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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: Mitsui Chemicals America, Inc.
Description: Mitsui Chemicals America supplies high-performance polypropylene based nonwoven fabrics used in the most demanding applications. TAFNEL™ needle punch fabrics deliver a bulky structure, well suited for oil absorbent applications. SYNTEX™ spunbond and meltblown fabrics offer an
- Applications: Filtration
- Material Type: Synthetic / Polymer, Polypropylene
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Supplier: Mitsui Chemicals America, Inc.
Description: Mitsui Chemicals America supplies high-performance polypropylene based nonwoven fabrics used in the most demanding applications. TAFNEL™ needle punch fabrics deliver a bulky structure, well suited for oil absorbent applications. SYNTEX™ spunbond and meltblown fabrics offer an
- Applications: Filtration
- Material Type: Synthetic / Polymer, Polypropylene
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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 emerges as
- Applications: Architectural / Construction, Battery / Fuel Cell, Filtration, Industrial OEM, Other
- Material Type: Synthetic / Polymer, Polyester
- Type: Spunbond / Meltblown Nonwoven
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Supplier: Bondex, Inc.
Description: these products which better fit your needs in these applications. Bondex is an innovative nonwovens and specialty roll goods manufacturing company located in South Carolina, USA. Bondex has been producing technical nonwovens with thermal bond technology since 1997, serving markets
- 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: Mitsui Chemicals America, Inc.
Description: Mitsui Chemicals America supplies high-performance polypropylene based nonwoven fabrics used in the most demanding applications. TAFNEL™ needle punch fabrics deliver a bulky structure, well suited for oil absorbent applications. SYNTEX™ spunbond and meltblown fabrics offer an
- Applications: Filtration
- Material Type: Synthetic / Polymer, Polypropylene
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Supplier: Mitsui Chemicals America, Inc.
Description: Mitsui Chemicals America supplies high-performance polypropylene based nonwoven fabrics used in the most demanding applications. TAFNEL™ needle punch fabrics deliver a bulky structure, well suited for oil absorbent applications. SYNTEX™ spunbond and meltblown fabrics offer an
- Applications: Automotive / Transportation, Cleaning Wipes / Wicking
- Material Type: Synthetic / Polymer, Polypropylene
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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: DuPont™ Nomex® Energy Solutions
Description: Type 993 PSB is a medium-density pressboard which offers a balance of rigidity and conformability along with outstanding saturability and excellent properties in air and oil. Typical applications include 3-dimensional parts such as V-rings, angle rings and spools, as well as barrier, gap spacers and
- Fabric Weight: 720 to 3410 gsm
- Material Type: Synthetic / Polymer, Aramid, Specialty / Other
- Overall Thickness: 0.0400 to 0.1600 inch
- Type: Spunbond / Meltblown Nonwoven
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Supplier: DuPont™ Nomex® Energy Solutions
Description: DuPont™ Nomex® Type 926 is a strong, high-dielectric, thermally-stable paper that is specifically designed for use as conductor insulation in liquid-immersed transformers. Type 926 is not appropriate for use as conductor insulation for dry type transformers. Initially, Type 926 is available only in
- Fabric Weight: 40.4 gsm
- Material Type: Synthetic / Polymer, Aramid, Specialty / Other
- Overall Thickness: 0.0022 inch
- Type: Spunbond / Meltblown Nonwoven
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Supplier: DuPont™ Nomex® Energy Solutions
Description: Type 992 PSB is a low-density pressboard which is designed for applications requiring a combination of electrical, mechanical and forming characteristics, such as barrier, gap spacers, end fillers, core tubes, and coil yokes. Nonelectrical applications include thermal barriers and gaskets. Type 992
- Fabric Weight: 810 to 1630 gsm
- Material Type: Synthetic / Polymer, Aramid, Specialty / Other
- Overall Thickness: 0.0630 to 0.1320 inch
- Type: Spunbond / Meltblown Nonwoven
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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® 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® 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: 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: 1.1 to 1.96 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 fabrics are available commercially
- 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: 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
- Applications: Filtration
- Material Type: Synthetic / Polymer, Glass / Fiberglass
- Overall Thickness: 0.0140 inch
- Type: 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: 5 gsm
- Material Type: Synthetic / Polymer, Glass / Fiberglass
- Overall Thickness: 0.0016 inch
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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 employed in diapers and
- Applications: Apparel / Clothing
- Material Type: Synthetic / Polymer, Polypropylene
- 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: 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
- Applications: Filtration
- Fabric Weight: 70 gsm
- Material Type: Glass / Fiberglass
- Overall Thickness: 0.0270 inch
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Supplier: Harbory Filtration
Description: Medium efficiency bag air filter media is made of polypropylene melt-blown non-woven fabric and spun bond fabric. The high-temperature melt-blown process uses a stable electret and proven composite technology. It is a premium material with a 3D mesh structure which includes two
- Construction: Bag Filter
- Media Type: Other
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Description: , fabric/substrate design and medical device application. Excellent adhesion to a variety of substrates including spunbond-meltblown-s punbond (SMS) nonwovens.
- Adhesive: Acrylic, Rubber
- Carrier / Backing Material: PET / Polyester, Plastic / Polymer
- Type: Double-Sided Adhesive
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Supplier: Medisca Inc.
Description: These non-sterile disposable lab coats with knitted collar and cuffs provide superior comfort and protection. Features Breathable and comfortable lightweight material (Bouffant cap, facial mask, gloves and shoe covers not included) SMS nonwoven laminates combine the
- Clothing Type: Jacket/Coat
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Supplier: Medisca Inc.
Description: These non-sterile disposable lab coats with knitted collar and cuffs provide superior comfort and protection. Features Breathable and comfortable lightweight material (Bouffant cap, facial mask, gloves and shoe covers not included) SMS nonwoven laminates combine the
- Clothing Type: Jacket/Coat
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Supplier: Medisca Inc.
Description: These non-sterile disposable lab coats with knitted collar and cuffs provide superior comfort and protection. Features Breathable and comfortable lightweight material (Bouffant cap, facial mask, gloves and shoe covers not included) SMS nonwoven laminates combine the
- Clothing Type: Jacket/Coat
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Supplier: Medisca Inc.
Description: These non-sterile disposable lab coats with knitted collar and cuffs provide superior comfort and protection. Features Breathable and comfortable lightweight material (Bouffant cap, facial mask, gloves and shoe covers not included) SMS nonwoven laminates combine the
- Clothing Type: Jacket/Coat
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Supplier: LG Chemical of America Inc.
Description: Safety net for construction, fishing net, rope, filament for civil engineering/industri al use, general multi-filament, carpet, fabric Melt-blown Excellent processability and property balance Melt-blown non-woven fabric(diapers, wipers, absorbents
- Chemical / Polymer System Type: Polypropylene (PP)
- Compound Type: Film Grade Resin, Molding Resin
- Material Type / Grade: Thermoplastic
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Supplier: CSA Group
Description: textile package (e.g. continuous filament cheese, staple fibre bale), - hackling and carding of flax and similar, - manufacturing of spun-bonded and melt-blown nonwovens, - forming and making up of garments, household and industrial textile goods, and the pressing and die cutting of
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Featured Products Top
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Vistamaxx™ performance polymers in combination with Exceed™ or Exceed™ Flow PP create new possibilities for meltblown nonwoven fabrics. (read more)
Browse Polypropylene Resins Datasheets for ExxonMobil - Polypropylene Products -
In spunbond or meltblown nonwoven production, Vistamaxx™ performance polymers, Achieve™ Advanced PP and ExxonMobil™ PP offer ease of processing, softness, loft capabilities, strength, and improved barrier performance. Vistamaxx™ performance polymer (read more)
Browse Polymers and Plastic Resins Datasheets for ExxonMobil - Polypropylene Products -
Medium efficiency bag filter media is made of polypropylene melt-blown non-woven fabric and spun bond fabric. The hightemperature melt-blown process uses a stable electret and proven composite technology. lt is a premium material with a 3D mesh structure which includes two different layers for (read more)
Browse Filter Media Datasheets for Harbory Filtration -
PP (polypropylene) melt-blown air filter media is a highly efficient filtration material produced by melting and extruding polypropylene into microfibers, creating a nonwoven structure with fine fibers and high porosity. Its unique properties make it suitable for diverse applications (read more)
Browse Filter Media Datasheets for Harbory Filtration
Conduct Research Top
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Engineering Polymers In Nonwovens, Fibers And Other Extruded Substrates
of extruded substrates such as spunbonded and. meltblown nonwovens, staple fibers, monofilaments, multifilaments, nettings, films and the like. The chemical structures of these polymers, their physical and chemical. properties, and their inherent features and benefits are described in conjunction with key
More Information Top
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Characterization of degradation of polypropylene nonwovens irradiated by γ‐ray
Prior to irradiation, the control meltblown nonwoven has no defects or cracks.
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Physical and thermal characterization of polylactic acid meltblown nonwovens
Four areas from each meltblown nonwoven were sampled to acquire more than 94 fiber diameter measurements for each nonwoven.
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An investigation of fiber splitting of bicomponent meltblown/microfiber nonwovens by water treatment
Polypropylene is the most commonly used polymer for meltblown nonwoven products be- cause it produces the best web [among the low-cost resins.8 The PP resins used were ExxonMobil PP 3546G (ExxonMobil, Baytown, TX) and Basell PP-PF 008 (Basell …
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http://www.jeffjournal.org/papers/Volume3/Gibson.pdf
(a) Meltblown Nonwoven (500x .
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Effect of Simulated Weathering on Physicochemical Properties and Inherent Biodegradation of PLA/PHA Nonwoven Mulches
Meltblown ( nonwoven materials) MD .
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http://www.jeffjournal.org/INJ/winter01.pdf
The different applications for spun- bond/ meltblown nonwoven webs con- tinue to proliferate.
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http://www.jeffjournal.org/INJ/winter02.pdf
Fiber ODF is shown to be a useful tool for detailed analysis of changes taking place in meltblown nonwoven structures.
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On the use of robotics for melt-blowing to form shaped/molded fabric structures
To complete the tasks outlined, that is, to produce seamless 3D meltblown nonwoven garment structures (structures capable of filtering particles larger than 0.5 pm), a Robotic Fiber Assembly and Control System (RFACS) has been designed and fabricated.
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Surface nanaostructure evolution of functionalized polypropylene fibers
In this study, meltblown nonwoven substrate was functionalized using metal sputter coating.
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Research Progress of Elastic Nonwovens with Meltblown Technology
Development, Elasticity, Meltblown Nonwoven .
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