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106INNOVATION UKINNOVATION Material wealth The Materials KTN connects UK business with academia to translate innovation into wealth creation " Around 70% of all product innovation is enabled by developments in materials technology. Couple this with the strong UK capability in product design and the resulting connection is a powerful mechanism for increased innovation. This is why the support of the Materials KTN is so vital to UK industry." Dr Robert Quarshie, Director of the Materials KTN Materials technologies underpin manufacturing and con-tribute to innovation in automotive, aerospace, power generation, construction, security, healthcare, electronics, consumer goods and retail. Examples of advancement in materials technology include the use of advanced poly-mer composites in racing cars to reduce weight, and the use of advanced high- strength steels and aluminium in family cars to reduce emissions and lower fuel bills. The UK has developed new ways of designing lighter-weight and reusable materials for packaging with smart choices of materials. Their increasing use for healthcare applications and by the fashion industry is proving to be a testimony of the work of the Materials KTN in combin-ing smart- materials technology with technical textiles and engaging widely with product designers. A major challenge for the UK is to ensure that the ongo-ing innovations in materials continue to translate into wealth creation by UK businesses. Climate change, cleaner energy sources, waste reuse and recycling are all at the forefront of most nations' strategic plans. These present many opportunities for materials knowledge to be integrated with sustainable design concepts to meet the growing demand. Materials advances will be at the heart of solutions enabling, for example, the effective end- of- life deconstruction of structures and the recycling and reuse of product waste. Emerging technologies, such as improved nanoscale technologies, and emerging application areas such as Space, where the sector is becoming a growing success for the UK, all require the early engagement of the mate-rials industry. Materials for space applications have to endure the harsh environment of vacuum, day and night thermal cycling of between - 25 º C to 125 º C, vibration, monatomic oxygen attack, radiation, debris impacts and other severe environmental conditions. A whole range of modern technologies such as telecommunications, navi-gation, monitoring global climate change and the Inter-net depend on materials that can endure such conditions. Materials Materials ktn