11. Phase-field modeling of hydro-thermally induced fracture in thermo-poroelastic media. (September 2021) Authors: Li, Peidong; Li, Dingyu; Wang, Qingyuan; Zhou, Kun Journal: Engineering fracture mechanics Issue: Volume 254(2021) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
12. Temperature dependence of the fracture strength of porous ceramic materials. Issue 8 (1st June 2020) Authors: Wang, Ruzhuan; Wang, Shu; Li, Dingyu; Li, Weiguo; Zhang, Chuanzeng Journal: Ceramics international Issue: Volume 46:Issue 8(2020)Part A Page Start: 11311 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
13. Temperature dependent fracture strength model for the laminated ZrB2 based composites. (15th February 2017) Authors: Wang, Ruzhuan; Li, Dingyu; Xing, An; Jia, Bi; Li, Weiguo Journal: Composite structures Issue: Volume 162(2017) Page Start: 39 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
14. Temperature dependent fracture toughness of the particulate-reinforced ultra-high-temperature-ceramics considering effects of change in critical flaw size and plastic power. (1st February 2019) Authors: Wang, Ruzhuan; Li, Dingyu; Wang, Xiaorong; Li, Weiguo Journal: Composites Issue: Number 158(2019) Page Start: 28 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
15. Temperature-dependent hardness model of high-temperature materials can account for indentation size effect. (November 2022) Authors: Liu, Yumeng; Wang, Ruzhuan; Wan, Yu; Zhou, Shan; Cai, Hongwei; Gu, Mingyu; Li, Dingyu; Li, Weiguo Journal: International journal of refractory metals & hard materials Issue: Volume 108(2022) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
16. The Effects of Water Entry Postures on the Thermal Shock Behavior of Alumina. Issue 1 (21st May 2015) Authors: Li, Dingyu; Li, Weiguo; Wang, Ruzhuan; Fang, Daining Journal: International journal of applied ceramic technology Issue: Volume 13:Issue 1(2016:Jan./Feb.) Page Start: 56 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
17. Theoretical characterization of the temperature dependence of the contact mechanical properties of the particulate-reinforced ultra-high temperature ceramic matrix composites in Hertzian contact. (April 2021) Authors: Wang, Ruzhuan; Wang, Shu; Li, Dingyu; Xing, An; Zhang, Jun; Li, Weiguo; Zhang, Chuanzeng Journal: International journal of solids and structures Issue: Volume 214/215(2021) Page Start: 35 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
18. Thermal shock resistance of ultra-high temperature ceramics under active cooling condition including the effects of external constraints. (5th January 2017) Authors: Kou, Haibo; Li, Weiguo; Cheng, Tianbao; Li, Dingyu; Wang, Ruzhuang Journal: Applied thermal engineering Issue: Volume 110(2017:Jan.) Page Start: 1247 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
19. Thermal shock resistance of ultra-high temperature ceramics under active cooling condition including the effects of external constraints. (5th January 2017) Authors: Kou, Haibo; Li, Weiguo; Cheng, Tianbao; Li, Dingyu; Wang, Ruzhuang Journal: Applied thermal engineering Issue: Volume 110(2017:Jan.) Page Start: 1247 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
20. Three-dimensional phase-field modeling of temperature-dependent thermal shock-induced fracture in ceramic materials. (1st June 2022) Authors: Li, Dingyu; Li, Peidong; Li, Weidong; Li, Weiguo; Zhou, Kun Journal: Engineering fracture mechanics Issue: Volume 268(2022) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗