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  • Blackwell Science Ltd.  (1)
  • Emerald  (1)
  • Geological Society of America (GSA)
  • 2000-2004
  • 1995-1999  (2)
  • 1950-1954
  • 2017
  • 1997  (2)
  • 1
    Electronic Resource
    Electronic Resource
    Oxford, UK : Blackwell Science Ltd.
    Journal of metamorphic geology 15 (1997), S. 0 
    ISSN: 1525-1314
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Geosciences
    Notes: Calcsilicate granulites of probable Middle Proterozoic age (c.1000–1100 Ma) in the vicinity of Battye Glacier, northern Prince Charles Mountains, East Antarctica, contain prograde metamorphic assemblages comprising various combinations of wollastonite, scapolite, clinopyroxene, An-rich plagioclase, calcite, quartz, titanite and, rarely, orthoclase, ilmenite, phlogopite and graphite. Comparison of the prograde assemblages with calculated and experimentally determined phase relations in the simple CaO–Al2O3–SiO2–CO2–H2O system suggests peak metamorphism at ≥835 °C in the presence (in wollastonite-bearing assemblages at least) of a CO2-bearing fluid (XCO≥0.3) at a probable pressure of 6–7 kbar.Well-preserved retrograde reaction textures represent: (1) breakdown of scapolite to anorthite+calcite±quartz; (2) formation of grossular–andradite garnet and, locally, (3) epidote, both principally by reactions involving scapolite breakdown products and clinopyroxene; (4) local coupled replacement of clinopyroxene and ilmenite by hornblende and titanite, respectively; and finally (5) local sericitization of prograde and retrograde plagioclase. These retrograde reactions are interpreted to be the result of cooling and variable infiltration by H2O-rich fluids, possibly derived from crystallizing pegmatitic intrusions and segregations that may be partial melts, which are common throughout the area.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Bingley : Emerald
    International journal of quality & reliability management 14 (1997), S. 834-848 
    ISSN: 0265-671X
    Source: Emerald Fulltext Archive Database 1994-2005
    Topics: Economics
    Notes: States that the time taken to deliver a product to the market determines a company's success, and that research has shown that a delay of six months leads to 33 per cent of its potential profit being lost. Explores the existing method of assessing new product reliability, namely reliability demonstrating testing, and presents its numerous shortcomings and deficiencies. Analyses the results of performing reliability demonstration testing on eight products which support the viewpoint that it is no longer appropriate. Proposes a SURGE (stress unveiled reliability growth enhancement) process, leading to significant saving in development time and thereby time-to-market while providing a more reliable product and process. Places emphasis on the control of all of the development processes, design, manufacturing, and materials procurement and producing prototype units via the intended volume process. Performs monitoring by appropriate stress testing designed to precipitate all potential defects and involves testing beyond design specification. By correcting defects on the product, and ultimately on the processes which produced them, develops more reliable products. Concludes that the results of the SURGE process have led to a reduction in development times of 14 per cent while also reducing the time taken to ramp up to full volume production by 50 per cent.
    Type of Medium: Electronic Resource
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