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1.
蔡迪  李静 《化工学报》2020,71(10):4826-4835
向正十八烷中加入高导热填充物形成复合相变材料(PCM),可以很好地提升其导热性能,同时,为了保证符合相变材料的高热导率、分散性和再循环可靠性,利用硬脂醇修饰氧化石墨烯(GO),形成改性石墨烯(MG)与正十八烷的复合相变材料。分别制备了改性石墨烯质量分数为0、1%、2%、3%、4%(质量)的改性石墨烯/正十八烷复合相变材料,并经过扫描电镜测试、红外光谱分析、差示扫描量热实验及导热分析等测试对其形貌结构及热物性进行表征和研究。实验表明制备的改性石墨烯/正十八烷复合相变材料具有很好的分散性;当纳米石墨烯片的质量分数达到4%时,复合相变材料的热导率相对于纯正十八烷高出了131.9%。  相似文献   

2.
选用纳米金属Cu和碳素材料石墨烯纳米片(GnPs)为改性剂分别添加至十四酸(MA)中,制备出Cu质量分数为1%、2%、3%和4%的Cu/MA混合相变蓄热材料及GnPs质量分数为1%、2%和3%的GnPs/MA混合相变蓄热材料,并对混合相变材料性能进行表征。结果表明:Cu/MA固态和液态热导率随Cu质量分数增加呈线性提高,1%(质量)GnPs/MA固态热导率较纯MA显著提高101.51%,随GnPs质量分数增加,热导率增幅减缓;FT-IR谱图表明Cu与MA及GnPs与MA间的混合均为物理作用;DSC结果显示添加Cu或GnPs可降低MA的过冷度和相变潜热,且随质量分数增加,相变潜热逐渐降低;4%(质量)Cu/MA和3%(质量)GnPs/MA放热时间相比于纯MA分别减少了23.4%和38.7%;4%(质量)Cu/MA和3%(质量)GnPs/MA在经历300次快速热循环试验后,晶体结构和相变温度基本保持不变,相变潜热分别降至168 J·g-1和181 J·g-1左右,仍满足蓄放热要求,两种材料均具有良好的热循环稳定性。  相似文献   

3.
吴韶飞  闫霆  蒯子函  潘卫国 《化工学报》2019,70(9):3553-3564
采用棕榈酸(palmitic acid, PA)作为相变材料,膨胀石墨(expanded graphite, EG)作为添加基质,通过“熔融共混-凝固定形”工艺制备了PA/EG定形复合相变材料以提高相变材料的综合性能。预测并制备了21种不同配比的定形复合相变材料,对其形貌结构和孔隙率进行了微观表征与理论分析,并在此基础上对样品进行了传热性能分析、热物性测试、热稳定性研究和储热性能分析。SEM形貌分析显示所使用工艺可使棕榈酸能较好地被吸附于膨胀石墨的孔隙结构并使之均匀分布;DSC测试结果表明定形复合相变材料[70%(质量) PA]的焓值为193.01 J/g,纯PA的焓值为275.35 J/g,对应于熔点分别为61.08℃和59.53℃。EG的添加,可有效提高相变材料的热导率。当样品密度为900 kg/m3,EG含量为30%(质量)时,定形复合相变材料的热导率为14.09 W/(m·K),相比于纯PA[0.162 W/(m·K)]提高约87倍;对制备的样品进行50次循环稳定性实验,EG含量为24%(质量)和30%(质量)的样品形态均未出现明显变化,表现出良好的充放热循环稳定性。  相似文献   

4.
相变储热技术是解决热量在时空上分配不平衡问题的有效手段之一,研制高性能的复合相变材料(phase change material, PCM)成为当前研究者关注的重点。硬脂醇(stearyl alcohol, SAL)等有机PCM目前主要存在热导率偏低以及循环稳定性较差等问题而限制了实际应用。以SAL作为PCM,膨胀石墨(expanded graphite, EG)为高导热多孔基质,采用吸附定形工艺制备了16种SAL/EG复合PCMs[EG含量为7%、14%、21%、28%(质量);样品密度为700kg/m3、800kg/m3、900kg/m3、1000kg/m3]。对复合PCMs样品的微观结构、储热能力、导热性能、循环稳定性及充放热性能进行研究与分析。结果表明:SAL完全填充于EG的多孔网络。当样品密度为900kg/m3,EG质量分数为28%的水平热导率最高,其值为28.58W/(m ? K),相比于纯SAL[0.38W/(m ? K)]提高了74倍,该值大约是相对应垂直热导率[5.99W/(m ? K)]的4.8倍。另外在构建的充放热性能试验台上研究了样品中心位置的储/放热性能,结果显示样品密度为900kg/m3,EG质量分数为28%的样品充放热速率最大,固-液潜热吸热和放热阶段所经历的时间分别为53min和20min。与此同时验证了样品的导热性能和熔化-凝固特性,说明SAL/EG复合PCMs具有稳定可靠的储/放热性能。  相似文献   

5.
十二醇-癸酸-纳米粒子复合相变材料传热性能   总被引:4,自引:3,他引:1       下载免费PDF全文
黄艳  章学来 《化工学报》2016,67(6):2271-2276
针对有机相变材料热导率低的共性,以质量比为58.47:41.53的脂肪烃类低共熔有机物十二醇(DA)-癸酸(CA)为基液,添加纳米粒子MWNT、Cu、Al2O3及分散剂SDBS制备出纳米复合相变材料,从纳米粒子种类、添加浓度及超声时间方面研究其对复合有机相变材料热物性的影响。实验发现MWNT、Cu、Al2O3的添加都可以不同程度上提高DA-CA的热导率。当超声时间为50min、纳米粒子浓度均为0.1g·L-1时3种纳米复合材料的热导率大小依次是:MWNT>Al2O3>Cu。最优例:超声分散时间90min,DA-CA+MWNT(0.1g·L-1)+SDBS(0.2g·L-1)的热导率最大,为0.3602W·m-1·K-1,相较DA-CA提高了20.5%,在不影响基液热物性的基础上具有良好的热稳定性。  相似文献   

6.
丁晴  方昕  闫晨  范利武  俞自涛 《化工学报》2015,66(6):2023-2030
为了探究二维纳米材料的尺寸对复合相变材料储热特性的影响, 将膨胀石墨分别超声振荡10、30和90 min, 得到3种不同尺寸的石墨纳米片:GNS-10、GNS-30、GNS-90, 添加到十六醇中制备出纳米复合相变材料。利用SEM、XRD和Hot Disk等方法对其微观结构和性能进行表征和测试的同时, 对比研究了Maxwell、Bruggeman及Nielsen模型对热导率的计算结果。结果显示, 石墨纳米片尺寸越大, 对复合相变材料热导率的提升幅度越大。当GNS-10添加量为10%(质量分数)时, 热导率提升了约517%。Nielsen模型在形状因子A取100~180时可以较好地预测实验值。与大幅增长的热导率相比, 复合相变材料相变温度、相变焓的变化可忽略不计。此外, 石墨纳米片的加入明显缩短了储热材料的凝固速率, 有效热导率的提高是产生这种效果的主要原因。  相似文献   

7.
针对正十八烷相变易泄漏的问题,采用烯烃嵌段共聚物(olefin block copolymer,OBC)作为封装结构,制备复合定型相变材料。并通过添加膨胀石墨(expanded graphite,EG),改善其热导率低的问题。研究结果表明,当OBC的质量分数为20%时,复合相变材料未发现明显泄漏,定型效果较好,此时复合相变材料的相变焓为166.87 J/g,相较纯十八烷(227.40 J/g)下降26.62%。针对添加有不同质量分数EG的复合相变材料,其热导率随EG含量的增加而增大。其中当EG质量分数为5%时,复合相变材料热导率为4.179 W/(m?K),较纯相变材料热导率[0.24 W/(m?K)提高了约16倍,即EG能够有效提高复合相变材料的导热性能。此外,5%含量下的复合相变材料相变焓约为149.54 J/g,且在经历50次循环后,相变温度和相变焓均未有明显变化,即制备的复合相变材料具有较好的热稳定性。因此,该复合相变材料在建筑节能方面具有应用潜力。  相似文献   

8.
以氧化石墨烯(GO),二十烷(Eicosan)为原料,先采用胶体团聚法制备还原-氧化石墨烯气凝胶,再通过自扩散获得了还原氧化石墨烯气凝胶/二十烷复合相变材料,研究了复合材料与性能的关系。采用热重和差示量热扫描仪测试了二十烷和复合材料的热性能,确认了二十烷质量分数对复合材料的焓值的关系以及相变循环次数对材料稳定性的影响。结果表明:复合材料的焓值与二十烷的质量分数成正比;经过50次相变循环后,PCM4仍然保持稳定性。导热性能分析表明, 还原氧化石墨烯气凝胶可以改善二十烷的热导率。此外,通过太阳光模拟测试,计算出复合材料的光热转换效率为55%。  相似文献   

9.
This work is focused on the preparation, characterization, and determination of thermal energy storage properties of poly(n‐butyl methacrylate) (PnBMA)/fatty acid composites as form‐stable phase change material (PCM). In the composite materials, the fatty acids act as latent heat storage material whereas PnBMA serves as supporting material, which prevents the leakage of the melted fatty acids. The maximum encapsulation ratio for all fatty acids was found to be 40 wt%. The composites that do not allow PCM leakage in melted state were identified as form‐stable PCMs. The compatibility of fatty acids with PnBMA is investigated by optical microscopy (OM) and Fourier Transform Infrared (FT‐IR) spectroscopy. Thermal properties and thermal reliability of the form‐stable composite PCMs were determined using differential scanning calorimetry (DSC). DSC analysis revealed that the form‐stable composite PCMs had melting temperatures between 29.62°C and 53.73°C and latent heat values between 67.23 J/g and 87.34 J/g. Thermal stability of the composite PCMs was studied by thermal gravimetric (TG) analysis and the results indicated that the form‐stable PCMs had good thermal stability. In addition, thermal cycling test showed that the composite PCMs had good thermal reliability with respect to the changes in their thermal properties after accelerated 5,000 thermal cycling. On the basis of all results, it was also concluded that the prepared form‐stable composite PCMs had important potential for many thermal energy storage applications such as solar space heating of buildings by using wallboard, plasterboard or floors integrated with PCM. POLYM. COMPOS., 2012. © 2011 Society of Plastics Engineers  相似文献   

10.
空调用纳米有机复合相变蓄冷材料制备与热物性   总被引:2,自引:2,他引:0       下载免费PDF全文
武卫东  唐恒博  苗朋柯  张华 《化工学报》2015,66(3):1208-1214
针对目前空调用有机相变蓄冷材料热导率低的问题,将具有高导热性的纳米材料(MWNTs、Al2O3、Fe2O3)添加到所开发制备的二元复合有机蓄冷材料(质量比73.7:26.3的辛酸/肉豆蔻醇)中,从纳米材料的种类和浓度两方面,研究其对复合有机蓄冷材料热物性的影响。实验发现:对于MWNTs、Al2O3、Fe2O3 3种纳米材料,当其质量分数分别小于0.3%、0.4%、0.8%时,对应纳米复合材料热导率随纳米材料浓度的增加幅度较为明显;与原二元复合有机相变蓄冷材料相比,添加0.3%的MWNTs,热导率提高26.3%;添加0.4%的Al2O3,热导率提高13.1%;添加0.8%的Fe2O3,热导率提高32.1%;当在一定纳米材料质量分数(如0.7%)下,加入纳米颗粒的复合材料导热性能效果依次为Fe2O3>MWNTs>Al2O3。不同纳米粒子的添加对原蓄冷材料的相变温度和相变潜热影响很小,相变温度变化波动最大为0.4℃,相变潜热变化波动范围最大为1.4%。  相似文献   

11.
武卫东  唐恒博  苗朋柯  张华 《化工进展》2015,34(5):1371-1376
纳米材料在有机相变蓄能材料中的分散稳定性对其整体性能的保持具有决定性作用.本文将具有高导热性的纳米材料(MWNTs、Al2O3、Fe2O3)添加到热导率较低的空调用有机相变材料(质量比为73.7:26.3的辛酸/肉豆蔻醇)中,制备了纳米复合蓄冷材料;利用测量热导率的高低来间接反映分散稳定性的好坏,研究了分散剂种类、分散剂浓度和超声分散时间对纳米复合有机相变材料分散稳定性的影响.实验证明:分散剂十二烷基苯磺酸钠(SDBS)对纳米复合材料的分散稳定效果最好;当添加的分散剂SDBS与不同纳米材料MWNTs、Al2O3和Fe2O3质量比分别为2:1、3:1和3:1时,所对应的分散稳定性能最好;超声分散时间为90min时纳米复合材料的分散稳定性能最优.为获得性能良好、稳定的纳米有机复合材料提供了新的评价方法和指导.  相似文献   

12.
贾蒲悦  武卫东  王益聪  张兵 《化工学报》2019,70(7):2758-2765
针对低温冷链物流应用场合,提出一种由三羟甲基丙烷(TMP)、氯化铵(NH4Cl)和水组成的新型有机-无机复合相变蓄冷材料。首先对该复合材料的不同配比进行DSC热分析实验,筛选出热力性能较优异的材料混合比(TMP∶NH4Cl∶H2O质量比为1.0∶2.0∶7.0)。其次,以上述配比的复合材料为基液,研究了添加不同的纳米粒子(三氧化二铝、二氧化钛、三氧化二铁)对其过冷度、热导率的影响,以及增稠剂(羧甲基纤维素(CMC)、聚丙烯酸钠(PAAS))对其相分离现象的影响,并进行了热循环实验。实验结果表明:添加0.40%(质量分数)的TiO2纳米粒子对降低该复合材料过冷度效果最佳;添加0.50%(质量分数)的TiO2纳米粒子对增大其热导率效果最佳;增稠剂CMC和PAAS可以消除该复合材料相分离现象并对其相变温度、相变潜热、过冷度等热物性影响较小。经优化所得最终复合相变蓄冷材料的配比为以1.0∶2.0∶7.0质量比混合的TMP-NH4Cl-H2O + 0.40%(质量分数)TiO2 + 1.0%(质量分数) PAAS,其相变温度为-19.9℃,相变潜热为246.8 kJ/kg,热导率为0.81 W/(m·K),并具有较好的循环稳定性。  相似文献   

13.
高剑晨  赵炳晨  何峰  李廷贤 《化工学报》2021,72(6):3328-3337
水合盐相变材料因具有较高的相变焓和较低的成本在中低温储热领域有着广泛的应用前景,但其在储放热过程中通常存在过冷度大和热循环稳定性差的问题。以六水硝酸镁为主要研究对象开展相变储热复合材料的改性制备及相变储热装置的研制,采用熔融共混法制备了以二水硫酸钙为成核剂的六水硝酸镁相变储热复合材料,利用差示扫描量热仪及步冷曲线法测试了相变储热复合材料的热物性和循环热稳定性。在此基础上设计并构建了储热量为152 kWh的相变储热装置和相变储热系统,并对其储/放热性能进行了测试。结果表明:添加了2%(质量)二水硫酸钙的相变储热复合材料具有较好的循环热稳定性,且在经过50次熔化-凝固循环后其过冷度一直保持在0.5℃内,相变温度保持在87℃左右,相变焓保持在150 kJ/kg以上;相变储热装置可实现高达27 kW的平均储热功率,在保证放热过程中出水温度不低于56℃的情况下,可实现8 kW的平均放热功率和92.3%的储-放热效率,可满足建筑采暖及日常生活热水需求。  相似文献   

14.
Multiwalled carbon nanotubes (MWCNTs) were modified by an organo-silane in order to improve their dispersion state and stability in paraffin wax. A family of paraffin-based phase change material (PCM) composites filled with MWCNTs was prepared with different loadings (0, 0.1, 0.5, and 1 wt%) of pristine MWCNTs and organo-silane modified MWCNTs (Si-MWCNT). Structural analyses were performed by means of Fourier transform infrared (FTIR), scanning electron microscopy (SEM), and rheological studies using temperature sweeps. Moreover, phase change transition temperatures and heat of fusion as well as thermal and electrical conductivities of the developed PCM nanocomposites were determined. The SEM micrographs and FTIR absorption bands appearing at approximately 1038 and 1112 cm−1 confirmed the silane modification. Differential scanning calorimetery (DSC) results indicate that the presence of Si-MWCNTs leads to slightly favorable enhancement in the energy storage capacity at the maximum loading. It was also shown that the thermal conductivity of the PCM nanocomposites, in both solid and liquid phases, increased with increasing the MWCNT content independent of the kind of MWCNTs by up to about 30% at the maximum loading of MWCNTs. In addition, the modification of MWCNTs made the samples completely electrically nonconductive, and the electrical surface resistivity of the PCMs containing pristine MWCNTs decreased with increasing MWCNTs loading. Furthermore, the rheological assessment under consecutive cyclic phase change demonstrated that the samples containing modified MWCNTs are more stable compared to the PCM containing pristine MWCNTs. © 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2020 , 137, 48428.  相似文献   

15.
In this study, we focused on the preparation and characterization of poly(ethylene glycol) (PEG)/poly(methyl methacrylate) (PMMA) blends as novel form‐stable phase‐change materials (PCMs) for latent‐heat thermal energy storage (LHTES) applications. In the blends, PEG acted as a PCM when PMMA was operated as supporting material. We subjected the prepared blends at different mass fractions of PEG (50, 60, 70, 80, and 90% w/w) to leakage tests by heating the blends over the melting temperature of the PCM to determine the maximum encapsulation ratio without leakage. The prepared 70/30 w/w % PEG/PMMA blend as a form‐stable PCM was characterized with optical microscopy and Fourier transform infrared spectroscopy. The thermal properties of the form‐stable PCM were measured with differential scanning calorimetry (DSC). DSC analysis indicated that the form‐stable PEG/PMMA blend melted at 58.07°C and crystallized at 39.28°C and that it had latent heats of 121.24 and 108.36 J/g for melting and crystallization, respectively. These thermal properties give the PCMs potential LHTES purposes, such as for solar space heating and ventilating applications in buildings. Accelerated thermal cycling tests also showed that the form‐stable PEG/PMMA blend as PCMs had good thermal reliability and chemical stability. © 2009 Wiley Periodicals, Inc. J Appl Polym Sci, 2010  相似文献   

16.
L. Xia  R.Z. Wang 《Carbon》2010,48(9):2538-2548
Expanded graphite (EG)/paraffin composite phase change materials (PCMs), with mass fraction of EG varying from 0 to 10 wt.%, were prepared and characterized. Polarizing optical microscope investigation showed that compact EG networks formed gradually with increase in the mass fraction of EG. These networks provided thermal conduction paths which enhanced the thermal conductivity of the composite PCMs, e.g., an addition of 10 wt.% EG resulting in a more than 10-fold increase in the thermal conductivity compared to that of pure paraffin. Thermal characterization of the composite PCMs with a differential scanning calorimeter (DSC) revealed the effect of the porous EG on the phase change behavior of paraffin. The shifts in the phase change temperatures were observed. The maximum deviation of the melting/freezing points of the composite PCMs from that of pure paraffin was 1.2 °C whereas that of the peak melting/freezing temperature was 5.6 °C. The DSC investigation also showed an anomaly in the latent heat of the paraffin in the composite PCMs in that it first increased and then decreased with increase in the EG fraction. Heat storage/retrieval tests of the composite PCMs in a latent thermal energy storage system showed that the heat storage/retrieval durations for EG(10)/paraffin(90) composite were reduced by 48.9% and 66.5%, respectively, compared to pure paraffin, which indicated a great improvement in the heat storage/retrieval rates of the system.  相似文献   

17.
针对聚四氟乙烯(PTFE)导热性能和耐磨损性能较差的问题,将石墨烯经过氧化氢预处理后,再用硅烷偶联剂KH550对其进行表面改性,然后采用冷压烧结法制备了PTFE/石墨烯复合材料,研究了不同用量下改性和未改性石墨烯对复合材料电性能、导热性能和摩擦磨损性能的影响。结果表明,随着石墨烯用量增加,复合材料的体积电阻率逐渐下降,但在石墨烯质量分数为0%~2%时,复合材料体积电阻率基本处于同一数量级,仍为绝缘材料;当石墨烯质量分数由0%增加至2%时,复合材料的导热系数明显提高,磨损量明显降低,而摩擦系数先升高后降低,但变化幅度较小。与未改性石墨烯相比,KH550改性石墨烯填充的复合材料具有更高的导热性能和摩擦磨损性能。  相似文献   

18.
相变材料(PCMs)作为潜热储存和释放的介质,能够解决热能供需矛盾,从而缓解能源危机。纯相变材料具有能量密度高、温度范围广、能量输出稳定性强等优点,但其热导率低和在相变过程发生渗漏的缺点阻碍了其广泛的应用和发展。通过将PCMs与二维纳米片复合,PCMs热导率低和渗漏问题被有效解决。通过在导热机理方面进行详细阐述的基础上,综述了近几年来有关碳基二维纳米片、六方氮化硼(h-BN)纳米片、二硫化钼等复合储热材料的研究进展,为高性能二维纳米片基复合PCMs的设计提供一定的研究思路。  相似文献   

19.
使用硅烷偶联剂KH-560对氮化铝进行了表面改性,并以其为导热填料,环氧树脂为基体,制备了氮化铝/环氧树脂导热胶黏剂。采用FTIR、SEM、TG、热常数分析仪对导热胶黏剂进行了表征。结果表明:改性后硅烷偶联剂分子成功接枝在氮化铝表面。改性后,氮化铝与环氧树脂的界面粘结力增强,热稳定性和导热性均得到明显改善。当氮化铝质量为导热胶黏剂质量的70%时,改性氮化铝/环氧树脂热胶黏剂的导热系数为2.24W/(m·K),而未改性氮化铝/环氧树脂的导热系数仅为1.73W/(m·K)。为进一步提高其导热性能,制备了改性氮化铝/氧化石墨烯/环氧树脂导热胶黏剂,当改性氮化铝和氧化石墨烯的质量分数分别为50%和3%时,导热胶黏剂导热系数为3.05 W/(m·K)。  相似文献   

20.
Improvements in the thermal conductivity and shape-stability of paraffin phase change materials (PCMs) by adding exfoliated graphite nanoplatelets (xGnP) or graphene were compared. The composite PCMs were fabricated by mixing paraffin with xGnP or graphene in hot toluene, followed by solvent evaporation and vacuum drying. A larger increase in thermal conductivity was observed for paraffin/xGnP, with a 10 wt.% xGnP loading producing a more than 10-fold increase. Graphene shows a lower electrical percolation threshold and offers a much larger increase in the electrical conductivity of paraffin than xGnP. However, its thermal conductivity increase is much lower. Despite the excellent thermal conductivity of single-flake graphene, the large density of nanointerfaces due to the small size of the graphene flakes significantly impedes heat transfer. We also found that graphene is much more effective than xGnP as a shape-stabilizing filler. At 2 wt.% graphene loading, paraffin maintains its shape up to 185.2 °C, well above the operating temperature range of paraffin PCMs, while the paraffin/xGnP counterpart is shape-stable up to 67.0 °C only. Small amounts of graphene and xGnP can be used in combination as a low-cost and effective improver for both the heat diffusion and shape-stabilization of paraffin PCMs.  相似文献   

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