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  2. Filler (materials) - Wikipedia

    en.wikipedia.org/wiki/Filler_(materials)

    Filler materials are particles added to binders (resin, thermoplastics, cement) to make a composite material. Filler materials improve specific properties or make the product cheaper. [1] Coarse filler materials such as construction aggregate and rebar are used in the building industry to make plaster, mortar and concrete.

  3. Talc - Wikipedia

    en.wikipedia.org/wiki/Talc

    Talc, or talcum, is a clay mineral composed of hydrated magnesium silicate, with the chemical formula Mg 3 Si 4 O 10 (OH) 2. Talc in powdered form, often combined with corn starch, is used as baby powder. This mineral is used as a thickening agent and lubricant. It is an ingredient in ceramics, paints, and roofing material.

  4. Composite material - Wikipedia

    en.wikipedia.org/wiki/Composite_material

    Typical engineered composite materials are made up of a binding agent forming the matrix and a filler material (particulates or fibres) giving substance, e.g.: Concrete , reinforced concrete and masonry with cement, lime or mortar (which is itself a composite material) as a binder

  5. Plaster mold casting - Wikipedia

    en.wikipedia.org/wiki/Plaster_mold_casting

    The plaster is not pure plaster of Paris, but rather has additives to improve green strength, dry strength, permeability, and castability.For instance, talc or magnesium oxide are added to prevent cracking and reduce setting time; lime and cement limit expansion during baking; glass fibers increase strength; sand can be used as a filler. [1]

  6. Paper chemicals - Wikipedia

    en.wikipedia.org/wiki/Paper_chemicals

    Mineral fillers are used to lower the consumption of more expensive binder material or to improve some properties of the paper. [9] China clay, calcium carbonate, titanium dioxide, and talc are common mineral fillers used in paper production. [citation needed]

  7. Engineered cementitious composite - Wikipedia

    en.wikipedia.org/wiki/Engineered_cementitious...

    Unlike regular concrete, ECC has a tensile strain capacity in the range of 3–7%, [1] compared to 0.01% for ordinary portland cement (OPC) paste, mortar or concrete. ECC therefore acts more like a ductile metal material rather than a brittle glass material (as does OPC concrete), leading to a wide variety of applications.

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