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6 Sentences With "brittler"

How to use brittler in a sentence? Find typical usage patterns (collocations)/phrases/context for "brittler" and check conjugation/comparative form for "brittler". Mastering all the usages of "brittler" from sentence examples published by news publications.

Study Commission on U.S. Policy toward Southern Africa (U.S.), South Africa: Time Running Out : the Report of the Study Commission on U.S p. 345 In the 1960s, the farm equipment, construction equipment, and heavy electrical industries were not as profitable for Allis-Chalmers as they had been in the 1930s through 1950s. Reasonable prosperity continued in the farm equipment line, but the economics of all the industries shifted toward greater uncertainty and brittler success for firms that didn't become number one or two in a field.
Carbide, ceramics (such as cubic boron nitride) and diamond, having higher hardness than HSS, all allow faster material removal than HSS in most cases. Because these materials are more expensive and brittler than steel, typically the body of the cutting tool is made of steel, and a small cutting edge made of the harder material is attached. The cutting edge is usually either screwed or clamped on (in this case it is called an insert), or brazed on to a steel shank (this is usually only done for carbide).
If applied during very dry weather, the layers of stucco are sprayed with water for one or more days to keep a level of moisture within the stucco while it cures, a process known as "moist curing." If the stucco dries too soon, the chemical hardening ("hydration") will be incomplete, resulting in a weaker and brittler stucco. The final, exterior layer is the "finish coat", of which there are two recommended types: # Acrylic Finish, an acrylic- based finish from thick. It can be applied in many ways and can be ordered in any color.
This is due to the cleaning of chandeliered ice and creation of "hooks", which are pockets formed by the tools' picks, reducing the effort expended in cleaning and tool placement. Routes with high-flow seeps also tend to become easier as the season progresses due to the increase in volume of ice. Low-flow seeps, however (e.g. French Reality, Banff; Moonlight/Snowline, Kananaskis), often form early in the season (September–November) when the flow is good from latent summer heat, and then slow down or even stop with the deepening winter frost; subsequent ablation (and destruction by climbing) of the ice often makes for thinner and brittler ice with time.
Blades for bandsaws and reciprocating saws are often made with bimetal construction. The teeth, made of high speed steel, are bonded (by various methods, for example, electron beam welding or laser beam welding) to the high-strength carbon steel base. Such construction makes for blades with a better combination of cutting speed and durability than shown by non-bimetal blades, because the advantages and disadvantages of each of the metals are applied in the best locations: the teeth are harder (and thus cut better), but therefore also brittler; meanwhile, the body area of the band is softer (which would make for poorer teeth), but also less brittle, and thus more resistant to cracking and breaking (which is desirable in the body area).
For isotropic materials, the presence of fractures affects the Young and the shear moduli perpendicular to the planes of the cracks, which decrease (Young's modulus faster than the shear modulus) as the fracture density increases, indicating that the presence of cracks makes bodies brittler. Microscopically, the stress–strain relationship of materials is in general governed by the Helmholtz free energy, a thermodynamic quantity. Molecules settle in the configuration which minimizes the free energy, subject to constraints derived from their structure, and, depending on whether the energy or the entropy term dominates the free energy, materials can broadly be classified as energy- elastic and entropy-elastic. As such, microscopic factors affecting the free energy, such as the equilibrium distance between molecules, can affect the elasticity of materials: for instance, in inorganic materials, as the equilibrium distance between molecules at 0 K increases, the bulk modulus decreases.

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