Fresh concrete rheology: internal friction among concrete ingredients is reduced most effectively by which adjustment to the mix?
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AUsing less mixing water
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BUsing more fine aggregates
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CAdopting a very rich cement paste without changing water
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DUsing more water along with well-graded (including coarser) aggregates
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ENone of these
Answer
Correct Answer: Using more water along with well-graded (including coarser) aggregates
Explanation
Introduction / Context:“Internal friction” in fresh concrete refers to resistance to flow caused by particle interlock and paste viscosity. Site crews often adjust water content or aggregate grading to achieve target workability; however, these changes affect segregation and strength. Understanding which change actually reduces interparticle friction is critical.
Given Data / Assumptions:
- Workability depends on water content, paste volume, and aggregate grading/shape.
- Well-graded aggregates (proper fines to coarse balance) minimize voids and friction.
- Excess water increases workability but risks bleeding and strength loss.
Concept / Approach:Rheology improves when the paste sufficiently lubricates the aggregate skeleton and when aggregate grading reduces particle interlock. Increasing water (within limits) lowers paste viscosity and, if paired with a sound grading that includes appropriate coarse fractions, reduces internal friction. Merely adding fines increases surface area and water demand, often increasing friction at a fixed water content.
Step-by-Step Solution:Identify the friction sources: angularity, poor grading, insufficient paste.Consider adjustments: more water + proper grading decreases friction and eases compaction.Reject alternatives: less water increases friction; more fines raise water demand; “rich mix” without water change can still be sticky.Therefore, option (d) best reduces internal friction.
Verification / Alternative check:Use of water-reducing admixtures can also lower friction without increasing water; the principle remains that lubrication and grading reduce interparticle resistance.
Why Other Options Are Wrong:
- Less water: stiffer, higher internal friction.
- More fines: higher surface area and paste demand, often stickier.
- Rich mix only: can become cohesive and less workable if w/c is unchanged.
Common Pitfalls:Over-watering to chase slump, leading to segregation and strength loss; ignoring aggregate shape (rounded vs crushed).
Final Answer:Using more water along with well-graded (including coarser) aggregates