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Mining electric shovel bucket structure and mining electric shovel bucket machining method
The invention provides a mining electric shovel bucket structure and a mining electric shovel bucket machining method. The mining electric shovel bucket structure comprises an upper box body structure, a side wall structure and a lower box body structure. The mining electric shovel bucket structure has the length direction, the height direction and the width direction which are perpendicular to one another. Wherein the upper box body structure comprises an upper plate body, a lower plate body, a plurality of transverse reinforcing ribs and a plurality of longitudinal reinforcing ribs; the extending direction of the transverse reinforcing ribs is parallel to the width direction, and the two ends, in the height direction, of the transverse reinforcing ribs are fixedly connected with the upper plate body and the lower plate body correspondingly. According to the mining electric shovel bucket structure, a grid-shaped supporting structure which is transversely distributed in the width direction and longitudinally distributed in the length direction is formed in the upper box body, so that the overall bearing capacity and use durability of the mining electric shovel bucket structure are improved, and the stability and safety of an electric shovel under long-term work are improved; the common mechanical design defect of an existing upper box body is overcome, and the excavation work efficiency of the electric forklift truck equipment is guaranteed.
本发明提供了一种矿用电铲铲斗结构及矿用电铲铲斗加工方法,结构包括:上部箱体结构、侧壁结构和下部箱体结构;矿用电铲铲斗结构具有相互垂直的长度方向、高度方向和宽度方向;其中,上部箱体结构包括上板体、下板体、多个横向加强筋和多个纵向加强筋;横向加强筋的延伸方向平行于宽度方向,且横向加强筋沿高度方向上的两端分别与上板体、下板体固定连接;本发明使得上部箱体内部形成了沿宽度方向横向分布和沿长度方向纵向分布的格栅状支撑结构,进而提高了矿用电铲铲斗结构整体的承载能力和使用耐久性,提高了电铲车在长期工作下的稳定性和安全性,解决了现有的上部箱体上常见的力学设计性缺陷,保证了电铲车设备的挖掘工作效率。
Mining electric shovel bucket structure and mining electric shovel bucket machining method
The invention provides a mining electric shovel bucket structure and a mining electric shovel bucket machining method. The mining electric shovel bucket structure comprises an upper box body structure, a side wall structure and a lower box body structure. The mining electric shovel bucket structure has the length direction, the height direction and the width direction which are perpendicular to one another. Wherein the upper box body structure comprises an upper plate body, a lower plate body, a plurality of transverse reinforcing ribs and a plurality of longitudinal reinforcing ribs; the extending direction of the transverse reinforcing ribs is parallel to the width direction, and the two ends, in the height direction, of the transverse reinforcing ribs are fixedly connected with the upper plate body and the lower plate body correspondingly. According to the mining electric shovel bucket structure, a grid-shaped supporting structure which is transversely distributed in the width direction and longitudinally distributed in the length direction is formed in the upper box body, so that the overall bearing capacity and use durability of the mining electric shovel bucket structure are improved, and the stability and safety of an electric shovel under long-term work are improved; the common mechanical design defect of an existing upper box body is overcome, and the excavation work efficiency of the electric forklift truck equipment is guaranteed.
本发明提供了一种矿用电铲铲斗结构及矿用电铲铲斗加工方法,结构包括:上部箱体结构、侧壁结构和下部箱体结构;矿用电铲铲斗结构具有相互垂直的长度方向、高度方向和宽度方向;其中,上部箱体结构包括上板体、下板体、多个横向加强筋和多个纵向加强筋;横向加强筋的延伸方向平行于宽度方向,且横向加强筋沿高度方向上的两端分别与上板体、下板体固定连接;本发明使得上部箱体内部形成了沿宽度方向横向分布和沿长度方向纵向分布的格栅状支撑结构,进而提高了矿用电铲铲斗结构整体的承载能力和使用耐久性,提高了电铲车在长期工作下的稳定性和安全性,解决了现有的上部箱体上常见的力学设计性缺陷,保证了电铲车设备的挖掘工作效率。
Mining electric shovel bucket structure and mining electric shovel bucket machining method
矿用电铲铲斗结构及矿用电铲铲斗加工方法
ZHANG YONGQIANG (author) / WANG RONGJUN (author) / LI TONG (author) / LI HE (author) / WANG ZHANJUN (author) / MA BO (author) / PAN LEILEI (author) / YAN ZAICHEN (author)
2025-01-07
Patent
Electronic Resource
Chinese