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The invention provides an application method of an equal-width wall forming device. A stirring shaft A and a stirring shaft D drive a crankshaft A and a crankshaft D to rotate clockwise and synchronously respectively in clockwise and synchronous rotation, and thus, a cutter body B is driven to swing jointly through a rotary sleeve A and a joint A, and a rotary sleeve D and a joint D. A stirring shaft B and a stirring shaft C drive a crankshaft B and a crankshaft C to anticlockwise and synchronously rotate respectively in anticlockwise and synchronous rotation, and thus, a cutter body A is driven to swing jointly through a rotary sleeve B and a joint B, and a rotary sleeve C and a joint C. In the process, the cutter body A and the cutter body B are synchronous but are opposite in swing direction. In the mutual swinging process of the cutter body A and the cutter body B, soil mass outside five stirring drill bits and inside the cutter body A and the cutter body B and water are mixed into mud through a plurality of cutter heads on the cutter body A and a plurality of cutter heads on the cutter body B, the mud flows out of holes, and kidney-shaped holes are formed.
The invention provides an application method of an equal-width wall forming device. A stirring shaft A and a stirring shaft D drive a crankshaft A and a crankshaft D to rotate clockwise and synchronously respectively in clockwise and synchronous rotation, and thus, a cutter body B is driven to swing jointly through a rotary sleeve A and a joint A, and a rotary sleeve D and a joint D. A stirring shaft B and a stirring shaft C drive a crankshaft B and a crankshaft C to anticlockwise and synchronously rotate respectively in anticlockwise and synchronous rotation, and thus, a cutter body A is driven to swing jointly through a rotary sleeve B and a joint B, and a rotary sleeve C and a joint C. In the process, the cutter body A and the cutter body B are synchronous but are opposite in swing direction. In the mutual swinging process of the cutter body A and the cutter body B, soil mass outside five stirring drill bits and inside the cutter body A and the cutter body B and water are mixed into mud through a plurality of cutter heads on the cutter body A and a plurality of cutter heads on the cutter body B, the mud flows out of holes, and kidney-shaped holes are formed.
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