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Now showing items 17 - 32 of 4861

  • Electrospun PVA/Bentonite Nanocomposites Mats for Drug Delivery

    Ferrández-Rives Mariola   Beltrán-Osuna ángela   Gómez-Tejedor José   Gómez Ribelles José  

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  • TRAY-SUPPORTED FLOOR MATS FOR LIVESTOCK HANDLING EQUIPMENT

    A floor assembly for livestock handling equipment features a pair frame members lying in a longitudinal direction and spaced apart from one another in a lateral direction transverse to said longitudinal direction, and at least one support tray connected to the frame members and spanning therebetween in the lateral direction. At least one mat is supported atop the support tray(s). The mat is made of rubber or other resilient material for improved footing and comfort of the livestock. The topside of each mat is flush with a topside of the frame members to provide an even floor surface across the full area floor area. The mat(s) are removable for cleaning, and open gaps around the support tray(s) are provided for drainage. Non-welded attachment enables convenient removal and replacement of the support trays in the event of rust or other damage.
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  • MIXED ALLOTROPE PARTICULATE CARBON FILMS AND CARBON FIBER MATS

    Mixed allotrope particulate carbon films and carbon fiber mats including partially ordered carbon materials or fibers, a plurality of highly ordered carbon aggregates, and a plurality of active materials particles are disclosed. In various embodiments, the highly ordered carbon aggregates comprise graphene with no seed particles. In various embodiments, the active materials particles comprise silicon.
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  • Floor mats for automobile

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  • Industrial mats with lifting elements

    An industrial mat having a supporting structure; an upper layer provided above the supporting structure for forming an upper surface of the mat, a lower layer provided below the supporting structure for providing a lower surface of the mat; and lifting elements attached to the upper layer, the lower layer or the supporting structure. The lifting elements include D-shaped members, O-shaped members, U-shaped members, eyelets, hooks, circular or polygonal rings, chains, or cables that are configured and dimensioned for attachment to attached to the supporting structure or the upper or lower layer with sufficient strength to provide certified overhead lifting of the mat for installation and reclamation thereof.
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  • FREE-STANDING MOF-DERIVED HYBRID POROUS CARBON NANOFIBER MATS

    According to the present disclosure, a method of fabricating a metal-carbon fibrous structure is provided. The method comprises the steps of: (a) forming a fibrous support structure comprising composite nanocrystals and polymeric fibers, wherein each of the composite nanocrystals comprises metal ions connected by organic ligands; (b) growing the composite nanocrystals on the fibrous support structure; and (c) subjecting the fibrous support structure of step (b) to carbonization to form the metal-carbon fibrous structure, wherein the metal-carbon fibrous structure comprises metal nanoparticles derived from the composite nanocrystals comprising metal organic framework (MOF), particularly zeolitic imidazolate framework (ZIF). A metal-carbon fibrous structure comprising carbon based fibers arranged to form a porous network and the carbon based fibers are doped with metal nanoparticles, wherein the carbon based fibers have surfaces which comprise graphitic carbon, is also disclosed herein.
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  • IMPROVED FLOOR MATS

    The present disclosure relates generally to multilayer articles for potential use as floor mats and to methods of making the same. In some embodiments, the multilayer articles include a first layer including a closed cell foam; a second layer directly adjacent to the first layer and including an open cell foam, and a third layer directly adjacent to the second layer and including a closed cell foam.
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  • Set of vehicle floor mats

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  • The viscoelastic response of electrospun poly(vinyl alcohol) mats

    Waheed, Sana   Butcher, Annabel L.   Oyen, Michelle L.  

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  • Carbon nanotube fiber mats for microbial fuel cell electrodes

    Delord, Brigitte   Neri, Wilfrid   Bertaux, Karen   Derre, Alain   Ly, Isabelle   Mano, Nicolas   Poulin, Philippe  

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  • Structure of Microbial Mats in the Mramornaya Bay (Crimea) Coastal Areas

    Pimenov, N. V.; Merkel, A. Yu.; Tarnovetskii, I. Yu.; Malakhova, T. V.; Samylina, O. S.; Kanapatskii, T. A.; Tikhonova, E. N.; Vlasova, M. A.  

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  • Preparation of Magnetic Polylactic Acid Fiber Mats by Electrospinning

    Kumar, Manish   Unruh, Daniel   Sindelar, Ralf   Renz, Franz  

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  • Investigations on Sound Absorption Properties of Luffa Fibrous Mats

    Thilagavathi, G.   Neela Krishnan, S.   Muthukumar, N.   Krishnan, Santhana  

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  • Should we continue to monitor 4CMenB coverage with MATS?

    Abad, Raquel   Vazquez, Julio  

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  • WIRELESS CHARGING MATS FOR PORTABLE ELECTRONIC DEVICES

    Embodiments describe a wireless charging device that includes: a housing having an outer perimeter and one or more walls defining an interior cavity; a charging surface within the outer perimeter of the housing; a transmitter coil arrangement disposed within the interior cavity below the planar charging surface, the transmitter coil arrangement comprising a plurality of transmitter coils arranged in different layers, each transmitter coil having a pair of termination ends; wherein the plurality of transmitter coils comprises a plurality of inner transmitter coils and a plurality of outer transmitter coils positioned around the inner transmitter coils; and wherein the pair of termination ends of the plurality of outer transmitter coils are arranged differently than the pair of termination ends of the plurality of inner transmitter coils.
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  • INDUSTRIAL MATS HAVING COST EFFECTIVE CORE SUPPORT STRUCTURES

    A mat that includes first and second side beams (210, 240), a core support structure located between and connected to the side beams, with the support structure including longitudinal members (225A, 225B, 225C), a plurality of joining rods (260) that attach the side beams to the support structure, with the joining rods passing through the sides of the side beams and the sides of the longitudinal members of the support structure; one or more elongated members (250A, 250B, 250C) attached to the support structure to form with the top working surface of the mat, and/or one or more elongated members (255A, 255B, 255C) attached to the support structure to form the bottom working surface of the mat. If desired, steel plates (205A, 205B, 205C, 205D) can be provided between the beams and longitudinal members to increase the strength and ruggedness of the mat. The mat also includes various lifting elements (170) including D-, O- or U-shaped members, eyelets, hooks, rings, chains, or cables.
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