Precision from the ground up.
Call Now to Book: 0430 420 579Justin has been the driving force behind A2ZEarthworks since 2010. With over a decade of hands-on expertise as a lead operator and on-site specialist, he understands exactly what it takes to deliver high-quality, functional earthworks. Justin leads a dedicated team of trusted professionals, tradesmen, and engineers to ensure every project is optimised, cost effective and to code.
At A2Z know that prescriptive engineering designs can sometimes miss key practical points. After all, designs are only as good as the personal building them. When we see the classic "contractor to make good" callouts on a plan, we don't just guess. We get our on the ground, tools out and bridge the gap between the plan and reality.
Fast, safe, and efficient solutions for clearing commercial lots or preparing residential sites using heavy machinery.
Site cuts, leveling, bulk excavation, and detailed grading to ensure your site meets the exact specifications.
Excavation and installation of robust drainage solutions, including trenching for stormwater pipes and culverts.
Functional site management relies on efficient import and export logistics. We handle bulk soil cartage, spoil removal, and material delivery, adapting to real-world site conditions.
We expertly shape, grade, and stabilize batters using retaining structures and targeted earthworks for long-term stability.
Simple, practical calculators to help you estimate material volumes and logistics straight from your phone while out on site.
Calculate basic excavation volumes. Add an optional swell percentage to account for the soil expanding once dug up.
Estimate the volume to level a uniform sloping pad. Assumes you are cutting the high side to fill the low side evenly.
Calculate the exact cut/fill volume for a sloping batter using Top & Bottom heights and slope ratio.
Calculate the exact number of truck movements required to move your loose dirt based on bin capacity.
Determine the slope percentage for batters, retaining walls, or drainage pipes based on vertical fall over a distance.