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literature reviews on the compressive strength of concrete using granite and gravel

Comparative Analysis On The Strength Of Concrete Made

The report also shows that concrete made with granite was stronger with average compressive strength of 27.3 on curing for 28 days compared to gravel 24.1 having cured for the same amount of days. However, the report reveals that it’s not advisable to use mix ratio 1:5:7 for structural elements as it produced a very low compressive strength of 13.7 for granite and 13.2 for gravel.

(PDF) Compressive Strength of Concrete Made from

The corresponding result for gravel concrete 0.94, 0.92; The compressive strength at 28 days of concrete made with granite on bare ground is 26.49 N/mm 2 , that of concrete mixed on Concrete

COMPARATIVE ANALYSIS OF THE COMPRESSIVE STRENGTH OF

strength concrete made with crushed brick as coarse aggregate and found that higher strength concrete (fcu = 31.0 to 45.5 N/mm2) with brick aggregate is achievable whose strength is much higher than the parent uncrushed brick implying that the compressive strength of brick aggregate concrete can be increased by decreasing its water-cement ratio.

Effect of Aggregate Flakiness on the Compressive Strength

compressive strength of concrete mixes is m15 and m20. From the literature review, it is observed that researches have been attempted on various aspects of flakiness of the aggregates. But it is observed that very few literatures are available on the effect of flakiness on the cubes strength using destructive and non-destructive method. In this

Review on the feasibility of Marble Dust as Replacement of

Literature Review Bekir Topcu et. al (2009) increase in compressive strength of concrete at 5.0% dust from granite as cement alternative and development in compressive strength at the most stages of granite dust as cement addition. Usage of 5.0% granite dust raised the corrosion cracking time & no essential decline in cracking time was decided at granite dust contents larger than 5.0. V.M

Predicting uniaxial compressive strength of oil palm shell

01.07.2020· 1. Introduction. Due to rapid depletion of natural coarse aggregates (NCA), such as granite and gravel, concrete industry has been seeking alternative aggregates from solid waste or industrial by-products [].Oil palm shell (OPS) is a waste material that is largely produced in the processing of palm oil from the agricultural industry in the tropics such as Malaysia, Nigeria and Indonesia [2,3].

Cited by: 5

Experimental Study of Compressive Strength of Recycled

Compressive strength is the most common test conducted on hardened concrete, partly because it is an easy test to perform, and partly because most of the desirable characteristic properties of concrete are qualitatively related to its compressive strength. To evaluate the compressive strength cubes of size 150 mm x 150 mm x 150 mm were casted using C.I. mould. A test was conducted on the cubes

Comparison of the Compressive Strength of Concrete

strength was achieved with concrete produced with badagry dredged river sand with compressive strength of 25.39N/mm2 Keywords: Sand, Concrete, Compressive strength INTRODUCTION Sand is a naturally occurring granular material composed of finely divided rock and mineral particles. It is defined by size, being finer than gravel and coarser than

Experimental Case Study of Recycled Aggregate Concrete

4. LITERATURE REVIEW Mashed Delwar et al. (1997) According to this research paper, the author investigated the use of combinations of coarse and fine RAP aggregate in normal concrete mixes and compared the results of compressive strength to conventional mixes with 0.4 and 0.5 water cement ratios. Compressive strength values were

CHAPTER 2 LITERATURE REVIEW Shodhganga

LITERATURE REVIEW 2.1 GENERAL This chapter presents an overview of literature on the various experiments conducted by many authors on the replacement of fine aggregate by quarry dust, manufactured sand and the results thereof highlighting the significance of using the manufactured sand for replacing the natural sand in concrete. It includes the literature about mix design, fresh concrete

COMPARATIVE ANALYSIS ON THE STRENGTH OF

The report also shows that concrete made with granite was stronger with average compressive strength of 27.3 on curing for 28 days compared to gravel 24.1 having cured for the same amount of days.

A review on Properties of Sustainable Concrete using

A comprehensive overview of the published literature on the use of granite dust in concrete is being presented. Effect of granite dust on the properties of concrete such as workability, setting times, compressive strength, split tensile strength, flexural strength, shrinkage, durability & microstructure of concrete have been presented.

IMPACT OF COARSE AGGREGATE ON COMPRESSIVE STRENGTH OF CONCRETE

High performance concrete at 28 days, basalt produced the highest strength, whereas gravel gave the lowest compressive strength. Normal strength concrete made with basalt and gravel gave similar compressive strength while the concrete containing limestone attained higher strength.

(PDF) Review Paper on Properties of Concrete using

PDF | On Apr 30, 2019, Sanjeev Sehgal and others published Review Paper on Properties of Concrete using Granite Dust and Fly Ash as a Partial Replacement of Fine Aggregate and Cement | Find, read

Review on the feasibility of Marble Dust as Replacement of

Literature Review Bekir Topcu et. al (2009) increase in compressive strength of concrete at 5.0% dust from granite as cement alternative and development in compressive strength at the most stages of granite dust as cement addition. Usage of 5.0% granite dust raised the corrosion cracking time & no essential decline in cracking time was decided at granite dust contents larger than 5.0. V.M

COMPRESSIVE STRENGTH OF NORMAL STRENGTH CONCRETE

2 LITERATURE RI VIEW 2.1 Introduction 5 2.2 Compressive Strength of Concrete 6 2.3 Relationship between Cube Concrete and Cylinder 6 Concrete 2.4 Effect of Placement Direction on Compressive 8 vii . viii -- Strength for Normal Strength Concrete and High Strength Concrete 2.5 Non Destructive Test: Rebound Hammer 10 2.6 Non Destructive Test :Ultrasonic Pulse Velocity ii 2.7 Cement 11 2.8

EFFECT OF CURING METHODS ON THE COMPRESSIVE STRENGTH

Effect of Curing Methods on Compressive Strength Of Concrete 15 2. Review of Related Literatures In concrete technology, the maintenance of the drying and setting process is referred to as curing. The purpose of curing is to keep ad-equate moisture content and temperature as soon as the concrete is placed and nished.

Re-Investigation of the Compressive Strength of Ordinary

strength values at 90 days for the LC were close to that of the 7 days strength values for OPC concrete. The compressive strength values of LC increased with increasing curing age which informs non-deterioration of concrete. Compressive strengths at 7 days curing of LC showed no results of strength gain. The initial and final setting time for OPC paste were 60mins and 430mins respectively

Computing the Compressive Strength of Concrete Cubes at (7

Literature Review Some of previous works: (Tantawi and Gharaibeh,(2006)) established a theoretical model based on a nonlinear regression analysis to consolidated concrete strength at 7 and 28 days by knowing its strength after 6 hr of its casting. Accelerating tests for early determination of concrete strength are used to generate expressions for predictions of hardened concrete strength as

Literature Review on Different Plastic Waste Materials Use

Literature Review on Different Plastic Waste Materials Use in Concrete aggregate and crushed granite stones as coarse aggregate, portable water free from impurities and containing varying percentage of waste plastic bags (0%, 0.2%, 0.4%, 0.6% 0.8% and 1.0%). Compressive strength of concrete specimen is affected by the addition of plastic bags and with increasing percentage of

Comparative Analysis on the Strength of Concrete Made

The report also shows that concrete made with granite was stronger with average compressive strength of 27.3 on curing for 28 days compared to gravel 24.1 having cured for the same amount of days.

EFFECT OF CURING METHODS ON THE COMPRESSIVE STRENGTH

Effect of Curing Methods on Compressive Strength Of Concrete 15 2. Review of Related Literatures In concrete technology, the maintenance of the drying and setting process is referred to as curing. The purpose of curing is to keep ad-equate moisture content and temperature as soon as the concrete is placed and nished.

Effect Of Mix Ratio And Curing Water On The Compressive

To illustrate on graph the compressive strength trend using various percentage replacement of granite with OPS 20%, 40% 60%, and 80%. vi. To observed the impact of curing water retained within the pores that exist within the sample being cured. 1.5 Scope of the Research The study is limited to the investigation of concrete made with Oil Palm Shells as partial replacement for coarse aggregate

The Effect of Aggregate Size on The Strength of Concrete

Literature Review Concrete can be seen as a composite material consisting of three phases, mortar, mortar with aggregate face, and the coarse phase. Coarse aggregate in normal concrete is made up of fragments of rock that have high strength. The compressive strength of concrete depends on water cement ratio, degree of compaction, aggregate cement ratio, the bond between mortar and aggregate

(PDF) EFFECT ON COMPRESSIVE STRENGTH OF

https://irjet.net/archives/V3/i3/IRJET-V3I314.pdf

COMPRESSIVE STRENGTH OF NORMAL STRENGTH CONCRETE

2 LITERATURE RI VIEW 2.1 Introduction 5 2.2 Compressive Strength of Concrete 6 2.3 Relationship between Cube Concrete and Cylinder 6 Concrete 2.4 Effect of Placement Direction on Compressive 8 vii . viii -- Strength for Normal Strength Concrete and High Strength Concrete 2.5 Non Destructive Test: Rebound Hammer 10 2.6 Non Destructive Test :Ultrasonic Pulse Velocity ii 2.7 Cement 11 2.8

Re-Investigation of the Compressive Strength of Ordinary

strength values at 90 days for the LC were close to that of the 7 days strength values for OPC concrete. The compressive strength values of LC increased with increasing curing age which informs non-deterioration of concrete. Compressive strengths at 7 days curing of LC showed no results of strength gain. The initial and final setting time for OPC paste were 60mins and 430mins respectively

CHAPTER – 2 LITERATURE REVIEW

The literature review presents the current state of knowledge and examples of successful uses of alternative materials in concrete technology, and in particular the use of Recycled Concrete (RC) aggregate as a coarse aggregate fraction in non-structural and structural concrete. Many researchers have dedicated their work to describe the properties of these kinds of aggregate, the minimum

Effect of Elevated Temperature on Mechanical Properties of

decreases the compressive strength of concrete. As tem-perature is further increased, decomposition of portlandite occurs between 400 and 540 C. When temperature increases beyond 400 C, the concrete strength decreases more rapidly due to the degradation of calcium–silica–hy-drate (C–S–H). Second phase of the C–S–H decomposes in the temperature range from 600 to 800 C forming b-C 2S

Literature Review on Different Waste Materials Use in Concrete

Literature Review on Different Waste Materials Use in Concrete 1 have been using natural sand and gravel in concrete manufacturing. Availability of natural aggregates is getting depleted and also it becoming costly. Hence, they have to be an importance on the use of wastes and by-products in all areas including construction industry. As 75% of concrete is composed of aggregates it is

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