The Effect of Firing Temperature on Water Absorption and Flexural Strength on The Preparation of Stoneware Ceramic (Coded-BL1P)

It has been investigated the effect of firing temperature on water absorption and flexural strength in the manufacture of BL1P code stoneware ceramics. Ceramics are made in the form the test block bar with materials from of Borneo Clay Noodle, PRC Feldspar, Kaolin Belitung, Belitung Quartz, Ballclay...

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Main Authors: G. Agus Permana Putra Sujana, Putu Suardana, Totok Nugroho
Format: Article
Language:English
Published: Universitas Udayana 2019-04-01
Series:Buletin Fisika
Online Access:https://ojs.unud.ac.id/index.php/buletinfisika/article/view/43986
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spelling doaj-0f86ed2b84b34016aa962b44214675352021-04-02T10:26:53ZengUniversitas UdayanaBuletin Fisika1411-46902580-97332019-04-01201252810.24843/BF.2019.v20.i01.p0543986The Effect of Firing Temperature on Water Absorption and Flexural Strength on The Preparation of Stoneware Ceramic (Coded-BL1P)G. Agus Permana Putra Sujana0Putu Suardana1Totok Nugroho2Udayana UniversityUdayana UniversityUdayana UniversityIt has been investigated the effect of firing temperature on water absorption and flexural strength in the manufacture of BL1P code stoneware ceramics. Ceramics are made in the form the test block bar with materials from of Borneo Clay Noodle, PRC Feldspar, Kaolin Belitung, Belitung Quartz, Ballclay Bantur, Bentonite, and Talk with a simple casting method. The block bar of the molds was burned at four temperature variations, i.e. 850, 900, 1000, and 1200 oC. From the results of measurements of it water absorption, it was found that the increase in firing temperature from 850 oC to 1200 oC showed a decrease in water absorption from 18.3% to 5.5%, while the measurement of it flexural strength showed an increase in flexural strength of 11.6 kg/cm2 to 19.8 kg/cm2.https://ojs.unud.ac.id/index.php/buletinfisika/article/view/43986
collection DOAJ
language English
format Article
sources DOAJ
author G. Agus Permana Putra Sujana
Putu Suardana
Totok Nugroho
spellingShingle G. Agus Permana Putra Sujana
Putu Suardana
Totok Nugroho
The Effect of Firing Temperature on Water Absorption and Flexural Strength on The Preparation of Stoneware Ceramic (Coded-BL1P)
Buletin Fisika
author_facet G. Agus Permana Putra Sujana
Putu Suardana
Totok Nugroho
author_sort G. Agus Permana Putra Sujana
title The Effect of Firing Temperature on Water Absorption and Flexural Strength on The Preparation of Stoneware Ceramic (Coded-BL1P)
title_short The Effect of Firing Temperature on Water Absorption and Flexural Strength on The Preparation of Stoneware Ceramic (Coded-BL1P)
title_full The Effect of Firing Temperature on Water Absorption and Flexural Strength on The Preparation of Stoneware Ceramic (Coded-BL1P)
title_fullStr The Effect of Firing Temperature on Water Absorption and Flexural Strength on The Preparation of Stoneware Ceramic (Coded-BL1P)
title_full_unstemmed The Effect of Firing Temperature on Water Absorption and Flexural Strength on The Preparation of Stoneware Ceramic (Coded-BL1P)
title_sort effect of firing temperature on water absorption and flexural strength on the preparation of stoneware ceramic (coded-bl1p)
publisher Universitas Udayana
series Buletin Fisika
issn 1411-4690
2580-9733
publishDate 2019-04-01
description It has been investigated the effect of firing temperature on water absorption and flexural strength in the manufacture of BL1P code stoneware ceramics. Ceramics are made in the form the test block bar with materials from of Borneo Clay Noodle, PRC Feldspar, Kaolin Belitung, Belitung Quartz, Ballclay Bantur, Bentonite, and Talk with a simple casting method. The block bar of the molds was burned at four temperature variations, i.e. 850, 900, 1000, and 1200 oC. From the results of measurements of it water absorption, it was found that the increase in firing temperature from 850 oC to 1200 oC showed a decrease in water absorption from 18.3% to 5.5%, while the measurement of it flexural strength showed an increase in flexural strength of 11.6 kg/cm2 to 19.8 kg/cm2.
url https://ojs.unud.ac.id/index.php/buletinfisika/article/view/43986
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