[1]
Lan Z, Kaixun C. Application and development of supercritical CO2 technology. Petrochemical Technology 2012; 5: 501-9.
[5]
Le Moigne N, Sauceau M, Chauvet M, Bénézet JC, Fages J. Microcellular Foaming of (Nano) Biocomposites by Continuous Extrusion Assisted by Supercritical CO2. In: Ayoub A, Lucia L, Eds.. Biomass Extrusion and Reaction Technologies: Principles to Practices and Future Potential. American Chemical Society Publications 2018; pp. 171-88.
[16]
Odegard GM, Clancy TC, Gates TS. Modeling of the Mechanical Properties of Nanoparticle/Polymer Composites.In: Abdi A, Garg M, Eds.. Characterization of Nanocomposites. Taylor & Francis Group 2017; pp. 1-24.
[17]
Irving PE, Soutis C. Polymer Composites in the Aerospace Industry. 2nd Ed. Woodhead Publishing: Sawston, Cambridge 2019.
[27]
Jingli L, Shikai L, Yansong S, Haibo Y, Tao L. Research process of microcellular foams prepared by supercritical fluid technique. Eng Plast Appl 2012; 40(3): 109-13.
[29]
Zhiyun Y. Study on technology of polylactide continuous extrusion foaming with supercritical CO2 Taiyuan University of Technology,
Taiyuan, China, May, 2014.
[30]
Jian Y, Jiasong H. Fundamental issues for microfoaming polymers with supercritical CO2 technology. Sci China Chem 2010; 40(1): 1-15.
[36]
Demirtaş E, Özkan H, Nofar M. Continuous foam extrusion of High Impact Polystyrene (HIPS): Effects of processing parameters and blowing agent type and content. AIP Conf Proc 2019; 2055(1) 060011
[42]
Gao CY, Leng XJ. A supercritical fluid-assisted polymer molding
foaming device. CN203282653 (2013)
[43]
Peng XF, Yan JP, Zhou NQ, Cao XW, Wen JS, Wen SP. A supercritical fluid microporous plastic extrusion molding device
and method. CN104085073 (2014).
[44]
Zhang XH. A supercritical fluid foaming device with a quicksealing
opening device. CN108453988 (2018).
[45]
Chen ZR, Bao JC, Liu ZF. A device for trapping and recycling
supercritical fluid in foaming process by molding. CN203472039 (2014).
[46]
Savioz G. Mixing and foaming device. US20180368611 (2018).
[47]
Erban J. Foaming device. US9687795 (2017).
[48]
Zhang ZX, Wen SB. A horizontal supercritical fluid foaming
equipment. CN108481650 (2018).
[49]
Ma SY. Supercritical carbon dioxide foaming equipment for extruded
panels. CN104175445 (2014).
[50]
Savioz G. Foaming device. US20180360259 (2018).
[51]
Zhu JQ, Wu QS, Luo SY. A polymer foaming device and a
method of polymer foaming using the device. CN108215044 (2018).
[52]
Chen YR, Peng SP, Yeh SK, Chu CC, Guo WJ. Preparation of micro and nanocellular TPU-graphene nanocomposite foam by supercritical CO2 foaming. SPE ANTEC 2015; 2015: 2846-50.
[54]
Kang TW, Peng SP, Yeh SK, Chu CC, Rwei SP, Guo WJ. Preparation of micro and nanocellular TPU foam by supercritical CO2 foaming-Effect of TPU hardness. Society of Plastics Engineers -
13th International Conference on Foam Materials and Technology FOAMS; Japan, Kyoto. August, 2015.
[58]
Lee L, Yang FR, Hsieh SF, Hsieh JH. Manufacturing method
of an ecofriendly foaming package material. US9056423 (2015).
[59]
Jeong C, Jeong D, Kim G. Foam molding method, foaming
agent and foamed plastic. EP2759389 (2015).
[60]
Chun JP, Kim HS, Choi SY, Kim YJ, Yun KC, Kim MK. Resin composition for foaming containing biodegradable
resin, and foam manufactured therefrom. US9200128 (2015).
[61]
Haraguchi K, Ohta H. Expandable polylactic acid resin particles,
expanded polylactic acid resin beads and molded article obtained
from expanded polylactic acid resin beads. US7863343 (2011).
[62]
Vannini C. Polylactic acid-based degradable foams and process for
their production. EP1528079 (2005).
[63]
Jiang XL. Preparation of polymer microporous foaming materials
by supercritical molding. CN102167840 (2011).
[64]
Satoshi Y, Atsushi Y, Hideto G. Process and device for producing
foamed molded object. EP3213898 (2017).
[65]
Xiaohai Z, Wentao Z. Coloured TPU foam material, preparation
method and use thereof, as well as method for preparing shaped
body, sheet and shoe material by using same. US20160311993 (2016).
[66]
Schlummer C. Apparatus and method for the introduction of a
foaming agent into a polymer melt. US8246237 (2012).
[67]
Tokiwa T, Gomibuchi M. Method for producing polypropylenebased
resin foamed blow-molded article. US9217067 (2015).
[68]
Lin C. Polypropylene foams and processes of making. EP3290467 (2018).
[69]
Huang XD, Peng YH. A supercritical fluid foamed polyolefin
material and its preparation method. CN1061468874 (2016).
[70]
Lars B, Lan B, Rene K, Jan V, Anja W. Process for dyeing
and foam thermoplastic polyurethane. WO2018091446 (2018).
[71]
Huang B, Wang R, Zhang S, Zhao W, Wang G. Extruded
foamed thermoplastic polyurethane elastomer particle and preparation
method therefor. EP3109281 (2015).
[72]
Kang CW, Huang CZ, Son JH. Foam sheet using cross-linked
polylactic acid, and preparation method thereof. US9512265 (2016).
[73]
Luo Z, Liu F. Method for physically foaming a polymer material
and foamed article. US20200002499 (2020).
[74]
Yu JB, Tang Y. Method for preparing thermoplastic polymer
foam beads. EP3508521 (2019).
[75]
Yu PF. Modified polyphenylene ether foam bead, preparation
method and application thereof. WO2019233017 (2019).
[76]
Xia L, Junsong L, Qiuyue J, Yuan Z, Guangxian L. Crystal
polymer foaming particle molding body and preparation method
thereof. CN107556513 (2018).
[77]
Yadon H, Chunling X, Yun Z. Semi-crystalline polymer in-situ
foaming mould shaping method. CN109551701 (2019).
[78]
Yanhu X. Supercritical fluid foaming fluorine-containing polymer
material and preparation method thereof. CN109082049 (2018).