The Experts below are selected from a list of 9108 Experts worldwide ranked by ideXlab platform

Liwen Jin - One of the best experts on this subject based on the ideXlab platform.

  • PREPARATION and PERFORMANCE of Composite Building MaterialS with PHASE CHANGE Material for THERMAL STORAGE
    Energy Procedia, 2017
    Co-Authors: Qunli Zhang, Yang Rao, Yuqing Jiao, Liyan Li, Yinlong Li, Liwen Jin
    Abstract:

    The polyethylene glycol (PEG-1000) was selected as phase change Material (PCM) and the expanded perlite (EP), the granular activated carbon (GAC), the powdered activated carbon (PAC) and the expanded graphite (EG) were selected as porous adsorption Materials. The Composite phase change Material (CPCM) was prepared by the physical adsorption method. The Composite phase change Materials compound with the polyethylene glycol and the expanded graphite were picked by comparing and analyzing the adsorption capacity of such four types of porous Materials. And then the Composite Building Material for thermal storage mixed with the CPCM and the cement, water-reducer, early strength agent was prepared in the pressure condition of -0.05Mpa and the constant temperature condition of 70°C. Its thermal physical properties, the structural stability and the compression resistance capability of different quality proportion specimens were experimental researched. The results show that such Composite Building Materials with CPCM appears light density, high thermal conductivity, large heat storage capacity and good stability, and its compression resistance capability can satisfy the requirement of ordinary mortar Building Material.

Lily Soraya Amerudin - One of the best experts on this subject based on the ideXlab platform.

  • flame retardancy study of recycled polymeric foam filled Composite Building Material syed anas syed mustafa rahmah mohamed and lily soraya amerudin
    2015
    Co-Authors: Syed Anas Bin Syed Mustafa, Rahmah Mohamed, Lily Soraya Amerudin
    Abstract:

    Flame retardancy is an important fire safety element often emphasized by the construction sectors; It is utilized to prevent Material ignition, and thus limit the effects of Building fires. The preparation and characterization of Unsaturated Polyester Resin (UPR) Composite systems filled with recycled Expanded Polystyrene (EPS) were systematically investigated. Core additives such as Flame Retardant (FR) and Antioxidant (AO) were added to the Composite for imparting suitable characteristics to the Composite. The result obtained via the comparison of the various Composite systems studied had revealed that certain additives imparts higher flame retardancy levels than others, but each type of additives might had interacted with the polymeric matrixes differently. Thus, it could be concluded that the varying use of additives affects the systems' flame retardancy and thermal properties. Further in depth studies of the polymeric Composite may help in determining and confirming the actual mechanisms which these additives produces the effect on Material's flammability.

  • Flame retardancy study of recycled polymeric foam filled Composite Building Material / Syed Anas Syed Mustafa, Rahmah Mohamed and Lily Soraya Amerudin
    2015
    Co-Authors: Syed Anas Bin Syed Mustafa, Rahmah Mohamed, Lily Soraya Amerudin
    Abstract:

    Flame retardancy is an important fire safety element often emphasized by the construction sectors; It is utilized to prevent Material ignition, and thus limit the effects of Building fires. The preparation and characterization of Unsaturated Polyester Resin (UPR) Composite systems filled with recycled Expanded Polystyrene (EPS) were systematically investigated. Core additives such as Flame Retardant (FR) and Antioxidant (AO) were added to the Composite for imparting suitable characteristics to the Composite. The result obtained via the comparison of the various Composite systems studied had revealed that certain additives imparts higher flame retardancy levels than others, but each type of additives might had interacted with the polymeric matrixes differently. Thus, it could be concluded that the varying use of additives affects the systems' flame retardancy and thermal properties. Further in depth studies of the polymeric Composite may help in determining and confirming the actual mechanisms which these additives produces the effect on Material's flammability.

Qunli Zhang - One of the best experts on this subject based on the ideXlab platform.

  • PREPARATION and PERFORMANCE of Composite Building MaterialS with PHASE CHANGE Material for THERMAL STORAGE
    Energy Procedia, 2017
    Co-Authors: Qunli Zhang, Yang Rao, Yuqing Jiao, Liyan Li, Yinlong Li, Liwen Jin
    Abstract:

    The polyethylene glycol (PEG-1000) was selected as phase change Material (PCM) and the expanded perlite (EP), the granular activated carbon (GAC), the powdered activated carbon (PAC) and the expanded graphite (EG) were selected as porous adsorption Materials. The Composite phase change Material (CPCM) was prepared by the physical adsorption method. The Composite phase change Materials compound with the polyethylene glycol and the expanded graphite were picked by comparing and analyzing the adsorption capacity of such four types of porous Materials. And then the Composite Building Material for thermal storage mixed with the CPCM and the cement, water-reducer, early strength agent was prepared in the pressure condition of -0.05Mpa and the constant temperature condition of 70°C. Its thermal physical properties, the structural stability and the compression resistance capability of different quality proportion specimens were experimental researched. The results show that such Composite Building Materials with CPCM appears light density, high thermal conductivity, large heat storage capacity and good stability, and its compression resistance capability can satisfy the requirement of ordinary mortar Building Material.

Yinlong Li - One of the best experts on this subject based on the ideXlab platform.

  • PREPARATION and PERFORMANCE of Composite Building MaterialS with PHASE CHANGE Material for THERMAL STORAGE
    Energy Procedia, 2017
    Co-Authors: Qunli Zhang, Yang Rao, Yuqing Jiao, Liyan Li, Yinlong Li, Liwen Jin
    Abstract:

    The polyethylene glycol (PEG-1000) was selected as phase change Material (PCM) and the expanded perlite (EP), the granular activated carbon (GAC), the powdered activated carbon (PAC) and the expanded graphite (EG) were selected as porous adsorption Materials. The Composite phase change Material (CPCM) was prepared by the physical adsorption method. The Composite phase change Materials compound with the polyethylene glycol and the expanded graphite were picked by comparing and analyzing the adsorption capacity of such four types of porous Materials. And then the Composite Building Material for thermal storage mixed with the CPCM and the cement, water-reducer, early strength agent was prepared in the pressure condition of -0.05Mpa and the constant temperature condition of 70°C. Its thermal physical properties, the structural stability and the compression resistance capability of different quality proportion specimens were experimental researched. The results show that such Composite Building Materials with CPCM appears light density, high thermal conductivity, large heat storage capacity and good stability, and its compression resistance capability can satisfy the requirement of ordinary mortar Building Material.

Liyan Li - One of the best experts on this subject based on the ideXlab platform.

  • PREPARATION and PERFORMANCE of Composite Building MaterialS with PHASE CHANGE Material for THERMAL STORAGE
    Energy Procedia, 2017
    Co-Authors: Qunli Zhang, Yang Rao, Yuqing Jiao, Liyan Li, Yinlong Li, Liwen Jin
    Abstract:

    The polyethylene glycol (PEG-1000) was selected as phase change Material (PCM) and the expanded perlite (EP), the granular activated carbon (GAC), the powdered activated carbon (PAC) and the expanded graphite (EG) were selected as porous adsorption Materials. The Composite phase change Material (CPCM) was prepared by the physical adsorption method. The Composite phase change Materials compound with the polyethylene glycol and the expanded graphite were picked by comparing and analyzing the adsorption capacity of such four types of porous Materials. And then the Composite Building Material for thermal storage mixed with the CPCM and the cement, water-reducer, early strength agent was prepared in the pressure condition of -0.05Mpa and the constant temperature condition of 70°C. Its thermal physical properties, the structural stability and the compression resistance capability of different quality proportion specimens were experimental researched. The results show that such Composite Building Materials with CPCM appears light density, high thermal conductivity, large heat storage capacity and good stability, and its compression resistance capability can satisfy the requirement of ordinary mortar Building Material.