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"In this handbook, the editors systematically present the maximum possible number of known eco-materials, including ”cyclic” materials; materials for ecology and environmental protection; materials for society and human health; and materials for energy based on two main criteria: their sources and their functions. Eco-materials (also called “environmentally friendly materials” or “environmentally preferable” materials) are materials that enhance, or refrain from damaging, the environment throughout their life cycles.
The chapters are written by global leaders in their fields. The book will cater to the strong and ever-increasing demand for energy, benign materials, and cost efficiency. Eco-materials is arguably one of the most important fields of modern science & technology. "
Switzerland: Springer Cham, 2019
e20503017
eBooks  Universitas Indonesia Library
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"In this handbook, the editors systematically present the maximum possible number of known eco-materials, including ”cyclic” materials; materials for ecology and environmental protection; materials for society and human health; and materials for energy based on two main criteria: their sources and their functions. Eco-materials (also called “environmentally friendly materials” or “environmentally preferable” materials) are materials that enhance, or refrain from damaging, the environment throughout their life cycles.
The chapters are written by global leaders in their fields. The book will cater to the strong and ever-increasing demand for energy, benign materials, and cost efficiency. Eco-materials is arguably one of the most important fields of modern science & technology. "
Switzerland: Springer Cham, 2019
e20503344
eBooks  Universitas Indonesia Library
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"The book introduces the latest advances in dental materials and biomaterials science. It contains a comprehensive introduction and covers ceramic, metallic, and polymeric oral biomaterials. The contributing authors are from all over the world and are distinguished in their disciplines. A solid primer for dental students, the book is also highly recommended for students of engineering and basic science who want to gain an insight in contemporary biomaterials science. For medical practitioners, the book offers an invaluable opportunity to learn about the latest steps in dental biomaterials."
Singapore: Pan Stanford, 2014
571.464 5 HAN
Buku Teks  Universitas Indonesia Library
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Delhi: Small Business Publications, [199?]
R 620.199 HAN
Buku Referensi  Universitas Indonesia Library
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New York: McGraw-Hill, 1958
R 620.01 MEC
Buku Referensi  Universitas Indonesia Library
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New York: McGraw-Hill, 1970
R 620.11297 HAN
Buku Referensi  Universitas Indonesia Library
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"This book provides a comprehensive reference for the studies of mechanical properties of materials over multiple length and time scales. The topics include nanomechanics, micromechanics, continuum mechanics, mechanical property measurements, and materials design. The handbook employs a consistent and systematic approach offering readers a user friendly reference ideal for frequent consultation. It is appropriate for an audience at of graduate students, faculties, researchers, and professionals in the fields of Materials Science, Mechanical Engineering, Civil Engineering, Engineering Mechanics, and Aerospace Engineering."
Singapore: Springer Singapore, 2019
e20509609
eBooks  Universitas Indonesia Library
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Roberge
New York: McGraw-Hill Book , 2000
R 620.112 23 ROB h
Buku Teks  Universitas Indonesia Library
cover
"Written in a versatile, contemporary style that will benefit both novice and expert alike, Biological and Biomedical Coatings Handbook, Two-Volume Set covers the state of the art in the development and implementation of advanced thin films and coatings in the biological field. Consisting of two volumes--Processing and Characterization and Applications--this handbook details the latest understanding of advances in the design and performance of biological and biomedical coatings, covering a vast array of material types, including bio-ceramics, polymers, glass, chitosan, and nanomaterials. Contri."
Boca Raton: CRC press, 2011
610.28 BIO
Buku Teks SO  Universitas Indonesia Library
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Tri Puji Astuti
"Bahan aseptik merupakan bahan yang sulit untuk didaur ulang, dan proses daur ulangnya harus dengan cara hydra pulping (pemisahan lapisan) dimana dibutuhkan biaya yang cukup mahal sehingga jarang sekali dimanfaatkan untuk didaur ulang. Skripsi ini membahas mengenai genteng yang terbuat
dari proses daur ulang cacah kotak aseptik dengan ukuran cacah campuran 50 mm x 5 mm dan 25 mm x 5 mm dengan menggunakan persentase perbandingan berat 50% : 50%. Genteng ini terbuat dari bahan aseptik kemasan minuman kotak yang terdiri dari kertas, plastik dan alumunium.
Kotak aseptik dicacah dan dikempa dengan tekanan 30 kg/cm2 dan suhu pemanasan 170 oC sehingga terbentuk genteng dengan ukuran cacah campuran 50 mm x 5 mm dan 25 mm x 5 mm dan genteng ukuran cacah 50 mm x 5 mm (100%) sebagai pembanding untuk penelitian ini. Dari penelitian ini, hal yang ingin ditinjau adalah kemampuan menyerap air, ketahanan
terhadap rembesan air dari genteng daur ulang dan kuat lentur genteng daur ulang, sehingga dapat dijadikan produk genteng. Dari hasil penelitian, didapatkan kesimpulan bahwa genteng dengan ukuran cacah campuran 50 mm x 5 mm : 25 mm x 5 mm (50% : 50%) dan genteng ukuran cacah 50 mm x 5 mm (100%) tidak memenuhi persyaratan peraturan genteng beton SNI-
0096-2007 dan genteng keramik SNI-2095-1998. Maka dilakukan pelapisan genteng dengan waterproof untuk kemampuan daya serap air.

Aseptic carton material is difficult material to be recycled where the only possible
recycling process available is by conducting hydra pulping process (separation
layer). Aseptic beverage box consist of paper, plastic and alumunium layers.
However as it requires a significant financial cost, it is rarely used for recycling.
This final project discusses the investigation of roof tile which was made from the
recycling of aseptic boxes. For the roof material Shredded aseptic boxes of size 50
mm x 5 mm and 25 mm x 5 mm were mixed with a percentage ratio of weight
50% : 50%. Another mix using 100% of size 50 mm x 5 mm was used as a
comparison material. Shredded aseptic boxes were compressed with a pressure of
30 kg/cm2 and heating temperature 170 oC in order to make solid roof tile. This
research has reviewed the tile absorption to water, the resistance to water ingress
and its flexural strength. The result of this investigation showed roof tile made
from recycled shredded beverage cartoon using two combined size 50 mm x 5
mm : 25 mm x 5 mm (50% : 50%) and roof tile using 100% of size 50 mm x 5
mm do not fulfill the requirements of concrete tile regulation SNI-0096-2007 and
ceramic tile regulation SNI-2095-1998. However resistance to water can be
improved by coating the tile with waterproofing materials. Therefore, its ability to
with stand water and bending loads are better then, thus the improved tile can be
catagories as quality tile grade two SNI-2095-1998 tile ceramic regulation.
"
Depok: Fakultas Teknik Universitas Indonesia, 2012
S42236
UI - Skripsi Open  Universitas Indonesia Library
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