Che Long, Pan Linlin, Gu Xiaohui
School of Equipment Engineering, Shenyang Ligong University, Shenyang, 110159, China.
School of Mechanical Engineering, Nanjing University of Sci. & Tech, Nanjing, 210094, China.
Sci Rep. 2024 Sep 12;14(1):21299. doi: 10.1038/s41598-024-71905-2.
High pulse discharge breakage has a vast prospect as a fresh crushing mechanism for it has the capability to enhance the comminuting effect, however, the breaking mechanism is not yet well studied. In this orthogonal designed research, 27 indoor tests of high voltage pulse discharge (HVPD) for breaking concrete together with the determination of dynamic elastic modulus of concrete based on three variables, i.e. applied voltage, pulse number, and discharge electrode gap, were carried out at three levels. The effects of these factors were studied by using significance and range analysis. The results showed that among these factors, the pulse number has the greatest impact on the dynamic elastic modulus loss (DEML) of concrete, while the applied voltage has the least influence. By changing the value of pulse number and applied voltage, the DEML can be increased to 12.9% and 26.7%, respectively. The impact of the factors' combination was experimentally proven, and the resulting DEML of concrete broken by HVPD was obtained as 219.73 ± 9.58 MPa, which was 25.19% higher than the maximum of the DEML of concrete broken by HVPD in the orthogonal experiment under various individual factors. These findings provide technical references for improving the crushing efficiency of concrete materials and the engineering application of HVPD crushing technology.
高脉冲放电破碎作为一种新型破碎机制具有广阔的前景,因为它有能力提高粉碎效果,然而,其破碎机制尚未得到充分研究。在这项正交设计研究中,基于施加电压、脉冲数和放电电极间隙这三个变量,在三个水平上进行了27次室内高压脉冲放电(HVPD)破碎混凝土试验以及混凝土动态弹性模量的测定。通过显著性和极差分析研究了这些因素的影响。结果表明,在这些因素中,脉冲数对混凝土动态弹性模量损失(DEML)的影响最大,而施加电压的影响最小。通过改变脉冲数和施加电压的值,DEML可分别提高到12.9%和26.7%。实验证明了因素组合的影响,通过HVPD破碎的混凝土的DEML为219.73±9.58MPa,比在各种单个因素下正交试验中通过HVPD破碎的混凝土的DEML最大值高25.19%。这些发现为提高混凝土材料的破碎效率和HVPD破碎技术的工程应用提供了技术参考。