Javascript must be enabled to continue!
Compressive Strength of Rice Husk Filled Resin
View through CrossRef
The findings for strengthening and repair of implant materials are stepping up to ensure better protection of the patients. The utilization of composite resin is favourable to combat this challenge. However, it being a brittle material does not entitle it to be used in the design. Hence, epoxy resin combining with silicon oxide filler from the rice husk; is a relatively new material in biomedical engineering, enable it to meet its fullest strength and flexibility. Work was performed at laboratory to extract the silicone compound from rice husk and as well investigate the compressive strength of rice husk filled resin material. Initially the rice husk was experimented by undergoing pre-treatment, chemical treatment and incineration process to obtain silicone compound. The silicone compound was later mixed with epoxy resin at different percentage of filler. In the final stage, the compressive strength of rice husk filled resin was analyzed and affirmed experimentally based on the ASTM standards. The results obtained were then analyzed using analytical software SPSS. Epoxy resin filled with 20% silica from rice husk gave the optimum compressive strength of 90 Mpa.
Title: Compressive Strength of Rice Husk Filled Resin
Description:
The findings for strengthening and repair of implant materials are stepping up to ensure better protection of the patients.
The utilization of composite resin is favourable to combat this challenge.
However, it being a brittle material does not entitle it to be used in the design.
Hence, epoxy resin combining with silicon oxide filler from the rice husk; is a relatively new material in biomedical engineering, enable it to meet its fullest strength and flexibility.
Work was performed at laboratory to extract the silicone compound from rice husk and as well investigate the compressive strength of rice husk filled resin material.
Initially the rice husk was experimented by undergoing pre-treatment, chemical treatment and incineration process to obtain silicone compound.
The silicone compound was later mixed with epoxy resin at different percentage of filler.
In the final stage, the compressive strength of rice husk filled resin was analyzed and affirmed experimentally based on the ASTM standards.
The results obtained were then analyzed using analytical software SPSS.
Epoxy resin filled with 20% silica from rice husk gave the optimum compressive strength of 90 Mpa.
Related Results
Amended Final Report on the Safety Assessment of Oryza Sativa (Rice) Bran Oil, Oryza Sativa (Rice) Germ Oil, Rice Bran Acid, Oryza Sativa (Rice) Bran Wax, Hydrogenated Rice Bran Wax, Oryza Sativa (Rice) Bran Extract, Oryza Sativa (Rice) Extract, Oryza Sat
Amended Final Report on the Safety Assessment of Oryza Sativa (Rice) Bran Oil, Oryza Sativa (Rice) Germ Oil, Rice Bran Acid, Oryza Sativa (Rice) Bran Wax, Hydrogenated Rice Bran Wax, Oryza Sativa (Rice) Bran Extract, Oryza Sativa (Rice) Extract, Oryza Sat
This report addresses the safety of cosmetic ingredients derived from rice, Oryza sativa. Oils, Fatty Acids, and Waxes : Rice Bran Oil functions in cosmetics as a conditioning agen...
Upgrading rice husk biochar characteristics through microwave‐assisted phosphoric acid pretreatment followed by co‐pyrolysis with LDPE
Upgrading rice husk biochar characteristics through microwave‐assisted phosphoric acid pretreatment followed by co‐pyrolysis with LDPE
AbstractIn the present study, an attempt was made to upgrade the characteristics of rice husk biochar through a combination of two strategies: (i) microwave‐assisted phosphoric aci...
Upgrading the Rice Husk Biochar Characteristics Through Microwave Assisted Phosphoric Acid Pretreatment Followed by Copyrolysis with Ldpe
Upgrading the Rice Husk Biochar Characteristics Through Microwave Assisted Phosphoric Acid Pretreatment Followed by Copyrolysis with Ldpe
In the present study, an attempt was made to upgrade the characteristics of rice husk biochar through a combination of two strategies: i) microwave assisted phosphoric acid pretrea...
Properties of Cement Mortar Consisting Raw Rice Husk
Properties of Cement Mortar Consisting Raw Rice Husk
Most of the rice husk is disposed with no further concern and this has caused waste disposal problems. Burning rice husk can cause health and environmental problem. Rice husk ash h...
Effect of mixing phenol/rice husk to the ability form phenolic resin
Effect of mixing phenol/rice husk to the ability form phenolic resin
Rice is an essential plant that brings high economic value to Viet Nam. In addition to the main product, rice agriculture produces a significant amount of by-products each year. Th...
Recycling of waste from the rice chain: incorporation of rice husk and rice husk ash in polymeric composites
Recycling of waste from the rice chain: incorporation of rice husk and rice husk ash in polymeric composites
The high need for polymeric materials and the availability of agro-industrial wastes, such as the rice production chain, demand the development of technologies to obtain polymeric ...
PENGARUH PERIODE PEMANENAN RESIN DAMAR TERHADAP PENDAPATAN PETANI REPONG DAMAR DI PEKON LABUHAN MANDI PESISIR BARAT
PENGARUH PERIODE PEMANENAN RESIN DAMAR TERHADAP PENDAPATAN PETANI REPONG DAMAR DI PEKON LABUHAN MANDI PESISIR BARAT
Repong Damar is a plot of land planted with various types of productive plants from various types of timber with economic value. The term repong damar is because the plant that is ...
Consumer Acceptability of Rice (Oryza Sativa) as the Main Ingredient in Making Rice Nuggets
Consumer Acceptability of Rice (Oryza Sativa) as the Main Ingredient in Making Rice Nuggets
This study focused on the assessment of the consumer acceptability of rice (Oryza sativa) as the main ingredient in making rice nuggets. It also determined the level of acceptabili...

