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Enhanced concrete sleeper dense vibration device
The invention relates to the field of concrete sleeper producing and manufacturing, in particular to an enhanced concrete sleeper dense vibration device. A horizontally-arranged vibration installing plate is included. A supporting installing barrel is vertically arranged at the middle position of the upper end of the vibration installing plate. The middle position in the supporting installing barrel is vertically provided with a reducing flow guiding installing barrel. A spherical surface filter net is arranged at the upper end of the reducing flow guiding installing barrel. A guiding flow guiding hole is vertically formed in the lower end of the reducing flow guiding installing barrel. A flow homogenizing cavity is horizontally formed in the middle position of the vibration installing plate and communicates with the guiding flow guiding hole. Through water injecting and discharging, the dead load of the device is changed, and dense vibration effect adjustment is achieved; through vibration generated by multiple pneumatic flow guiding structures, device vibration is achieved, and accordingly dense vibration is achieved; and vibration is generated through passive pneumatic rotation,the vibration effect is further improved, vibration uniformity of the device is good, the dense vibration efficiency and quality are obviously improved, and the enhanced concrete sleeper dense vibration device can adapt to concrete work at different depths.
本发明涉及混凝土轨枕生产制造领域,具体是一种增强型混凝土轨枕振动密实装置,包括水平设置的振动安装板,振动安装板的上端中间位置竖直设置有支撑安装筒,支撑安装筒的内部中间位置竖直设置有变径导流安装筒,变径导流安装筒的上端设置有球面滤网,变径导流安装筒的下端竖直设置有引导导流孔,所述振动安装板的中间位置水平设置有均流腔,均流腔与引导导流孔连通,通过注水放水改变装置自重,实现振动密实效果的调节,通过多组气动导流结构产生的振动,实现装置的振动,从而实现振动密实,通过被动气动转动产生振动,进一步提升振动效果,使得装置振动的均匀性好,振动密实的效率和质量显著提升,能够适应不同深度的混凝土作业。
Enhanced concrete sleeper dense vibration device
The invention relates to the field of concrete sleeper producing and manufacturing, in particular to an enhanced concrete sleeper dense vibration device. A horizontally-arranged vibration installing plate is included. A supporting installing barrel is vertically arranged at the middle position of the upper end of the vibration installing plate. The middle position in the supporting installing barrel is vertically provided with a reducing flow guiding installing barrel. A spherical surface filter net is arranged at the upper end of the reducing flow guiding installing barrel. A guiding flow guiding hole is vertically formed in the lower end of the reducing flow guiding installing barrel. A flow homogenizing cavity is horizontally formed in the middle position of the vibration installing plate and communicates with the guiding flow guiding hole. Through water injecting and discharging, the dead load of the device is changed, and dense vibration effect adjustment is achieved; through vibration generated by multiple pneumatic flow guiding structures, device vibration is achieved, and accordingly dense vibration is achieved; and vibration is generated through passive pneumatic rotation,the vibration effect is further improved, vibration uniformity of the device is good, the dense vibration efficiency and quality are obviously improved, and the enhanced concrete sleeper dense vibration device can adapt to concrete work at different depths.
本发明涉及混凝土轨枕生产制造领域,具体是一种增强型混凝土轨枕振动密实装置,包括水平设置的振动安装板,振动安装板的上端中间位置竖直设置有支撑安装筒,支撑安装筒的内部中间位置竖直设置有变径导流安装筒,变径导流安装筒的上端设置有球面滤网,变径导流安装筒的下端竖直设置有引导导流孔,所述振动安装板的中间位置水平设置有均流腔,均流腔与引导导流孔连通,通过注水放水改变装置自重,实现振动密实效果的调节,通过多组气动导流结构产生的振动,实现装置的振动,从而实现振动密实,通过被动气动转动产生振动,进一步提升振动效果,使得装置振动的均匀性好,振动密实的效率和质量显著提升,能够适应不同深度的混凝土作业。
Enhanced concrete sleeper dense vibration device
一种增强型混凝土轨枕振动密实装置
QIU JIANPING (author)
2020-07-10
Patent
Electronic Resource
Chinese
IPC:
B28B
Formgeben von Ton oder anderen keramischen Stoffzusammensetzungen, Schlacke oder von Mischungen, die zementartiges Material enthalten, z.B. Putzmörtel
,
SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS, SLAG OR MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
/
E01B
PERMANENT WAY
,
Gleisoberbau
ANTI-VIBRATION SLEEPER AND ANTI-VIBRATION SLEEPER STRUCTURE
European Patent Office | 2019
|