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Hammering method


<p><strong> The hammering method is currently a widely used pile-driving technique. </strong></p> <h3> Land piling </h3> <p> Mast-type rack + hydraulic impact hammer (16t-20t); </p> <h3> Pile driving on water </h3> <p> Marine pile-driving vessel + guide rod hammer (or hydraulic impact hammer) </p> <h3> Construction Method Advantages </h3> <p> High penetrating power, capable of adapting to geological conditions with relatively high N-values (≤30 blows). </p>

Suspension Impact Method


<h3> Applicable scenarios </h3> <p> The suspended impact method is suitable for construction near water bodies where the engineering geology is relatively hard and a construction interface is available. </p> <h3> Construction Method Advantages </h3> <p> It has strong penetrating power and can adapt to geological conditions with higher N-values (≤25 blows). It can be suspended for construction over a certain distance and is also suitable for construction interfaces where there are significant elevation differences on site. </p>

Robotic Arm Vibration Method


<h3> Applicable scenarios </h3> <p> This method is generally suitable for shore-side construction involving piles with smaller specifications and shorter lengths (≤12m), in areas with relatively soft engineering geology, and where a certain construction interface is available. When the N-value is relatively high, mechanical pilot drilling can be used to assist in pile driving. </p> <h3> Construction Method Advantages </h3> <p> Pile extraction, pile feeding, and pile driving are completed in one step, ensuring fast construction. </p>

Management Project for the Yangmeizhou Section of the Xiangjiang River, a Major Tributary


<p> [Construction Method]: Robotic Arm Vibration Method </p> <p> 【Pile Type Selected】: H-BZ-250-I, pile length 4–6 meters </p>

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