The Xilinx FPGA-based high-speed processor, named Vexir, has been used in this paper for the processing of long-range optical communication signal. The Vexir features a number of advantages over other devices, such as cost, size, power, and testability.
A relatively simple model has been developed to describe the effect of microstructural evolution on the creep of a polycrystalline material. The creep is modeled as a decomposition of the creep strain rate into creep strain rate components involving two types of damage: 1) damage that is independent of the rate and 2) damage that is associated with the rate. An analytical expression describing the creep rate in terms of the damage parameters is derived that appears to fit experimental data well for a wide range of creep conditions. Microstructural evolution is modeled as a sequence of damage events with a spectrum of time constants. The creep behavior and microstructural evolution are related through the functional form of the creep rate and the damage spectrum. The evolution of the material microstructure is strongly influenced by rate-dependent damage and strain hardening, with crack arrest occurring at relatively short characteristic time scales.
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