TL;DR: In this article, eutectic salt/ceramic composites with MgO serving as supporting material and Na2CO3-K 2CO3 eutectoric salt acting as thermal absorbing materials were prepared by the form-stable technique.
TL;DR: In this paper, a water-soluble soluble salt ink for the soluble salt ceramic tile was used to produce more abundant decorative effects, which solved the following problems in the prior art: the pattern obtained by the solvent-salt technique does not have bright and abundant colors.
Abstract: The invention discloses a soluble salt ceramic tile and a production method thereof. The method comprises the following steps: (1) preparing ceramic tile powder for later use by a conventional method; (2) preparing a water-soluble soluble salt ink for the soluble salt ceramic tile; (3) preparing surface paste of the soluble salt ceramic tile; (4) preparing a ceramic tile green compact; (5) drying; (6) applying the surface paste; (7) carrying out ink-jet printing; (8) drying and firing; (9) edging; and (10) sorting, packaging and warehousing. The invention solves the following problems in the soluble salt ceramic tile production process in the prior art: the pattern obtained by the soluble salt technique does not have bright and abundant colors; in the subsequent polishing process, the consumption of the grinding material, energy sources and industrial water is high, and abundant polishing waste is generated, thereby influencing and polluting the environment; and the soluble salt ceramic tile has high requirements for the green compact raw materials, thereby causing increase of production cost and great waste of resources. The production method disclosed by the invention is more environment-friendly and economic, and has more abundant decorative effects.
TL;DR: In this paper, two different proton co-ordination states and conduction mechanisms have been recognized and suggested for this system, and two different conduction mechanism has been suggested for the system.
TL;DR: In this paper, a technique for inorganic salt/ceramic base high-temperature phase change energy-storage material comprises: first, preparing the porous ceramic precast body with three-dimensional connected ultrastructure; heating the phase-change potential heat heat storage inorganic slat material to full fusion in normal-pressure resistance furnace, dipping the pre-cast body rapidly into the fused material; finally, cooling to room temperature, taking surface desalination treatment.
Abstract: The disclosed preparation technique for inorganic salt/ceramic-base high-temperature phase- change energy-storage material comprises: first, preparing the porous ceramic precast body with three-dimensional connected ultrastructure; heating the phase-change potential heat heat-storage inorganic slat material to full fusion in normal-pressure resistance furnace, dipping the precast body rapidly into the fused material; finally, cooling to room temperature, taking surface desalination treatment. Wherein, as the well wettability and capillary tension effect, the inorganic salt will unprompted infiltrate into the precast body. This invention simplifies process, and improves heat exchange efficiency greatly.
TL;DR: Developpement d'un accumulateur de chaleur latente et sensible utilisant des sols a transition de phase dans une ceramique a pores submicroniques Developpements du procede de preparation du materiau composite Fiabilite des materiaux resultats d'essais de performance a la charge and a la decharge
Abstract: Developpement d'un accumulateur de chaleur latente et sensible utilisant des sols a transition de phase dans une ceramique a pores submicroniques Developpement du procede de preparation du materiau composite Fiabilite des materiaux resultats d'essais de performance a la charge et a la decharge