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Experimental study on thermal and mechanical properties of tailings-based cemented paste backfill with CaCl_(2)·6H_(2)O/expanded vermiculite shape stabilized phase change materials 被引量:1
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作者 Xiaoyan Zhang Tianrun Cao +3 位作者 Lang Liu Baoyun Bu Yaping Ke Qiangqiang Du 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第2期250-259,共10页
CaCl_(2)·6H_(2)O/expanded vermiculite shape stabilized phase change materials(CEV)was prepared by atmospheric impregnation method.Using gold mine tailings as aggregate of cemented paste backfill(CPB)material,the ... CaCl_(2)·6H_(2)O/expanded vermiculite shape stabilized phase change materials(CEV)was prepared by atmospheric impregnation method.Using gold mine tailings as aggregate of cemented paste backfill(CPB)material,the CPB with CEV added was prepared,and the specific heat capacity,thermal conductivity,and uniaxial compressive strength(UCS)of CPB with different cement-tailing ratios and CEV addition ratios were tested,the influence of the above variables on the thermal and mechanical properties of CPB was analyzed.The results show that the maximum encapsulation capacity of expanded vermiculite for CaCl_(2)·6H_(2)O is about 60%,and the melting and solidification enthalpies of CEV can reach 98.87 J/g and 97.56 J/g,respectively.For the CPB without CEV,the specific heat capacity,thermal conductivity,and UCS decrease with the decrease of cement-tailing ratio.For the CPB with CEV added,with the increase of CEV addition ratio,the specific heat capacity increases significantly,and the sensible heat storage capacity and latent heat storage capacity can be increased by at least 10.74%and 218.97%respectively after adding 12%CEV.However,the addition of CEV leads to the increase of pores,and the thermal conductivity and UCS both decrease with the increase of CEV addition.When cement-tailing ratio is 1:8 and 6%,9%,and 12%of CEV are added,the 28-days UCS of CPB is less than 1 MPa.Considering the heat storage capacity and cost price of backfill,the recommended proportion scheme of CPB material presents cement-tailing ratio of 1:6 and 12%CEV,and the most recommended heat storage/release temperature cycle range of CPB with added CEV is from 20 to 40℃.This work can provide theoretical basis for the utilization of heat storage backfill in green mines. 展开更多
关键词 CaCl_(2)·6H_(2)O/expanded vermiculite shape stabilized phase change materials cemented paste backfill thermal property mechanical property
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A New Kind of Shape-stabilized Phase Change Materials 被引量:2
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作者 肖力光 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2011年第3期491-494,共4页
Based on the lowest melting point and Schroeder’s theoretical calculation formula,nano- modified organic composite phase change materials(PCMs)were prepared.The phase transition temperature and the latent heat of t... Based on the lowest melting point and Schroeder’s theoretical calculation formula,nano- modified organic composite phase change materials(PCMs)were prepared.The phase transition temperature and the latent heat of the materials were 24℃and 172 J/g,respectively.A new shape-stabilized phase change materials were prepared,using high density polyethylene as supporting material.The PCM kept the shape when temperature was higher than melting point.Thus,it can directly contact with heat transfer media.The structure,morphology and thermal behavior of PCM were analyzed by FTIR,SEM and DSC. 展开更多
关键词 phase change material(PCM) shape-stabilized phase change materials high density polyethylene
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Preparation and Properties of Paraffin/PMMA Shape-stabilized Phase Change Material for Building Thermal Energy Storage 被引量:5
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作者 孟多 ZHAO Kang +1 位作者 WANG Anqi WANG Baomin 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2020年第1期231-239,共9页
The composite phase change material(PCM) consisting of phase change paraffin(PCP) and polymethyl methacrylate(PMMA) was prepared as a novel type of shape-stabilized PCM for building energy conservation through the met... The composite phase change material(PCM) consisting of phase change paraffin(PCP) and polymethyl methacrylate(PMMA) was prepared as a novel type of shape-stabilized PCM for building energy conservation through the method of bulk polymerization. The chemical structure, morphology, phase change temperature and enthalpy, and mechanical properties of the composite PCM were studied to evaluate the encapsulation effect of PMMA on PCP and determine the optimal composition proportion. FTIR and SEM results revealed that PCP was physically immobilized in the PMMA so that its leakage from the composite was prevented. Based on the thermo-physical and mechanical properties investigations, the optimal mass fraction of PCP in the composite was determined as 70%. The phase change temperature of the composite was close to that of PCP, and its latent heat was equivalent to the calculated value according to the mass fraction of PCP in the composite. For estimating the usability in practical engineering, thermal stability, reliability and temperature regulation performance of the composite were also researched by TG analysis, thermal cycling treatments and heating-cooling test. The results indicated that PCP/PMMA composite PCM behaved good thermal stability depending on the PMMA protection and its latent heat degraded little after 500 thermal cycling. Temperature regulation performance of the composite before and after thermal cycling was both noticeable due to its latent heat absorption and release in the temperature variation processes. The PCP/PMMA phase change plate was fabricated and applied as thermal insulator in miniature concrete box to estimate its temperature regulation effect under the simulated environmental condition. It can be concluded that this kind of PCP/PMMA shape-stabilized PCM with the advantages of no leakage, suitable phase change temperature and enthalpy, good thermal stability and reliability, and effective temperature regulation performance have much potential for thermal energy storage in building energy conservation. 展开更多
关键词 shape-stabilized phase change material phase change PARAFFIN polymethyl METHACRYLATE temperature regulation BUILDING energy conservation
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Melting Intercalation Method to Prepare Lauric Acid/Organophilic Montmorillonite Shape-stabilized Phase Change Material 被引量:3
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作者 陈美祝 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2010年第4期674-677,共4页
A kind of novel shape-stabilized phase change material (SSPCM) was prepared by using a melting intercalation technique. This kind of SSPCM was made of lauric acid (LA) as a phase change material and organophilic m... A kind of novel shape-stabilized phase change material (SSPCM) was prepared by using a melting intercalation technique. This kind of SSPCM was made of lauric acid (LA) as a phase change material and organophilic montmorillonite (OMMT) as a support material. And the thermal properties and morphology of the SSPCM were characterized by X-ray diffraction (XRD), transmission electron microscope (TEM), scanning electronic microscope (SEM), scanning calorimeter (DSC), and differential thermal cravimetry (TG). The DSC result shows that the phase change temperature of the SSPCM is close to that of LA, and its latent heat is equivalent to that of the calculated value based on the mass ratio of LA measured by TG. The XRD, SEM and TEM results demonstrate that the LA intercalates into the silicate layers of the OMMT, thus forming a typically intercalted hybrid, which can restrict the molecular chain of the LA within the structure of OMMT at high temperature. And consequently SSPCM can keep its solid state during its solid-liquid phase change processing. 展开更多
关键词 shape-stabilized phase change material lauric acid organophilic montmorillonite melting intercalation
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Preparation,Characterization and Service Performance of Fatty Acid/PMMA Shape-Stabilized Phase Change Material 被引量:3
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作者 孟多 王立久 《Journal of Donghua University(English Edition)》 EI CAS 2011年第1期10-14,共5页
A series of fatty acid/poly methyl methacrylate(PMMA) shape-stabilized phase change materials(PCMs) have been prepared by bulk polymerization method.In the composite,fatty acid(capric acid,stearic acid,and their eutec... A series of fatty acid/poly methyl methacrylate(PMMA) shape-stabilized phase change materials(PCMs) have been prepared by bulk polymerization method.In the composite,fatty acid(capric acid,stearic acid,and their eutectic mixture) acts as core material and PMMA serves as matrix,which coats the fatty acid to prevent the leakage of melted fatty acid.The prepared shape-stabilized PCMs were characterized on the morphology,phase change behavior,chemical characterization and thermal properties.The results indicate that the composites with proper phase change temperature and latent heat are able to keep solid morphology in macro level during thermal storage process.Thermal cycling test also indicates that the composite PCMs have good thermal reliability.Moreover,thermal conductivity and thermal performance are investigated and the results show that the shape-stabilized PCMs have the higher thermal conductivity than fatty acid and exhibited good thermal performance in controlling the atmosphere temperature. 展开更多
关键词 稳定形状的阶段变化材料 丰满的酸 poly 甲基 methacrylate (PMMA ) 体积聚合
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Stabilized multifunctional phase change materials based on carbonized Cu-coated melamine foam/reduced graphene oxide framework for multiple energy conversion and storage
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作者 Zhicong Hu Yongjin Zou +4 位作者 Cuili Xiang Lixian Sun Fen Xu Menghe Jiang Sensen Yu 《Carbon Energy》 SCIE CAS 2022年第6期1214-1227,共14页
The leakage of organic phase change materials(OPCMs)at temperatures above their melting point severely limits their large-scale application.The introduction of porous supports has been identified as an efficient leaka... The leakage of organic phase change materials(OPCMs)at temperatures above their melting point severely limits their large-scale application.The introduction of porous supports has been identified as an efficient leakageproofing method.In this study,a novel carbonized Cu-coated melamine foam(MF)/reduced graphene oxide(rGO)framework(MF/rGO/Cu-C)is constructed as a support for fabricating stabilized multifunctional OPCMs.MF serves as the supporting material,while rGO and Cu act as functional reinforcements.As a thermal energy storage material,polyethylene glycol(PEG)is encapsulated into MF/rGO/Cu-C through a vacuum-assisted impregnation method to obtain PEG@MF/rGO/Cu-C composite with excellent comprehensive performance.PEG@MF/rGO/Cu-C exhibits high phase change enthalpies of 148.3 J g^(-1)(melting)and 143.9 J g^(-1)(crystallization),corresponding to a high energy storage capability of 92.7%.Simultaneously,MF/rGO/Cu-C endues the composite with an enhanced thermal conductivity of 0.4621Wm^(-1) K^(-1),which increases by 463%compared to that of PEG@MF.Furthermore,PEG@MF/rGO/Cu-C displays great light-to-thermal and electric-to-thermal conversion capabilities,thermal cycle stability,light-tothermal cycle stability,and shape stability,showing promising application prospects in different aspects. 展开更多
关键词 Cu-coated network melamine foam PEG reduced graphene oxide stabilized multifunctional phase change materials
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Emerging low-density polyethylene/paraffin wax/aluminum composite as a form-stable phase change thermal interface material 被引量:1
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作者 Chuanchang Li Weixuan Wang +2 位作者 Xiaoliang Zeng Chunxuan Liu Rong Sun 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第4期772-781,共10页
Thermal interface materials(TIMs) play a vital role in the thermal management of electronic devices and can significantly reduce thermal contact resistance(TCR). The TCR between the solid–liquid contact surface is mu... Thermal interface materials(TIMs) play a vital role in the thermal management of electronic devices and can significantly reduce thermal contact resistance(TCR). The TCR between the solid–liquid contact surface is much smaller than that of the solid–solid contact surface, but conventional solid–liquid phase change materials are likely to cause serious leakage. Therefore, this work has prepared a new formstable phase change thermal interface material. Through the melt blending of paraffin wax(PW) and low-density polyethylene(LDPE), the stability is improved and it has an excellent coating effect on PW. The addition of aluminum(Al) powder improves the low thermal conductivity of PW/LDPE, and the addition of 15wt% Al powder improves the thermal conductivity of the internal structure of the matrix by 67%. In addition, the influence of the addition of Al powder on the internal structure, thermal properties, and phase change behavior of the PW/LDPE matrix was systematically studied. The results confirmed that the addition of Al powder improved the thermal conductivity of the material without a significant impact on other properties, and the thermal conductivity increased with the increase of Al addition. Therefore, morphologically stable PW/LDPE/Al is an important development direction for TIMs. 展开更多
关键词 paraffin wax low-density polyethylene phase change materials thermal interface materials form stability
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Hierarchical Ni-plated melamine sponge and MXene film synergistically supported phase change materials towards integrated shape stability,thermal management and electromagnetic interference shielding 被引量:1
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作者 Ziling Cheng Guojun Chang +2 位作者 Bai Xue Lan Xie Qiang Zheng 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第1期132-143,共12页
Along with the integrated and miniaturized development of advanced electronic devices,phase change materials(PCMs)simultaneously with efficient thermal management and high electromag-netic interference(EMI)shielding e... Along with the integrated and miniaturized development of advanced electronic devices,phase change materials(PCMs)simultaneously with efficient thermal management and high electromag-netic interference(EMI)shielding effectiveness(SE)are ungently demanded.Herein,the shape-stabilized MXene/Ni-platted melamine sponge/Regenerated cellulose/Graphene nanoplate/Polyethylene glycol(MX/Ni@MS/RCG/PEG)composite PCMs comprising hierarchical Ni@MS/RCG and MXene film were fabricated via a facile encapsulation approach.Hierarchical Ni@MS/RCG hybrid aerogel was prepared by electroless plating and sol-gel methods,and MXene film was obtained using vacuum-assisted filtra-tion procedure.The synergistic effect of conductive Ni@MS/RCG networks and tight MXene film endows MX/Ni@MS/RCG/PEG composite PCMs with good shape stability,high cyclic reliability,large latent heat of phase change(154.3 J g^(–1)),excellent thermal conductivity(TC,0.47 W m^(–1)K^(–1))and favorable EMI shield-ing performance(32.7 dB).The TC of acceptable 0.47 W m^(–1)K^(–1)is observed for MX/Ni@MS/RCG-5/PEG at a rather low GNP content of merely 0.39 wt%.In addition,the temperature variation of MX/Ni@MS/RCG-5/PEG is a lot faster than that of pure PEG in the heating/cooling process,revealing the remarkable energy storage and release efficiency for the composite PCMs.This investigation has taken an important step to-wards shape-stabilized composite PCMs with both effective thermal management and high EMI SE for promising applications in electronic packaging and advanced energy. 展开更多
关键词 phase change material Thermal management Electromagnetic interference shielding shape stability Encapsulation
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硅藻土基定形相变材料的制备及应用进展
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作者 李琳 王宇 +2 位作者 李东旭 张凯 高立 《化工新型材料》 CAS CSCD 北大核心 2024年第4期238-243,共6页
硅藻土是硅藻植物经过漫长的沉积成岩而形成的一种非金属矿物。硅藻土具有丰富微孔、耐高温、耐腐蚀性、价格低廉和资源丰富等优点,作为一种良好的吸附载体材料而受到广泛关注。介绍了硅藻土的结构特点并归纳了硅藻土常见的几种改性方法... 硅藻土是硅藻植物经过漫长的沉积成岩而形成的一种非金属矿物。硅藻土具有丰富微孔、耐高温、耐腐蚀性、价格低廉和资源丰富等优点,作为一种良好的吸附载体材料而受到广泛关注。介绍了硅藻土的结构特点并归纳了硅藻土常见的几种改性方法,综述了硅藻土基定形相变材料的种类及制备方法,总结了该材料在建筑领域的应用进展,分析了现阶段硅藻土基定形相变材料研究中存在的问题,并提出未来工作中需要关注的重点,以期为其规模化推广应用提供参考。 展开更多
关键词 硅藻土 定形相变材料 改性 储热性能
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PEG4000/聚苯胺形状稳定复合相变材料的制备及其储热性能
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作者 李敏 任士兵 +4 位作者 刘星照 陶璋 杨海彬 黄智 杨穆 《工程科学学报》 EI CSCD 北大核心 2024年第3期458-469,共12页
以聚苯胺气凝胶(PANI)为支撑骨架,聚乙二醇4000(PEG4000)为相变材料,银纳米线(AgNWs)为导热增强填料,采用低温氧化聚合法和真空浸渍法制备得到具有良好形状和循环稳定性的定形相变复合材料PEG4000@Ag/PANI.聚苯胺气凝胶的高孔隙率及PEG4... 以聚苯胺气凝胶(PANI)为支撑骨架,聚乙二醇4000(PEG4000)为相变材料,银纳米线(AgNWs)为导热增强填料,采用低温氧化聚合法和真空浸渍法制备得到具有良好形状和循环稳定性的定形相变复合材料PEG4000@Ag/PANI.聚苯胺气凝胶的高孔隙率及PEG4000与基体材料间的氢键作用和毛细作用,使得相变复合材料的最高负载率能够达到94.17%(熔融焓为165.17 J·g^(–1),凝固焓为152.77 J·g^(–1));加入AgNWs与PANI气凝胶共同搭建导热通路,提高了相变复合材料的导热性能(热导率最高为0.45 W·m^(–1)·K^(–1),比纯PEG4000提高80%);借助Ag NWs和聚苯胺优异的光吸收能力,相变复合材料的光–热转换效率达到90.61%.高储能密度、高光热转换能力和高热导率定形相变复合材料的成功制备为新型相变复合材料的合成提供了新思路,为太阳能光–热转换和储能应用提供了新材料,实现对太阳能的高效利用. 展开更多
关键词 聚苯胺气凝胶 定形相变复合材料 热导率 银纳米线 光热转换
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定形相变材料储热性能和强化传热研究进展
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作者 李琳 王宇 张凯 《化工新型材料》 CAS CSCD 北大核心 2024年第6期7-11,24,共6页
潜热蓄热技术被视为缓解能源供需矛盾的有效措施,其利用相变材料在相变过程中吸热/放热来实现能量的存储和释放,在建筑节能、温室控温、调温服装等领域具有极大的应用潜力。归纳了定形相变材料的种类和特点,对多孔基相变材料、微胶囊相... 潜热蓄热技术被视为缓解能源供需矛盾的有效措施,其利用相变材料在相变过程中吸热/放热来实现能量的存储和释放,在建筑节能、温室控温、调温服装等领域具有极大的应用潜力。归纳了定形相变材料的种类和特点,对多孔基相变材料、微胶囊相变材料和聚合物基相变材料等制备技术及储热性能的研究进展进行了综述,分析了定形相变材料制备过程中存在的问题,介绍了定形相变材料的强化传热方法,最后讨论了今后研究工作的重点并展望了定形相变材料的发展前景。 展开更多
关键词 定形 相变 储热性能 强化传热
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气相二氧化硅/三元无机水合盐定型相变材料的制备及性能表征
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作者 肖力光 朱晨阳 《化工新型材料》 CAS CSCD 北大核心 2024年第5期245-248,254,共5页
以气相二氧化硅作为多孔吸附材料,对十二水磷酸氢二钠/五水偏硅酸钠/十水碳酸钠低共熔相变材料进行封装,通过控制气相二氧化硅含量,制备出不同吸附量的气相二氧化硅/三元无机水合盐定型相变材料。通过差示扫描量热仪、扫描电子显微镜、... 以气相二氧化硅作为多孔吸附材料,对十二水磷酸氢二钠/五水偏硅酸钠/十水碳酸钠低共熔相变材料进行封装,通过控制气相二氧化硅含量,制备出不同吸附量的气相二氧化硅/三元无机水合盐定型相变材料。通过差示扫描量热仪、扫描电子显微镜、傅里叶变换红外光谱仪、X射线衍射仪和热重分析仪等多种测试手段,对定型相变材料的性能和结构进行表征。研究结果表明:气相二氧化硅的最佳含量为25%(质量分数),该条件下定型相变材料相变焓为95.96J/g;三元无机水合盐相变材料与气相二氧化硅只是单纯的物理混合,并未发生化学反应产生新物质,制备的定型相变热稳定性较好。 展开更多
关键词 相变蓄能 气相二氧化硅 定型相变材料 低碳节能
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LA-MA/陶粒相变储能材料热物性试验与分析
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作者 张经双 秦瑞汉 缪鹏 《安徽理工大学学报(自然科学版)》 CAS 2024年第1期46-52,共7页
目的为拓宽相变材料在建筑节能领域中的应用,针对单一相变材料难以满足建筑热工性能要求的问题。方法以十二醇(LA)和十四酸(MA)为复合相变材料、页岩陶粒为载体,制备一种新型相变储能骨料。采用差式扫描量热仪(DSC)、傅里叶红外光谱仪(F... 目的为拓宽相变材料在建筑节能领域中的应用,针对单一相变材料难以满足建筑热工性能要求的问题。方法以十二醇(LA)和十四酸(MA)为复合相变材料、页岩陶粒为载体,制备一种新型相变储能骨料。采用差式扫描量热仪(DSC)、傅里叶红外光谱仪(FT-IR)、热重分析仪(TG)等对相变储能骨料的热物性和不同封装方式下的相变循环稳定性进行分析。结果经复合后相变材料、相变储能骨料的相变温度和相变潜热分别为22.08℃、22.92℃和182.1J/g、22.33J/g。LA-MA复合相变材料和页岩陶粒之间仅存在物理嵌合关系,相变储能骨料在70℃以下未发生物质分解。苯丙乳液封装相变储能骨料在5℃~45℃范围内经历100次相变循环后,质量损失率为0.80%。结论LA-MA/陶粒相变储能骨料的热物性满足建筑节能要求,化学结构稳定,热稳定性好,具有优异的循环耐久性,可应用到建筑围护结构中,研究结论对相变储能材料在建筑围护结构中的应用具有参考价值。 展开更多
关键词 复合相变材料 相变储能骨料 热物性 相变循环稳定性
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废旧发泡混凝土定型相变材料制备及热性能研究 被引量:1
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作者 孟强 田曦 熊亚选 《综合智慧能源》 CAS 2024年第3期29-34,共6页
为规模化消纳城市固体废弃物,降低废旧发泡混凝土大量堆积对城市生态环境的破坏。提出以废旧发泡混凝土作为骨架材料,对其进行预烧结处理,以Na_(2)CO_(3)为相变材料制备定型相变材料。结果表明:废旧发泡混凝土可以负载质量分数为45%的Na... 为规模化消纳城市固体废弃物,降低废旧发泡混凝土大量堆积对城市生态环境的破坏。提出以废旧发泡混凝土作为骨架材料,对其进行预烧结处理,以Na_(2)CO_(3)为相变材料制备定型相变材料。结果表明:废旧发泡混凝土可以负载质量分数为45%的Na_(2)CO_(3);差示扫描量热法(DSC)测得该定型相变材料的熔化潜热为126.7 J/g;X射线衍射法(XRD)和傅里叶变换红外法(FT-IR)表明,骨架材料和相变材料之间有良好的化学相容性;激光导热分析法(LFA)测得该定型相变材料的导热系数最大为0.24 W/(m·K)。 展开更多
关键词 蓄热 固体废弃物 定型相变材料 发泡混凝土 骨架材料 性能
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生物质多孔碳复合相变材料制备和热性能研究
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作者 向德宁 库慧益 +3 位作者 侯忠平 林蔚 王强伟 吴学红 《化工新型材料》 CAS CSCD 北大核心 2024年第7期78-81,共4页
将木材通过高温碳化的方法制备三维生物质碳基材料用于相变材料载体,制备复合相变材料,并对复合相变材料进行结构表征、性能测试及防泄漏实验。结果表明:多孔碳载体材料导热孔道网络完整,保证了有机相变材料的高效稳定负载量;相比于纯... 将木材通过高温碳化的方法制备三维生物质碳基材料用于相变材料载体,制备复合相变材料,并对复合相变材料进行结构表征、性能测试及防泄漏实验。结果表明:多孔碳载体材料导热孔道网络完整,保证了有机相变材料的高效稳定负载量;相比于纯相变材料,70%PA@GNS热导系数达到了0.763W/(m·K),提高了3.18倍;含有20%多孔碳复合材料的潜热值达到了182J/g,比理论值潜热值高了约7%;并能有效防止相变材料泄漏。 展开更多
关键词 多孔碳 复合相变材料 导热系数 潜热 稳定性
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添加膨胀石墨的二十二烷-十二醇复合定形相变材料的性能研究
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作者 陈红兵 刘宇航 +4 位作者 王聪聪 李璊 张岩 卢浩阳 李春阳 《储能科学与技术》 CAS CSCD 北大核心 2024年第2期396-404,共9页
针对于太阳能PV/T系统相变材料热导率低、易泄漏的问题,本工作制备了二十二烷-十二醇/膨胀石墨复合定形相变材料并对其性能进行实验研究。本工作首先按照6∶4的比例制备了二十二烷-十二醇相变材料,然后采用熔融共混法制备了一系列膨胀... 针对于太阳能PV/T系统相变材料热导率低、易泄漏的问题,本工作制备了二十二烷-十二醇/膨胀石墨复合定形相变材料并对其性能进行实验研究。本工作首先按照6∶4的比例制备了二十二烷-十二醇相变材料,然后采用熔融共混法制备了一系列膨胀石墨含量不同的复合定形相变材料。实验借助场发射扫描电子显微镜观察其微观结构,利用热流型差示扫描量热仪、热导率测量仪等仪器测量其潜热、热导率等参数,研究了材料的物理相容性、吸附性、循环稳定性,探究了膨胀石墨和二十二烷-十二醇的最佳配比及其各项性能。结果表明,当膨胀石墨质量分数为15%时,复合定形相变材料性能最佳,此时膨胀石墨足以将相变材料吸附,渗漏率仅为3.85%且无明显渗出,其熔化和凝固相变潜热分别为203.8 kJ/kg和-196.6 kJ/kg;在经过50次冷热循环后,其相变温度及潜热变化较小,热导率基本保持稳定,波动幅度仅为5.9%,质量损失较少,仅为0.0495 g,表现出良好的循环稳定性。研究为后续定形相变材料在太阳能PV/T系统中的应用提供理论数据支撑。 展开更多
关键词 二十二烷-十二醇 膨胀石墨 复合定形相变材料 物理相容性 吸附性 循环稳定性
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离子交联型石蜡基导热增强定型相变材料的制备及其性能
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作者 赵西坡 尹少鼎 +3 位作者 孙义明 卞武勋 刘进超 冉宝清 《合成树脂及塑料》 CAS 北大核心 2024年第2期1-6,共6页
对石蜡(PA)进行接枝改性、自乳化得到PA乳液。在乳液颗粒形态下将接枝产物分散在乳化层,常温条件下通过乳液颗粒间的空间分布及离子交联,对导热材料形成内锁、铆结,并加Cu粉增强导热制备了PA基导热增强定型相变材料(记作PA@Cu),与定量PA... 对石蜡(PA)进行接枝改性、自乳化得到PA乳液。在乳液颗粒形态下将接枝产物分散在乳化层,常温条件下通过乳液颗粒间的空间分布及离子交联,对导热材料形成内锁、铆结,并加Cu粉增强导热制备了PA基导热增强定型相变材料(记作PA@Cu),与定量PA于80℃浸渍吸附20 min,得到吸附PA的PA@Cu(记作PA@Cu-PA),并研究了其元素结构、表观形貌、相变焓、导热性能、热稳定性。结果表明:当Cu粉用量为16 g时,PA@Cu-PA导热系数0.468 W/(m·K),结晶焓-133.27 J/g,在85℃时无明显泄漏,热分解温度384.5℃,储能性能与热稳定性能良好。 展开更多
关键词 定型相变材料 石蜡 接枝改性 离子交联 热稳定性能 储能性能
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面向短时/断续工作制的电机系统固–液相变热管理技术及应用发展
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作者 邱书恒 王海峰 +3 位作者 熊斌 花为 邹亮 张驰 《中国电机工程学报》 EI CSCD 北大核心 2024年第1期280-292,I0023,共14页
固–液相变现象表现出的潜热特性可有效平抑瞬时温升,将其应用于航天航空、奔越式机器人、新能源汽车、数控机床等电机热管理系统,可有效提高短时工作制或断续周期性工作制(S2—S8)下运行的伺服电驱动系统的瞬态性能。为了总结归纳固–... 固–液相变现象表现出的潜热特性可有效平抑瞬时温升,将其应用于航天航空、奔越式机器人、新能源汽车、数控机床等电机热管理系统,可有效提高短时工作制或断续周期性工作制(S2—S8)下运行的伺服电驱动系统的瞬态性能。为了总结归纳固–液相变材料的电机系统热管理技术及其应用现状,该文针对固–液相变材料特性、系统数值计算与仿真模拟、样机实验测试方法、相变热管理系统结构等4个方面开展调研,并提出亟待解决的关键技术问题。研究发现:目前阶段石蜡和低温熔盐是适合电机系统的最佳相变介质,但仍存在导热系数较低的问题,需通过改性强化解决;通过机壳灌注相变材料,可有效实现温升平抑,但尚缺乏有针对性的热路拓扑设计;采用焓–多孔方法是模拟相变过程的理想手段,但糊状区参数的取值缺乏理论指导;最后,固–液相变过程的测试中侵入式传感器易对电磁、热、流场的自然演变过程产生干扰。 展开更多
关键词 电机系统 热管理技术 S2—S8工作制 温升平抑 固–液相变材料 电系统结构 分析方法 实验测试方法
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纳米碳化硅改性石蜡相变乳液的制备及热物性
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作者 陈薇 肖一啸 +1 位作者 李爱蓉 白馨懿 《功能材料》 CAS CSCD 北大核心 2024年第5期5119-5125,5133,共8页
为制备一种稳定性好,过冷度低,导热性强且易于用泵输的相变乳液,研究采用超声乳化法,在石蜡(RT55)相变乳液中加入不同质量分数的纳米碳化硅,制备了一种改性相变乳液(SiC/PCME),并对其粒径分布、相变行为、导热性能、热响应速度及流变性... 为制备一种稳定性好,过冷度低,导热性强且易于用泵输的相变乳液,研究采用超声乳化法,在石蜡(RT55)相变乳液中加入不同质量分数的纳米碳化硅,制备了一种改性相变乳液(SiC/PCME),并对其粒径分布、相变行为、导热性能、热响应速度及流变性能进行了研究。结果表明,当SiC添加量为0.09%(质量分数)的SiC/PCME稳定性最好,其体积平均粒径大小为480 nm,分别静置20天和经120次冷热循环前后粒径分布无明显变化;DSC测得0.09%(质量分数)的SiC/PCME的潜热值为39.0 J/g,过冷度仅为0.03℃,较未改性PCME降低了11.8℃,且经过120次循环过冷度不变,具有良好的循环热稳定性;55℃时,SiC/PCME的导热系数达到4.247 W/m·K;SiC强化了相变乳液的导热能力,提高了其热响应速度;且剪切速度为100 s^(-1)时,SiC/PCME最低粘度达到3 mPa·s。 展开更多
关键词 相变乳液 稳定性 热物性 流变性
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基于相变蓄冷的核电厂主控室非能动冷却系统
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作者 赵丹 林宇清 吕胡人 《暖通空调》 2024年第1期1-4,30,共5页
为提高现有核电厂主控室紧急可居留系统的蓄冷能力及热舒适性水平,提出了基于定形相变蓄冷材料的核电厂主控室非能动冷却系统。基于主控室热负荷分布情况,该冷却系统在主控室顶板与吊顶之间、内墙面、地板底面及循环风道内,针对性地布... 为提高现有核电厂主控室紧急可居留系统的蓄冷能力及热舒适性水平,提出了基于定形相变蓄冷材料的核电厂主控室非能动冷却系统。基于主控室热负荷分布情况,该冷却系统在主控室顶板与吊顶之间、内墙面、地板底面及循环风道内,针对性地布置相应的含有定形相变材料的非能动冷却装置,进而实现事故工况下对主控室温度的精确控制。该非能动冷却系统无需引入额外冷源和管道,可靠性强,同时不破坏主体结构,且可灵活布置,解决了现有主控室非能动热阱时间余量小、热舒适性差的问题。 展开更多
关键词 核电厂 相变蓄冷 非能动冷却系统 主控室 应急可居留系统 定形相变材料
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