaging Technology 3rd Edition Complete Document
Often bicomponent fibers having differential melting temperatures in either a coreand-sheath or a side-by-side … Inherent or self-bonded nonwovens are bonded at the time they are produced. The major use for spunlace fabrics is in medical products. Historically, flash spunbonded polyethylene was the first 100% spunbonded to find use in sterilzable packaging.
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Status of production and use of polypropylene spunbond in Russia and abroad
Nevertheless, beginning in the 1990s, the market for new NW made with modern spunbond and spunlace technologies (formation of webs with water jets) has … still the only company in Russia that has successfully mastered production of polypropylene nonwovens with spunbond technology … Bicomponent 2% .
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Nonwoven Fabrics
Another method, developed in Japan by Chisso Corporation, consists of thermally bonding a bicomponent fiber—in this case … Since 1975, thermal bonding of nonwovens has grown rapidly among staple-based, dry-laid nonwoven producers. In prior years, both terms, hydroentangled and spunlaced , were commonly used in the industry. Introduced in the early 1960s, spunbonded nonwovens are as close as the industry has been able to …
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http://www.jeffjournal.org/INJ/fall00.pdf
… method for producing an elastic fabric with multi-directional stretch properties via the spunlace process is disclosed. Six years later, this partnership was expanded to become The Textiles and Nonwovens Development Center (TANDEC) located … In addition to the spunbond equipment, in 1989 there was a extension of the melt blown program … … by UT and Reifenhauser to demonstrate the successful production of side-by-side bicomponent (bico) fiber melt …
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A Comparison of ASTM F 1670 and F 1819 Standards for Measuring the Barrier Properties of Protective Clothing Using Synthetic Blood
Both single- use nonwovens and multiple-use types were chosen. Treated Polyester/Woodpulp Blend, Spunlace 44. Spunbond /Meltblown/Spunbond Polypropylene 46. Treated 100% Polyester, Woven and Knitted Layers; Bicomponent Expanded PTFE Membrane 63.
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