high crack resistance
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Author(s):  
Anand G ◽  
Velumani M ◽  
Sakthivel S

The handmade tiles are manufactured in Athangudi, Sivagangai district. We observed that these tiles are reducing foot pain and appearing aesthetic look. But one disadvantage was that these Athangudi tiles were getting easily cracked. We studied that these tiles are getting cracks. Due to its lesser resistance. It shows some cracks on surface of tiles after setting and hardening process. In this project, we gave solution to rectify the problem for this purpose we adding the zirconium di oxide to cement paste at the time of manufacturing process. Because the zirconium di oxide possess high crack resistance property in these tiles. The field test (water penetration test), abrasion test, water absorption test and acid resistance test were conducted on Athangudi tiles with zirconium di oxide and without zirconium di oxide. Then the test result was compared between normal tiles and zirconium di oxide used tiles. Hence we conclude that zirconium di oxide used tiles are somewhat better than normal Athangudi tiles from the above result. We will conduct more tests and come with the conclusion that zirconium di oxide used tiles having better cracking resistance in future.


2017 ◽  
Vol 460 ◽  
pp. 54-65 ◽  
Author(s):  
Kacper Januchta ◽  
Randall E. Youngman ◽  
Ashutosh Goel ◽  
Mathieu Bauchy ◽  
Sylwester J. Rzoska ◽  
...  

2013 ◽  
Vol 13 (2) ◽  
pp. 5-10 ◽  
Author(s):  
J. Augustyn-Pieniążek ◽  
H. Adrian ◽  
S. Rzadkosz ◽  
M. Choroszyński

Abstract The high mechanical properties of the Al-Li-X alloys contribute to their increasingly broad application in aeronautics, as an alternative for the aluminium alloys, which have been used so far. The aluminium-lithium alloys have a lower specific gravity, a higher nucleation and crack spread resistance, a higher Young’s module and they characterize in a high crack resistance at lower temperatures. The aim of the research planned in this work was to design an aluminium alloy with a content of lithium and other alloy elements. The research included the creation of a laboratorial melt, the microstructure analysis with the use of light microscopy, the application of X-ray methods to identify the phases existing in the alloy, and the microhardness test.


2012 ◽  
Vol 466-467 ◽  
pp. 93-96
Author(s):  
Yue Zhong Lin ◽  
Yong Qiang Lai ◽  
Li Jie Zheng

According to the low temperature spray process, using double quick cement, retarder, water retaining agent, water reducing agent, polymer, fiber was investigated using orthogonal theory the feasibility of preparation of guniting material. Through the experimental research prepared early strength, high adhesiveness, high crack resistance, high economic performance of gunite material, its each index can meet the requirements of the application.


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