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Implementation method of large-diameter cement soil mixing pile former
The invention discloses an implementation method of a large-diameter cement soil mixing pile former. When the large-diameter cement soil mixing pile former works, a motor drives a crankshaft A, a crankshaft B and a crankshaft C to rotate through a transmission box respectively; when the crankshaft A rotates, a mixing rod A is driven to swing around a shaft A; when the crankshaft B rotates, a mixing rod B is driven to swing around a shaft B; when the crankshaft C rotates, a mixing rod C is driven to swing around a shaft C; the swing and mixing areas of the three mixing rods form a circle; meanwhile, high-pressure water enters a mixing shaft from the upper end of the mixing shaft; water is averagely provided for the three mixing rods by three water supply pipes at the lower end of the mixing shaft; high-pressure water is ejected from multiple water outlet holes in the lower parts of the mixing rods; the three mixing rods and multiple mixing teeth on the lower parts of the mixing rods coact with the high-pressure water during motion to cut soil and mix with water to form mud; the mud flows out from a circular hole.
Implementation method of large-diameter cement soil mixing pile former
The invention discloses an implementation method of a large-diameter cement soil mixing pile former. When the large-diameter cement soil mixing pile former works, a motor drives a crankshaft A, a crankshaft B and a crankshaft C to rotate through a transmission box respectively; when the crankshaft A rotates, a mixing rod A is driven to swing around a shaft A; when the crankshaft B rotates, a mixing rod B is driven to swing around a shaft B; when the crankshaft C rotates, a mixing rod C is driven to swing around a shaft C; the swing and mixing areas of the three mixing rods form a circle; meanwhile, high-pressure water enters a mixing shaft from the upper end of the mixing shaft; water is averagely provided for the three mixing rods by three water supply pipes at the lower end of the mixing shaft; high-pressure water is ejected from multiple water outlet holes in the lower parts of the mixing rods; the three mixing rods and multiple mixing teeth on the lower parts of the mixing rods coact with the high-pressure water during motion to cut soil and mix with water to form mud; the mud flows out from a circular hole.
Implementation method of large-diameter cement soil mixing pile former
ZHANG YONGZHONG (Autor:in)
01.07.2015
Patent
Elektronische Ressource
Englisch
IPC:
E02D
FOUNDATIONS
,
Gründungen
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