Academic literature on the topic 'Chloroprene rubber'

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Journal articles on the topic "Chloroprene rubber"

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Treger, Yu A., K. A. Morozov, G. S. Dasaeva, and A. K. Frolkova. "CHLOROPRENE RUBBER: APPLICATION AND PRODUCTION." Fine Chemical Technologies 13, no. 4 (2018): 26–38. http://dx.doi.org/10.32362/2410-6593-2018-13-4-26-38.

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Polychloroprene is widely used as a special-purpose rubber in such industries as automotive, construction, textile industry. Chloroprene rubber takes a significant share in the market of elastomers due to its properties. In recent years, a gradual increase in demand for chloroprene rubbers is expected. This trend is most clearly seen in regions with a developed automotive industry. World leaders in the production of chloroprene rubbers and latex demonstrate their interest in increasing production capacity. In Russia, chloroprene rubber is not produced, the demand is completely met by import. I
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De Sarkar, Mousumi, Wataru Nishino, Yuhei Ishigaki, and Takashi Sunada. "Introduction to the New Copolymer of Chloroprene and Acrylonitrile with Differentiated Properties." Advances in Polymer Technology 2021 (July 21, 2021): 1–17. http://dx.doi.org/10.1155/2021/9955850.

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The random copolymer of chloroprene and acrylonitrile is a newly developed rubber whose features and value propositions are not scientifically explored yet. This article focuses on the basic characterizations and properties of acrylonitrile-chloroprene rubber. Qualitative analyses through infrared (FTIR) and nuclear magnetic resonance (1H-NMR) spectra confirm the presence of both the -Cl and -CN groups in the new rubber. As evidenced through differential scanning calorimetry (DSC) and dynamic mechanical thermal analysis (DMTA), the single glass transition temperature of acrylonitrile-chloropre
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Luo, Yong Huan, Zheng Lin Feng, and San Meng Wang. "Study on the Material Life of OMEGA Water-Stop." Advanced Materials Research 838-841 (November 2013): 162–65. http://dx.doi.org/10.4028/www.scientific.net/amr.838-841.162.

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In this paper, through the study on physicochemical properties of chloroprene rubber which used in immersed tube tunnel, and comprehensive analysis of the stress relaxation process of aging, together with the analysis of IR spectra of chloroprene rubber, and the accelerated aging test data, we forecast the lifetime by using WLF equation method at the room temperature, and judge that chloroprene rubber can meet with the requirements of the design life of 120 years.
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Azrem, Ahmad Azmi, N. Z. Noriman, M. N. Razif, and Mohd Arif Anuar Mohd Salleh. "The Effects of Tensile and Morphological Properties of Styrene Butadiene Rubber/Recycled Chloroprene Rubber (SBR/CRr) Blends." Advanced Materials Research 626 (December 2012): 802–6. http://dx.doi.org/10.4028/www.scientific.net/amr.626.802.

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The effects of tensile and morphological properties of styrene butadiene rubber/virgin chloroprene rubber blends (SBR/CRv) and styrene butadiene rubber/recycled chloroprene rubber blends (SBR/CRr) were investigated. The range size of CRr used in this study was 0.3 0.7 mm. Both SBR/CRv blends and SBR/CRr blends were prepared using two roll mill at room temperature with blend ratios 95/5, 85/15, 75/25, 65/35 and 50/50. It can be observed that, the tensile strength and elongation at break of SBR/CRr blends show higher value than SBR/CRv blends particularly up to 15 phr of CRr in the blends. Howev
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Wu, Wei Li, and Jiang Kun Li. "Study on Carbon Fiber Reinforced Chloroprene Rubber Composites." Advanced Materials Research 1052 (October 2014): 254–57. http://dx.doi.org/10.4028/www.scientific.net/amr.1052.254.

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Due to the low strength of ordinary rubber, poor high temperature resistance and abrasion resistance, limit their service life. In this paper, the high-performance carbon fiber (CF) was used as a reinforcement, the chloroprene rubber (CR) as the matrix, and coupling agent as a compatilizer, prepared carbon fiber/rubber composite materials. The content of carbon fiber was determined by testing the mechanical and thermal properties. The effect of coupling agent on the compatibility between rubber and carbon fiber was studied by using as a bonding agent. The compatibility of the carbon fiber and
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Salleh, Siti Z., Hanafi Ismail, and Zulkifli Ahmad. "Study on the effect of virgin and recycled chloroprene rubber (vCR and rCR) on the properties of natural rubber/chloroprene rubber (NR/CR) blends." Journal of Polymer Engineering 33, no. 9 (2013): 803–11. http://dx.doi.org/10.1515/polyeng-2013-0127.

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Abstract The effects of various ratios of virgin chloroprene rubber (vCR) and recycled chloroprene rubber (rCR) with a constant content of carbon black (CB) on the properties of natural rubber/chloroprene rubber NR/CR blends were studied. The minimum torque (ML), maximum torque (MH), scorch time, and cure time increased with the addition of both CRs and the effects of rCR were more pronounced than vCR on these properties. The tensile strength and fatigue life of the NR/vCR blends increased with an addition of vCR up to 25 phr and then decreased with a higher vCR. However, NR/rCR blends reflect
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KAMBA, Yasuhiro. "Chloroprene Rubber Formulation Technology." NIPPON GOMU KYOKAISHI 98, no. 2 (2025): 37–41. https://doi.org/10.2324/gomu.98.37.

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Azmi, Ahmad Azrem, Nik Noriman Zulkepli, Mohd Firdaus Omar, and Kamarudin Hussin. "The Effects of Different Fillers on Mechanical and Morphological Properties of SBR/CRr Blends." Applied Mechanics and Materials 754-755 (April 2015): 3–7. http://dx.doi.org/10.4028/www.scientific.net/amm.754-755.3.

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This research deals with the effects of different fillers of styrene butadiene rubber/recycled chloroprene rubber/carbon black (SBR/CRr/CB) blends and styrene butadiene rubber/recycled chloroprene rubber/calcium carbonate (SBR/CRr/CaCO3) blends on mechanical and morphological properties. The range size of CRr used in this study was 181 – 549 μm. Both SBR/CRr/CB blends and SBR/CRr/CaCO3 were prepared using a two roll mill at room temperature with blend ratios 95/5, 85/15, 75/25, 65/35 and 50/50. It can be observed that, tensile strength, Eb and rebound resilience of SBR/CRr/CB blends and SBR/CR
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Ismail, H., and H. C. Leong. "Curing characteristics and mechanical properties of natural rubber/chloroprene rubber and epoxidized natural rubber/chloroprene rubber blends." Polymer Testing 20, no. 5 (2001): 509–16. http://dx.doi.org/10.1016/s0142-9418(00)00067-2.

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Salmah, H., B. N. Azra, M. D. Yusrina, and H. Ismail. "A comparative study of polypropylene/(chloroprene rubber) and (recycled polypropylene)/(chloroprene rubber) blends." Journal of Vinyl and Additive Technology 21, no. 2 (2014): 122–27. http://dx.doi.org/10.1002/vnl.21390.

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Dissertations / Theses on the topic "Chloroprene rubber"

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伊藤, 義人, Yoshito ITOH, 晃夫 矢澤 та ін. "橋梁支承用ゴムの環境劣化特性に関する基礎的研究". 土木学会, 2005. http://hdl.handle.net/2237/8609.

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Chou, Yen-Cheng, and 周彥丞. "Preparation and Characterization of Modified Clays / Chloroprene Rubber Nanocomposites." Thesis, 2016. http://ndltd.ncl.edu.tw/handle/13115656114743738610.

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碩士<br>中原大學<br>化學研究所<br>104<br>This paper focuses on the influence of modified clay on chloroprene rubber/clay nanocomposite synthesis and properties. Different kinds of modified clay were loaded in polymer matrix, which dispersion morphology, aging, and thermo-mechanical properties of nanocomposites were investigated. Two types of different cationic exchange capacities clay (CL88, CL120) were used and modified with cocoamphodipropionate (K2) by the cationic ion exchange method. The modified and pure clay were characterized by X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT
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KUO, KUAN-CHIH, and 郭冠志. "Preparation and Characterization of the Chloroprene Rubber and Carbon Nanotubes Composites." Thesis, 2019. http://ndltd.ncl.edu.tw/handle/6hss7t.

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碩士<br>國立臺北科技大學<br>分子科學與工程系有機高分子碩士班<br>107<br>In this study,Nanocomposites(CR/CNTs) were prepared by mixing chloroprene rubbers with different ratios of carbon nanotubes(CNTs) The dynamic mechanical analysis(DMA)、tensile tests、Heat combines UV aging tests、low temperature fracture test and Mooney test were used to explore the dynamic characteristics、mechanical、agung information、fracture data and viscoelastic response of nanocomposite. The experimertial results showed that the Tg、storage modulus (E,) of ML value、tensile strength、modulus nad the low temperature fracture toughness addition of the c
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Kao, Peng-Hsiang, and 高鵬翔. "Preparation and Properties of Chloroprene rubber /Clay Nanocomposites by Melt Intercalation." Thesis, 2005. http://ndltd.ncl.edu.tw/handle/948kd5.

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碩士<br>國立臺北科技大學<br>有機高分子研究所<br>93<br>Chloroprene rubber (CR)/organic modifier/sodium montmorillonite (NA-MMT) nanocomposites were prepared by melt intercalation. The morphology and thermal properties of the nanocomposites were studied using X-ray diffraction (XRD), transmission electron microscopy (TEM), and thermogravimetric analysis (TGA) and dynamic mechanical analysis (DMA). TEM showed that the silicate layers of clay were dispersed at the nano-scale level in the CR matrix containing less than 10 % of clay. XRD investigation also indicated that the silicate layers of clay were exfoliated, D
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CHEN, TING-RUI, and 陳廷睿. "The influence of SiO2 and Carbon black on performance of Chloroprene Rubber." Thesis, 2019. http://ndltd.ncl.edu.tw/handle/yuv62z.

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碩士<br>國立臺灣科技大學<br>材料科學與工程系<br>107<br>Chloroprene rubber(CR) has a ozone resistance, weather resistance, heat resistance, chemical resistance, strong adhesion. However, Chloroprene rubber(CR) is the earliest developed synthetic rubber, widely used in the sealing products, oil washers, gaskets, oil resisting rubber hose, adhesive, conveyor belt, wetsuit, cable plastic materials..etc, play an important role in Commodity sector, industry, high-tech industry. Carbon black for the multi- function of the reinforced materiel, widely used in rubber materials, the formation of functional composite rubbe
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Books on the topic "Chloroprene rubber"

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Parker, Philip M. The 2007 Import and Export Market for Chloroprene Rubber (CR) in China. ICON Group International, Inc., 2006.

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Parker, Philip M. The World Market for Chloroprene Rubber (CR): A 2007 Global Trade Perspective. ICON Group International, Inc., 2006.

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The World Market for Chloroprene Rubber (CR): A 2004 Global Trade Perspective. Icon Group International, Inc., 2005.

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Parker, Philip M. The 2007 Import and Export Market for Chloroprene Rubber (CR) in United States. ICON Group International, Inc., 2006.

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Book chapters on the topic "Chloroprene rubber"

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Zhang, Ze Peng, Jian Hui Liu, Li Bing Liao, Cheng Bin Xiao, Rui Li, and Zhi Ping Zhang. "Preparation and Properties of Chloroprene Rubber/Vermiculite Nanocomposites." In Advances in Composite Materials and Structures. Trans Tech Publications Ltd., 2007. http://dx.doi.org/10.4028/0-87849-427-8.833.

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Xiao, Cheng Bin, Ze Peng Zhang, Jian Hui Liu, Rui Li, and Zhi Ping Zhang. "Preparation and Properties of Chloroprene Rubber/Montmorillonite Nanocomposites." In Advances in Composite Materials and Structures. Trans Tech Publications Ltd., 2007. http://dx.doi.org/10.4028/0-87849-427-8.865.

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Kapgate, Bharat P., and Chayan Das. "Electronic Applications of Chloroprene Rubber and Its Composites." In Flexible and Stretchable Electronic Composites. Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-23663-6_10.

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Hayeemasae, Nabil, Siti Zuliana Salleh, and Hanafi Ismail. "Chloroprene Rubber Waste as Blend Component with Natural Rubber, Epoxidized Natural Rubber, and Styrene Butadiene Rubber." In Recycled Polymer Blends and Composites. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-37046-5_13.

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Hayeemasae, Nabil, Siti Zuliana Salleh, and Hanafi Ismail. "Effect of Metal Oxide Content on the Mechanical and Thermal Properties of Natural Rubber/Recycled Chloroprene Rubber Blends." In Recycled Polymer Blends and Composites. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-37046-5_12.

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Barlow, Fred W. "Elastomers: Polybutadiene and Chloroprene Rubber." In Rubber compounding. CRC Press, 2018. http://dx.doi.org/10.1201/9780203740385-4.

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"A local criterion for fatigue crack initiation on chloroprene rubber." In Constitutive Models for Rubber IV, edited by F. Lacroix, S. Méo, G. Berton, F. Chalon, A. Tougui, and N. Ranganathan. Routledge, 2017. http://dx.doi.org/10.1201/9781315140216-13.

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Conference papers on the topic "Chloroprene rubber"

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Georgescu, Mihai, Maria Sonmez, Laurentia Alexandrescu, Mihaela Nituica, Maria Daniela Stelescu, and Dana Gurau. "Designing and obtaining wood waste and chloroprene rubber-based composites." In The 8th International Conference on Advanced Materials and Systems. INCDTP - Leather and Footwear Research Institute (ICPI), Bucharest, Romania, 2020. http://dx.doi.org/10.24264/icams-2020.iv.7.

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The aim of this paper is to obtain and study the properties of wood waste reinforced elastomer composites with various fibre contents (10-50 wt%). The composite is based on chloroprene rubber, and added post-consumer recycled wood particles, with dimensions of 500 nm eco-reinforcing material, and active fillers, plasticizers, vulcanizing agents, antioxidants. In order to enhance the compatibility and their level of interaction, the wood waste was finely ground (cryogenic mill) and functionalized with potassium oleate. Wood waste acts as a filling material which leads to the biodegradability of
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Georgescu, Mihai, Maria Sönmez, Laurenţia Alexandrescu, et al. "Low Carbon Footprint Composite Based on Chloroprene Rubber and Elastomer Waste." In The 9th International Conference on Advanced Materials and Systems. INCDTP - Leather and Footwear Research Institute (ICPI), Bucharest, Romania, 2022. http://dx.doi.org/10.24264/icams-2022.iv.6.

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The aim of the paper consists in the treatment of post-consumer and technological waste of elastomers and plastomers, according to the 4R principle (reduction, reuse, recycling and recovery) by transforming them into raw materials with added value and integrating them into different industries. This will lead to the developing of new processing concepts regarding obtaining new biodegradable composite materials, with various waste contents (10-50 wt%). The composite is based on chloroprene rubber, and added post-consumer recycled rubber particles, with size of 45 mesh, eco-reinforcing material,
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Hayashi, Y., E. Takagi, S. Uchida, N. Ito, and M. Umeda. "A Study on Improvement in Durability of Chloroprene Rubber C.V. Joint Boot Seals." In International Congress & Exposition. SAE International, 1990. http://dx.doi.org/10.4271/900339.

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Sarkar, Mousumi De, Takashi Sunada, Seiya Tomizawa, and Atsunori Kondo. "Effect of Curing Systems and Carbon Black on Properties of Evolmer®: A New Copolymer of Chloroprene and Acrylonitrile." In 200th Fall Technical Meeting of the Rubber Division, American Chemical Society 2021. Rubber Division, American Chemical Society, 2021. http://dx.doi.org/10.52202/064426-0038.

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Hall, T., N. Esmen, M. Phillips, and P. Jones. "27. Chemical Process Based Reconstruction of Exposures: Chloroprene Exposure During Boil-Over in Open Kettle Synthetic Rubber Production." In AIHce 2002. AIHA, 2002. http://dx.doi.org/10.3320/1.2766212.

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Li, Long, Liucheng Hao, Congdong She, et al. "Study on the Compatibility of Chloroprene Rubber and Environment-friendly Insulating Gas C5F10O." In 2021 International Conference on Advanced Electrical Equipment and Reliable Operation (AEERO). IEEE, 2021. http://dx.doi.org/10.1109/aeero52475.2021.9708315.

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