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相关概念视频

Cold Weather Concreting01:27

Cold Weather Concreting

112
When freshly poured concrete is exposed to freezing temperatures before it has set, the water within the concrete can freeze. This expansion disrupts the setting process, delays chemical reactions necessary for hardening, and increases the volume of pores within the hardened concrete, which weakens its overall structure. If the concrete manages to reach an appreciable strength before it freezes, the damage can be somewhat mitigated.
To counteract the negative impacts of cold weather, ensuring...
112
Mass Concreting01:22

Mass Concreting

108
Mass concreting refers to the process of placing large volumes of concrete, such as in gravity dams. The heat generated during the cement hydration process and differential cooling rates within the concrete mass can lead to a temperature gradient, which can result in thermal cracks in the concrete mass.
To reduce the risk of such cracking, the concrete mix may incorporate low-heat cement and pozzolans to reduce the temperature rise. Pre-cooled angular aggregates and water-reducing admixtures...
108
Strength and Heat of Hydration01:29

Strength and Heat of Hydration

345
The hydration of cement is an exothermic reaction in which heat is generated as cement hydrates. This heat of hydration is critical to cement's strength development. The rate at which this heat is generated affects the temperature rise, with a majority of the heat being released early in the hydration process, half within the first three days, and about 75% within the first week.
The heat of hydration for each cement compound is significant; for instance, tricalcium aluminate (C3A) and...
345
Calorimetry01:19

Calorimetry

3.2K
When objects at different temperatures are placed in contact with each other but isolated from everything else, they attain thermal equilibrium. A container that prevents heat transfer in or out is called a calorimeter, and the use of a calorimeter to make measurements is called calorimetry. Generally, these measurements involve heat or specific heat capacity. The term "calorimetry problem" is used for any problem where the specified objects are thermally isolated from their...
3.2K
Joule-Thomson Effect01:21

Joule-Thomson Effect

5.4K
The Joule-Thomson effect, also known as the Joule-Kelvin effect, describes the temperature change of a fluid when it is forced through a valve or porous plug while keeping it in a thermally insulated environment. This experiment is called a throttling process. This is an important effect widely used in refrigeration and the liquefaction of gases.
This experiment forces high-pressure gas through a throttle valve or a porous plug to a lower-pressure region. The gas expands as it passes through to...
5.4K
Thermosensation01:43

Thermosensation

31.8K
Peripheral thermosensation is the perception of external temperature. A change in temperature (on the surface of the skin and other tissues) is detected by a family of temperature-sensitive ion channels called Transient Receptor Potential, or TRP, receptors. These receptors are located on free nerve endings. Those detecting cold temperatures are closer to the surface of the skin than the nerve endings detecting warmth. These thermoTRP channels, while temperature selective, have relatively...
31.8K

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相关实验视频

Updated: Sep 11, 2025

Author Spotlight: Advancements in High-Performance Thermoelectric Thin Films Through Radio Frequency Magnetron Sputtering
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基于水泥的热电材料,设备和应用.

Wanqiang Li1, Chunyu Du2, Lirong Liang1

  • 1College of Materials Science and Engineering, Shenzhen University, Shenzhen, 518055, People's Republic of China.

Nano-micro letters
|August 11, 2025
PubMed
概括

基于水泥的热电材料 (CTEM) 为建筑物中的能量收集提供了一个可持续的解决方案. 通过优化填充剂和矩阵,这些先进的复合材料可以实现高效的热电转换,减少建筑的环境影响.

关键词:
设备结构 设备结构功能性水泥是一种功能性水泥.智能建筑是智能建筑.热电材料是一种热电材料.

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科学领域:

  • 材料科学 材料科学 材料科学
  • 可持续建筑 可持续建筑
  • 热电能转换热电能转换

背景情况:

  • 传统的水泥生产是能源密集型的,也是碳排放的主要来源.
  • 越来越需要建筑材料,以平衡生态责任与先进的功能性能.
  • 水泥复合材料通过整合量身定制的填充剂,为热电 (TE) 应用提供了潜力.

研究的目的:

  • 提供基于水泥的热电材料 (CTEM) 的全面概述.
  • 通过填充剂优化和矩阵创新来审查TE绩效提升方面的进展.
  • 讨论智能和可持续基础设施中CTEM的制造,应用和未来方向.

主要方法:

  • 审查关于基于水泥的热电材料和设备的现有文献.
  • 通过材料设计 (填充剂和矩阵) 分析提高TE性能的策略.
  • 巩固基于水泥的热电装置 (CTED) 的制造技术和性能评估方法.

主要成果:

  • 将定制填充剂纳入水泥矩阵可以显著提高热电转换能力.
  • CTEM可以利用太阳辐射和回收废热进行双向能量转换.
  • 最近的进展侧重于优化填充剂,矩阵和制造,以提高TE性能.

结论:

  • 在建筑物中,CTEM为可持续的能源采集提供了一个有希望的途径.
  • 对材料设计,设备工程和可扩展制造的进一步研究对于实际部署至关重要.
  • 通过监控,保护和能源采集应用,CTEM可以为智能基础设施做出贡献.