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Structural Engineering

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  1. Asked: October 5, 2020In: Structural Engineering

    How to detect/identify reinforcement bars inside the hardened concrete?

    Komal Bhandakkar

    Komal Bhandakkar

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    Komal Bhandakkar AUTHOR
    Added an answer on October 6, 2020 at 12:43 am
    This answer was edited.

    Hello, A rebar locator can definitely identify the presence of a Steel reinforcement rebar as well as its orientation inside the concrete surface. A rebar locator itself indicates its meaning. Actually, we can use a pulse indicator method which is totally based on electromagnetic pulse induction TecRead more

    Hello,

    A rebar locator can definitely identify the presence of a Steel reinforcement rebar as well as its orientation inside the concrete surface.

    A rebar locator itself indicates its meaning.

    Actually, we can use a pulse indicator method which is totally based on electromagnetic pulse induction Technology to detect rebars.


    Thank you.  

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  2. Asked: September 25, 2020In: Structural Engineering

    How do you calculate twisting moment?

    AdityaBhandakkar

    AdityaBhandakkar

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    AdityaBhandakkar User
    Added an answer on October 3, 2020 at 11:27 am
    Can this type of brick bond be used for bearing walls?

    Hi, Torque, T = F x r x sin (theta), where r=distance between the rotation axis and the point of force applied, F  =force applied and theta= angle between F and r. Twisting moment, T = (shear stress X polar moment of inertia) / r.

    Hi,

    Torque, T = F x r x sin (theta), where r=distance between the rotation axis and the point of force applied, F  =force applied and theta= angle between F and r.

    Twisting moment,

    T = (shear stress X polar moment of inertia) / r.

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  3. Asked: October 30, 2017In: Structural Engineering

    how do i brace my steel structure?

    aviratdhodare

    aviratdhodare

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    aviratdhodare
    Added an answer on October 3, 2020 at 11:23 am

    For better discussion, assume a Wide Flange column section. To carry the moment more efficiently, you need to apply a moment about the Major axis. Now consider a portal frame, say all the joints are pin joint. Now use a lateral load. It will collapse. Because as all the joints are pinned, they willRead more

    For better discussion, assume a Wide Flange column section. To carry the moment more efficiently, you need to apply a moment about the Major axis. Now consider a portal frame, say all the joints are pin joint. Now use a lateral load. It will collapse. Because as all the joints are pinned, they will rotate infinitely, causing the structure to collapse. To Resist this collapse against lateral load, you need to provide – Either fixed support instead of pinned support or make the beam-column junction by moment connection. Or you can provide both. Now, your structure is stable under lateral load. How fixed support looks like when I section or complete flange section is used as a column section?

    This is a fixed column base. Here you can see that the bolts are outside of the flange, just like your moment connection. So when the moment is applied about the major axis, it’s converted into push and pull, and these bolts carry this push-pull. Now, what will happen if a moment is applied about the minor axis? When the moment is being applied about the minor axis, there is no flange about this minor axis. So, The carrying capacity is very small. So, the moment can not be converted into push and pull efficiently. And these bolts will have almost nothing to carry for this moment. So, always this moment connected base will behave as a pinned joint about the minor axis. You have already learned that if a lateral load is applied on a frame with pinned support and pinned joint, it will collapse. But In a framed structure, there always remain lateral load, which may come from wind load or friction load or any other type of load. It is also clear that even a moment connected base can not prevent that force is applied across the minor axis of the Wide Flange column. So the solution is, add any diagonal member. Now, after applying a lateral load, will it collapse? No. Why?.. 5thstd math For given three lengths, only a single Triangle can be formed. And that’s why this structure doesn’t collapse under lateral load. If it collapses, this triangle has to be deformed, which is not possible. So, I think now it is clear to you why bracing is used. But how the lateral force is carried? The force travel from this point to this support through his bracing directly.

    Why? Because… Force is also clever like us. If I ask you to travel from this point to this point, you will not follow this path. Instead, You will take this shortcut route to reach from this point to this point. Just like that, the force also follows the shortest path. If you want more scientific reason, well, it is because of the “theory of least work.” Now come to this Steel frame. Here along this Transverse direction, The Moment Connection has been used, and it is stable under the lateral load. But Along this longitudinal direction, there is no moment connection. All this joint is pinned connected. Even the support condition is also pin connected. Why this is pin connected, you have already learned that. Let say Lateral Load is applied here at this point. And you have a point to provide bracing. So, all this lateral travel through this member up to this point. Then this goes to this point to the support through this bracing, and as this load travel through this member, each of this member are loaded axially. And it would help if you designed all this member for axial load only. So, it is clear to you why and when bracing needs to be used.

    What is the reason? i. When all the joints are pinned joint and ii. The lateral load needs to be carried. In those cases, we need to use bracing.

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  4. Asked: January 11, 2019In: Structural Engineering

    What are the options of rebaring of a new column into an existing 150mm slab

    Omprakash Dhawale

    Omprakash Dhawale

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    Omprakash Dhawale Beginner
    Added an answer on October 2, 2020 at 6:07 pm
    This answer was edited.

    Sir, Steel reinforcement is divided into two basic categories: Primary Reinforcement Secondary Reinforcement Main reinforcement bars are employed in RCC structures to ensure resistance against the whole design loads coming on it. Whereas the secondary reinforcement bars are mainly employed due to duRead more

    Sir,

    Steel reinforcement is divided into two basic categories:

    1. Primary Reinforcement
    2. Secondary Reinforcement

    Main reinforcement bars are employed in RCC structures to ensure resistance against the whole design loads coming on it.

    Whereas the secondary reinforcement bars are mainly employed due to durability and aesthetic reason.  

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  5. Asked: May 5, 2020In: Structural Engineering

    how to write the method statement of concrete ground water tank structural design

    Omprakash Dhawale

    Omprakash Dhawale

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    Omprakash Dhawale Beginner
    Added an answer on October 2, 2020 at 5:38 pm
    This answer was edited.

    Sir, I will share some information related with different drawings: Architectural Drawing can be termed as the mother drawing for all the other drawing. Structural drawing is the backbone drawing of the building.  Electrical drawing represent the details of electric fixtures, location of switches. PRead more

    Sir,

    I will share some information related with different drawings:

    • Architectural Drawing can be termed as the mother drawing for all the other drawing.
    • Structural drawing is the backbone drawing of the building.
    •  Electrical drawing represent the details of electric fixtures, location of switches.
    • Plumbing drawing give the location of sanitary, piping for water supply system.

     

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  6. Asked: January 31, 2020In: Structural Engineering

    Design a building G+1

    Komal Bhandakkar

    Komal Bhandakkar

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    Komal Bhandakkar AUTHOR
    Added an answer on October 2, 2020 at 4:06 pm
    This answer was edited.

    Please provide a sufficient information about your query and mention specific data related to building design.   Thankyou

    Please provide a sufficient information about your query and mention specific data related to building design.

     

    Thankyou

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  7. Asked: September 19, 2020In: Structural Engineering

    What is a convergent beam? Why is it so important?

    AdityaBhandakkar

    AdityaBhandakkar

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    AdityaBhandakkar User
    Added an answer on October 2, 2020 at 10:55 am
    This answer was edited.

    hi, A convergent beam of light rays together  that converges after refraction and reflection at a single point known as the focus. point source emittes a light rays of light travel in all directions, moving away with a time. Such a beam of light is called a divergent beam of light.   hope you get itRead more

    hi, A convergent beam of light rays together  that converges after refraction and reflection at a single point known as the focus. point source emittes a light rays of light travel in all directions, moving away with a time. Such a beam of light is called a divergent beam of light.  

    hope you get it.

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  8. Asked: September 19, 2020In: Structural Engineering

    What happens when the thrust line coincides with the bottom Vern axis of beam? (Prestressed concrete)

    AdityaBhandakkar

    AdityaBhandakkar

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    AdityaBhandakkar User
    Added an answer on October 2, 2020 at 10:42 am
    This answer was edited.
    Can this type of brick bond be used for bearing walls?

    Hi, Shear force is combined with flexural compression which as resultant C,  leading to form an inclined thrust line which is arch. For the present approach to a simple strut and tie model, it may be technically expected that the shear force αV is supported by the longitudinal resultant Na, and theRead more

    Hi, Shear force is combined with flexural compression which as resultant C,  leading to form an inclined thrust line which is arch. For the present approach to a simple strut and tie model, it may be technically expected that the shear force αV is supported by the longitudinal resultant Na, and the whose acting point is temporarily denoted by Za. That is, 

    NαVcotθNa=αVcot⁡θ

    Shear force is a product of shear stress and area.

    Refer above the figure for understanding.    

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