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V23074-A1001-A402 12V 4PIN PA66-GF25

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Further enhances high-end systems by reducing profile depths and frame sizes, saving on raw materials while keeping Uf-values unchanged (or enabling a reduction in Uf-values while maintaining existing profile dimensions) Tao YL. Main methods for post-treatment of injection molding products. Plastic manufacturing. 2012;07:68–72. Shan GF, Yang W, Tang XG, et al. Non-isothermal crystallization kinetics of PA6. Synth Resins Plast. 2010;27(6):53–6. https://doi.org/10.1177/096739110701500706. Avrami M. Kinetics of phase change I General Theory. J Chem Phys. 1939;7(12):1103–12. https://doi.org/10.1063/1.1750380. Liu Y, Wang Q. Melamine cyanurate-microencapsulated red phosphorus flame retardant unreinforced and glass fiber reinforced polyamide 66. Polym Degrad Stabil. 2006;91(12):3103–9. https://doi.org/10.1016/j.polymdegradstab.2006.07.026.

Avrami M. Kinetics of phase change. II transformation-time relations for random distribution of nuclei. J Chem Phys. 1940;8(2):212–24. https://doi.org/10.1063/1.1750631. Jeziorny A. Parameters characterizing the kinetics of the non-isothermal crystallization of poly(ethylene terephthalate) determined by d.s.c. Polymer. 1978;19:1142–4. https://doi.org/10.1515/polyeng-2013-0250. Highly innovative, this industry-leading material offers high-precision processing and mechanical stability, keeping all the positive properties of PA 66 GF25, dry impact resistant with a reduced Lambda value of 0.21 W/(m·K) Mo ZS. A method for the non-isothermal crystallization kinetics of polymers. Acta Polym Sin. 2008;07:26–31. https://doi.org/10.1002/pc.22935. Avrami M. Kinetics of phase change. III granulation, phase change, and microstructure. J Chem Phys. 1941;9(2):177–84. https://doi.org/10.1063/1.1750872.Mouhmid B, Imad A, Benseddiq N, et al. A study of the mechanical behaviour of a glass fibre reinforced polyamide 6,6: Experimental investigation. Polym Test. 2006;25(4):544–52. https://doi.org/10.1016/j.polymertesting.2006.03.008. Geng T, Guo YC, Duan RY, et al. Theory and research progress of warping deformation of injection parts. Henan Sci Technol. 2013;21:57–60. Department of Mechanical and Electrical Engineering, Shandong University of Science and Technology, Qingdao, 266590, China Liu T, Mo Z, Wang S, et al. Nonisothermal melt and cold crystallization kinetics of poly(aryl ether ether ketone ketone). Polym Eng Sci. 1997;37(3):568–75. https://doi.org/10.1002/pen.11700. Zuo DP, Zhang YH, Rui YL. Study on warp deformation of glass fiber reinforced PA66 products. Appl Eng Plast. 2005;33(12):23–5.

Cao HS, Zhao ZZ. Plastic forming process and mold design. Beijing: China machine press; 1993. p. 392–4. Kissinger HE. Variation of peak temperature with heating rate in differential thermal analysis. J Res Natl Bur Stand. 1956;57:217–21. https://doi.org/10.6028/jres.057.026.Corentin H, Peter D, Pierre-Yves LeGac, et al. Influence of water on the short and long term mechanical behaviour of polyamide 6 (nylon) fibres and yarns. Multiscale Multidiscip Model Experiments Des. 2018;1(4):317–27. https://doi.org/10.1007/s41939-018-0036-6.

Jou WS, Chen KN, Chao DY, et al. Flame retardant and dielectric properties of glass fibre reinforced nylon-66 filled with red phosphorous. Polym Degrad Stabil. 2001;74(2):239–45. https://doi.org/10.1016/S0141-3910(01)00109-4. Meng Q, Gu Y, Luo L, et al. Annealing effect on crystalline structure and mechanical properties in long glass fiber reinforced polyamide 66. J Appl Polym Sci. 2017. https://doi.org/10.1002/app.44832. Zhang KX, Wang QK. Research on heat treatment and application of nylon-6 structural products. Appl Eng Plast. 1995;01:23–8.

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