Geo Sintetik by Dirgatz Indonesia

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    GEOGRID 4040.pdf

    BROSUR RODTEX_1.pdf

    BROSUR RODTEX_2.pdf

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    Terbuat dari material PP [Polypropylene] yang memiliki kekuatan tarik tinggi pada dua arah (Biaxial).

    Geogrid Biaxial secara umum digunakan sebagai bahan stabilisasi atau perkuatan pada tanah dasar yang

    lunak, seperti pada daerah rawa, berlumpur dan gambut. Geogrid tipe ini dapat mereduksi tebal base atau

    sub base sehingga mampu menghemat biaya konstruksi.

    GEOGRID BIAXIAL

    APLIKASI

    ENVIRONMENTAL & CHEMICAL

    Effect of Soil Alkalinity - -

    Effect of Soil Acidity - -

    Effect of Bacteria - -

    Properties Test Method Units

    PHYSICAL

    Polimer

    Min. Carbon Black

    Colour

    MECHANICAL & HYDRAULIC

    DIMENSION

    Roll Width - m

    Roll Length - m

    GEOGRIDS

    Yield Strength at longitudinal ASTM 6637 kN/m

    Yield Strength at transverse ASTM 6637

    ASTM 6637

    Tensile strength at 5% strain

    2

    Nil

    Nil

    Nil

    Black

    40

    40

    3.95

    50

    14

    28

    GG 4040

    -

    -

    -

    -

    %

    Polypropylene

    kN/m

    he information set forth in this leafleteflects our best knowledge at the time

    f issuance. The specification may changet any time without prior notice to adaptew developments and technical findings.

    Our company accepts no liability for these of this information, or for theonsequences of any actions taken on theasis of the information provided.

    PT DIRGATZ INDONESIA

    MUC Building Jl. TB. Simatupang 15, Jakarta Selatan12530| Tel +62 21 87782070 | Fax +62 21 87782103 | email : [email protected]

    SPESIFIKASI TEKNIS

    SUBGRADEREINFORCEMENT

    BASEREINFORCEMENT

    SLOPEREINFORCEMEN

    EMBANKMENTSTABILIZATION

    ASTM D 4218

    Roll Weight Kg 96

    Tensile strength at 2% strain

    ASTM 6637 kN/m

    kN/m

    Strain @ Ultimate Strength ASTM 6637 % 13

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    RODTEX is made of polyester or polypropylene staple fibers needle punched, that is

    claimed to be able to add years of life of road, railroad, landfill or other

    civil/environmental engineering projects. It is commonly used for subsurface drainage,

    separation, stabilization, erosion control and cushioning applications. .G

    eote

    xtil e

    No

    nWove

    n

    ROD

    TE

    X

    RODTEXNON WOVEN GEOTEXTILERODTEX is resistant to ultraviolet (UV)degradation, biological and chemical effects that

    commonly found in soils.

    PRODUCT RANGEgtr 150 | 200 | 250 | 300 | 350 | 400 |gtr 500 | 550 | 600 | 700 | 800 |

    PRODUCTAPPLICATIONS

    Separation(To separate native subgradefrom an aggregate layer)Protection(To protect geomembrane or

    other construction materials

    fromsharp objects)Filtration(To retain soil while allowing

    the passage of water).Reinforcementof weaksoilDrainageEtc

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    Geot

    exti le

    NonW

    ov e

    nR

    OD

    TE

    X

    Separation

    Separation is the process of preventing two dissimilar materials from mixing. In this

    function, a geotextile is most often required to prevent the undesirable mixing of fill and

    natural soils or two different types of fills. A geotextile can be placed between a railroad

    subgrade and track ballast to prevent contamination and resulting strength loss of theballast by intrusion of the subgrade soil. In construction of roads over soft soil, a geotextile

    can be placed over the soft subgrade, and then gravel or crushed stone placed on the

    geotextile. The geotextile prevents mixing of the two materials.

    Geotextile products are engineered to provide cost-effective solutions to meet specific

    requirements in civil engineering construction, there are at least five major functions of

    Geotextile:

    | SEPARATION | REINFORCEMENT |

    | FILTRATION | DRAINAGE |

    | PROTECTION |

    THE FIVE MAJOR FUNCTIONS

    OF GEOTEXTILE

    Drainage

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    Geote

    xtil e

    No

    nWove

    n

    ROD

    TE

    X

    Dirgabag is made of Non Woven Polyester or

    Polypropylene Geotextile. It is comparatively small

    in size and commonly applied to erosion control,

    small construction of breakwaters or bunds.

    Compared to other options, Dirgabag is more

    economical which has advantages especially to

    speed up construction and for easy construction

    methodology.

    For the application of river bank protection or

    temporary slope retaining structures,Dirgabag can

    be filled up with in-situ soil to reduce cost.

    Custom-made Geotextile Bag

    Containing Dredged material

    Breakwater, etc

    Shore Protection

    Groyne

    Riverbank Protection

    Temporary Jetty

    APPLICATIONS :

    Product Benefits Cost and time saving Light-weight and easy to handle Excellent resistance and durability Customized production Environmental friendly

    Available in Various Dimensions Upon Request.Non Woven Polyester or Polypropylene Geotextile

    GEOBAG / SANDBAG using Non Woven Geotextilefor shoreline protection

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    Geot

    exti le

    NonW

    ov e

    nR

    OD

    TE

    X

    SOIL REINFORCEMENT

    In reinforcement works,geosyntheticacts as a reinforcement element

    within a soil mass or in combination

    with the soil to produce a composite

    that has improved strength and

    deformation properties over the

    unreinforced soil. For example,

    geotextiles and geogrids are used to

    add tensile strength to a soil mass in

    order to create vertical or near-

    vertical changes in grade (reinforcedsoil walls).

    The use of Non Woven Geotextilein civil works

    PT. DIRGATZ INDONESIAMUC BuildingJL. TB. Simatupang No. 15Jakarta 12530T. +62 21 87782070 | F. +62 21 87782103| Email: [email protected]| WWW. DIRGATZ.COM

    Building OnSafetyQuality &Durability

    Dirgatz

    CURING OF CONCRETE

    Curing is one of the most important

    steps in concrete construction,

    because proper curing will greatly

    increase concrete strength and

    durability. Concrete hardens as a

    result of hydration and typically,

    cement wil harden and gain 90% of

    final strength in around four weeks,

    during this period, concrete needs to

    be kept under controlled temperature

    and humidity.

    Poor curing practices can result in

    excessive curling, early-age cracking,

    surface deterioration, low early

    strengths, and reduced durability