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Front Matter: Volume 10374

发表年份
2017
引用次数
2
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摘要

Recently there is an intensive developing of intelligent industrial equipment.It can be rapidly adjusted for manufacturing and processing of certain details.This equipment can be robotic systems, automatic wrappers and markers, CNC machines and 3D printers.The equipment considered in the work is the system for selective curing of the photopolymer using the UV-laser, and using the UV radiation in such equipment leads to additional technical difficulties.In many cases for transporting the radiation from the laser to the point processed multi-mirror system is used, but such systems are usually difficult to adjust.Additionally, such multi-mirror systems are usually used as a part of equipment for laser cutting of metals using high-power IR-lasers.For the UV-lasers using many mirrors leads to crucial radiation losses because of many reflections.So, during the development of the optical system for technological equipment using UV-laser, we need to solve two main tasks: to transfer the radiation for working point with minimum losses and to include the system for managing the radiation spot position.We introduce the system for working with UV-laser with 1 W power and wavelength 423 nm based on fiber system.The modeling has shown that the optical system gives the sizes of the light spot of about 300 m, the designed optical and mechanical systems (prototypes) were manufactured and assembled.In the paper we present the layout of the technological unit, the results of the theoretical modeling of the parts of the system and some experimental results. Optical modeling of light scattering for refractive-index detection of liquids in a microcapillary with low-coherence rainbow diffractometry

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Front (military)Volume (thermodynamics)Computer scienceGeologyPhysicsOceanographyThermodynamics

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