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Articles

Studies on the adhesive properties of neoprene–phenolic blends

Pages 181-193 | Published online: 02 Apr 2012

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Read on this site (5)

Shybi A. A, Siby Varghese, Neethu Varghese & Sabu Thomas. (2022) Solvent-based polychloroprene contact adhesives: effect of tackifier. Journal of Adhesion Science and Technology 36:1, pages 21-34.
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Fariz Aneeq, Muhammad Shahid, Mohsin Saleem, Muhammad Awais, Muhammad Shoaib Butt & Malik Adeel Umer. (2021) Enhancement in bonding strength and ageing resistance of polychloroprene solvent-base adhesives through graft copolymerization. Journal of Adhesion Science and Technology 35:16, pages 1752-1763.
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Kai Zhang, Hui-fang Shen, Xin-ya Zhang, Ren-hua Lan & Huan-qin Chen. (2009) Preparation and Properties of a Waterborne Contact Adhesive Based on Polychloroprene Latex and Styrene-Acrylate Emulsion Blend. Journal of Adhesion Science and Technology 23:1, pages 163-175.
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Lity Alen Varghese & Eby Thomas Thachil. (2004) Adhesive properties of blends of phenol/cardanol–formaldehyde copolymer resin with polychloroprene rubber. Journal of Adhesion Science and Technology 18:11, pages 1217-1224.
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Articles from other publishers (15)

D. A. Aronovich & A. P. Petrova. (2023) Modern Phenolic Adhesives for Aviation and Engineering. Part 1. The Effect of Modifying Additives. Polymer Science, Series D 16:3, pages 777-792.
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H. Arumugam, S. Krishnan, M. Chavali & A. Muthukaruppan. (2018) Cardanol based benzoxazine blends and bio-silica reinforced composites: thermal and dielectric properties. New Journal of Chemistry 42:6, pages 4067-4080.
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Linfeng Wang, Wenshi Ma, Dingfeng Lei & Dongqiao Zhang. (2015) Preparation and characterization of para-tertiary-butylphenol formaldehyde resins using dual catalytic-extraction method. Progress in Organic Coatings 87, pages 1-9.
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B. T. Poh, J. Lamaming & G. S. Tay. (2014) Adhesion Properties of Acrylonitrile-Butadiene Rubber/Standard Malaysian Rubber Blend Based Pressure-Sensitive Adhesive. Journal of Coatings 2014, pages 1-6.
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C. Aydogan, B. Kiskan, S. O. Hacioglu, L. Toppare & Y. Yagci. (2014) Electrochemical manipulation of adhesion strength of polybenzoxazines on metal surfaces: from strong adhesion to dismantling. RSC Advances 4:52, pages 27545.
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Bimlesh Lochab, Swapnil Shukla & Indra K. Varma. (2014) Naturally occurring phenolic sources: monomers and polymers. RSC Adv. 4:42, pages 21712-21752.
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Bimlesh Lochab, Indra K. Varma & Jayashree Bijwe. (2011) Cardanol-based bisbenzoxazines. Journal of Thermal Analysis and Calorimetry 107:2, pages 661-668.
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M. Alexander & E.T. Thachil. (2010) The Effectiveness of Cardanol as Plasticiser, Activator, and Antioxidant for Natural Rubber Processing. Progress in Rubber, Plastics and Recycling Technology 26:3, pages 107-124.
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Wirasak Smitthipong, Michel Nardin, Jacques Schultz & Krisda Suchiva. (2009) Adhesion and self-adhesion of immiscible rubber blends. International Journal of Adhesion and Adhesives 29:3, pages 253-258.
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Mary Alexander, Beena T. Abraham & Eby Thomas Thachil. (2009) Studies on the Use of Cardanol as Plasticizer for Silica-Filled Nitrile Rubber. Progress in Rubber, Plastics and Recycling Technology 25:1, pages 75-89.
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M. Virtudes Navarro‐Bañón, M. Mercedes Pastor‐Blas & José Miguel Martín‐Martínez. (2008) Interactions at the interface between thermoplastic rubber and polychloroprene adhesive. Surface and Interface Analysis 40:2, pages 107-120.
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Virginija Jankauskaitė, Kristina Žukienė & Stasė Petraitienė. (2007) Quantitative description of polychloroprene and piperylene–styrene blend films surface morphology. Polymer Engineering & Science 47:6, pages 824-829.
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Mary Alexander, Philip Kurian & Eby Thomas Thachil. (2007) Effectiveness of Cardanol as Plasticizer for Silica-Filled Natural Rubber. Progress in Rubber, Plastics and Recycling Technology 23:1, pages 43-55.
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Mary Alexander & Eby Thomas Thachil. (2006) A comparative study of cardanol and aromatic oil as plasticizers for carbon‐black‐filled natural rubber. Journal of Applied Polymer Science 102:5, pages 4835-4841.
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Kattimuttathu I. Suresh & Vadi S. Kishanprasad. (2005) Synthesis, Structure, and Properties of Novel Polyols from Cardanol and Developed Polyurethanes. Industrial & Engineering Chemistry Research 44:13, pages 4504-4512.
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