شماره ركورد :
893623
عنوان مقاله :
ارزيابي رفتار لرزه اي قاب خمشي فولادي با مهاربند هم مركز داراي لقي اوليه
عنوان به زبان ديگر :
Evaluation of steel moment frame seismic behavior With concentric brace associated by initial looseness
پديد آورندگان :
عزيزي، حسام نويسنده دانشكده مهندسي,دانشگاه زنجان,ايران azizi, hesam , احمدي، جمال نويسنده دانشكده مهندسي,گروه عمران,دانشگاه زنجان,ايران ahmadi, jamal
اطلاعات موجودي :
فصلنامه سال 1395
رتبه نشريه :
علمي پژوهشي
تعداد صفحه :
8
از صفحه :
221
تا صفحه :
228
كليدواژه :
مهاربند هم مركز , تحليل تاريخچه زماني غيرخطي , اتصال لقي , ضريب رفتار
چكيده فارسي :
مهاربندهاي هم مركز با وجود سختي بالا شكل پذيري پاييني داشته و تحت بارهاي جانبي و نيروهاي فشاري عملكرد ضعيفي از خود نشان مي دهند و هنگاميكه در قابهاي خمشي جهت مقاوم سازي بكار مي روند به علت كمانش ناگهاني شكل پذيري سازه را كاهش مي دهند. براي اصلاح عملكرد اين مهاربندها به ويژه افزايش استهلاك انرژي، روشهاي متعدد و مختلفي ارائه گرديده است كه از جمله آنها استفاده از اتصالات با عملكرد ويژه نظير اتصالات با لقي اوليه در اعضاي مهاربندي جانبي مي باشد.هدف اصلي اين مقاله در كنار بررسي مطالعات تحليلي صورت گرفته بر روي قاب هاي خمشي فولادي با مهاربند هم مركز داراي اتصال لقي بدون اصطكاك، مقايسه رفتار لرزه اي اين نوع قاب ها با قاب هاي خمشي مهاربندي شده هم مركز معمولي و انتخاب لقي بهينه مي باشد. براي اين منظور قابهاي مهاربندي شده با و بدون لقي مدل سازي شده و تحت تحليلهاي تاريخچه زماني و استاتيكي غير خطي قرار گرفته اند. همچنين در ادامه اقدام به محاسبه ضريب رفتار اين نوع قابها شده است.نتايج بدست آمده نشان مي دهد كه استفاده از اتصال لقي در كنار كاهش پيچيدگي هاي اجرايي مربوط به استفاده از ميراگرهاي اصطكاكي، باعث بهبود عملكرد لرزه اي و افزايش استهلاك انرژي در قابهاي مورد مطالعه شده است. همچنين مقدار ضريب رفتار بدست آمده از اين مطالعات براي اين نوع قابها بزرگتر از ضريب رفتار مهاربند هم مركز است.
چكيده لاتين :
Although, concentric braces have proper stiffness, but ductility and energy absorption of these are low and under pressure and lateral forces exhibit poor performance and also structural ductility will reduce due to buckling when these braces are used for retrofitting of structural frames.Several methods have been proposed for improving of concentric braces performance, especially increasing energy dissipation capacity. The uses of connections with especially performance such as connections with the initial loosening at the end of concentric braces are among these methods.The main objectives of this paper are comparison of the seismic behavior of concentric brace frames with and without initial looseness and calculation of optimal looseness besides the review of analytical studies conducted on no friction brace looseness.For this purpose, the braced frames with and without initial looseness have been modeled and studied using nonlinear static and time history analysis and then the behavior coefficient was calculated.The studied models in this research are concentric moment frames with and without initial looseness. As briefly, the method which is used in this research based on the principle that the moment frames resist against the seismic lateral load at first and then (if it is necessary) braces are activated for carrying lateral load when the lateral displacement is increased and exceeded from the certain level. To achieve this goal, at the junction of the moment frame and brace initial looseness with a certain amount is applied.After reaching to the desired displacement in frame, the bolts at the junction of the moment frame and brace reached to the end of slotted joint and brace will participate with moment frame in bearing lateral forces. In this case the amount of lateral force that can be tolerated by the concentric moment frame with initial looseness is significantly more than the brace without loosening.Based on the results obtained in this investigation the use of loosening in concentric brace frame connection, in addition to reduction of operational complexity of friction ders, improves seismic performance and also increases seismic energy dissipation capacity of frames which were studied. Also behavior coefficient obtained for this type of frames is greater than behavior coefficient of conventional concentric brace frames.The study of desired frames in this paper indicated that the optimal value of looseness (L_b) should be in the range of 3/4 L≤L_(b )≤L to achieve maximum flexural capacity of moment frame and maximum axial resistance of brace simultaneously. Also, if the ratio of concentric brace stiffness to the stiffness of moment resistance frame is about 1.0, in the concentric moment frame with initial looseness, energy absorption and dissipation capacity is more than the other axial to moment stiffness ratios. In this state the value of load resistance and also behavior coefficient increase although the coefficient of ductility and reduction coefficient due to ductility dont follow any particular trend and are almost constant.It has been observed also that at the all studied models in this research, frames with looseness connection caused an average 17% energy dissipation more than frames without looseness connection.
سال انتشار :
1395
عنوان نشريه :
مهندسي عمران مدرس
عنوان نشريه :
مهندسي عمران مدرس
اطلاعات موجودي :
فصلنامه با شماره پیاپی سال 1395
كلمات كليدي :
#تست#آزمون###امتحان
لينک به اين مدرک :
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