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Koko Eko Harjono
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2007
T39839
UI - Tesis Membership  Universitas Indonesia Library
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Universitas Indonesia, 1992
S28061
UI - Skripsi Membership  Universitas Indonesia Library
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Hutagaol, Pra Gogo
"Hasil penelitian pembuatan mortar kertas yang menggunakan abu sekam padi sebagai filler, memiliki sifat fisik dan mekanis yang lebih baik dibandingkan mortar kertas biasa. Benda uji dibuat dengan persentase kertas 10% terhadap berat semen dan persentase abu sekam padi adalah 0%, 5%, 10%, 15%, dan 20% terhadap berat semen. Pengujian kuat tekan dan kuat lentur dilakukan pada hari ke-7, 14, 21 dan 28. Pengujian susut dilakukan hingga hari ke-28. Pengujian density, absorbsi dan daya serap permukaan dilakukan setelah mencapai umur 28 hari. Dari hasil penelitian, didapatkan bahwa mortar kertas dengan campuran abu sekam padi 5% adalah komposisi yang paling optimal untuk menghasilkan sifat fisik dan mekanik yang lebih baik dari mortar kertas biasa dengan nilai kuat tekan 17,81 MPa, nilai kuat lentur 13,01 MPa, nilai susut 0,16%, nilai density 1,26 gr/cm3, nilai absorbsi 17,74% dan nilai daya serap permukaan 18,04 gr/mnt/193,55 cm2.

The outcomes of the research on physical and mechanical properties of papermortar using rice husk ash as a filler, represented better result than those of regular paper-mortar. Test specimens was made with paper percentage is 10% by weight of cement and rice husk ash percentage is 0%, 5%, 10%, 15%, and 20% by weight of cement. The compressive strength test and flexural strength test performed on day 7, 14, 21 and 28. Shrinkage test performed until the 28th day. Density, absorption and absorption surface test performed after reaching the age of 28 days. From the research, it was found that the mortar paper with a mixture of 5% rice husk ash is the most optimal composition to produce physical and mechanical properties are better than regular paper mortar with value of compressive strength 17.81 MPa, value of flexural strength 13.01 MPa, shrinkage rate 0.16%, value of density 1.26 g/cm3, the absorption rate 17.74% and value of the absorption surface 18.04 g/min/193.55 cm2."
Depok: Fakultas Teknik Universitas Indonesia, 2014
S58490
UI - Skripsi Membership  Universitas Indonesia Library
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Moh. Azhar
"[ABSTRAK
Telah dilakukan penelitian pembuatan beton ringan atau lightweight
concrete (LWC) menggunakan batu apug (BA) dan abu sekam padi (ASP).
Sampel beton ringan yang dibuat mengandung BA dengan fraksi berbeda, adapun
material semen, pasir, dan abu sekam padi volumenya dijaga tetap. Terdapat dua
parameter utama yang menentukan sifat mekanik sampel LWC masing-masing
adalah densitas sampel dan rasio air/semen (w/c). Sifat mekanik yang paling
utama dari LWC adalah kekuatan tekan. Pada campuran dengan fraksi volume
batu apung terbesar (100%) menghasilkan densitas dan kekuatan tekan paling
rendah masing-masing sebesar (1389,6 kg/m3 dan 11,1 MPa). Diketahui bahwa
makin rendah fraksi batu apung dalam sampel beton makin tinggi nilai densitas
dan kekuatan tekannya, disebabkan oleh tingginya nilai fraksi pori baik pori
terbuka maupun pori tertutup dalam sampel beton. Observasi terhadap fotomikro
SEM batu apung menunjukkan bahwa terdapat sejumlah besar pori dengan bentuk
memanjang ke bagian dalam dari permukaan sampel beton. Pori hadir dengan
kerapatan jumlah pori relatif besar serta dengan ukuran yang bervariasi. Fakta ini
menjelaskan mengapa batu apung besifat ringan karena memiliki densitas massa
yang rendah. Pola difraksi sinar X sampel beton ringan memperlihatkan dominasi
fasa kristalin diidentifikasi sebagai fasa quartz (SiO2). Namun dapat dipastikan
sampel beton ringan terdiri dari fasa campuran antara fasa kristalin dan dengan
sedikit fasa amorph.
Fotomikro SEM beton ringan menunjukkan bahwa senyawa Kalsium Silikat
Hidrat (CSH) mulai tumbuh pada waktu awal proses hidrasi dan terus
berkembang sampai umur beton mencapai umur hidrasi 28 hari yang ditandai
dengan sifat fisik yang padat dan peningkatan kekuatan beton. Dapat dipastikan
bahwa senyawa CSH ini memiliki peranan penting terhadap pengaturan sifat
mekanik seperti kekuatan tekan. Penelitian ini menyimpulkan bahwa batu apung
dan abu sekam padi adalah material berbasis silika amorph yang memiliki densitas
lebih rendah terutama dibandingkan dengan material pembentuk beton lainnya.
Baik densitas dan kekuatan tekan sampel beton ringan ditentukan oleh rasio antara
batu apung dan abu sekam padi. Ditemukan rasio terkecil BA/ASP yaitu 8
menghasilkan nilai densitas dan kekuatan tekan optimal, masing-masing pada usia
beton 28 hari sebesar 1891 kg/m3 dan 23 MPa. Komposisi beton ringan yang
terbaik diperoleh dari hasil penelitian ini adalah komposisi campuran PCC (1,00) :
Pasir (1,00) : ASP (0,05) : BA (0,50) dengan nilai Slump 8 cm ditandai oleh nilai
rasio antara kuat tekan dan densitas tertinggi adalah 1285.;

ABSTRACT
Research studies on the manufacture of lightweight concrete (LWC) using
pumice and rice husk ash (RHA) materials have been done. LWC samples were
made of pumice materials with a different mass fraction, while the cement, sand,
and rice husk ash materials were keep fixed. It was found that there are two main
parameters that determine the mechanical properties of LWC which are density
and the water and cement ratio (w/c ratio). The main mechanical properties of
LWC sample is the power press. Samples with the largest volume fraction of
pumice (100%) resulted in lightest density (1389.6 kg/m3) and the smallest
strength of LWC (11.1 MPa). It was found that, the lower the mass fraction of
pumice in LWC samples, the higher the density values and compressive strength
were obtained. This was caused by the high mas fraction value of pores, which
were both open and closed pores. Scanning electron micorscopy (SEM) images
for the pumice showed that the there are a large number of regular and structured
pores extending deep inside the surface of the sample. It was observed that pores
present with pore size does not vary significantly but with the density of the
relatively large number of pores, indicating pumice has a low mass density. The
XRD pattern of the lightweight concrete samples indicated that the samples were
dominated by crystalline phases in which the quartz (SiO2) is the main phase and
a small fraction of amorphous phase was also obtained.
SEM images of lightweight concrete samples showed that the structure of
Calcium Silicate Hydrates (CSH) started growing at the beginning of hydration
time and continue to evolve into a more solid structure until the age of 28 days,
where the compound has an important role to the mechanical properties such as
compressive strength. The study concluded that the pumice and rice husk ash is
are amorphous silica-based material which has a lower density compared to other
concrete forming material such as cement and sands. Both density and light
weight concrete compressive strength are determined by the ratio between pumice
and rice husk ash, in which the smallest ratio 8 resulted in the largest density and
compressive strength, which are 1890.5 kg/m3 and 23.2 MPa respectively at the
age of 28 days. The study concluded that the best composition for lightweight
concrete samples was the following: PCC (1,00): Sand (1,00): ASP (0,05): BA
(0,50) with a slump value of 8 cm resulted in the largest value of a ratio between
compressive strength and density of 1285.;Research studies on the manufacture of lightweight concrete (LWC) using
pumice and rice husk ash (RHA) materials have been done. LWC samples were
made of pumice materials with a different mass fraction, while the cement, sand,
and rice husk ash materials were keep fixed. It was found that there are two main
parameters that determine the mechanical properties of LWC which are density
and the water and cement ratio (w/c ratio). The main mechanical properties of
LWC sample is the power press. Samples with the largest volume fraction of
pumice (100%) resulted in lightest density (1389.6 kg/m3) and the smallest
strength of LWC (11.1 MPa). It was found that, the lower the mass fraction of
pumice in LWC samples, the higher the density values and compressive strength
were obtained. This was caused by the high mas fraction value of pores, which
were both open and closed pores. Scanning electron micorscopy (SEM) images
for the pumice showed that the there are a large number of regular and structured
pores extending deep inside the surface of the sample. It was observed that pores
present with pore size does not vary significantly but with the density of the
relatively large number of pores, indicating pumice has a low mass density. The
XRD pattern of the lightweight concrete samples indicated that the samples were
dominated by crystalline phases in which the quartz (SiO2) is the main phase and
a small fraction of amorphous phase was also obtained.
SEM images of lightweight concrete samples showed that the structure of
Calcium Silicate Hydrates (CSH) started growing at the beginning of hydration
time and continue to evolve into a more solid structure until the age of 28 days,
where the compound has an important role to the mechanical properties such as
compressive strength. The study concluded that the pumice and rice husk ash is
are amorphous silica-based material which has a lower density compared to other
concrete forming material such as cement and sands. Both density and light
weight concrete compressive strength are determined by the ratio between pumice
and rice husk ash, in which the smallest ratio 8 resulted in the largest density and
compressive strength, which are 1890.5 kg/m3 and 23.2 MPa respectively at the
age of 28 days. The study concluded that the best composition for lightweight
concrete samples was the following: PCC (1,00): Sand (1,00): ASP (0,05): BA
(0,50) with a slump value of 8 cm resulted in the largest value of a ratio between
compressive strength and density of 1285., Research studies on the manufacture of lightweight concrete (LWC) using
pumice and rice husk ash (RHA) materials have been done. LWC samples were
made of pumice materials with a different mass fraction, while the cement, sand,
and rice husk ash materials were keep fixed. It was found that there are two main
parameters that determine the mechanical properties of LWC which are density
and the water and cement ratio (w/c ratio). The main mechanical properties of
LWC sample is the power press. Samples with the largest volume fraction of
pumice (100%) resulted in lightest density (1389.6 kg/m3) and the smallest
strength of LWC (11.1 MPa). It was found that, the lower the mass fraction of
pumice in LWC samples, the higher the density values and compressive strength
were obtained. This was caused by the high mas fraction value of pores, which
were both open and closed pores. Scanning electron micorscopy (SEM) images
for the pumice showed that the there are a large number of regular and structured
pores extending deep inside the surface of the sample. It was observed that pores
present with pore size does not vary significantly but with the density of the
relatively large number of pores, indicating pumice has a low mass density. The
XRD pattern of the lightweight concrete samples indicated that the samples were
dominated by crystalline phases in which the quartz (SiO2) is the main phase and
a small fraction of amorphous phase was also obtained.
SEM images of lightweight concrete samples showed that the structure of
Calcium Silicate Hydrates (CSH) started growing at the beginning of hydration
time and continue to evolve into a more solid structure until the age of 28 days,
where the compound has an important role to the mechanical properties such as
compressive strength. The study concluded that the pumice and rice husk ash is
are amorphous silica-based material which has a lower density compared to other
concrete forming material such as cement and sands. Both density and light
weight concrete compressive strength are determined by the ratio between pumice
and rice husk ash, in which the smallest ratio 8 resulted in the largest density and
compressive strength, which are 1890.5 kg/m3 and 23.2 MPa respectively at the
age of 28 days. The study concluded that the best composition for lightweight
concrete samples was the following: PCC (1,00): Sand (1,00): ASP (0,05): BA
(0,50) with a slump value of 8 cm resulted in the largest value of a ratio between
compressive strength and density of 1285.]"
2015
D2054
UI - Disertasi Membership  Universitas Indonesia Library
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Ayu Sulastri Al Amin
"Presious Slag Ball adalah limbah dari industry baja dan Abu Sekam Padi adalah hasil limbah pertanian. Kedua limbah ini belum dimanfaatkan secara optimal. Oleh sebab itu, dalam penelitian ini dilakukan usaha agar presious slag ball dan abu sekam padi dapat menjadi material yang memiliki nilai ekonomi pada mortar. Pada penelitian ini dilakukan pengujian kuat tarik langsung, kuat tarik lentur dan susut pada mortar. Dalam hal ini mortar menggunakan 2 (dua) tipe semen PCC yang berasal dari industri semen yang berbeda, yang kemudian dicampura dengan abu sekam padi dan presious slag ball dengan perbandingan 30% PCC : 25% ASP : 45% PSB. Standar penelitian ini mengacu pada standar ASTM.
Dari penelitian ini dihasilkan nilai kuat tarik langsung mortar pada umur 28 hari berkisar antara 0.81-1.14 MPa untuk mortar dengan PCC type 1 dan 0.81-1.10 MPa untuk mortar dengan PCC tipe 2, kuat tarik lentur pada umur 28 hari berkisar antara 2.33-2.70 MPa untuk mortar dengan PCC tipe 1 dan 2.42-2.59 MPa untuk mortar dengan PCC tipe 2, dan nilai susut mortar PCC tipe 1 dan tipe 2 sebesar 0.0083 dan 0.0078. Pada penelitian ini, nilai kuat tarik langsung dan kuat tarik lentur yang menngunakan abu sekam padi yang lebih kecil serta nilai susut mortar yang lebih besar dibandingkan dengan mortar tanpa abu sekam padi.

Precious Slag Ball is a waste of metal industry and Rice Husk Ash is a waste of agricultural activity. Both of those wastes are currently not used optimally. Therefore, there is an effort to use precious slag ball and rice husk ash to be a valuable economic material on the mortar. This research concerning about tensile strength, flexural strength and length change of mortar. This mortar using portland composite cement (PCC) with 2 (two) type which produced by 2 industries mixing with rice husk ash (RHA) and precious slag ball (PSB) in proportion of 30% PCC: 25 % RHA : 45% PSB. This Research is based on the ASTM standard.
The results from this research give value of tensile strength when the mortar at 28 days is between 0.81-1.14 MPa for mortar with PCC type 1 and 0.81-1.10 MPa for mortar with PCC type 2, flexural strength of 28 days is between 2.33 -2.70 MPa for mortar with PCC type 1 and 2.42-2.59 MPa for mortar with PCC type 2, and Shrinkage for PCC type 1 and type 2 are 0.0083 and 0.0078. In this research, the tensile strength and flexural strength for mortar using RHA have smaller value and shrinkage have higher value than mortar without RHA.
"
Depok: Fakultas Teknik Universitas Indonesia, 2011
S26
UI - Skripsi Open  Universitas Indonesia Library
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Diah Kusumantara
"Sifat mekanis pasta semen yang terdiri dari kuat tekan, kuat tarik, porositas dan modulus elastisitas merupakan sifat utama yang sangat penting dalam pengunaan sebagai bahan konstruksi. Seiring dengan perkembangan, penambahan bahan additif untuk mendapatkan sifat mekanis beton pada saat ini begitu banyak variasinya, salah satunya adalah dengan penambahan kadar silica yang terkandung dalam abu sekam padi. Abu sekam padi yang diperoleh dari pembakaran kulit padi pada tungku bersuhu 400 - 800 0 C digunakan sebagai bahan pozolan karena memenuhi syarat SK-SNI-1989-F, yaitu mengandung SiO2 yang tinggi sebesar 93,44%. Dari hasil pengujian, untuk pasta semen campuran dengan penambahan abu sekam padi maka didapat kuat tekan pasta semen campuran abu sekam padi tertinggi berada di FAS 0,7 yaitu pada nilai kuat tekan f c? = 26,5 Mpa atau penurunan sebesar 71,86 % dari kuat tekan pasta normal dan kuat tarik pasta semen campuran abu sekam padi tertinggi berada di FAS 0,7 yaitu pada nilai kuat tarik f ct = 0,653 Mpa atau penurunan sebesar 37,57 % dari kuat tarik pasta normal. Penelitian ini dilakukan dengan kuat tekan dan kuat tarik pada pasta semen campuran abu sekam dengan FAS 0.60, 0.70 dan 0.80.

Primary property of cement pasta consist of stress, strain, porosity and modulus of elasticity which is importants in construction material, as its development in property, additive mixture is added to change the property, until this day, one of its variation is by adding silica which existed in rice husk ash. Rice husk ash obtainable from the burning of rice coarse in furnace heated 400 ' 1000 0 C used as pozolan-like material as it fulfill the requirement within SK-SNI-1989-F, consisting of high SiO2 (93,44%). From the research test (mixing pasta cement with rish ash) we acquire a maximum stress strength within 0,7 water cement ratio that is f c? = 26,5 Mpa or a downgrade of 71,86 % from normal pasta stress strength and maximum strain strength within 0,7 water cement ratio that is f ct = 0,653 Mpa or a downgrade of 37,57 % from normal pasta strain strength. The reasearch was done by doing stressing and straining, using water cement factor 0,6, 0,7, and 0,8."
Depok: Fakultas Teknik Universitas Indonesia, 2009
S50518
UI - Skripsi Open  Universitas Indonesia Library
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Bangun, Gideon Oktavian
"Penelitian awal mortar dengan campuran semen, abu sekam padi (ASP) dan precious slag ball (PSB) dengan perbandingan 30% PCC, 20% ASP dan 50% PSB di uji beberapa sifat mekanisnya yaitu kuat tarik langsung, kuat tarik lentur, susut dan density. Pengujian di lakukan dengan mengikuti standar pengujian Kuat Tarik Langsung ASTM-C-307-03, Kuat Lentur ASTM-C-348-02, Susut ASTM-C-490-00, Density ASTM-D-720-00. Dari penelitian diharapkan campuran ini dapat menghasilkan mortar dengan sifat mekanis yang memenuhi standar SNI atau ASTM.
Nilai modulus kehalusan ASP adalah 0,754 dan PSB adalah 1,054, Akibat penambahan ASP dalam campuran nilai FAS yang di dapat tinggi yaitu lebih dari berat semen, hal ini disebabkan air yang dibutuhkan lebih banyak untuk mencapai konsistensi normal. Untuk semen tipe 1 (Tiga Roda) Campuran PCC dan PSB memiliki nilai kuat tarik langsung 3,6385 MPa ; kuat tarik lentur 13,992 MPa ; susut 0,0061% dan density 2,811 g/cm3. Campuran PCC ASP dan PSB memiliki nilai kuat tarik langsung 0,8975 MPa ; kuat tarik lentur 2,3625 MPa ; susut 0,0077% dan density 1,848 g/cm3. Untuk semen Tipe 2 (Holcim) Campuran PCC dan PSB memiliki nilai kuat tarik langsung 2,8667 MPa ; kuat tarik lentur 14,3166 MPa ; susut 0,0061% dan density 2,781 g/cm3 . Campuran PCC ASP dan PSB memiliki nilai kuat tarik langsung 0,8684MPa ; kuat tarik lentur 2,7882 MPa ; susut 0,0073% dan density 1,907 g/cm3.
Mortar yang dihasilkan dengan menggunakan campuran PSB memiliki density tinggi sehingga nilai kuat tarik langsung dan tarik lentur lebih tinggi jika dihitung berdasarkan rumus yang ada di dalam SNI 03-2847-2002, sedangkan untuk mortar yang menggunakan campuran ASP dan PSB memiliki density lebih rendah dan dapat diklasifikasikan dalam mortar ringan dengan nilai 1,900 g/cm3 untuk itu menggunakan rumus perhitungan kuat tarik langsung dan tarik lentur untuk mortar ringan sesuai dengan SNI 03-2847-2002.

Initial studies with a mixture of mortar cement, rice husk ash (ASP) and precious slag ball (PSB) with a ratio of 30% PCC, 20% RHA and 50% PSB tested several mechanical properties of the direct tensile strength, flexural tensile strength, shrinkage and density. Tests done by following the testing standard ASTM Direct Tensile Strength C-307-03, Flexural Strength ASTM C-348-02, Shrinkage ASTM-C-490-00, Density ASTM D-720-00. This mixture of research is expected to produce mortar with mechanical properties that meet SNI or ASTM standards.
ASP fineness modulus value is 0.754 and the PSB is 1.054, a result of the addition of ASP in a mixture of values that FAS can be as high as more than the weight of cement, this is due to more water needed to achieve normal consistency. The first type of cement (Tiga Roda) mixture of PCC and the PSB has a value of direct tensile strength 3.6385 MPa; Flexural Tensile Strength 13.992 MPa; Shrinkage 0.0061% and Density 2.811 g/cm3. Mixture of PCC, ASP and the PSB has a value of direct tensile strength 0.8975 MPa; Flexural Tensile Strength 2.3625 MPa; Shrinkage 0.0077% and Density 1.848 g/cm3. For the second tipe of cement (Holcim) Mixed PCC and the PSB has a value of Direct Tensile Strength 2.8667 MPa; Flexural Tensile Strength 14.3166 MPa; Shrinkage 0.0061% and Density 2.781 g/cm3. Mixture of PCC, ASP and the PSB has a value of Direct Tensile Strength 0.8684 MPa; Flexural Tensile Strength 2.7882 MPa; Shrinkage 0.0073% and Density 1.907 g/cm3.
Mortar is produced by using a mixture of PSB, has a high density so that the value of the direct tensile strength and flexural tensile higher if calculated on a formula that is in the SNI 03-2847-2002, while for the mortar using a mix of ASP and the PSB has a lower density and can be classified in the lightweight mortar with a value of 1.900 g/cm3 for it using a formula calculating the direct tensile strength and tensile bending to light mortar according to the SNI 03-2847-2002.
"
Depok: Fakultas Teknik Universitas Indonesia, 2011
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
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Bayu Andiska
"Pengamatan sifat mekanik mortar semen yang dilakukan pada penelitian ini adalah kuat tekan, absorpsi, density dan modulus elastisitas. Dalam penelitian ini digunakan dua tipe semen PCC yang dihasilkan dari dua buah industri yang berbeda. Semen PCC yang digunakan dalam campuran mortar akan ditambahkan dengan PSB dan ASP dengan proporsi campuran 30% PCC-15% ASP-55% PSB yang disebut sebagai mortar campuran E. Mortar E untuk PCC tipe 1 disebut sebagai mortar E1 dan mortar yang menggunakan PCC tipe 2 disebut sebagai mortar E2. Dari hasil penelitian didapatkan kuat tekan maksimum mortar campuran E1 dan E2 sebesar 20,97 MPa dan 18,29 MPa, absorpsi maksimum untuk campuran mortar E1 dan E2 sebesar 164 gram/100 cm2 dan 165,6 gram/100 cm2, density rata-rata mortar campuran E1 dan E2 sebesar 2327,9 kg/m3dan 2435,3 kg.m3 dan modulus elastisitas sebesar 15858,8 MPa dan 11440 MPa. Menurut SNI 03-6882-2002 mortar campuran E1 dan E2 digolongkan kedalam mortar tipe M.

Mechanichal properties tested in the labolatory were compressive strength, absorption, density and modulus of elasticity of mortar cement. The composition of mortar using cement PCC taken from 2 different industries with composition of mixture 30% PCC-15% ASP-55% PSB (mixture E1 and mixture E2). From the research test, the maximum compressive strength of mixture E1 and E2 are 20,97 MPa and 18,97 MPa, maximum absorption of mixtrure E1 and E2 are 164 gram/100 cm2 and 165,6 gram/100 cm2, average density of mixture E1 and E2 are 2327,9 kg/m3dan 2435,3 kg.m3 and modulus of elasticity of mixture E1 and E2 are 15858,8 MPa dan 11440 MPa. From SNI 03-6882-2002 mixture E1 an E2 can be used to mortar mixed in mortar type M."
Depok: Fakultas Teknik Universitas Indonesia, 2011
S804
UI - Skripsi Open  Universitas Indonesia Library
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Gilang Wibowo Aji
"Sifat mekanik mortar yang terdiri dari Kuat Tekan, Densitas, Absorpsi dan Modulus Elastisitas merupakan sifat utama yang sangat penting bagi mortar dalam penggunaan sebagai bahan konstruksi. Seiring dengan sumber daya alam yang terus berkurang, maka bahan untuk membentuk mortar pun dapat diganti dengan bahan buangan limbah pertanian dan baja, yang secara kualitas tidak kalah dengan bahan pengganti agregat halus (pasir). Adapun bahan pengisi yang digunakan adalah abu sekam padi (ASP) dan precious slag ball (PSB). Penelitian ini terdiri dari 2 komposisi, yaitu komposisi 30% PCC dan 70% PSB dan komposisi 30% PCC, 20% ASP, dan 50% PSB dan memakai 2 type semen. Dari penelitian yang telah dilakukan, diperoleh mortar dengan kuat tekan komposisi 1: 79.074 MPa dan 79.960 MPa dan kuat tekan komposisi 2: 14.99 MPa dan 15.95 MPa, densitas komposisi 1: 2,811 gram/cm3 dan 2,781 gram/cmdan densitas komposisi 2: 1,848 gram/cm3 dan 1,907 gram/cm3, absorpsi komposisi 1: 7.2, 10.8, 27.76, 36 gram/100cm2 dan 8.8, 18, 36.4, 47.2 gram/100cm2, dan absorpsi komposisi 2: 12, 21.6, 61.6, 146 gram/100cm2 dan 16, 26.4, 86.72, 135.2 gram/100cm2, modulus elastisitas komposisi 1: 43592.44, 43592.44, 37134.33, 37292.94 MPa dan 39438.58, 39438.58, 33858.25, 33769.86 MPa, dan modulus elastisitas komposisi 2: 10321.9, 4423.7, 9144.2, 9350.1 MPa dan 11662.4, 4423.7, 10275.8, 9879.6 MPa. Nilai-nilai sifat mekanik yang telah memenuhi persyaratan ASTM C 579¬01, ASTM C 905-01, ASTM C 1403-00 dan ASTM C 580-02 diharapkan dapat meminimalisir bahkan meniadakan penggunaan pasir serta memaksimalkan penggunaan limbah yang ramah lingkungan.

Mechanical properties of mortar consisting of Compressive Strength, Density, Absorption and Modulus of Elasticity is the main character are very important for the mortar to be used as construction material. Along with the decreasing of natural resources, the material used for the mortar mix can be replaced by agricultural and steel waste materials, which is not inferior in replacing material for natural sand. The filler material used are rice husk ash (RHA) and precious slag ball (PSB). This study consisted of two mortar compositions, namely the composition of 30% PCC and 70% PSB and the composition of 30% PCC, 20% RHA, 50% PSB and two different products of a type of cement were used in this experimental study consisted of two type of composition. The research outcomes exhibited that the compressive strength of composition 1: 79 074 MPa and 79,960 MPa and compressive strength of composition 2: 14.99 MPa and 15.95 MPa, the density of composition 1: 2.811 and 2.781 gram/cm3 gram/cm3 and density of composition 2: 1.848 gram/cm3 and 1.907 gram/cm3, the absorption of composition 1: 7.2, 10.8, 27.76, 36 gram/100cm2 and 8.8, 18, 36.4, 47.2 gram/100cm2, and absorption of composition 2: 12, 21.6, 61.6, 146 gram/100cm2 and 16, 26.04, 86.72, 135.2 gram/100cm2, modulus elasticity of composition 1: 43592.44, 43592.44, 37134.33, 37292.94 and 39438.58 MPa, 39438.58, 33858.25, 33769.86 MPa, and modulus elasticity of composition 2: 10321.9, 4423.7, 9144.2, 9350.1 MPa and 11662.4, 4423.7, 10275.8, 9879.6 MPa. The values of mechanical properties that meet the requirements of ASTM C 579-01, ASTM C 905-01, ASTM C 1403-00 and ASTM C 580-02 is expected to minimize and even eliminate the use of sand and maximize the use of environmentally friendly waste."
Depok: Fakultas Teknik Universitas Indonesia, 2011
S870
UI - Skripsi Open  Universitas Indonesia Library
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Nigoskatis Anagyagos
"Dalam penelitian ini penggunaan agregat halus untuk Campuran mortar semen digantikan dengan bahan limbah berupa abu sekam padi (ASP) dan Precious Slag Ball (PSB). Sifat mekanik yang diuji meliputi kuat tekan sebanyak 140 benda uji sesuai standar ASTM C 579-01, density sebanyak 20 benda uji sesuai standar ASTM C 905-01, absorpsi sebanyak 20 benda uji sesuai standar ASTM C 1403-00, modulus elastisitas sebanyak 20 benda uji sesuai standar ASTM C 580-02. Dengan menggunakan semen PCC dari 2 industri berbeda dan dengan komposisi Campuran 30% PCC 70% PSB (Campuran 1) dan 30% PCC 30% ASP 40% PSB (Campuran 2) diperoleh kuat tekan maksimum sebesar 79.074 MPa dan 79.960 MPa untuk Campuran 1, 14.367 MPa dan 12.701MPa untuk Campuran 2. Nilai density sebesar 2.811 gram/m3 dan 2.781 gram/m3 untuk Campuran 1, 1.579 gram/m3 dan 1.602 gram/m3 untuk Campuran 2. Nilai absorpsi sebesar 36 gram/100cm2 dan 47 gram/100cm2 untuk Campuran 1, 216 gram/100cm2 dan 204 gram/100cm2 untuk Campuran 2. Nilai modulus elastisitas sebesar 44357 MPa dan 40064 MPa untuk Campuran 1, 5041 MPa dan 5105 MPa untuk Campuran 2. Menurut ASTM C 270-03 Campuran 2 dapat digunakan untuk adukan tipe N dengan kuat tekan sedang, untuk Campuran pasangan terbuka.
In this study the use of fine aggregate for cement mortar was replaced with waste material called rice husk ash (RHA) and Precious Slag Ball (PSB). Mechanical properties tested in the laboratory were compressive strength using 140 samples according to ASTM C 579-01, density using 20 samples according to ASTM C 905-01, absorption using 20 samples according to ASTM C 1403-00, modulus of elasticity using 20 samples according to ASTM C 580-02. The composition of mortar using cement PCC taken from 2 different industries with composition of mixture 30% PCC 70% PSB (Mixture 1) and 30% PCC 30% ASP 40% PSB (Mixture 2). The maximum compressive strength of mixtue 1 and mixture 2 are 79,074 MPa and 79,960 MPa, 14 367 MPa and 12.701Mpa; Density of mixture 1 and mixture 2 are 2811 gram/m3 and 2781 gram/m3, 1579 gram/m3 and 1602 gram/m3; Absorption of mixture 1 and mixture 2 are 36 gram/100cm2 and 47 gram/100cm2, 216 gram/100cm2 and 204 gram/100cm2; Modulus of elasticity of mixture 1 and mixture 2 are 44,357 MPa and 40,064 MPa, 5041 MPa and 5105 Mpa, respectively According to ASTM C 270-03 mixture 2 can be used to mortar mixed type N with medium compressive strength."
Depok: Fakultas Teknik Universitas Indonesia, 2011
S951
UI - Skripsi Open  Universitas Indonesia Library
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