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Experimental Study on Creep Feed Deep Grinding Titanium Alloy with Slotted CBN Grinding Wheel

机译:开槽CBN砂轮蠕变进给深磨钛合金的试验研究。

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摘要

In order to improve the grindability of titanium alloys, the inhibition of chemical affinity between abrasives and titanium alloys and cooling enhancement in grinding zone are carried out in this paper. Slotted electroplated CBN grinding wheels with optimum topography are used, and different grinding fluid supply systems such as conventional tangential spraying coolant supply, inner chamber coolant jet impingement, radial high-pressure coolant jet impingment are employed in creep feed deep grinding experiments on titanium alloy (TC4). The experimental results show that high-pressure jet impingement has remarkable cooling effect. The temperature of the workpiece surface can be steadily kept below the critical film boiling temperature 120~130℃, while the workpiece surfaces is badly burnt with conventional coolant supply. The study will exploit an important research orientation that has great potential in high efficiency grinding. Further perfection of this study will not only enable us to increase the available material removal rate to a new level but also solve the workpiece burn problem of the difficult-to-machining materials in high efficiency grinding.
机译:为了提高钛合金的可磨性,本文对磨料与钛合金之间的化学亲和性进行了抑制,并在磨削区进行了冷却增强。使用具有最佳形貌的开槽电镀CBN砂轮,并在钛合金的蠕动进料深磨实验中采用了不同的研磨液供应系统,例如常规的切向喷射冷却液供应,内腔冷却液喷射冲击,径向高压冷却液喷射冲击( TC4)。实验结果表明,高压射流冲击具有明显的冷却效果。工件表面的温度可以稳定地保持在临界膜沸腾温度120〜130℃以下,而传统的冷却液供给会严重烧伤工件表面。该研究将利用重要的研究方向,在高效磨削方面具有巨大潜力。这项研究的进一步完善,不仅使我们能够将可用的材料去除率提高到一个新的水平,而且还解决了高效研磨中难加工材料的工件烧伤问题。

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