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Partially decoupling and collar bonding of the encapsulated rebar rockbolts to improve their performance in seismic prone deep underground excavations

机译:封装的钢筋岩石锚栓的部分解耦和套环粘结,以改善其在地震多发的深部地下开挖中的性能

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Rockbolt is widely employed all over the world as an effective ground reinforcement element in order to secure the underground workplaces.Ordinary encapsulated rebar or rebar rockbolt is most popular and commonly used as reinforcement in a ground support system because of its accessibility,cost effectiveness and easy practicability.Reinforcement elements in a seismic condition such as rock burst have to dissipate the energy release of the dynamic impact via their deformation and ultimate load capacity,knowing that the former is more important.In other words,achieving early stiff behaviour along with large deformation capacity in rockbolts are the goals for new development in rock reinforcement.Yielding rockbolts are expensive while some of them have large deformation capability with low ultimate load capacity.In this paper,modifications were made on encapsulation of rebar rockbolts to utilise it effectively as a yielding reinforcement in seismic conditions.Applying a sufficient decoupled length in the shank of rebar rockbolts which industry has regularly been using to control the bulking of the stress fractured ground,improves the deformation capacity of the bolt.Additionally,leaving a collar bonding underneath of the bearing pad and plate removes the weaknesses of the head anchorage of rockbolt.Therefore the dynamic performance of the bolt is improved by these easily applicable modifications.The behaviour and performance of encapsulated rockbolts have been discussed first,then the effects of modifications are illustrated.The proposed modification of the rebars is not only cost effective but also easy to apply in the field and improves the performance of reinforcements in seismic prone zones.
机译:Rockbolt被广泛用作保护地面工作场所的有效地面加固元件。普通的封装钢筋或钢筋Rockbolt由于其可接近性,成本效益和易用性,在地面支撑系统中最为流行和常用。实用性。在岩石破裂等地震条件下,加固元件必须通过其变形和极限承载力来消散动态冲击的能量释放,这要知道前者更为重要。换句话说,要在较大变形的情况下实现早期刚度锚杆的承载能力是岩石加固的新发展目标。屈服的锚杆价格昂贵,但有些锚杆的变形能力大,极限承载力低。本文对钢筋锚杆的封装进行了修改,以有效地将其用作屈服在地震条件下进行加固。工业上通常用来控制应力破裂地面的膨胀的钢筋锚固螺栓杆的长度,提高了螺栓的变形能力。此外,在轴瓦和板下方留有套环粘结,消除了锚杆的弱点。因此,通过这些易于应用的修改可以提高螺栓的动态性能。首先讨论了封装式锚杆的性能和性能,然后说明了修改的效果。提出的对钢筋的修改不仅成本高昂有效但也易于在现场使用,并改善了地震多发地区的加固性能。

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