RU2004137113A - MILLED FRAGMENTS FOR STRENGTHENING, FIBER STRENGTHENED PRODUCT USING THESE Fragments, AND METHOD FOR PRODUCING FRAGMENTS AND PRODUCTS - Google Patents

MILLED FRAGMENTS FOR STRENGTHENING, FIBER STRENGTHENED PRODUCT USING THESE Fragments, AND METHOD FOR PRODUCING FRAGMENTS AND PRODUCTS Download PDF

Info

Publication number
RU2004137113A
RU2004137113A RU2004137113/12A RU2004137113A RU2004137113A RU 2004137113 A RU2004137113 A RU 2004137113A RU 2004137113/12 A RU2004137113/12 A RU 2004137113/12A RU 2004137113 A RU2004137113 A RU 2004137113A RU 2004137113 A RU2004137113 A RU 2004137113A
Authority
RU
Russia
Prior art keywords
fragments
fiber
producing
resin
products
Prior art date
Application number
RU2004137113/12A
Other languages
Russian (ru)
Other versions
RU2289507C2 (en
Inventor
Ацуси СУМИДА (JP)
Ацуси СУМИДА
Коити ЦУКАМОТО (JP)
Коити ЦУКАМОТО
Original Assignee
Дюпон-Торэй Ко., Лтд. (Jp)
Дюпон-Торэй Ко., Лтд.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Дюпон-Торэй Ко., Лтд. (Jp), Дюпон-Торэй Ко., Лтд. filed Critical Дюпон-Торэй Ко., Лтд. (Jp)
Priority to RU2004137113A priority Critical patent/RU2289507C2/en
Publication of RU2004137113A publication Critical patent/RU2004137113A/en
Application granted granted Critical
Publication of RU2289507C2 publication Critical patent/RU2289507C2/en

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/62Plastics recycling; Rubber recycling

Claims (10)

1. Способ получения фрагментов для упрочнения, в котором после проведения чистки отработанных волокносодержащих изделий пропитывают волокносодержащие изделия смолой, диспергированной или растворенной в растворителе, и осуществляют их сушку, затем волокносодержащие изделия измельчают с использованием измельчителя типа стригальной машины.1. A method of producing fragments for hardening, in which after cleaning the spent fiber-containing products, the fiber-containing products are impregnated with resin dispersed or dissolved in a solvent, and they are dried, then the fiber-containing products are crushed using a shearing machine. 2. Способ получения фрагментов для упрочнения по п.1, в котором волокно волокносодержащих продуктов является полностью ароматическим полиамидным волокном, волокном поли-р-фениленбензобисоксазола, ароматическим полиэфирным волокном, волокном поливинилового спирта или их комбинацией.2. The method of producing fragments for hardening according to claim 1, wherein the fiber of fiber-containing products is a fully aromatic polyamide fiber, a fiber of poly-p-phenylenebenzobisoxazole, an aromatic polyester fiber, a polyvinyl alcohol fiber, or a combination thereof. 3. Способ получения фрагментов для упрочнения по п.1, в котором смола, прилипающая к волокносодержащим продуктам, является нейлоновой, полиэфирной, поликарбонатной смолой, полиацеталевым пластиком, полиуретановой смолой, полимочевиной, эпоксидной смолой, силиконовой смолой, фенольной смолой, фторполимером, полиимидной смолой или их комбинацией.3. The method of producing fragments for hardening according to claim 1, wherein the resin adhering to fiber-containing products is a nylon, polyester, polycarbonate resin, polyacetal plastic, polyurethane resin, polyurea, epoxy resin, silicone resin, phenolic resin, fluoropolymer, polyim or a combination thereof. 4. Способ получения фрагментов для упрочнения по одному из пп.1-3, в котором процесс измельчения с использованием измельчителя типа стригальной машины включает многостадийные этапы, на которых длину указанных фрагментов постепенно уменьшают.4. The method of producing fragments for hardening according to one of claims 1 to 3, in which the grinding process using a shredder such as a shearing machine includes multistage steps, in which the length of these fragments is gradually reduced. 5. Способ получения фрагментов для упрочнения по одному из пп.1-3, в котором процесс измельчения с использованием измельчителя типа стригальной машины включает многостадийные этапы, на которых длину указанных фрагментов постепенно уменьшают, получая в итоге фрагменты, из которых 50 вес.% более имеют длину 5 мм или менее.5. A method of producing fragments for hardening according to one of claims 1 to 3, in which the grinding process using a shredder such as a shearing machine includes multistage steps, in which the length of these fragments is gradually reduced, resulting in fragments of which 50 wt.% More have a length of 5 mm or less. 6. Способ получения фрагментов для упрочнения по одному из пп.1-3, в котором процесс измельчения с использованием измельчителя типа стригальной машины включает, по меньшей мере, два этапа, один из которых является этапом грубого измельчения, дающим фрагменты, из которых 50 вес.% или более имеют длину от 5 до 20 мм, а другой является этапом тонкого измельчения, дающим фрагменты, из которых 50 вес.% или более имеют длину 5 мм или менее.6. The method of producing fragments for hardening according to one of claims 1 to 3, in which the grinding process using a shredder such as a shearing machine includes at least two stages, one of which is a coarse grinding step, giving fragments, of which 50 weight .% or more have a length of 5 to 20 mm, and the other is a stage of fine grinding, giving fragments, of which 50 wt.% or more have a length of 5 mm or less. 7. Способ получения упрочненных волокнами полимерных изделий, в котором фрагменты, полученные способом по одному из пп.1-6, диспергируют в матрицу, содержащую смолу, и формованное изделие производят из композитного материала фрагментов и матрицы.7. A method of producing fiber-reinforced polymer products, in which the fragments obtained by the method according to one of claims 1 to 6 are dispersed into a matrix containing resin, and the molded product is made from composite material of fragments and matrix. 8. Способ получения теплостойких устойчивых к трению компонентов, в котором фрагменты, полученные способом по одному из пп.1-6, диспергируют в матрицу, содержащую смолу, и формованное изделие производят из композитного материала, состоящего из фрагментов и матрицы.8. A method of obtaining heat-resistant friction-resistant components, in which the fragments obtained by the method according to one of claims 1 to 6 are dispersed into a matrix containing resin, and the molded product is made of a composite material consisting of fragments and matrix. 9. Способ получения упрочненных волокнами изделий из каучука, в котором фрагменты, полученные способом по одному из пп.1-6, распределяют в матрице, содержащей смеси каучуков, и формованное изделие производят из композитного материала, состоящего из фрагментов и матрицы.9. A method of producing fiber-reinforced rubber products, in which the fragments obtained by the method according to one of claims 1 to 6 are distributed in a matrix containing a mixture of rubbers, and the molded product is made from a composite material consisting of fragments and a matrix. 10. Способ получения фрагментов для упрочнения по одному из пп.1-3, в котором волокносодержащие продукты являются рабочими перчатками.10. The method of producing fragments for hardening according to one of claims 1 to 3, in which the fiber-containing products are working gloves.
RU2004137113A 2002-05-20 2002-05-20 Disintegrated fragments for reinforcing, fiber reinforced article used such fragments, method for producing fragments and article RU2289507C2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
RU2004137113A RU2289507C2 (en) 2002-05-20 2002-05-20 Disintegrated fragments for reinforcing, fiber reinforced article used such fragments, method for producing fragments and article

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
RU2004137113A RU2289507C2 (en) 2002-05-20 2002-05-20 Disintegrated fragments for reinforcing, fiber reinforced article used such fragments, method for producing fragments and article

Publications (2)

Publication Number Publication Date
RU2004137113A true RU2004137113A (en) 2005-09-10
RU2289507C2 RU2289507C2 (en) 2006-12-20

Family

ID=35847701

Family Applications (1)

Application Number Title Priority Date Filing Date
RU2004137113A RU2289507C2 (en) 2002-05-20 2002-05-20 Disintegrated fragments for reinforcing, fiber reinforced article used such fragments, method for producing fragments and article

Country Status (1)

Country Link
RU (1) RU2289507C2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2456533C2 (en) * 2006-09-29 2012-07-20 Федерал-Могал Корпорейшн Light armour

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2456533C2 (en) * 2006-09-29 2012-07-20 Федерал-Могал Корпорейшн Light armour
US8689671B2 (en) 2006-09-29 2014-04-08 Federal-Mogul World Wide, Inc. Lightweight armor and methods of making

Also Published As

Publication number Publication date
RU2289507C2 (en) 2006-12-20

Similar Documents

Publication Publication Date Title
Sapuan et al. Mechanical properties of epoxy/coconut shell filler particle composites
ATE70077T1 (en) MODIFIED REACTIVE RESIN, PROCESS FOR ITS PRODUCTION AND ITS USE.
Rashdi et al. Combined Effects of Water Absorption Due to Water Immersion, Soil Buried and Natural Weather on Mechanical Properties Of Kenaf Fibre Unsaturated Polyester Composites (KFUPC).
Adeosun et al. Thermo-mechanical properties of unsaturated polyester reinforced with coconut and snail shells
Prasad et al. A Study on flexural properties of wildcane grass fiber-reinforced polyester composites
Borah et al. Development and properties evaluation of betel nut fibres composite material
Osman et al. Mechanical properties of kenaf-unsaturated polyester composites: Effect of fiber treatment and fiber length
Ramesh et al. Processing of green composites
WO2003097316A1 (en) Shreds for reinforcement, fiber-reinforced product using the shreds, and method of manufacturing the shreds and the product
JP2523229B2 (en) Method for recycling and utilizing carbon fiber reinforced resin moldings
Nazeer To Study the mechanical properties of coconut coir fiber reinforced with epoxy resin AW 106 & HV 953 IN
RU2004137113A (en) MILLED FRAGMENTS FOR STRENGTHENING, FIBER STRENGTHENED PRODUCT USING THESE Fragments, AND METHOD FOR PRODUCING FRAGMENTS AND PRODUCTS
Reddy et al. Mechanical, thermal and morphological properties of raw cordia dichotoma fiber reinforced epoxy composites
JPH11290822A (en) Production of carbon fiber
Dieu et al. Study on fabrication of BMC laminates based on unsaturated polyester resin reinforced by hybrid bamboo/glass fibers
Hamdan et al. Effect of alkaline treatment on mechanical properties of woven ramie reinforced thermoset composite
Benjamin et al. Tensile behaviour of oil bean pod shell and mahogany sawdust reinforced epoxy resin composite
Naveen et al. Evaluation of mechanical properties of coconut coir/bamboo fiber reinforced polymer matrix composites
WO2005082612A3 (en) Posts and like structures made of wooden composite material, method for making same and uses
Okpala et al. Mechanical properties and applications of coir fiber reinforced composites
Ramakrishnan et al. Study of mechanical properties of roselle fiber reinforced vinyl ester biocomposite based on the length and content of fiber: Mechanical properties of roselle fiber reinforced vinyl ester biocomposite
Begum et al. Fabrication and characterization of cane fiber reinforced unsaturated polyester resin composites
Rozyanty et al. The weathering effect in natural environment on hybrid kenaf/glass fiber unsaturated polyester composite
Vignesh et al. Mechanical properties of hybrid pineapple/coconut sheath fibre reinforced polyester composites
Cappelletto et al. Plant fibres in composites. Comparative results between hemp, kenaf and flax fibres. Preparation of raw material and final products