X-ray radiography of microjetting from grooved surfaces in tin sample subjected to laser driven shock

Author:

Xin JiantingORCID,He Anmin,Liu Wenbin,Chu GenBai,Yu Minghai,Fan Wei,Wu YuChi,Xi Tao,Shui Min,Zhao Yongqiang,Wang Pei,Gu YuqiuORCID,He Weihua

Abstract

Abstract When a triangular shock wave reflects from the free surface of a solid sample, microjetting may emit from the grooved surface, leading to high velocity approximately micrometer-size fragments. Microjetting is an important issue for material dynamic response under shock loading in both fundamental science and practical applications. In this paper, the dynamic process of microjetting is investigated in the laser-driven shock loading conditions, the experiments were performed at the ShenguangII-U (SGII-U) laser facility. Microjetting from the triangular grooves in the free surface of a tin sample is diagnosed with x-ray radiography, where the 40–200 keV high energy x-ray is created with the picosecond laser beam focused on a Au µ-wire target. The density distribution along the microjetting and cumulated mass can be inferred from the images radiographied by such ultrashot high energy x-ray. The density distribution shows two representative regions including the head region of microjetting with low density and high speed, and the root region with high density and low speed. The microjets from three continuous parallel grooves with 60° angle are significantly different from that of 120° angle, the effect of the groove angle was verified by numerical simulation and experimental results.

Funder

The science challenge project of CAEP

National Natural Science Foundation of China

Publisher

IOP Publishing

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,Electronic, Optical and Magnetic Materials

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1. Micro-jetting: Areal density calculation from a triangular groove;Journal of Applied Physics;2024-05-28

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3. Laser-driven double shock loading and diagnosis technology for material ejection from surface;Physics of Plasmas;2023-12-01

4. Ultrafast radiographic imaging and tracking: An overview of instruments, methods, data, and applications;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2023-12

5. Effect of the interval between two shocks on ejecta formation from the grooved aluminum surface;Defence Technology;2023-08

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