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Macosko, Christopher W.
New York: Wiley-VCH, 1994
531.113 4 MAC r
Buku Teks SO  Universitas Indonesia Library
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Dedi Priadi
"Pada proses pengerjaan panas logam (hot forming) perilaku mekanik material dipengaruhi oleh temperatur kecepatan proses serta kondisi kontak permukaan. Untuk mendapatkan gaya deformasi pengerjaan panas perlu diketahui rheologi bahan kondisi panas. Dalam penelitian ini dipelajari perilaku rheologi kuningan C26800 yang digunakan sebagai bahan katup tabung gas yang mana dalam pembuatannya adalah dengan tempa panas. Dari hasil penelitian didapat bahwa persamaan konstitutif kuningan dapat digambarkan dengan persamaan..."
Depok: Fakultas Teknik Universitas Indonesia, 1998
JUTE-XII-4-Des1998-342
Artikel Jurnal  Universitas Indonesia Library
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"Trimethololethane (TME) tryhydrate particle suspended in water is a proper substance for latent heat tranportation in cooling system,since it has high heat tranfer and thermal capacity....."
Artikel Jurnal  Universitas Indonesia Library
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Aris Rosadi
"Aplikasi praktis dari solusi nanopartikel telah dibatasi karena memiliki dampak yang buruk pada degradasi mekanik. Tujuan penelitian ini adalah untuk menguji karakteristik aliran nanofluida. Hasil percobaan berupa kurva aliran dari nanofluida pada sebuah pipa kapiler yang mempunyai variabel tekanan. Yang diameter pipa tersebut adalah sebesar 3 mm. Tegangan geser dan regangan geser dihitung dengan mengukur pressure drop dan laju aliran volumetrik.
Pengukuran pressure drop dilakukan untuk Al2O3 dan TiO2 (konsentrasi 1%, 3% dan 5%) dengan menggunakan pressure tranducer. Power Law Index berada pada kisaran harga 0,95 - 1,0. Koefisien gesekan nanofluida yang telah didapat, dibandingkan dengan data dari air murni yang digambarkan dengan persamaan Blasius.

The practical application of the nanoparticle of solutions has been limited because it has an adverse effect on mechanical degradation. The aim of this study is to examine characteristics of flow properties of nanofluid. Experiments are carried out the measurement of the flow curve of the nanofluid by a capillary pipe applying variable pressure driven flow. It is 3 mm in the diameter of the capillary. The shear stress and the shear strain are calculated by measuring the pressure drop and the volumetric flow rate, respectively.
Measurements of pressure drop are carried out for Al2O3 and TiO2 at 1%, 3%, 5% particle volume with pure water by a pressure transducer. The power law exponent are about 0.95 - 1.0. The friction coefficient of nanofluid in a capillary pipe are fit with pure water data as Blasius's equation.
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Depok: Fakultas Teknik Universitas Indonesia, 2010
S52173
UI - Skripsi Open  Universitas Indonesia Library
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Chatarina Niken Dwi Wahyuni Setya Budi Utami
"[ABSTRAK
Penelitian susut dan rangkak di daerah tropis lembab ini dilakukan pada beton berkinerja tinggi fc’ 60 MPa dengan campuran tanpa abu terbang (TAT) dan dengan abu terbang (DAT). Spesimen susut berukuran 150х150х600 mm3 (3 buah) dan spesimen rangkak 200х600х2700 mm3 (1 buah). Pemberian beban dilakukan dengan cara pratekan sebesar 0.3 fc’ pada umur 15 hari, tulangan sebatas emberian beban tersebut. Ruang dikondisikan pada temperature 28±3OC dan kelembaban 72±5%.
Model dibuat berdasar pengamatan 800 hari dan 1000 hari. Data diolah dengan metode outlying ASTM E178-02 untuk nilai ekstrim dengan tingkat signifikansi 5%.
Tujuan penelitian ini adalah menghasilkan model rheologi susut dan rangkak beton berkinerja tinggi di daerah tropis lembab.
Model rheologi susut sampai jangka waktu 1000 hari adalah (H|N)-(H|N), sedangkan untuk rangkak (H|N)- (StV|N). Faktor koreksi susut untuk rasio air terhadap semen (w/cm) 0.26, 0.30, 0.34, dan 0.38 dalam jangka pendek (7-15 hari) berturut-turut adalah 1, 1.1, 2.1 dan 2.3, serta untuk jangka panjang 1, 1.13, 1.54 dan 1.65. Faktor koreksi jumlah semen sama dengan faktor koreksi ACI 209R Tropis lembab menyebabkan suhu maximum 24 jam pertama untuk skala penuh dapat
mencapai 2 kali suhu maximum di daerah non tropis lembab. Pencapaian suhu maximum tersebut setengah waktu pencapaian suhu maximum di daerah non tropis.
Laju regangan susut di daerah tropis lembab pada jangka pendek TAT adalah 1.1 dan jangka panjang 4.1 kali laju regangan ACI 209R dan bila dengan abu terbang 1.6 dan 2.4. Laju rangkak kedua campuran terhadap ACI adalah 0.8 untuk jangka pendek dan 1.8 untuk jangka panjang. Regangan susut jangka panjang terhadap ACI 209 untuk
TAT 1.7 dan DAT 1.4; sedang rangkak 1.3 dan 1.;

ABSTRACT
The research of shrinkage and creep in humid tropical weather area was done in highperformance concrete HPC fc of 6The research of shrinkage and creep in humid tropical weather area was done in high
performance concrete (HPC) fc’ of 60 MPa mixed with composition without fly ash called TAT and within fly ash called DAT. Three shrinkage specimens are 150х150х600 mm3 and one creep specimen is 200х600х2700 mm3. Loading was applied by prestressing of 0.3 fc’in 15th day, the reinforcement was limited by that prestressing. Room was set in 28 ± 3oC temperature and 72 ± 5% humidity. Rheological models were created based on 800 days and 1000 days
observation. Datas were processed by using ASTM E178-02 outlying methode for extreme value with 5% significant level.
The objective of this research is to create rheological models of shrinkage and creep of high performance concrete in humid tropical weather.
Shrinkage rheological model until the age of 1000 days is (H|N)-(H|N), while for creep is (H|N)- (StV|N). Shrinkage correction factors for water ratio to cement (w/cm) of 0.26, 0.30, 0.34, and 0.38 (7-15 days) are 1, 1.1, 2.1 and 2.3 respectively, and for long term are 1, 1.13, 1.54 dan 1.65. Correction factors of cement amount was similar with correction factor of ACI 209R.
Humid tropical area caused maximum temperature in first 24 hours could reach 2 times of maximum temperature in non humid tropical area (full scale). The maximum temperature achievement was much faster, that was a half of maximum temperature achievement in non humid tropical area. Reffered to ACI 209 R, the rate of shrinkage
in humid tropical area in short term is 1.1 and for long term is 4.1 times rate ACI 209R for TAT, 1.6 and 2.4 for DAT. Creep rate of the both mixture was compared with ACI 209R: 0.8 for short term and 1.8 for long term. Long term shrinkage strain of TAT and DAT was 1.7 and 1.4 times ACI 209R, while for creep was 1.3 and 1.0 MPa mixed with composition without fly ashcalled TAT and within fly ash called DAT Three shrinkage specimens are150 150 600 mm3 and one creep specimen is 200 600 2700 mm3 Loading wasapplied by prestressing of 0 3 fc in 15th day the reinforcement was limited by thatprestressing Room was set in 28 3oC temperature and 72 5 humidity Rheological models were created based on 800 days and 1000 daysobservation Datas were processed by using ASTM E178 02 outlying methode forextreme value with 5 significant level The objective of this research is to create rheological models of shrinkage and creepof high performance concrete in humid tropical weather Shrinkage rheological model until the age of 1000 days is H N H N while forcreep is H N StV N Shrinkage correction factors for water ratio to cement w cm of 0 26 0 30 0 34 and 0 38 7 15 days are 1 1 1 2 1 and 2 3 respectively and for long term are 1 1 13 1 54 dan 1 65 Correction factors of cement amount wassimilar with correction factor of ACI 209R Humid tropical area caused maximum temperature in first 24 hours could reach 2times of maximum temperature in non humid tropical area full scale The maximumtemperature achievement was much faster that was a half of maximum temperatureachievement in non humid tropical area Reffered to ACI 209 R the rate of shrinkagein humid tropical area in short term is 1 1 and for long term is 4 1 times rate ACI209R for TAT 1 6 and 2 4 for DAT Creep rate of the both mixture was comparedwith ACI 209R 0 8 for short term and 1 8 for long term Long term shrinkage strainof TAT and DAT was 1 7 and 1 4 times ACI 209R while for creep was 1 3 and 1 , The research of shrinkage and creep in humid tropical weather area was done in highperformance concrete HPC fc of 6The research of shrinkage and creep in humid tropical weather area was done in high
performance concrete (HPC) fc’ of 60 MPa mixed with composition without fly ash called TAT and within fly ash called DAT. Three shrinkage specimens are 150х150х600 mm3 and one creep specimen is 200х600х2700 mm3. Loading was applied by prestressing of 0.3 fc’in 15th day, the reinforcement was limited by that prestressing. Room was set in 28 ± 3oC temperature and 72 ± 5% humidity. Rheological models were created based on 800 days and 1000 days
observation. Datas were processed by using ASTM E178-02 outlying methode for extreme value with 5% significant level.
The objective of this research is to create rheological models of shrinkage and creep of high performance concrete in humid tropical weather.
Shrinkage rheological model until the age of 1000 days is (H|N)-(H|N), while for creep is (H|N)- (StV|N). Shrinkage correction factors for water ratio to cement (w/cm) of 0.26, 0.30, 0.34, and 0.38 (7-15 days) are 1, 1.1, 2.1 and 2.3 respectively, and for long term are 1, 1.13, 1.54 dan 1.65. Correction factors of cement amount was similar with correction factor of ACI 209R.
Humid tropical area caused maximum temperature in first 24 hours could reach 2 times of maximum temperature in non humid tropical area (full scale). The maximum temperature achievement was much faster, that was a half of maximum temperature achievement in non humid tropical area. Reffered to ACI 209 R, the rate of shrinkage
in humid tropical area in short term is 1.1 and for long term is 4.1 times rate ACI 209R for TAT, 1.6 and 2.4 for DAT. Creep rate of the both mixture was compared with ACI 209R: 0.8 for short term and 1.8 for long term. Long term shrinkage strain of TAT and DAT was 1.7 and 1.4 times ACI 209R, while for creep was 1.3 and 1.0 MPa mixed with composition without fly ashcalled TAT and within fly ash called DAT Three shrinkage specimens are150 150 600 mm3 and one creep specimen is 200 600 2700 mm3 Loading wasapplied by prestressing of 0 3 fc in 15th day the reinforcement was limited by thatprestressing Room was set in 28 3oC temperature and 72 5 humidity Rheological models were created based on 800 days and 1000 daysobservation Datas were processed by using ASTM E178 02 outlying methode forextreme value with 5 significant level The objective of this research is to create rheological models of shrinkage and creepof high performance concrete in humid tropical weather Shrinkage rheological model until the age of 1000 days is H N H N while forcreep is H N StV N Shrinkage correction factors for water ratio to cement w cm of 0 26 0 30 0 34 and 0 38 7 15 days are 1 1 1 2 1 and 2 3 respectively and for long term are 1 1 13 1 54 dan 1 65 Correction factors of cement amount wassimilar with correction factor of ACI 209R Humid tropical area caused maximum temperature in first 24 hours could reach 2times of maximum temperature in non humid tropical area full scale The maximumtemperature achievement was much faster that was a half of maximum temperatureachievement in non humid tropical area Reffered to ACI 209 R the rate of shrinkagein humid tropical area in short term is 1 1 and for long term is 4 1 times rate ACI209R for TAT 1 6 and 2 4 for DAT Creep rate of the both mixture was comparedwith ACI 209R 0 8 for short term and 1 8 for long term Long term shrinkage strainof TAT and DAT was 1 7 and 1 4 times ACI 209R while for creep was 1 3 and 1 ]"
2014
D2015
UI - Disertasi Membership  Universitas Indonesia Library
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Billington, E.W.
New York : McGraw-Hill International Book Company, 1981
531.38 BIL p
Buku Teks SO  Universitas Indonesia Library
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Gabby Rizkiyana Khalawi
"Penelitian ini menampilkan model rheologi beton berkinerja tinggi (High Performance Concrete) dengan kuat tekan 60 MPa pada umur awal beton. Dua buah balok yang digunakan berukuran 150mm x 150mm x 600mm berdasarkan ASTM C78-94. Pengamatan dilakukan selama 24 jam di awal atau pada saat sebelum curing menggunakan Vibrating Wire Embedded Strain Gages.Model rheologi didekati dengan menggunakan data regangan susut rata-rata dari kedua balok tersebut, serta beberapa parameter rheologi diperoleh dengan menggunakan trial and error. Model rheologi beton berkinerja tinggi pada umur awal beton dibagi menjadi lima rheologi yang terdiri dari Solidifying Liquid - Kelvin Voigt Niken - Kelvin Voigt Niken - Kelvin Voigt Niken - Kelvin Voigt Niken.

This study presents rheological model of high performance concrete with 60 MPa compressive strength of concrete at early age. The size of these two beams is 150 mm x 150 mm x 600 mm according to ASTM C78-94. Observations were made during 24 hours at the beginning or at the time before curing using vibrating wire embeded strain gages. Rheological models approximated using shrinkage strain data is the average of the two beams, as well as some rheological parameters obtained by using trial and error. Rheological models of high performance concrete at early age concrete is divided into five rheological model, consists of Solidifying Liquid - Kelvin Voigt Niken - Kelvin Voigt Niken - Kelvin Voigt Niken - Kelvin Voigt Niken."
Depok: Fakultas Teknik Universitas Indonesia, 2013
T38680
UI - Tesis Membership  Universitas Indonesia Library
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"Jika dikelompokkan menurut sifat mekaniknya, biasanya material atau bahan disebut elastik atau plastik. Istilah plastik biasanya disamakan dengan istilah viskos. Elastik adalah sifat "kembali ke ukuran semula jika gaya pada bahan itu ditiadakan", sedangkan plastik atau viskos adalah "tidak kembali sedikit pun ke ukuran semula jika gaya tersebut ditiadakan".
Akan tetapi cukup banyak bahan sulit dikelompokkan ke dalam dua jenis itu, karena hanya kembali ke ukuran semula. Hal itu disebut sifat reologis."
MPI 1:1 (1998)
Artikel Jurnal  Universitas Indonesia Library
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"EPDM dan NR merupakan polimer yang tidak misibel dan kompatibel. Penambahan kompatibiliser maleat anhidrat diharapkan menghasilkan campuran yang kompatibel dengan sifat mekanik yang baik. Pencampuran EPDM dan NR dilakukan menggunakan alat two roll mill, dengan rasio EPDM/NR adalah: 100/0, 80/20, 70/30, 60/40, 50/50, dan 40/60 phr.
Tujuan dari penelitian ini adalah untuk mengetahui pengaruh rasio EPDM/NR terhadap sifat reologi, aging, termal dan swelling dari campuran EPDM/NR.
Hasil penelitian menunjukkan penambahan NR mempengaruhi torsi maksimum, waktu scorch dan waktu vulkanisasi optimum. Penambahan EPDM memberikan sifat aging, termal dan swelling lebih baik.

The blends of EPDM and NR are immiscible in nature and incompatible. Introducing maleic anhydride as a compatibilizer into the blends was expected to produce compatible blends with balanced mechanical properties.
The purpose of this research was to determine the effect of EPDM/NR ratio on the rheological, aging, thermal and swelling properties of the blends. The variation of EPDM/NR ratio were 100/0, 80/20, 70/30, 60/40, 50/50, and 40/60 phr. The blends were mixed using two roll mill.
The results showed that the addition of NR affects the maximum torque, scorch time, and optimum vulcanization time. In the blends, EPDM plays an important role in improving aging, swelling, thermal properties.
"
[Place of publication not identified]: Balai Besar Kulit, Karet, dan Plastik, 2016
530 KKP 32:1 (2016)
Artikel Jurnal  Universitas Indonesia Library
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Blazek, J.
Elsevier Sciences, 2006
532BLAC001
Multimedia  Universitas Indonesia Library
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