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    EN8D Rebar Coupler

    • MaterialEN8D
    • ApplicationJoining End-to-end Of TMT Bar
    • TestsTensile Test,Chemical Test,Fatigue Test,Slip Test
    • Strength650 Mpa
    • Supply TypeManufacturer
    • Preferred Buyer Location All over the world

    Rebar Couplers are used to join end-to-end of TMT Bar to create a continuous Rebar length without losing its strength. Rebar Coupler is made up of EN8D Material which gives Tensile strength of 650....
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    • calendar Member Since 7 Years
    • building Nature of Business Manufacturer
    • Year of Establishment 2016

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    Rebar Couplers are used to join end-to-end of TMT Bar to create a continuous Rebar length without losing its strength. Rebar Coupler is made up of EN8D Material which gives Tensile strength of 650 mpa. In Construction, TMT bar is used to joined using a Coupler sleeve that transfers the force on the rebar. Rebar couplers are used in reinforced concrete structures to replace normal rebar lap joints. The couplers are also suitable for use in reinforced concrete columns and walls. Each rebar coupler consists of a piece of rebar equipped with a thread and coupler sleeve at the right end as viewed in the direction of installation. In construction joints, rebar couplers can be used to replace all pieces of rebar going through the formwork.Our every Coupler passed with 4 types of the test there are following bellow:i. Tensile Testii. Chemical Testiii. Fatigue Testiv. Slip Test i. Tensile Test:- Every coupler made with EN8D Material gives a Tensile Test of 650 mpa. As per IS Code 1785 it's compulsory to pass in Tensile stress.ii. Chemical Test:- In every coupler chemical test include carbon test Carbon compound contain 0.4% - 0.45%.iii. Fatigue Test:- Fatigue testing is define as the process of progressive localized permanent structural change occurring in a material subjected to conditions that produce fluctuating stresses & strains at some point.iv. Slip Test:- In slip test at the time of testing a coupler with Rebar the Threading of a Rebar & a Coupler didn’t Slip that Thread.


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