Javascript must be enabled to continue!
Prilaku Kuat Tekan Beton Porous Menggunakan Air Laut
View through CrossRef
Porous concrete has high porosity so that water can pass through the cavities in the concrete. The application of porous concrete is usually for parking areas, pedestrian sidewalks, road shoulders, drainage, roads with low traffic volume. Indonesia is an archipelagic country, most of Indonesia's territory is by the sea so it is very possible to use sea water as a substitute for fresh water for porous concrete. This research aims to determine the comparison of compressive strength of porous concrete mixed with sea water and normal porous concrete with variations in the water cement (fas) factor. In this study, a concrete mixture with a water cement (fas) factor of 0.30 and 0.35 was used. The test object used was a 15x30 cm cylindrical concrete test object for the compressive strength test. The test on porous concrete was carried out during the curing period of 28 days. The test results for the compressive strength of normal porous concrete with a water cement (fas) factor of 0.30 and 0.35 are 6.658 Mpa and 4.435 Mpa, then for porous concrete mixed with sea water with a water cement (fas) factor of 0.30 and 0, 35, namely 6,700 Mpa and 3,374 Mpa. The test results show that the sea water mixture in porous concrete does not affect the compressive strength of porous concrete, whereas the use of variations in the water cement factor (fas) shows that the compressive strength of porous concrete, both normal porous concrete and porous concrete mixed with sea water, has decreased. as the value of the water cement (fas) factor used increases.
Asosiasi Riset Ilmu Manajemen dan Bisnis Indonesia
Title: Prilaku Kuat Tekan Beton Porous Menggunakan Air Laut
Description:
Porous concrete has high porosity so that water can pass through the cavities in the concrete.
The application of porous concrete is usually for parking areas, pedestrian sidewalks, road shoulders, drainage, roads with low traffic volume.
Indonesia is an archipelagic country, most of Indonesia's territory is by the sea so it is very possible to use sea water as a substitute for fresh water for porous concrete.
This research aims to determine the comparison of compressive strength of porous concrete mixed with sea water and normal porous concrete with variations in the water cement (fas) factor.
In this study, a concrete mixture with a water cement (fas) factor of 0.
30 and 0.
35 was used.
The test object used was a 15x30 cm cylindrical concrete test object for the compressive strength test.
The test on porous concrete was carried out during the curing period of 28 days.
The test results for the compressive strength of normal porous concrete with a water cement (fas) factor of 0.
30 and 0.
35 are 6.
658 Mpa and 4.
435 Mpa, then for porous concrete mixed with sea water with a water cement (fas) factor of 0.
30 and 0, 35, namely 6,700 Mpa and 3,374 Mpa.
The test results show that the sea water mixture in porous concrete does not affect the compressive strength of porous concrete, whereas the use of variations in the water cement factor (fas) shows that the compressive strength of porous concrete, both normal porous concrete and porous concrete mixed with sea water, has decreased.
as the value of the water cement (fas) factor used increases.
Related Results
ANALISIS PENURUNAN MUTU BETON STRUKTURAL AKIBAT PENGARUH AIR LAUT PADA MASA PEMELIHARAAN
ANALISIS PENURUNAN MUTU BETON STRUKTURAL AKIBAT PENGARUH AIR LAUT PADA MASA PEMELIHARAAN
Air laut memiliki kandungan garam yang tinggi yang dapat menggerogoti kekuatan dan keawetan beton. Hal ini disebabkan klorida yang terdapat pada air laut yang merupakan garam yang ...
PENGARUH PENGGUNAAN PASIR LAUT PANTAI TERHADAP KUAT TEKAN DAN TARIK BELAH BETON - MRK
PENGARUH PENGGUNAAN PASIR LAUT PANTAI TERHADAP KUAT TEKAN DAN TARIK BELAH BETON - MRK
Akibat melimpahnya pasir Pantai di Desa Serang yang pada dasarnya secara geografis berada di dekat Pantai,menyebabkan banyak Masyarakat Serang yang memanfaatkan agregat pasir Panta...
PENGARUH GENANGAN AIR TERHADAP PENGECORAN BETON IN-SITU
PENGARUH GENANGAN AIR TERHADAP PENGECORAN BETON IN-SITU
ABSTRACTHigh rainfall intensity maybe occur during the dry season. This can certainly disturb the erection of a building project, especially in a case of construction works requiri...
ANALISIS KUAT TARIK BELAH BETON PADA STANDAR KUAT TEKAN K.250 DENGAN MENGGUNAKAN LIMBAH PECAHAN BETON SEBAGAI PENGGANTI AGREGAT KASAR
ANALISIS KUAT TARIK BELAH BETON PADA STANDAR KUAT TEKAN K.250 DENGAN MENGGUNAKAN LIMBAH PECAHAN BETON SEBAGAI PENGGANTI AGREGAT KASAR
Beton merupakan bahan konstruksi yang sangat penting dan paling dominan digunakan pada struktur bangunan. Beton sangat diminati karena bahan ini merupakan bahan konstruksi yang mem...
Perilaku Beton Porous Dengan Penambahan Zat Aditif Superplastizer (Sika Viscocrete)
Perilaku Beton Porous Dengan Penambahan Zat Aditif Superplastizer (Sika Viscocrete)
ABSTRACT
According to ACI 522R-10, Larvious Concrete, or Pervious Concrete is defined as concrete that has a slump value almost close to zero, which is formed from Portland cement,...
PENGARUH PENGGUNAAN VARIASI PH AIR TERHDAPA KUAT TEKAN BETON NORMAL
PENGARUH PENGGUNAAN VARIASI PH AIR TERHDAPA KUAT TEKAN BETON NORMAL
Dalam pembuatan betonair sangat diperlukan untuk memicu proses kimiawi semen, membasahi agregat halus, dan memberikan kemudahan dalam pekerjaan beton. Pada dasarnya air yang diguna...
Pengaruh Serat Baja Canai Dingin Bergelombang Terhadap Kekuatan Tekan Dan Lentur Beton
Pengaruh Serat Baja Canai Dingin Bergelombang Terhadap Kekuatan Tekan Dan Lentur Beton
Beton merupakan material konstruksi yang bersifat getas. Kombinasinya dengan baja pada material beton bertulang menjadikan material beton yang getas getas menjadi daktail. Pada bet...
Pengaruh Nilai Abrasi Limbah Beton (Recycle) pada Pembuatan Beton Normal
Pengaruh Nilai Abrasi Limbah Beton (Recycle) pada Pembuatan Beton Normal
Beton merupakan material konstruksi yang saat ini banyak digunakan dalam berbagai bagian bangunan yang kita temui selama proses pembangunan, seperti pada gedung, jalan, dan jembata...

