The document discusses riveted joints. It describes the different types of rivets and rivet heads. The key types of riveted joints are lap joints and butt joints. Important terms used in riveted joints are also defined, such as pitch and margin. Guidelines for the proportions of dimensions for riveted joints are provided. Examples of different double and single riveted lap and butt joints are shown.
RIVETING
WHAT IS A RIVET?
PARTS OF RIVETS
MANUFACTURING PROCESS
INSTALLATION
TYPES OF RIVETING
TYPES OF RIVETING JOINTS
APPLICATIONS
ADVANTAGES
FAILURES
Design of riveted joint failures may 2020Gaurav Mistry
Design of rivet joint, failure of rivet and plate under tensile load, rivet joint efficiency, unwin's formula for rivet diameter standard sizes of rivet and rivet holes
RIVETING
WHAT IS A RIVET?
PARTS OF RIVETS
MANUFACTURING PROCESS
INSTALLATION
TYPES OF RIVETING
TYPES OF RIVETING JOINTS
APPLICATIONS
ADVANTAGES
FAILURES
Design of riveted joint failures may 2020Gaurav Mistry
Design of rivet joint, failure of rivet and plate under tensile load, rivet joint efficiency, unwin's formula for rivet diameter standard sizes of rivet and rivet holes
Unit 6- spur gears, Kinematics of machines of VTU Syllabus prepared by Hareesha N Gowda, Asst. Prof, Dayananda Sagar College of Engg, Blore. Please write to hareeshang@gmail.com for suggestions and criticisms.
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Unit 6- spur gears, Kinematics of machines of VTU Syllabus prepared by Hareesha N Gowda, Asst. Prof, Dayananda Sagar College of Engg, Blore. Please write to hareeshang@gmail.com for suggestions and criticisms.
Assembly of Ramsbottom safety valve, Computer Aided Machine Drawing (CAMD) of VTU Syllabus prepared by Hareesha N Gowda, Asst. Prof, Dayananda Sagar College of Engg, Blore. Please write to hareeshang@gmail.com for suggestions and criticisms.
Assembly of Connecting rod, Computer Aided Machine Drawing (CAMD) of VTU Syllabus prepared by Hareesha N Gowda, Asst. Prof, Dayananda Sagar College of Engg, Blore. Please write to hareeshang@gmail.com for suggestions and criticisms.
Assembly of Machine vice, Computer Aided Machine Drawing (CAMD) of VTU Syllabus prepared by Hareesha N Gowda, Asst. Prof, Dayananda Sagar College of Engg, Blore. Please write to hareeshang@gmail.com for suggestions and criticisms.
Assembly of Tail stock, Computer Aided Machine Drawing (CAMD) of VTU Syllabus prepared by Hareesha N Gowda, Asst. Prof, Dayananda Sagar College of Engg, Blore. Please write to hareeshang@gmail.com for suggestions and criticisms.
Cotter and knuckle joints, Computer Aided Machine Drawing (CAMD) of VTU Syllabus prepared by Hareesha N Gowda, Asst. Prof, Dayananda Sagar College of Engg, Blore. Please write to hareeshang@gmail.com for suggestions and criticisms.
Orthographic projections, Computer Aided Machine Drawing (CAMD) of VTU Syllabus prepared by Hareesha N Gowda, Asst. Prof, Dayananda Sagar College of Engg, Blore. Please write to hareeshang@gmail.com for suggestions and criticisms.
This document is an Instruction manual for Computer aided machine drawing
Subject: Computer aided machine drawing (CAMD)
Syllabus contest is as per VTU, Belagavi, India.
Notes Compiled By: Hareesha N Gowda, Assistant Professor, DSCE, Bengaluru-78.
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This document gives the class notes of Unit-8: Torsion of circular shafts and elastic stability of columns. Subject: Mechanics of materials.
Syllabus contest is as per VTU, Belagavi, India.
Notes Compiled By: Hareesha N Gowda, Assistant Professor, DSCE, Bengaluru-78.
This document gives the class notes of Unit 2 stresses in composite sections. Subject: Mechanics of materials.
Syllabus contest is as per VTU, Belagavi, India.
Notes Compiled By: Hareesha N Gowda, Assistant Professor, DSCE, Bengaluru-78.
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Syllabus contest is as per VTU, Belagavi, India.
Notes Compiled By: Hareesha N Gowda, Assistant Professor, DSCE, Bengaluru-78.
This document contains: Mechanics of Materials: Question bank from old VTU Question papers ; Pprepared by Hareesha N G, DSCE, Bengaluru. These questions are picked from last 06 years of old VTU question papers.
This document gives the class notes of Unit-8: Torsion of circular shafts and elastic stability of columns. Subject: Mechanics of materials.
Syllabus contest is as per VTU, Belagavi, India.
Notes Compiled By: Hareesha N Gowda, Assistant Professor, DSCE, Bengaluru-78.
This presentation is on design of welded and riveted connections in steel structures. in this presentation we learn briefly about these connections and design terminology about these connections.
This presentation gives the information about introduction to control systems
Subject: Control Engineering as per VTU Syllabus of Aeronautical Engineering.
Notes Compiled By: Hareesha N Gowda, Assistant Professor, DSCE, Bengaluru-78.
Disclaimer:
The contents used in this presentation are taken from the text books mentioned in the references. I do not hold any copyrights for the contents. It has been prepared to use in the class lectures, not for commercial purpose.
This template was created for DSCE, Aeronautical students. You have to replace the institution details.
Create a separate document for each chapter, so that under numbering, you can change the sequence of chapter main heading according to chapter wise. i.e., 2.1, 2.2 etc.
Same procedure is applicable to Figure caption and Table caption.
This template can be used to generate, BE seminar report, M.Tech and Ph.D thesis also.
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Hareesha N G
Assistant Professor
DSCE, Bengaluru
This document gives the class notes of Unit 6: Bending and shear Stresses in beams. Subject: Mechanics of materials.
Syllabus contest is as per VTU, Belagavi, India.
Notes Compiled By: Hareesha N Gowda, Assistant Professor, DSCE, Bengaluru-78.
This document gives the class notes of Unit 5 shear force and bending moment in beams. Subject: Mechanics of materials.
Syllabus contest is as per VTU, Belagavi, India.
Notes Compiled By: Hareesha N Gowda, Assistant Professor, DSCE, Bengaluru-78.
This presentation was prepared for a seminar. I have shared this with you. This is not related to curriculam. Please writre your criticisms to: hareeshang@gmail.com.
This presentation gives the information about Screw thread measurements and Gear measurement of the subject: Mechanical measurement and Metrology (10ME32/42) of VTU Syllabus covering unit-4.
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This CIM and automation laboratory manual covers the G-Codes and M-codes for CNC Turning and Milling operations. Some concepts of Robot programming are also introduced.
1. Riveted Joints
Hareesha N G
Dept. of Aeronautical Engg
Dayananda Sagar College of Engineering
Bangalore-78
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2. Introduction
• A rivet is a short cylindrical bar with a head integral to it. The
cylindrical portion of the rivet is called shank or body
• and lower portion of shank is known as tail.
• The rivets are used to make permanent fastening between the
plates such as in structural work, ship building, bridges, tanks
and boiler shells.
• The riveted joints are widely used for joining light metals.
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3. Types of Rivet Heads
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4. Types of riveted joints
1. Lap joint
2. Butt joint
• Lap joint: A lap joint is that in which one plate overlaps the
other and the two plates are then riveted together.
• Butt joint: A butt joint is that in which the main plates are kept
in alignment butting (i.e. touching) each other and a cover plate
(i.e. strap) is placed either on one side or on both sides of the
main plates. The cover plate is then riveted together with the
main plates.
Butt joint
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Lap joint
5. Important Terms Used in Riveted Joints
• The following terms in connection with the riveted joints are
important from the subject point of view :
1. Pitch. It is the distance from the centre of one rivet to the centre of
the next rivet measured parallel to the seam as shown in Fig. It is
usually denoted by p.
2. Transverse pitch. It is the perpendicular distance between the centre
lines of the successive rows as shown in Fig. It is usually denoted by
pt.
3. Diagonal pitch. It is the distance between the centres of the rivets in
adjacent rows of zig-zag riveted joint as shown in Fig. It is usually
denoted by pd.
4. Margin or marginal pitch. It is the distance between the centre of
rivet hole to the nearest edge of the plate as shown in Fig. It is usually
denoted by m.
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6. Proportions of dimensions of riveted joints
• Thickness of plate
t = Thickness of the plate
• Diameter of rivets.
the diameter of the rivet hole (d) may be determined by using
• Distance of centre of the rivet from edge of the plate =
1.5d
• Margin , m=d
• Longitudinal Pitch p=3d
• Transverse pitch pt = 0.8P for chain riveting
= 0.6P for zig-zag riveting
• Thickness of butt strap.
Single cover plate t1 = 1.125 t
Double cover plate t2 = 0.7 to 0.8t
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7. • Types of Riveted joints
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8. • Double Riveted lap joints
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9. • Double Riveted Zig zag Lap joint
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10. • Single riveted, single strap butt joint
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11. • Single riveted, double strap butt joint
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