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Granular titanite from the Roter Kamm crater in Namibia:Product of regional metamorphism,not meteorite impact
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作者 Aaron J.Cavosie Christopher J.Spencer +3 位作者 Noreen Evans Kai Rankenburg Robert J.Thomas Paul H.Macey 《Geoscience Frontiers》 SCIE CAS CSCD 2022年第3期156-163,共8页
Accessory minerals with so-called granular texture have risen in importance as geochronological tools for U-Pb dating of meteorite impact events. Grain-scale recrystallization, typically triggered by a combination of ... Accessory minerals with so-called granular texture have risen in importance as geochronological tools for U-Pb dating of meteorite impact events. Grain-scale recrystallization, typically triggered by a combination of high-strain deformation and post-impact heating, can create a polycrystalline microstructure consisting of neoblasts that expel radiogenic Pb, which are thus ideal for isotopic dating. While granular domains in zircon and monazite from shocked rocks have been demonstrated to preserve impact ages,few U-Pb dating studies have been conducted on granular microstructures in titanite(CaTiSiO;). Here we report the occurrence of granular-textured titanite from ~2020 Ma granite basement rock exposed in the rim of the 4–5 Ma Roter Kamm impact structure in Namibia. Orientation mapping reveals two microstructurally distinct titanite populations: one consisting of strained/deformed grains, and the other consisting of grains that comprise aggregates of strain-free neoblasts. In situ U-Pb geochronology on 37 grains shows that most grains from both titanite populations yield indistinguishable U-Pb dates of ca.1025 Ma, consistent with the observed microstructures forming during the Mesoproterozoic Namaqua Orogeny. Only four grains preserved older age domains, recording ca. 1875 Ma Paleoproterozoic metamorphism. Two significant observations emerge:(1) none of the analyzed titanite grains yield the 2020 Ma igneous crystallization age previously established from zircon in the same sample, and(2) no age-resetting was detected that could be attributed to the 4 to 5 Ma Roter Kamm impact event.Despite the similarity of the neoblastic microstructure to minerals from other sites with an established impact provenance, the granular texture and near-complete Pb-loss in titanite from Roter Kamm granite instead records a Paleo-to Mesoproterozoic polymetamorphic history, rather than Miocene age shockrelated processes. These results highlight the critical importance of grain-scale context for interpretation of U-Pb data in granular titanite, and the potential for misinterpreting inherited(pre-impact) microstructures as impact-related phenomenon in target rocks with a complex geological history. 展开更多
关键词 Namibia Roter kamm TITANITE EBSD GEOCHRONOLOGY
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电子稳定控制系统中横摆与侧翻控制综述 被引量:3
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作者 李少志 赵飞 +1 位作者 邓惜仁 王煜 《汽车科技》 2021年第2期96-103,共8页
电子稳定控制系统(以下简称稳定控制系统)是当下乘用车装备较为普遍的主动安全控制系统,基础的稳定控制系统主要监控车辆的横摆,当目标横摆与实际横摆的差值的绝对值大于横摆门限时系统激活,通过制动将车辆的横摆控制在驾驶员可接受范围... 电子稳定控制系统(以下简称稳定控制系统)是当下乘用车装备较为普遍的主动安全控制系统,基础的稳定控制系统主要监控车辆的横摆,当目标横摆与实际横摆的差值的绝对值大于横摆门限时系统激活,通过制动将车辆的横摆控制在驾驶员可接受范围内,从而修正车辆的过度和不足转向。但对于静态稳定系数较小、悬架调教偏向舒适性的SUV车辆,在极限工况下,基础的系统仅能修正车辆横摆但不能抑制侧翻,因此需要增加防侧翻功能。防侧翻功能主要监控方向盘转角的速率、横向加速度的变化率、横摆角速度变化率等。防侧翻功能依据摩擦圆原理,通过增大轮胎与地面之间的纵向力来削弱横向力,进而削弱横向加速度,最终实现抑制车辆侧翻。 展开更多
关键词 车身电子稳定控制系统 横摆稳定性 防侧翻功能 静态稳定系数 摩擦圆
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