Effect of Discarded Group B and Group D Car Category Tyre Rubber Chippings as Partial Replacement for Coarse Aggregates in M25 Concrete.

After water, concrete is the second most consumed substance worldwide in construction industry. Natural aggregates occupy roughly 65 to 70 percent of the volume in typical concrete. The current research is primarily focused on replacing natural aggregates with sustainable aggregates like (coconut sh...

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Main Author: Wancha, Vicent
Format: Thesis
Published: Kabale University 2023
Online Access:http://hdl.handle.net/20.500.12493/1207
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author Wancha, Vicent
author_facet Wancha, Vicent
author_sort Wancha, Vicent
collection KAB-DR
description After water, concrete is the second most consumed substance worldwide in construction industry. Natural aggregates occupy roughly 65 to 70 percent of the volume in typical concrete. The current research is primarily focused on replacing natural aggregates with sustainable aggregates like (coconut shells, Oil Palm Shells,) and solid wastes like (E-waste, used Rubbers, and recycled Ceramic Tiles) in order to produce good concrete while keeping in mind and to save natural materials for future generations. Utilizing the aforementioned recyclable and commercial waste aggregates can help prevent garbage from being dumped on the ground, reduce groundwater pollution, and lighten concrete by reducing its density. Consequently, my idea concentrated on using old tyres. Concrete of the M25 grade was employed as the reference standard in this experimental study. In this study, the impact of employing scrap tyre rubber as a partial substitute for coarse aggregate (0%, 5%, 10%, and 15% replacement) on various concrete qualities, such as strength and workability, has been noted. Although there was a decrease in strength, it was determined from this experimental study that this type of concrete was suitable for a number of architectural applications requiring medium to low compressive strength. Therefore, the best method of disposal to preserve the environment is to use used tyre rubber to create concrete. It was observed that a mixture of group B and group D scrap tyre rubber chippings in concrete at 15 percent replacement achieved the best result of compressive strength (14.815Mpa) as compared to the control experiment(25.529Mpa) after 56 days of curing unlike group D and group B which showed slightly lower values i.e., 14.232Mpa and 14.661 Mpa respectively.
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spelling oai:idr.kab.ac.ug:20.500.12493-12072024-06-12T12:50:24Z Effect of Discarded Group B and Group D Car Category Tyre Rubber Chippings as Partial Replacement for Coarse Aggregates in M25 Concrete. Wancha, Vicent After water, concrete is the second most consumed substance worldwide in construction industry. Natural aggregates occupy roughly 65 to 70 percent of the volume in typical concrete. The current research is primarily focused on replacing natural aggregates with sustainable aggregates like (coconut shells, Oil Palm Shells,) and solid wastes like (E-waste, used Rubbers, and recycled Ceramic Tiles) in order to produce good concrete while keeping in mind and to save natural materials for future generations. Utilizing the aforementioned recyclable and commercial waste aggregates can help prevent garbage from being dumped on the ground, reduce groundwater pollution, and lighten concrete by reducing its density. Consequently, my idea concentrated on using old tyres. Concrete of the M25 grade was employed as the reference standard in this experimental study. In this study, the impact of employing scrap tyre rubber as a partial substitute for coarse aggregate (0%, 5%, 10%, and 15% replacement) on various concrete qualities, such as strength and workability, has been noted. Although there was a decrease in strength, it was determined from this experimental study that this type of concrete was suitable for a number of architectural applications requiring medium to low compressive strength. Therefore, the best method of disposal to preserve the environment is to use used tyre rubber to create concrete. It was observed that a mixture of group B and group D scrap tyre rubber chippings in concrete at 15 percent replacement achieved the best result of compressive strength (14.815Mpa) as compared to the control experiment(25.529Mpa) after 56 days of curing unlike group D and group B which showed slightly lower values i.e., 14.232Mpa and 14.661 Mpa respectively. 2023-06-23T12:15:33Z 2023-06-23T12:15:33Z 2023 Thesis Wancha, Vicent (2023). Effect of Discarded Group B and Group D Car Category Tyre Rubber Chippings as Partial Replacement for Coarse Aggregates in M25 Concrete. Kabale: Kabale University. http://hdl.handle.net/20.500.12493/1207 application/pdf Kabale University
spellingShingle Wancha, Vicent
Effect of Discarded Group B and Group D Car Category Tyre Rubber Chippings as Partial Replacement for Coarse Aggregates in M25 Concrete.
title Effect of Discarded Group B and Group D Car Category Tyre Rubber Chippings as Partial Replacement for Coarse Aggregates in M25 Concrete.
title_full Effect of Discarded Group B and Group D Car Category Tyre Rubber Chippings as Partial Replacement for Coarse Aggregates in M25 Concrete.
title_fullStr Effect of Discarded Group B and Group D Car Category Tyre Rubber Chippings as Partial Replacement for Coarse Aggregates in M25 Concrete.
title_full_unstemmed Effect of Discarded Group B and Group D Car Category Tyre Rubber Chippings as Partial Replacement for Coarse Aggregates in M25 Concrete.
title_short Effect of Discarded Group B and Group D Car Category Tyre Rubber Chippings as Partial Replacement for Coarse Aggregates in M25 Concrete.
title_sort effect of discarded group b and group d car category tyre rubber chippings as partial replacement for coarse aggregates in m25 concrete
url http://hdl.handle.net/20.500.12493/1207
work_keys_str_mv AT wanchavicent effectofdiscardedgroupbandgroupdcarcategorytyrerubberchippingsaspartialreplacementforcoarseaggregatesinm25concrete