3 resultados para Twinning

em Aston University Research Archive


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The fatigue behaviour of the cold chamber pressure-die-cast alloys: Mazak3, ZA8, ZA27, M3K, ZA8K, ZA27K, K1, K2 and K3 was investigated at temperature of 20°C. The alloys M3K, ZA8K and ZA27K were also examined at temperatures of 50 and 100°C. The ratio between fatigue strength and tensile strength was established at 20°C at 107 cycles. The fatigue life prediction of the alloys M3K, ZA8K and ZA27K was formulated at 20, 50 and 100°C. The prediction formulae were found to be reasonably accurate. All of the experimental alloys were heterogeneous and contained large but varying amounts of pores. These pores were a major contribution and dominated the alloys fatigue failure. Their effect, however, on tensile failure was negligible. The ZA27K possessed the highest tensile strength but the lowest fatigue strength. The relationship between the fracture topography and the microstructure was also determined by the use of a mixed signal of a secondary electron and a back-scattered electron on the SEM. The tensile strength of the experimental alloys was directly proportional to the aluminium content within the alloys. The effect of copper content was also investigated within the alloys K1, K2, ZA8K and K3 which contained 0%, 0.5%, 1.0% and 2.0% respectively. It was determined that the fatigue and tensile strengths improved with higher copper contents. Upon ageing the alloys Mazak3, ZA8 and ZA27 at an ambient temperature for 5 years, copper was also found to influence and maintain the metastable Zn-Al (αm) phase. The copper free Mazak3 upon ageing lost this metastable phase. The 1.0% copper ZA8 alloy had lost almost 50% of its metastable phase. Finally the 2.0% copper ZA27 had merely lost 10% of its metastable phase. The cph zinc contained a limited number of slip systems, therefore twinning deformation was unavoidable in both fatigue and tensile testing.

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What does it mean to be white and working class in modern Britain? The Joseph Rowntree Foundation’s studies of traditionally white estates in Bradford, London, Coventry and Birmingham are part of a growing body of research into ‘white identities’. This paper: • identifies common findings from JRF research into traditionally white estates, in the context of other similar work; • suggests how issues of white identity can be better understood and makes recommendations for policy and practice. Key points: • Profound economic and social change has increased isolation and fear in traditionally white estates. Residents often claim that things were better in the past. • ‘Estatism’ refers to specific social dynamics associated with council estates and prejudice towards residents based on where they live. This can result in lowered self-esteem and reluctance to participate in community campaigns. • People on traditionally white estates often feel they are not listened to by outside agencies. Consultations can raise hopes but ultimately reinforce disengagement. Initiatives to ensure equality have become associated with political correctness (‘PC’). • White working-class people feel they are bound by values of hard work, reciprocity and support. They are frustrated by the closure and lack of access to community facilities. The social class system simultaneously disadvantages the working class while giving advantage to other classes. • There is a strong desire for allocation of resources to be fair, with a widespread perception that minorities are given preference. Blaming incomers for decline is common, with the target of blame differing between sites. Participants did not want to be considered racist and felt that labelling ideas as racist prevents discussion. Similarly, the term ‘PC’ can also be used to shut down debate. • Recommendations include community-twinning, new ways of accessing local authorities, involvement from the private sector in disadvantaged areas and local panels to define and develop the ‘Big Society’. Initiatives aimed solely at white working-class people are unlikely to be successful.

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Zeron 100 duplex stainless steel is susceptible to embrittlement following ageing at temperatures between 350 °C and 450 °C. The embrittlement is associated with cleavage of the age-hardened ferrite phase, initiated by deformation twinning. This can result in order of magnitude increases in the fatigue crack propagation rate. The effects of ageing on the mechanisms of fatigue crack propagation in Zero 100 are investigated, and a quantitative model is developed, accounting for the effects of hardness, temperature, stress level and microstructure on the fatigue crack growth rate. © 1994.