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3D paving construction method for asphalt pavement
The invention discloses a 3D paving construction method for an asphalt pavement, which comprises the following steps: S1, a base station and a laser base station which are erected on control points transmit differential signals and laser elevation information to a receiver through a wireless data transmission radio station and a cable; S2, after the receiver processes the received data, the three-dimensional coordinate data are transmitted to a control box in real time, the control box analyzes and compares the obtained current three-dimensional coordinate information with design data in the control box, and corresponding elevation correction information is generated; and S3, a corresponding proportional driving electric signal is correspondingly generated by the control box according to the information, and driving a traction arm hydraulic oil cylinder of the paver through an electromagnetic hydraulic valve so as to adjust the ironing plate in a corresponding direction. According to the 3D paving construction method, the consumption amounts of the asphalt mixture and high-quality stone are greatly reduced, and the original pavement milling working mount is reduced. The resource and energy consumption for producing, processing and transporting high-quality stones and raw materials is reduced, and the influence of resource exploitation on environment damage is also reduced.
本发明公开了沥青路面3D摊铺施工工法,包括如下步骤:S1、架设在控制点上的基准站和激光基准站,将差分信号和激光高程信息通过无线数据传输电台和线缆传输到接收机;S2、接收机对接收到的数据进行处理后,实时的将三维坐标数据传输到控制箱,控制箱对获得的当前三维坐标信息与控制箱中的设计数据进行分析对比,生成相应的高程修正信息;S3、信息再由控制箱对应生成相应的比例驱动电信号,通过电磁液压阀驱动摊铺机牵引臂液压油缸使熨平板进行相应方向的调整,本发明极大程度地减小了沥青混合料、优质石材的用量、及原路面铣刨作业量,降低了生产、加工和运输优质石材与原材料的资源和能源消耗,也减少了对资源开采对环境破坏的影响。
3D paving construction method for asphalt pavement
The invention discloses a 3D paving construction method for an asphalt pavement, which comprises the following steps: S1, a base station and a laser base station which are erected on control points transmit differential signals and laser elevation information to a receiver through a wireless data transmission radio station and a cable; S2, after the receiver processes the received data, the three-dimensional coordinate data are transmitted to a control box in real time, the control box analyzes and compares the obtained current three-dimensional coordinate information with design data in the control box, and corresponding elevation correction information is generated; and S3, a corresponding proportional driving electric signal is correspondingly generated by the control box according to the information, and driving a traction arm hydraulic oil cylinder of the paver through an electromagnetic hydraulic valve so as to adjust the ironing plate in a corresponding direction. According to the 3D paving construction method, the consumption amounts of the asphalt mixture and high-quality stone are greatly reduced, and the original pavement milling working mount is reduced. The resource and energy consumption for producing, processing and transporting high-quality stones and raw materials is reduced, and the influence of resource exploitation on environment damage is also reduced.
本发明公开了沥青路面3D摊铺施工工法,包括如下步骤:S1、架设在控制点上的基准站和激光基准站,将差分信号和激光高程信息通过无线数据传输电台和线缆传输到接收机;S2、接收机对接收到的数据进行处理后,实时的将三维坐标数据传输到控制箱,控制箱对获得的当前三维坐标信息与控制箱中的设计数据进行分析对比,生成相应的高程修正信息;S3、信息再由控制箱对应生成相应的比例驱动电信号,通过电磁液压阀驱动摊铺机牵引臂液压油缸使熨平板进行相应方向的调整,本发明极大程度地减小了沥青混合料、优质石材的用量、及原路面铣刨作业量,降低了生产、加工和运输优质石材与原材料的资源和能源消耗,也减少了对资源开采对环境破坏的影响。
3D paving construction method for asphalt pavement
沥青路面3D摊铺施工工法
LI ZIDUO (Autor:in) / GAO PENG (Autor:in) / GUO JIANXIAO (Autor:in) / CAI QI (Autor:in) / YANG LEI (Autor:in) / ZHEN LIYA (Autor:in) / DONG CHENG (Autor:in) / SHI LEIXIN (Autor:in) / LIU YONGFEI (Autor:in) / LIU HAO (Autor:in)
28.05.2021
Patent
Elektronische Ressource
Chinesisch
IPC:
E01C
Bau von Straßen, Sportplätzen oder dgl., Decken dafür
,
CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE
/
B33Y
ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
,
Additive (generative) Fertigung, d. h. die Herstellung von dreidimensionalen [3D] Bauteilen durch additive Abscheidung, additive Agglomeration oder additive Schichtung, z. B. durch 3D- Drucken, Stereolithografie oder selektives Lasersintern
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