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Properties of Brick Waste as Coarse Aggregate Material in

Due to high water absorption capacity, Brick waste replaced concrete was less workable. 7 th day and 28 th day compressive strength result shows, 25% of 18years old and Broken on sellers hand Brick waste type can be used as an aggregate for C25 concrete; while 20% of those broken at production site type can be used on structure.

ceramic waste as coarse aggregate and quarry dust as

compressive strength of quarry waste as coarse aggregate, This research focuses on a study of the strength of concrete with ceramic waste as coarse aggregate and quarry dust as fine aggregate The sources of ceramic waste and quarry dust are obtained from the industrial in Malaysia [24/7 online]

Behavior of Concrete with Agro and Industry Waste as a

Behavior of Concrete with Agro and Industry Waste as a Replacement for Constitutive Materials The concrete compressive strength made of 50% quarry dust and 10% GSA is more than that of the control concrete. When the tensile, split and flexural strength is Quarry Dust Coarse aggregate Specific gravity 3.15 1.85 2.52 2.41 2.79

EXPERIMENTAL STUDY ON STRENGTH OF CONCRETE BY

Quarry dust is a waste from the stone crushing unit accounts 25% of the final fine aggregate, coarse aggregate and required quantity of water, where in the fine aggregate is usually natural sand. quarry dust in ordinary concrete in terms of compressive strength and flexural strength had been focused. quarry dust being a waste material

PAPER OPEN ACCESS Related content Utilisation of Waste

aggregate marginally improves compressive, tensile and flexural strength in concrete. Keywords: WMD-Waste Marble Dust, Concrete, Strength, Reuse, Replacement 1. Introduction Concrete is an extensively used building item and consists of cement, coarse aggregate, fine aggregate and deliberate amount of water.

Quarry Dust As Fine Aggregate In Concrete

Study on Compressive Strength of Quarry Dust as Fine. From the results of experimental investigations conducted, it is concluded that the quarry dust can be used as a replacement for fine aggregate. It is found that 40% replacement of fine aggregate by quarry dust gives maximum result in strength than normal concrete and then decreases from 50%.

iron ore waste as coarse aggregate in concrete

As shown in Figure 3, the slumps and liquidity of concrete mixed with iron ore tailings decreased compared with that of normal concrete under the same condition (water, mixture ratio, admixture, etc)This phenomenon arises because the particles of iron ore tailings are rough and occluded with coarse aggregate, so cohesion increases significantly

Strength Properties of Concrete Incorporating Foundry Sand

4.1 Compressive Strength The values of compressive strength for different replacement levels of foundry sand and ceramic waste contents (0%, 15%, 20% and 30%) at the end of different curing periods (7 days, 14 days and 28 days). These values are plotted in Fig.10, which show the variation of compressive strength with fine aggregate and coarse

Study of Concrete Involving Use of Quarry dust as Partial

4.2. Hardened concrete The compressive strength tests in TABLE 3. Compressive strength tests were carried out at 7 and 28 days. An increase in compressive strength was observed up to 30% replacement of fine aggregates by Quarry dust and there after decreasing. The maximum compressive strength measured was 26% more than that of

STUDY OF OPTIMUM COMPRESSIVE STRENGTH OF PALM

Keywords: Palm kernel shell, quarry dust, mix design, compressive strength, light-weight concrete 1. INTRODUCTION Concrete is the most used material in the construction industry. This is obtained from mixture of binding materials, fine and coarse aggregate, chemical admixtures and water.

The Utilization of Quarry Dust as Fine Aggregates in Concrete

quarry dust, which is a waste product from quarry, as fine aggregates in traditional concrete. constituents of concrete are coarse aggregate, fine aggregate, cement and water. The 75% in concrete cubes were casted using this concrete containing quarry dust. The compressive strength of these cubes were tested after 7 days, 21

use of waste material as partial replacement for concrete

Crushed granite coarse aggregate of 20 mm maximum size having a fineness modulus of 7.94 and specific gravity of 2.94 was used. Water conforming to the requirements of water for concreting and curing as per IS: 456–2000. He concluded that compressive strength of concrete was increased by 17% when 30% of iron filling added to the concrete mix.

Compressive Strength and Modulus of Elasticity of

The concrete density with waste tire rubber aggregate was decreased, and so was the compressive strength. The decrease of compressive strength is up to 64.34%. If the content of waste tire rubber aggregate is more than 40%, then the resulting concrete cannot be categorized as structural concrete. The modulus of elasticity decreased to 59.77%

Strength Properties of Concrete Containing Coconut Shell

1437 of coarse aggregate implying its good for lightweight concrete. The aggregate crushing value of coconut shell is 3.34 which also less than that of is coarse aggregatewhich has a value of 22.33 indicating it's relatively good for concrete works. Table 2: Some Physical Properties of Cement, GP, MK, Fine Aggregate and Coarse Aggregate

Compressive Strength Of Quarry Waste As Coarse

Compressive Strength Of Quarry Waste As Coarse Aggregate In Concrete. Shaking table is a kind of ore separating machines, mainly for separating ores like tin, tungsten, gold, silver, lead, zinc, tantalum, niobium, iron, manganese, titanium and coal, etc.

Behavior of Concrete with Agro and Industry Waste as a

Behavior of Concrete with Agro and Industry Waste as a Replacement for Constitutive Materials The concrete compressive strength made of 50% quarry dust and 10% GSA is more than that of the control concrete. When the tensile, split and flexural strength is Quarry Dust Coarse aggregate Specific gravity 3.15 1.85 2.52 2.41 2.79

COMPRESSIVE STRENGTH OF CONCRETE USING

Samples of concrete (eg. cubes) were made using varying contents of laterite and quarry dust as fine aggregate. The quantity of laterite was varied from 0% to against quarry dust at intervals of 25%. The samples were cured for specified periods and tested in the laboratory for compressive strength.

compressive strength of quarry waste as coarse aggregate

Concrete with enriched quarry limestone waste as a coarse . Concrete with coarse aggregate defined as enriched limestone waste of grading intermediate between the coarse and fine aggregates is characterized by specified compressive strength and modulus of rupture up to 5,000 psi and more than 750 psi, respectively, and is an enriched byproduct of the manufacture of crushed limestone of regular

Cost Effective Design of Sustainable Concrete Using Marble

It was reported that, compressive strength, Flexural strength, Splitting tensile strength and young's modulus of elasticity of concrete, prepared with GBFS as fine aggregate and marble waste as coarse aggregate was 3% and 6%, respectively, higher than that of concrete with river sand as fine aggregate and marble waste as coarse aggregate.

The Effect of Aggregate Properties on Concrete

Aggregate is classified as two different types, coarse and fine. Coarse aggregate is usually greater than 4.75 mm (retained on a No. 4 sieve), while fine aggregate is less than 4.75 mm (passing the No. 4 sieve). The compressive aggregate strength is an important factor in the selection of aggregate.

A STUDY ON COMPRESSIVE STRENGTH OF CONCRETE

coarse aggregate by steel slag and fine aggregate by quarry dust. To study the strength loss, weight loss characteristics of concrete. Thus, needful conclusions have been drawn based on the experimental results. A new concrete composition is produced with replacing the natural coarse aggregate by ceramic waste aggregate at 20%, 40%, 60%, 80%

Analysis of the Compressive Strength of Concrete with

age compressive strength of concrete cubes made with quarry dust. There is approximately 12% increase on aver-age compressive strength of concrete made with 50% quarry dust and 50% sand as compared to that made of sand (control)attheendof21days. AccordingtoNeville,concreteofgradeC20at28daysmust achieve a compressive strength of 20MPa.

Effect of Partial Replacement of Fine and Coarse Aggregate

The properties such as flexural strength and compressive strength of concrete incorporating ceramic waste in partial replacement of sand and coarse aggregate (10mm) were examined and compared. The flexural strength and compressive strength was determined at the age of 7 days and 28 days.

Strength Characteristics of Hand

The use of hand-quarried weathered quartzitic aggregates as the coarse component of concrete was investigated. Samples of hand-quarried quartzite aggregates exhibiting different degrees of weathering were evaluated in quality and their suitability as coarse component of concrete. The 7, 14, 28 and 56 day compressive strengths were obtained from 100mm concrete cube samples prepared with the

A STUDY ON COMPRESSIVE STRENGTH OF CONCRETE

coarse aggregate by steel slag and fine aggregate by quarry dust. To study the strength loss, weight loss characteristics of concrete. Thus, needful conclusions have been drawn based on the experimental results. A new concrete composition is produced with replacing the natural coarse aggregate by ceramic waste aggregate at 20%, 40%, 60%, 80%

THE INFLUENCE OF RIVER SAND AND

the influence of river sand and volcanic sand as coatings on waste polypropylene coarse aggregates towards concrete compressive strength In recent years, using plastic waste as a substitute material in concrete aggregate to produce lightweight concrete is being examined.

STUDY OF OPTIMUM COMPRESSIVE STRENGTH OF PALM

Keywords: Palm kernel shell, quarry dust, mix design, compressive strength, light-weight concrete 1. INTRODUCTION Concrete is the most used material in the construction industry. This is obtained from mixture of binding materials, fine and coarse aggregate, chemical admixtures and water.

EFFECT OF CHARACTERIZATION PROPERTIES ON COMPRESSIVE

for different quarry dust to coarse aggregate ratio, Goble (1999), De Larrard and Belloc (1997) reported that the compressive, flexural strength and durability of concrete made of quarry rock dust were nearly 10% more than those of conventional concrete. It was reported that there is a significant increase in the compressive strength, tensile

STUDY OF OPTIMUM COMPRESSIVE STRENGTH OF PALM

Keywords: Palm kernel shell, quarry dust, mix design, compressive strength, light-weight concrete 1. INTRODUCTION Concrete is the most used material in the construction industry. This is obtained from mixture of binding materials, fine and coarse aggregate, chemical admixtures and water.

Study on Compressive Strength of Quarry Dust as Fine

(c) The compressive strength results of quarry dust concrete (cubes) were obtained in the third series, where M20, M25, and M30 grades of concrete with 20, 25, and 30 percent replacement of quarry dust and also workability are studied by varying the water-cement ratio

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