Zobrazeno 1 - 10
of 17
pro vyhledávání: '"Huanzi Wang"'
Publikováno v:
Food Frontiers, Vol 4, Iss 4, Pp 1985-1998 (2023)
Abstract Agaric is a dual‐purpose fungus for medicine and food, which is considered a healthcare product. However, in cultivation and production, agaric is contaminated by a variety of molds, resulting in a decline in quality and yield. Fusarium, a
Externí odkaz:
https://doaj.org/article/2ab96821b1d347a691064702a2b820dd
Publikováno v:
LWT. 165:113699
Autor:
Huanzi Wang, Qian Wang
Publikováno v:
Structural Engineering International. 24:428-431
The study presents an innovative structural fuse concept in bridge joint design. There are several advantages to the proposed concept, including cost-effectiveness, clear load path, and easy post-earthquake reparability. The idea is to design a fuse
Autor:
Huanzi Wang, Abdeldjelil Belarbi
Publikováno v:
Construction and Building Materials. 44:541-550
This paper presents the results of the long-term flexural behaviors of a hybrid system consisted of continuous fiber-reinforced-polymer (FRP) rebar and fiber-reinforced-concrete (FRC). Flexural durability for the FRP/plain concrete system that served
Publikováno v:
Structural Engineering International. 23:209-213
Located along the border of the Pacific plate and the North American plate, the state of California is one of the most seismically active regions in the world. Since the San Francisco Bay Area Rapi...
Publikováno v:
Transportation Research Record: Journal of the Transportation Research Board. 2332:3-12
Given the high risk of earthquakes in the San Francisco Bay Area, California, and the essential role of the Bay Area Rapid Transit (BART) system in the region, the BART Earthquake Safety Program has attracted great public attention since the program
Autor:
Abdeldjelil Belarbi, Huanzi Wang
Publikováno v:
Journal of Composites for Construction. 16:371-380
A research program was initiated to develop a nonferrous reinforcement system for concrete bridge decks using continuous fiber-reinforced polymer (FRP) bars and discrete, randomly distributed polypropylene fibers. This hybrid system may eliminate pro
Autor:
Huanzi Wang, Abdeldjelil Belarbi
Publikováno v:
Journal of Composite Materials. 44:1605-1622
A research project was initiated to develop a nonferrous hybrid reinforcement system for concrete bridge decks by using continuous fiber-reinforced polymer (FRP) rebars and discrete randomly distributed polypropylene fibers. This hybrid system may el
Autor:
Huanzi Wang
Publikováno v:
Engineering Structures. 31:968-975
Bonding between reinforcement and concrete may be idealized as a shear force along the surface of the reinforcement. Most predictions on bond strength have been empirical and based on statistics methodology. Thus, these equations are highly dependent
Autor:
Huanzi Wang, Abdeldjelil Belarbi
Publikováno v:
SP-230: 7th International Symposium on Fiber-Reinforced (FRP) Polymer Reinforcement for Concrete Structures.
Synopsis: The main objective of this study was to develop a nonferrous hybrid reinforcement system for concrete bridge decks by using continuous fiber-reinforcedpolymer (FRP) rebars and discrete randomly distributed polypropylene fibers. This hybrid