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RECOMMEND濟(jì)南方管在防地震方面發(fā)揮著什么“角色”
發(fā)布時間:2025-06-13 來源:http://m.95fjrc.com/
濟(jì)南方管作為建筑領(lǐng)域常用的結(jié)構(gòu)材料,在防地震設(shè)計(jì)中能夠發(fā)揮重要作用。地震對建筑物的破壞主要源于水平與豎向地震波的疊加作用,而方管因其獨(dú)特的力學(xué)特性,常被用作承重框架的關(guān)鍵構(gòu)件。方管具有較高的抗彎剛度與抗壓強(qiáng)度,能夠有效抵抗地震力產(chǎn)生的彎曲變形與軸向壓力。在多層建筑中,方管柱與梁形成的框架體系可通過塑性鉸機(jī)制分散地震能量,避免結(jié)構(gòu)局部倒塌。例如,采用Q345B低合金鋼制成的方管,其屈服強(qiáng)度可達(dá)345MPa,在強(qiáng)震作用下仍能保持較好的承載能力。
Jinan square tube, as a commonly used structural material in the construction field, can play an important role in earthquake resistant design. The damage to buildings caused by earthquakes mainly comes from the superposition of horizontal and vertical seismic waves, and square tubes are often used as key components of load-bearing frames due to their unique mechanical properties. Square tubes have high bending stiffness and compressive strength, which can effectively resist bending deformation and axial pressure caused by seismic forces. In multi story buildings, the frame system formed by square tube columns and beams can disperse seismic energy through plastic hinge mechanism, avoiding local collapse of the structure. For example, square tubes made of Q345B low-alloy steel have a yield strength of up to 345MPa and can still maintain good load-bearing capacity under strong earthquakes.
方管的截面特性使其在抗震設(shè)計(jì)中具備優(yōu)勢。方形截面相比H型鋼具有更高的抗扭剛度,可減少地震扭轉(zhuǎn)效應(yīng)帶來的不利影響。同時,方管壁厚可根據(jù)受力需求靈活調(diào)整,在節(jié)點(diǎn)區(qū)域通過加厚處理可強(qiáng)化連接部位的抗震性能?,F(xiàn)代建筑中普遍采用的方管混凝土組合結(jié)構(gòu),通過混凝土填充提升構(gòu)件的延性與耗能能力。實(shí)驗(yàn)數(shù)據(jù)顯示,相同截面的方管混凝土柱相比空鋼管,其抗震性能可提升30%以上,能夠有效延緩結(jié)構(gòu)進(jìn)入塑性階段的時間。
The cross-sectional characteristics of square tubes give them advantages in seismic design. Compared to H-beams, square sections have higher torsional stiffness, which can reduce the adverse effects of seismic torsion. At the same time, the wall thickness of the square tube can be flexibly adjusted according to the stress requirements, and the seismic performance of the connection part can be strengthened by thickening treatment in the node area. The commonly used square tube concrete composite structure in modern architecture enhances the ductility and energy dissipation capacity of components through concrete filling. Experimental data shows that the seismic performance of square tube concrete columns with the same cross-section can be improved by more than 30% compared to empty steel tubes, which can effectively delay the time for the structure to enter the plastic stage.
在連接構(gòu)造方面,方管節(jié)點(diǎn)采用相貫焊接或螺栓連接形式,可確保地震力的高效傳遞。通過優(yōu)化節(jié)點(diǎn)域的加強(qiáng)措施,如設(shè)置加勁肋或局部增厚壁厚,可避免節(jié)點(diǎn)脆性破壞。此外,方管結(jié)構(gòu)體系常與隔震支座或阻尼器結(jié)合使用,形成多重抗震防線。某醫(yī)院項(xiàng)目采用方管框架配合橡膠隔震支座,實(shí)測地震響應(yīng)降低,顯著減輕了結(jié)構(gòu)損傷。
In terms of connection structure, square tube nodes adopt intersecting welding or bolt connection forms to ensure efficient transmission of seismic forces. By optimizing the strengthening measures of the node domain, such as setting stiffeners or locally increasing wall thickness, brittle failure of the node can be avoided. In addition, square tube structural systems are often combined with seismic isolation bearings or dampers to form multiple seismic defense lines. A certain hospital project adopts a square tube frame combined with rubber isolation bearings, which reduces the measured seismic response and significantly reduces structural damage.
濟(jì)南方管的應(yīng)用還需結(jié)合具體抗震設(shè)防要求。在地震高烈度區(qū),需通過增大截面尺寸、提高材料等級或采用高性能鋼材等措施強(qiáng)化抗震性能。同時,施工階段的質(zhì)量控制至關(guān)重要,需確保焊接質(zhì)量、構(gòu)件垂直度及整體幾何不變性。研究表明,方管結(jié)構(gòu)的初始缺陷對其抗震性能影響顯著,如焊接殘余應(yīng)力可能導(dǎo)致構(gòu)件提前進(jìn)入屈服狀態(tài)。因此,規(guī)范化的施工工藝與嚴(yán)格的質(zhì)量檢測是保障方管結(jié)構(gòu)抗震效能的關(guān)鍵環(huán)節(jié)。
The application of Jinan square tube still needs to be combined with specific seismic fortification requirements. In high-intensity earthquake zones, measures such as increasing cross-sectional dimensions, improving material grades, or using high-performance steel should be taken to enhance seismic performance. Meanwhile, quality control during the construction phase is crucial, ensuring welding quality, component verticality, and overall geometric invariance. Research has shown that initial defects in square tube structures have a significant impact on their seismic performance, such as welding residual stresses that may cause the component to enter the yielding state prematurely. Therefore, standardized construction techniques and strict quality inspections are key factors in ensuring the seismic performance of square tube structures.
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