{"id":392,"date":"2026-08-13T03:44:18","date_gmt":"2026-08-13T03:44:18","guid":{"rendered":"https:\/\/soil-stabilisor.com\/?p=392"},"modified":"2026-08-13T03:44:18","modified_gmt":"2026-08-13T03:44:18","slug":"how-to-increase-soil-stability","status":"publish","type":"post","link":"https:\/\/soil-stabilisor.com\/en_au\/blog\/how-to-increase-soil-stability\/","title":{"rendered":"How to Increase Soil Stability: A Step-by-Step Field Guide"},"content":{"rendered":"
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\u25cf\u00a0\u00a0Practical Guide<\/span><\/p>\n <\/p>\n <\/p>\n Increasing soil stability is not a single action \u2014 it is a structured process that begins with understanding what you have in the ground, selecting the right treatment for that specific soil and load condition, executing the treatment correctly, and verifying the result before building on it. This guide walks through the complete process: from site investigation to quality control, covering the decisions that determine whether a stabilization project succeeds or fails.<\/p>\n <\/p>\n <\/p>\n No soil stability improvement programme should begin without understanding the existing ground conditions. Treating the wrong problem with the wrong method wastes money and produces an unreliable result. Site investigation answers three critical questions: what type of soil is present, how weak is it, and what is causing the weakness?<\/p>\n Field testing gives a rapid picture of soil strength variability across a site without laboratory delays. The most useful field tests for subgrade assessment are:<\/p>\n Representative samples collected from trial pits or boreholes across the site are sent to a geotechnical laboratory for the following tests as a minimum:<\/p>\n <\/p>\n Field Rule of Thumb<\/p>\n If your boot sinks more than 25 mm into the subgrade, or a DCP reading exceeds 30 mm\/blow, the soil is unlikely to achieve even a CBR of 3% \u2014 well below the minimum for most road designs. Chemical stabilization is almost certainly required before pavement construction.<\/p>\n<\/div>\n <\/p>\n The investigation results drive the method selection. There is no universal treatment \u2014 the right approach depends on soil type, severity of weakness, project requirements, budget, and timeline. The decision framework below covers the most common site conditions:<\/p>\nHow to Increase Soil Stability<\/span>: A Step-by-Step Field Guide<\/h1>\n

Step 1: Investigate the Existing Soil<\/h2>\n
Field Testing<\/h3>\n
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Laboratory Testing<\/h3>\n
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Step 2: Select the Right Method for Your Soil<\/h2>\n