This presentation summarizes different types of bolted connections. It discusses bearing bolts, which can be unfinished or finished. Unfinished bolts have rough shanks while finished bolts have circular shanks from turning. It also defines terminology used in bolted connections like pitch, gauge distance, and edge distance. Finally, it discusses grade classifications for bolts based on their strength and specifies requirements for bolted connections according to Indian codes and standards, distinguishing between lap joints and butt joints.
Design of steel structure as per is 800(2007)ahsanrabbani
It does not offer resistance against rotation and also termed as a hinged or pinned connections.
It transfers only axial or shear forces and it is not designed for moment
It is generally connected by single bolt/rivet and therefore full rotation is allowed
Design of steel structure as per is 800(2007)ahsanrabbani
It does not offer resistance against rotation and also termed as a hinged or pinned connections.
It transfers only axial or shear forces and it is not designed for moment
It is generally connected by single bolt/rivet and therefore full rotation is allowed
Welded connections in steel structures - Limit State Design of Steel StructuresAshishVivekSukh
Two members are connected by means of welds is known as welded connection.
More efficient use of the materials.
Earlier designers considered welds as less fatigue resistant.
Good welds achive at site is impossible.
Testing and quality control of welds became easier because NDT
information on types of beams, different methods to calculate beam stress, design for shear, analysis for SRB flexure, design for flexure, Design procedure for doubly reinforced beam,
Welded connections in steel structures - Limit State Design of Steel StructuresAshishVivekSukh
Two members are connected by means of welds is known as welded connection.
More efficient use of the materials.
Earlier designers considered welds as less fatigue resistant.
Good welds achive at site is impossible.
Testing and quality control of welds became easier because NDT
information on types of beams, different methods to calculate beam stress, design for shear, analysis for SRB flexure, design for flexure, Design procedure for doubly reinforced beam,
Steel structure: Bolted Connection chapter
A bolt is a metal pin with a head formed at one end and shank threaded at the other in order to
receive a nut. On the basis of load transfer in the connection bolts are classified as:
(a) Bearing Type
(b) Friction Grip Type
There are two types of bearing type bolts, namely,
(i) Unfinished or Black Bolts.
(ii) Finished or Turned Bolts.
The shanks of black bolts are unfinished, i.e., rough as obtained at the time of rolling, while
turned bolts are obtained by turning hexagonal shank to circular shape. The bolt hole diameter is
only 1.5 mm larger than that of the shank in case of turned bolt. These bolts are used in special jobs
like connecting machine parts subject to dynamic loadings. For black bolts, diameter of bolt hole is
larger and are used in most of the work. A black bolt is represented as M16, M20, etc. which means
black bolt of nominal diameter 16 mm, black bolt of nominal diameter 20 mm, etc.
-DESIGN STRENGTH OF BEARING BOLTS
-DESIGN STRENGTH OF HSFG BOLTS IN SHEAR (Vdsf)
-PRINCIPLES TO BE OBSERVED IN THE DESIGN
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2. INTRODUCTION
• A bolt is a metal pin with a head formed at
one end and shank threaded at the other in
order to receive a nut.
• On the basis of load transfer in the
connection bolts are classified as:
• (a) Bearing Type
• (b) Friction Grip Type
3.
4. Types of bearing bolts
• There are two types of bearing type bolts,
namely,
• (i) Unfinished or Black Bolts.
• (ii) Finished or Turned Bolts.
5. Unfinished or Black Bolts.
• The shanks of black bolts are unfinished, i.e.,
rough as obtained at the time of rolling.
• For black bolts, diameter of bolt hole is larger
and are used in most of the work.
• A black bolt is represented as M16, M20, etc.
which means black bolt of nominal diameter
16 mm, black bolt of nominal diameter 20
mm, etc.
6. Finished or Turned Bolts.
• turned bolts are obtained by turning
hexagonal shank to circular shape.
• The bolt hole diameter is only 1.5 mm larger
than that of the shank in case of turned bolt.
• These bolts are used in special jobs like
connecting machine parts subject to dynamic
loadings.
7. TERMINOLOGY
The following terms used in bolted connection
should be
1. Pitch of the Bolts (p): It is the centre-to-centre
spacing of the bolts in a row, measured along the
direction of load.
2. Gauge Distance (g): It is the distance between
the two consecutive bolts of adjacent rows and is
measured at right angles to the direction of load.
3. Edge Distance (e): It is the distance of bolt hole
from the adjacent edge of the plate.
8.
9. Grade Classification of Bolts
• The grade classification of bolt is indicative of the strength
of the material of the bolt. The two grades of bolts
commonly used are 4.6 and 8.8.
• For a 4.6 grade 4 indicates that the ultimate tensile
strength of the bolt,
fub = 4 x 100 = 400 N/mm2
and, 0.6 indicates that the yield strength of the bolt,
fyb= 0.6 x Ultimate strength
= 0.6 x 400 = 240 N/ mm2
10. The yield stress (fyb) and ultimate stress (fub) for the standard
grades of bolts are given in the table below;
11. Specification
For connection, see section 10 code IS 800 : 2007.
1. Pitch 'p' shall not be less than 2.5d, where, 'd' is the
nominal diameter of bolt (also see clause 10.2.2 of code IS
800 : 2007)
2. Pitch 'p' shall not be more than;
a) 16 t or 200 mm whichever is less, in case of tension
members. (Also see clause 10.2.3.2 of code IS 800 : 2007).
b) 12 t or 200 mm, whichever is less in case of compression
member where, 't' is the thickness of thinnest member.
12. c) In case of staggered pitch, pitch may be increased by 50
percent of values specified above provided gap distance is less
than 75 mm. (See clause 10.2.3.4 of code IS 800 : 2007).
3. In case of butt joints maximum pitch is to be restricted to 4.5
d for a distance of 1.5 times the width of plate from the butting
surface.
4. The gauge length 'g' should not be more than 100 + 4 t or 200
mm whichever is less.
5. Minimum edge distance shall not be;
a) Less than 1.7 x hole diameter in case of sheared or hand
flame cut edges.
b) Less than 1.5 x hole diameter in case of rolled, machine flame
cut, sawn and planed edges (See clause 10.2.4.2 of code IS 800:
2007).
13. 6. Maximum edge distance (e) should not exceed
a) 12tE where, and 't' is thickness of thinner outer plate
(See clause 10.2.4.3 of code IS 800 : 2007).
b) 40 + 4 t where, 't' is the thickness of thinner connected
plate, if exposed to corrosive influences.
14. Types of Bolted Connections
Types of joints may be grouped into the following two;
a) Lap Joint: It is simplest types of joints. In this, plates to
be connected overlap one another.
b) Butt Joint: In this type of connection, the two main plates
about against each other and the connection is made by
providing a single cover plate connected to the main plate
or by double cover plates, one on either side connected to
the main plates.