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音圈式快速伺服刀架的分析与设计   总被引:1,自引:0,他引:1  
自由曲面光学零件面形复杂,快刀伺服车削加工是其高效加工手段.针对压电陶瓷型伺服刀架行程小,加工能力有限的问题,提出一种基于音圈式直线电机驱动的快刀伺服方案.音圈式快速伺服刀架行程大,可大大拓宽快刀伺服加工范围.以典型光学零件加工为例,对快速伺服刀架所应具备的关键性能指标进行分析,给出了音圈电机的结构,对音圈式伺服刀架进行了理论建模、控制器设计以及实际性能测试.测试结果表明,所设计的音圈式伺服刀架行程大、频响高,在刀架行程为±100μm时可达到300Hz的频响能力,同样行程下的频响指标优于国外同类产品.  相似文献   
2.
From its introduction in 1874 until the turn of the nineteenth century the principal infantry firearm of the Ottoman army was the American-made .45 (11.43?×?55R) calibre Peabody-Martini Rifle. Remaining in use with secondary units until 1916/1917, three bayonet types were provided for the rifle during its official service life: a quadrilateral cross-sectioned socket form, followed by a yataghan-style sword bayonet, and finally a shortened and straightened version of this same yataghan bayonet. As such these three bayonets provide a classic illustration of bayonet typology for the period. However, their history and characteristics have never been assessed in detail, an omission this article seeks to remedy.  相似文献   
3.
《防务技术》2020,16(2):381-391
This study investigates the effect of tool rotational speed (TRS) on particle distribution in nugget zone (NZ) through quantitative approach and its consequences on the mechanical property of friction stir welded joints of AA6092/17.5 SiCp-T6 composite. 6 mm thick plates are welded at a constant tool tilt angle of 2° and tool traverse speed of 1 mm/s by varying the TRS at 1000 rpm, 1500 rpm and 2000 rpm with a taper pin profiled tool. Microstructure analysis shows large quantity of uniformly shaped smaller size SiC particle with lower average particle area which are homogeneously distributed in the NZ. The fragmentation of bigger size particles has been observed because of abrading action of the hard tool and resulting shearing effect and severe stress generation due to the rotation of tool. The particles occupy maximum area in the matrix compared to that of the base material (BM) due to the redistribution of broken particles as an effect of TRS. The migration of particles towards the TMAZ-NZ transition zone has been also encountered at higher TRS (2000 rpm). The microhardness analysis depicts variation in average hardness from top to bottom of the NZ, minimum for 1500 rpm and maximum for 2000 rpm. The impact strength at 1000 rpm and 1500 rpm remains close to that of BM (21.6 J) while 2000 rpm shows the accountable reduction. The maximum joint efficiency has been achieved at 1500 rpm (84%) and minimum at 1000 rpm (68%) under tensile loading. Fractographic analysis shows mixed mode of failure for BM, 1000 rpm and 1500 rpm, whereas 2000 rpm shows the brittle mode of failure.  相似文献   
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