Cutting and polishing optical and electronic materials

書誌事項

Cutting and polishing optical and electronic materials

G.W. Fynn and W.J.A. Powell

(The Adam Hilger series on optics and optoelectronics)

A. Hilger, c1988

2nd ed

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注記

Rev. ed. of: The cutting and polishing of electro-optic materials. c1979

Includes bibliographies and index

内容説明・目次

内容説明

This new edition of Fynn and Powell's highly successful The Cutting and Polishing of Electro-Optic Materials will serve as a practical 'hands on' guide to the machining of precision optical surfaces on optical and electronic materials. Clearly based on the sound experience and skills of the authors, the original book was quickly established as the standard work on this subject. This enlarged and updated edition covers several new materials and techniques. It describes shaping and measuring instruments and explains the practical details of the cutting, polishing, specimen handling and operations. Detailed directions are included for the working of over a hundred specific materials, ranging from robust solid state laser crystals to fragile semiconducting compounds. The title reflects a wealth of experience gathered in Government Research Establishments which specialise in making new materials and includes information which is not readily available elsewhere. Sufficient detail is provided for readers to construct and use the equipment in their own production laboratories. Primarily intended for technicians working with optical and electronic materials it is also relevant to optical devices, metallography, ceramics, geology, gemstones, metrology and production engineering.

目次

  • Cutting: General considerations
  • Prototype slow-speed peripheral-diamond saw and its consequences
  • Low-speed annular blade sawing
  • Reciprocating-work saw
  • Multi-disc sawing
  • Techniques and accessories. Lapping and polishing machines and jigs: Ring lapping
  • Polishing machines
  • Lapping and polishing jigs
  • Laps and polishers: Laps
  • Polishers
  • Abrasives
  • Precision surfacing and scrolling machine. Specimen mounting, demounting, cleaning and packaging: Mounting
  • Demounting and cleaning
  • Packaging. Special techniques: Scribe-and-break glass cutting
  • Trepanning tools
  • Shaping cylinders
  • Chamfering
  • Small hole graticules. Measurement: Basic equipment and techniques
  • Linear measurement
  • Plane-parallel measurement
  • Angular work
  • Measurement of flatness
  • Measurement of concave spherical surfaces
  • Surface finish inspection. Application: Laser rods
  • Miniature glass prisms
  • Surface acoustic wave (SAW) plates
  • Lithium fluoride
  • Proustite
  • Lead germanate
  • Water-soluble materials
  • Zinc sulphide and zinc selenide
  • Low-damage polishing of soft semiconducting compounds
  • Stainless steel, Electroless nickel plated and hardened steel surfaces
  • Gallium arsenide modulator rods. Glossary. Index. This new edition of Fynn and Powell's highly successful The Cutting and Polishing of Electro-Optic Materials will serve as a practical 'hands on' guide to the machining of precision optical surfaces on optical and electronic materials. Clearly based on the sound experience and skills of the authors, the original book was quickly established as the standard work on this subject. This enlarged and updated edition covers several new materials and techniques. It describes shaping and measuring instruments and explains the practical details of the cutting, polishing, specimen handling and related operations. Detailed directions are included for the working of over a hundred specific materials, ranging from robust solid state laser crystals to fragile semiconducting compounds. The title reflects a wealth of experience gathered in Government Research Establishments which specialise in making new materials and includes information which is not readily available elsewhere. Sufficient detail is provided for readers to construct and use the equipment in their own production laboratories. Primarily intended for technicians working with optical and electronic materials it is also relevant to optical devices, metallography, ceramics, geology, gemstones, metrology and production engineering.

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