In this tutorial, the Simulation compression test of a concrete column reinforced with GFRP bars and strips in Abaqus has been investigated. The concrete column is modeled as a three-dimensional solid part. The GFRP bars and strips are modeled as three-dimensional solid parts. You can see a figure of the ...
ادامه نوشته »Simulation low energy impact on the concrete slab with pre tensioned bars reinforced with GFRP in Abaqus
In this tutorial the Simulation low energy impact on the concrete slab with pre tensioned bars reinforced with GFRP in Abaqus has been studeid. Concrete is modeled as a three-dimensional solid part. The GFRP part is model as plannar shell part. The steel basrs are modeled as three-dimensional wire part ...
ادامه نوشته »Simulation four-point bending of the UHPC slab reinforced with steel bars and GFRP sheet in Abaqus
In this tutorial, the Simulation four-point bending of the UHPC slab reinforced with steel bars and the GFRP sheet in Abaqus has been investigated. The UHP concrete slab is modeled as a three-dimensional solid part. The steel bars are modeled as three-dimensional wire parts. The GFRP sheet with eight layers ...
ادامه نوشته »شبیه سازی خمش چهار محوره دال بتنی فوق توانمند تقویت شده با میلگرد و ورق GFRP در آباکوس
در این ویدئوی آموزشی به شبیه سازی خمش چهار محوره دال بتنی فوق توانمند تقویت شده با میلگرد و ورق GFRP در نرم افزار آباکوس پرداخته ایم. مدلسازی به صورت سه بعدی بوده و دال بتنی فوق توانمند به صورت یک پارت سه بعدی و سالید، میلگردها به صورت یک ...
ادامه نوشته »Numerical simulation of reinforced bricks masonry beams using GFRP reinforcement in Abaqus
In this tutorial, the numerical simulation of reinforced bricks masonry beams using GFRP reinforcement in Abaqus has been investigated. The bricks are modeled as three-dimensional solid part and GFRP sheets are modeled as three-dimensional shell parts. You can see a figure of the assemble parts at below Natural stone structures ...
ادامه نوشته »Simulation blast explosion analysis over sandwich panels (GFRP) in Abaqus
Honeycomb sandwich structures are broadly used in the aerospace and automotive industries, particularly as energy-absorption materials, and there are limited applications in civil infrastructure, such as highway bridges and building construction. Due to their unique and advantageous properties such as high mechanical performance per unit weight and high energy-absorption capability, ...
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