Thermo-Mechanical Behavior of Novel EPDM Foams Containing a Phase Change Material for Thermal Energy Storage Applications

被引:8
|
作者
Bianchi, Marica [1 ]
Valentini, Francesco [1 ]
Fredi, Giulia [1 ]
Dorigato, Andrea [1 ]
Pegoretti, Alessandro [1 ]
机构
[1] Univ Trento, Dept Ind Engn, INSTM Res Unit, Via Sommar 9, I-38123 Trento, Italy
基金
英国科研创新办公室;
关键词
EPDM; rubber; foams; thermal energy storage; PCM; paraffin; PARAFFIN; CONDUCTIVITY; TEMPERATURE; MORPHOLOGY; FIBER;
D O I
10.3390/polym14194058
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
In this paper Ethylene Propylene Diene Monomer rubber (EPDM) foams were filled with different amounts of paraffin, a common phase change material (PCM) having a melting temperature at about 70 degrees C, to develop novel rubber foams with thermal energy storage (TES) capabilities. Samples were prepared by melt compounding and hot pressing, and the effects of three foaming methods were investigated. In particular, two series of samples were produced through conventional foaming techniques, involving physical (Micropearl (R) F82, MP, Lehvoss Italia s.r.l. Saronno, Italia) and chemical (Hostatron (R) P0168, H, Clariant GmbH, Ahrensburg, Germany) blowing agents, while the salt leaching method was adopted to produce another series of foams. Scanning electron microscopy (SEM) and density measurements showed that MP led to the formation of a closed-cell porosity, while a mixed closed-cell/open-cell morphology was detected for the H foamed samples. On the other hand, foams produced through salt leaching were mainly characterized by an open-cell porosity. The qualitative analysis of paraffin leakage revealed that at 90 degrees C only the foams produced through salt leaching suffered from significant PCM leakage. Consequently, the thermo-mechanical properties were investigated only in samples produced with H and MP. Differential Scanning Calorimetry (DSC) analysis revealed that EPDM/paraffin foams were endowed by good TES properties, especially at higher PCM contents (up to 145 J/g with a paraffin amount of 60 wt%). Tensile and compressive tests demonstrated the addition of the PCM increased the stiffness at 25 degrees C, while the opposite effect was observed above the melting temperature of paraffin. These results suggest that the EPDM foams produced with H and MP show an interesting potential for thermal management of electronic devices.
引用
收藏
页数:21
相关论文
共 50 条
  • [41] Effects of carbon nanotubes additive on thermal conductivity and thermal energy storage properties of a novel composite phase change material
    Sari, Ahmet
    Bicer, Alper
    Hekimoglu, Gokhan
    JOURNAL OF COMPOSITE MATERIALS, 2019, 53 (21) : 2967 - 2980
  • [42] A review on microencapsulation, thermal energy storage applications, thermal conductivity and modification of polymeric phase change material for thermal energy storage applications
    Yadav, Mukesh
    Pasarkar, Neeraj
    Naikwadi, Amol
    Mahanwar, Prakash
    POLYMER BULLETIN, 2023, 80 (06) : 5897 - 5927
  • [43] A review on microencapsulation, thermal energy storage applications, thermal conductivity and modification of polymeric phase change material for thermal energy storage applications
    Mukesh Yadav
    Neeraj Pasarkar
    Amol Naikwadi
    Prakash Mahanwar
    Polymer Bulletin, 2023, 80 : 5897 - 5927
  • [44] Experimental investigation of energy storage properties and thermal conductivity of a novel organic phase change material/MXene as A new class of nanocomposites
    Aslfattahi, Navid
    Saidur, R.
    Arifutzzaman, A.
    Sadri, R.
    Bimbo, Nuno
    Sabri, Mohd Faizul Mohd
    Maughan, Philip A.
    Bouscarrat, Luc
    Dawson, Richard J.
    Said, Suhana Mohd
    Goh, Boon Tong
    Sidik, Nor Azwadi Che
    JOURNAL OF ENERGY STORAGE, 2020, 27
  • [45] Heat transfer characteristics of ceramic foam/molten salt composite phase change material (CPCM) for medium-temperature thermal energy storage
    Zhang, Shuai
    Yao, Yuanpeng
    Jin, Yingai
    Shang, Zhen
    Yan, Yuying
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2022, 196
  • [46] Phase Change Materials for Applications in Building Thermal Energy Storage (Review)
    Habib, Md Ahsan
    Rahman, Muhammad Mustafizur
    THERMAL ENGINEERING, 2024, 71 (08) : 649 - 663
  • [47] Thermal and morphological study of paraffin/SEBS/expanded graphite composite phase change material for thermal energy storage
    Aulakh, Jaspreet Singh
    Joshi, Deepika P.
    ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS, 2022, 44 (01) : 986 - 1003
  • [48] Thermal properties and crystallization kinetics of pentaglycerine/graphene nanoplatelets composite phase change material for thermal energy storage
    Zhang, Nan
    Jing, Yaoge
    Song, Yanlin
    Du, Yanxia
    Yuan, Yanping
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2020, 44 (01) : 448 - 459
  • [49] Investigating thermal properties of using nano-tubular ZnO powder in paraffin as phase change material composite for thermal energy storage
    Sahan, Nurten
    Paksoy, Halime
    COMPOSITES PART B-ENGINEERING, 2017, 126 : 88 - 93
  • [50] Experimental study on the thermal performance of graphene and exfoliated graphite sheet for thermal energy storage phase change material
    Liu, Xia
    Rao, Zhonghao
    THERMOCHIMICA ACTA, 2017, 647 : 15 - 21