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Abstract: Based on the case of a prefabricated component factory, this paper adopts the universal design of a layered reiteration plat mold as the research object to improve the universality of layered reiteration plat molds and reduce the cost of reiteration plat molds without affecting the quality of the components or production efficiency. The traditional layered mold is not limited by the spacing of the ribs and can prevent the ribs from floating and leaking. It has been widely used in the production of reiteration plates, but the generality of the mold is still limited because the traditional layered mold is designed according to the size of the fixed components, and a set of molds cannot be used for the production of other reiteration plates without cutting or transformation. In this paper, a universal purpose mold for layered reiteration plates is studied. This mold can be combined into any plane shape and size by moving any one of the three sides of the mold and combining the two moduli, which completely realizes the universality of the mold. At the same time, in this paper, the design of the universal mold structure was optimized, eliminating the problem of nut pollution and the problem of edge angle loss during demolding. This optimization significantly enhanced the production efficiency and quality of reiteration plates and holds high potential for widespread adoption.Abstract: Based on the case of a prefabricated component factory, this paper adopts the universal design of a layered reiteration plat mold as the research object to improve the universality of layered reiteration plat molds and reduce the cost of reiteration plat molds without affecting the quality of the components or production efficiency. The traditional...Learn More
Abstract: Throughout the history of Chinese and Western garden building, Throughout the history of Chinese and Western garden design, traditional Chinese gardens have a long and unique history in the world. Since the pre Qin period, traditional garden design ideas and principles have been continuously developed from various dynasties to the late Qing Dynasty. Chinese classical gardens can be regarded as the best representative of the Eastern garden system, and Suzhou gardens are also the most typical part of Eastern gardens. Corridor space, as an important component and design subject in its landscaping process, is an important part of garden space. It is not only a functional symbol, but also a carrier of unique cultural spirit. The author analyzes the corridor space in gardens using the relationship between the corridor and the ground, only proposing the corridor space separately, excluding the interference of other structural spaces and terrain spaces in the garden, and then interacting with the overall garden as the background. Based on the perspective of corridor aesthetics, the corridor space design of Suzhou Humble Administrator's Garden, Liuyuan, Canglang Pavilion, and Wangshi Garden is analyzed and summarized for the spatial form creation of traditional Chinese classical gardens, in order to provide new theoretical basis for subsequent garden space creation.Abstract: Throughout the history of Chinese and Western garden building, Throughout the history of Chinese and Western garden design, traditional Chinese gardens have a long and unique history in the world. Since the pre Qin period, traditional garden design ideas and principles have been continuously developed from various dynasties to the late Qing Dynasty...Learn More
Abstract: The carbon emissions of the construction industry are high. In order to achieve China's carbon emission reduction goals, it is necessary to strengthen carbon emission reduction measures. Seismic isolation technology is a powerful tool to reduce carbon emissions, and carbon emission analysis should be added to the architectural design. Chinese seismic isolation building designs focus on safety and economic factors; however, carbon emissions calculations are often overlooked in seismic isolation buildings. This article selects the high-rise shear wall structure in China's intensity zone (9 degrees 0.4g) as the research object and conducts seismic isolation design on it. At the same time, based on the Life Cycle Assessment (LCA) theory, the carbon emissions of seismic isolation structures and non-seismic isolation structures are calculated. The results show that after adopting the seismic isolation scheme, the natural vibration period of the structure is extended by 1.52 times, and the damping coefficient of the seismic isolation structure is 0.44. Under the rare earthquake action, the displacement, compressive stress and tensile stress of the seismic isolation bearing all meet the requirements of the "Code for Seismic Design of Buildings" (GB50011-2016). Based on the LCA theory, the total carbon emissions of the high-rise shear wall structure in the 9-degree area of China can be reduced by about 2.8% in the whole life cycle stage after adopting the seismic isolation scheme; the carbon emissions in the construction materials production and transportation stages are reduced by 10.19%; the carbon emissions of construction and demolition treatment are reduced by 51.76% and 40.72%, respectively. This study provides a valuable reference for calculating the carbon emissions of seismic isolation building designs in China.Abstract: The carbon emissions of the construction industry are high. In order to achieve China's carbon emission reduction goals, it is necessary to strengthen carbon emission reduction measures. Seismic isolation technology is a powerful tool to reduce carbon emissions, and carbon emission analysis should be added to the architectural design. Chinese seism...Learn More