At this stage, most of the developed countries around the world have single-family houses or single-family villas in the same way as my country's rural self-built houses, that is, rural self-built houses. The difference is that people are still using red bricks to build houses with brick-concrete structures, which are not earthquake-resistant and have no thermal insulation. In foreign countries, decorative building materials such as wood, prefabricated concrete structures, profiled steel, and light steel structures have long not replaced red bricks. , The prefabricated housing system has also replaced field work, it is really environmental protection of raw materials, rapid construction, and very thermal insulation. In addition, these new building materials also pre-buried a large number of development trends for the future of human indoor space. According to the survey report of this kind of data in 2013, the traditional brick-concrete structure house construction causes hundreds of millions of tons of construction waste to be disposed of every year, and the energy consumption of traditional houses accounts for the largest proportion of the energy consumption of terminal equipment in the development of the whole society. To 27.5%, it is a typical extensive development trend, which is one of the key reasons for the haze weather. The light steel structure building should use the cold-formed thin-walled steel structure feature as the load-bearing frame, and use the ultra-light new wall material as the enclosure to form the settlement engineering building. The consumption of building a light steel structure villa is about 480 kg/m2, which is about 35% lower than that of the traditional cement concrete carbon dioxide emission of 740.6 kg/m2. In addition, due to the selection of parts for processing engineering construction, the noise disturbance of the construction site, sewage discharge and environmental pollution of dust concentration are reduced; When the house is demolished, the recycling rate of raw materials for the main project of the light steel structure villa is about 90%, which is about 60% lower than the consumption of traditional cement concrete waste. Simple living steel structure villa. Simple living steel structure villa is a more green and environmentally friendly building structure style close to nature in various fields of housing construction at this stage, and its appearance is also very atmospheric and beautiful. Many public engineering buildings will actively choose this type of engineering construction method. Perhaps the actual effect of environmental protection of prefabricated houses and light steel structure villas is still very easy to understand and agree with. In that case, apart from the outstanding actual effect of such engineering buildings, what advantages does it have compared with traditional Chinese buildings? Can it stand the wind? Can high-rise buildings be built? In fact, there is no need to worry about this phenomenon. The light steel keel housing system is a new type of structural feature system. One of the characteristics of its own impulse performance indicators is that the hysteresis curve of the structural feature has an obvious pinching effect under the effect of the horizontal force. The light steel keel itself is light in weight. Under the same compressive strength and earthquake disaster effect, the light steel structure is less compressive than the ordinary concrete structure and ordinary steel frame structure. Under the earthquake disaster effect of the design scheme, the ductility can usually be considered. tasks within the scope. Lateral force of light steel keel housing——The migration relationship has obvious nonlinearity, and its hysteresis curve also has obvious pinch. Simple life light steel villa manufacturers In the earthquake-resistant fortification level area, the light steel keel housing can maintain the data integrity of the basic functions of the structural features under the earthquake disaster effect of the design plan; under the rare earthquake disaster effect, the structural features can not collapse. The key basic principle of why light-weight steel structures have excellent seismic grade practical effects comes from the utility of skins. The so-called effect of skin usually refers to covering the raw materials on the surface of the building with flat roof control panels and panel walls, and using the bending stiffness of the compressive strength of the raw materials to improve the overall compressive strength of the building. The key is to cover the metal sheet on the transverse and longitudinal ribs to produce a ribbed thin shell. The rib has the same effect as the thin shell, which causes the skin to fully exert its greater compressive strength, compressive strength and bending resistance in its parallel plane. effect, and because of the support point effect of the ribs, the skin can continuously maintain stable reliability. The skin structure has a large bearing capacity, but its own weight becomes lighter. The light-weight steel structure makes good use of the skin effect, which makes it have the characteristics of low weight, strong anti-deformation ability, and not easy to collapse. When an earthquake disaster occurs, there will be up and down or up and down vibrations, and the light steel structure connected by standard parts will build a stable small box shape, and it is not easy for the concrete floor to fall or the wall to collapse due to the shaking of the road. Effectively maintain personal safety and financial safety. At the same time, the high-quality seismic grade of light-weight steel structures is also highlighted in the ductility of engineering buildings, and the areas where the plastic touches are subjected to vibration and deformation, thereby greatly reducing the damage of building structure design from earthquake disasters. Therefore, the use of ductile light steel structures can reduce the requirements on the bearing capacity of engineering buildings. In other words, ductile structures can resist earthquake disasters according to their own deformation. Structural ductility is critical in the seismic rating, providing the following effects: absorbing and mitigating the effects of inadvertent elements. In the whole process of construction and application, unexpected and inadvertent effects will be encountered, such as thermal expansion and contraction caused by large temperature conversion, inadvertent overweight, and so on. This element will give rise to a safety reserve at the time of construction. Contributes to seismic rating. When the earthquake disaster occurs, the plastic area of the light steel structure can absorb and consume the kinetic energy of the earthquake disaster according to the deformation, reduce the bending stiffness of the structure, and reduce the effect of the earthquake disaster on the engineering building.
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