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Various studies (Schmidt et al. 2004, 2012; Fehling et al. 2008) used SP dosages ranging between 1 and 8 % by cement weight for enhancing the workability of UHPC mixtures.
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The test results indicated that CCFCM addition enhanced the workability of the PC mixtures.
Use of SP can decrease flocculation of fine powder and enhance the workability of concrete.
Wax-based additives can be used as flow improvers to enhance the workability of asphalt rubber (AR).
The presence of crystals and a dense shell of Posslite LWA enhanced its strength and the rounded shape of LWA enhanced the workability of fresh lightweight aggregate concrete (LWAC).
A reduction in OMC enhances the workability of a good soil.
To enhance the workability of chromia/alumina castables, three types of ultrafine alumina powder were added to improve the workability.
A commercially available sulphonated naphthalene formaldehyde based superplasticizer (Conplast SP 430) was used as chemical admixture to enhance the workability of the concrete.
Furthermore, stepwise or delayed addition of SP (rather than adding the SP at once) was found to enhance the workability of UHPC mixtures owing to an improved dispersing effect (Tue et al. 2008).
The volumetric percentage replacement of 20% limestone powder in fine aggregate incorporating 20% bagasse ash effectively enhanced the workability and hardened properties of self-compacting concrete.
Despite the great number of reported WMA methodologies, organic waxes are widely used for reducing the binder viscosity and for enhancing the asphalt mixture workability already at lower temperatures (90 140°CC).
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