• (PDF) STRENGTH BEHAVIOUR OF FOUNDRY SAND

    It has been found that 25% replacement of fine aggregate showed a refinement in tensile strength CONCLUSIONIt could be noted that the effects of concrete containing foundry sand is unique, as the foundry sand changes its physical and chemical properties and also its manufacturing process

  • Reusage of waste foundry sand in highstrength

    In this study, the potential reuse of waste foundry sand in highstrength concrete production was investigated The natural fine sand is replaced with waste foundry sand (0%, 5%, 10%, and 15%) The findings from a series of test program has shown reduction in compressive and tensile strengths, and

  • Cited by: 125
  • Reusage of waste foundry sand in highstrength

    The high replacement of the blended foundry sand caused a reduction in strength as compared with concrete incorporating white sand or waste foundry sand Naik et al (2004) studied the influence of waste foundry sand as well as fly ash and bottom ash on the compressive strength of bricks, blocks, and paving stones

  • Cited by: 125
  • Reusage of waste foundry sand in highstrength

    In this study, the potential reuse of waste foundry sand in highstrength concrete production was investigated The natural fine sand is replaced with waste foundry sand (0%, 5%, 10%, and 15%) The findings from a series of test program has shown reduction in compressive and tensile strengths, and the elasticity modulus which is directly

  • Developing Sustainable Ultra High Strength Concrete

    Developing Sustainable Ultra High Strength Concrete Mixtures Using Spent Foundry Sand 345 classification achieved through chemical analyses and particle size The research conducted by Prabhu, G G et al (from a cast iron plant) showed that the main source of foundry waste is molding sand (360 t/d) The remaining are from molds from dust

  • Experimental Investigation of Foundry Sand in Concrete

    foundry sand in concrete, the strength increases with increase of foundry sand in concrete upto the level of 20% of replacement, after that the strength decreases at 30% of replacement of foundry sand in concrete in various curing periods Below listed tables and graphs shows the

  • Author: Srimathi E, Venkatesan M
  • (PDF) Waste Foundry Sand as a Replacement for Fine

    In this study, the potential reuse of waste foundry sand in highstrength concrete production was investigated The natural fine sand is replaced with waste foundry sand (0%, 5%, 10%, and 15%)

  • A Literature Review on Foundary Sand Concrete

    2 To investigate the utilization of Used Foundry Sand as Fine aggregate and influence of UFS on the Strength on concrete made with different replacement levels 3 To check the effect of Used Foundry Sand in concrete on properties of fresh concrete & compressive strength 4

  • Effect of Industrial Waste Foundry Sand as Fine

    2) Substitution of 30% of foundry sand results decrease in compressive strength for M20 & M30 grade of concrete when compared to mixes with natural sand 3) Substitution of 20% (A2) foundry sand in M20 grade concrete & 10% (A1) foundry sand in M30 grade concrete gives better results 3 h 35 Percentages of FS

  • THE DEVELOPMENT OF ULTRA HIGH STRENGTH

    THE DEVELOPMENT OF ULTRA HIGH STRENGTH CONCRETE MIXTURES USING WASTE FOUNDRY SAND by Chizitelu Modebelu, BS A thesis submitted to the Graduate Council of Texas State University in partial fulfillment of the requirements for the degree of Master of Science with a Major in Technology Management May 2017 Committee Members: Anthony Torres, Chair

  • Experimental Investigation of Foundry Sand in Concrete

    foundry sand in concrete, the strength increases with increase of foundry sand in concrete upto the level of 20% of replacement, after that the strength decreases at 30% of replacement of foundry sand in concrete in various curing periods Below listed tables and graphs shows the

  • Experimental Investigation of Foundry Sand in

    In this study, effect of foundry sand as fine aggregate replacement on the compressive strength, flexural strength and split tensile strength of concrete with a grade of concrete M30 & The over exploitation of nonrenewable materials is becoming a threat and therefore water cement ratio of 045 was investigated at different limited curing

  • A Literature Review on Foundary Sand Concrete

    2 To investigate the utilization of Used Foundry Sand as Fine aggregate and influence of UFS on the Strength on concrete made with different replacement levels 3 To check the effect of Used Foundry Sand in concrete on properties of fresh concrete & compressive strength 4

  • WASTE FOUNDRY SAND IN CONCRETE

    Flexural strength of normal concrete is 4197(N/mm²) Flexural strength of 30& replacement of fine aggregate by foundry sand is 4152(N/mm²) 5 CONCLUSIONS Experimental investigations on 10%, 20%, 30% and 40% replacement of fine aggregate with foundry sand is doneThe

  • Mechanical Properties of Concrete Containing

    Concrete containing white sand showed somewhat similar strength to those containing spent sand at all replacement levels The presence of high percentage of blended sand in the concrete mixture caused a reduction in strength as compared with concrete incorporating white sand or spent sand

  • KEYWORDS: foundry waste, foundry sand, concrete,

    KEYWORDS: foundry waste, foundry sand, concrete, strength, industrial waste, utilization INTRODUCTION Foundry sand is high quality silica sand with uniform physical characteristics It is a by product of ferrous and nonferrous metal casting industries, where sand

  • Benificial Reuse of Waste Foundry Sand in Concrete

    foundry sand and used foundry sand Concrete performance was evaluated with respect to compressive strength, tensile strength, and modulus of elasticity At 28day age, concrete containing used foundry sand showed about 2030% lower values than concrete without used foundry sand But concrete containing25% and 35% clean/new foundry sand gave

  • Application of Waste Foundry Sand for Evolution of Low

    for disposal known as “Waste foundry sand” Use of waste foundry sand as a partial replacement or total replacement by fine aggregate in concrete leads in production of economic, light weight and high strength concrete Concrete is a material which is composed of coarse aggregate, fine aggregate, cement, admixtures and

  • Effect of Industrial Waste Foundry Sand as Fine

    Keywords: concrete mix, foundry sand, compressive strength, split tensile, workability, compaction factor 1 Introduction 1In twenty first century construction industries plays vital role in development of infrastructure sector The use of natural resources as natural sand in concrete

  • Developing Sustainable Ultra High Strength Concrete

    This study presents the development of ultra high strength concrete (UHSC) that has been made more sustainable by using both local materials from central Texas and spent foundry sand (FS) from the metal casting industry, which has also been obtained locally

  • Comparative Studies on Mechanical Properties of High

    sharma et al Concrete Research Letters Vol7 (1) 2016 1 wwwcrl Vol 7 (1) – March 2016 Comparative Studies on Mechanical Properties of High Strength Concrete Using Foundry Slag and Alccofine Devinder Sharma1,c, Sanjay Sharma2, Ajay Goyal3

  • An experimental study on high performance concrete

    To evaluate the high strength concrete compressive strength, split tensile strength, and flexural strength have been studied in this investigations Materials: High performance concrete was made of cement, sand, fly ash, GGBS, foundry sand, aggregate, water and chemical admixture

  • Benificial Reuse of Waste Foundry Sand in Concrete

    foundry sand and used foundry sand Concrete performance was evaluated with respect to compressive strength, tensile strength, and modulus of elasticity At 28day age, concrete containing used foundry sand showed about 2030% lower values than concrete without used foundry sand But concrete containing25% and 35% clean/new foundry sand gave

  • Mechanical Properties of Concrete Containing

    Concrete containing white sand showed somewhat similar strength to those containing spent sand at all replacement levels The presence of high percentage of blended sand in the concrete mixture caused a reduction in strength as compared with concrete incorporating white sand or spent sand

  • Influence of Fungus on Properties of Concrete Made

    Microbial modified mortar/concrete has become an important area of research for highperformance construction materials This study investigates the effects of fungal (Eupenicillium crustaceum) treated waste foundry sand on concrete properties as partial replacements of sand It shows an increase in compressive strength up to 24% and decreases

  • Vol 5, Issue 5, May 2016 Waste Foundry Sand as a

    of waste sand As per present disposal practices, the waste foundry sand which is dumped on barren land cannot be recovered So the waste foundry sand should be used for other beneficial applications to reduce its adverse effects In this study the properties of high strength concrete masonry blocks with partial replacement of waste foundry sand to

  • STRENGTH PERFORMANCE OF CONCRETE USING

    The compressive and flexural strength of concrete decrease with the increase of the bottom ash fines at the same curing age, especially after 3 and 7 days Yogesh Aggarwal and Rafat Siddique [8], were studied microstructure and properties of concrete using bottom ash and waste foundry sand as partial replacement of fine aggregates

  • STRENGTH AND DURABILITY PROPERTIES OF HIGH

    “Guide for selecting proportions for high strength concrete with portland cement and other cementations materials”(2008) [30] to have 28 day compressive strength of 60 MPa Five more concrete mixtures (M2, M3, M4, M5 and M6) were made by replacement of NSand with M Sand Replacement percentages were 20, 40, 60, 80 and 100

  • Partial replacement of waste foundry sand and recycled

    Patel Ankit; was reported generation of waste foundry sand as by product of metal casting industries causes environmental problems because of its improper disposal The experimental investigation was carryout on a concrete carrying waste foundry sand in the range of 0%, 20%, 40% and 60% by weight for M25 grade concrete (PPC)

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