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The line determines a solid solubility limit which changes as a function of temperature.
It defines the limit of solid solubility in an equilibrium diagram.
This mixture has a solid solubility which varies dramatically with temperature, allowing it to undergo precipitation strengthening.
Precipitation strengthening is possible if the line of solid solubility slopes strongly toward the center of a phase diagram.
In microelectronic fabrication, solid solubility refers to the maximum concentration of impurities one can place into the substrate.
The solid solubility of the catalyzing agent is low in the solid and liquid phases of the substrate material.
There is limited solid solubility in either one of the constituent phases, permitting a wide range of compositions to be investigated and compared to each other.
This section starts by explaining that most alloy systems do not exhibit complete solid solubility and that two solid phases often exist together in equilibrium.
At low concentrations of hydrogen, below the solid solubility limit, stress-assisted hydride formation causes the embrittlement which is enhanced by slow straining.
It does not form wide solid solution ranges in other metals in general, and there are few elements that have appreciable solid solubility in tin.
Basic silicon wafer parameters, solid solubility of dopants in silicon, defects, and basic economics of operations.
Metals like niobium and tantalum dissolve hydrogen and experience hardening and embrittlement at concentrations much below their solid solubility limit.
Rubidium carbonate was found to have a negligible solid solubility in rubidium iodide, so that conductivity measurements could not be made on anion-doped crystals.
Log P's of neutral immiscible liquids run parallel with their solubilities in water; however for solids solubility also depends on the energy required to break the crystal lattice.
If the structures of the two metals are the same, there can even be complete solid solubility, as in the case of electrum, the alloys of silver and gold.
Transient Nucleation Effects on Extension of Solid Solubility in Al-Ti and Al-Zr Alloys.
Precipitation hardening relies on changes in solid solubility with temperature to produce fine particles of an impurity phase, which impede the movement of dislocations, or defects in a crystal's lattice.
The first page explains that in order to be effective solid solution strengtheners, alloy additions must satisfy 2 criteria: high RT solid solubility; atomic misfit to create local compressive or tensile strains.
Solution-Treated and Precipitation-Hardened This is an example of a peritectic system but the most important aspect of the system is the marked temperature dependence of the solid solubility of beryllium in copper.
This is due to their low solid solubility limits (above a very small percentage, they precipitate out as intermetallic compounds) and because they behave as active cathodic sites that reduce water and cause the loss of magnesium.
The smaller size of the yttrium group allows it a greater solid solubility in the rock-forming minerals that comprise Earth's mantle, and thus yttrium and the yttrium earths show less enrichment in Earth's crust relative to chondritic abundance, than does cerium and the cerium earths.