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Chapter 7 Line Models 1
Chapter 7
Line Models
7.1 Step-by-Step: Flexible Gripper
7.2 Step-by-Step: 3D Truss
7.3 More Exercise: Two-Story Building
7.4 Review
Chapter 7 Line Models Section 7.1 Flexible Gripper 2
Section 7.1
Flexible Gripper
Problem Description
[3] Actuation
direction (input).
[2] The ends are
connected to a rigid
ground (preventing
translations and
rotations).
[4] Gripping
direction
(output).
[1] The gripper is
made of POM.
P1(−70,0)
P2(−90,40)
P3(−69,120)
P4(−35,160)
P5(−34,100)
P6(−24,60)
P7(0,50)
X
Y
Chapter 7 Line Models Section 7.1 Flexible Gripper 3
Techniques/Concepts
• Line bodies
• Cross Sections
• Cross Section Alignments
• Cross Section Solids
• Beam Elements
• Symmetry Conditions
• Geometric Advantage
0
10
20
30
40
50
60
0 5 10 15 20 25 30 35 40 45 50
HorizontalDisplacement(mm)
Input Displacement (mm)
Chapter 7 Line Models Section 7.1 Flexible Gripper 4
52.24
52.26
52.28
52.30
52.32
0 125 250 375 500 625
OutputDisplacement(mm)
Number of Elements
Convergence Study of Beam Elements
[1] In this exercise, we
meshed with 34
elements, resulting 52.335
mm of displacement.
[2] The displacement
converges to 52.381 mm.
Chapter 7 Line Models Section 7.2 3D Truss 5
200"
200"
75"
P1P2
P3
P4
P5 P6
P7
P8
P9 P10
1
2
3 4
5
67 89
10
11
12
13
14
15
16
17
1819
20
21
22
23
24
25
100"100"
X
Y
Z
75"
Section 7.2
3D Truss
Problem Description
Design Loads for the Transmission Tower
Joint FX (lb) FY (lb) FZ (lb)
P1 1,000 -10,000 -10,000
P2 0 -10,000 -10,000
P3 500 0 0
P6 600 0 0
Chapter 7 Line Models Section 7.2 3D Truss 6
Techniques/Concepts
• Create points
• Concepts>Lines From Points
• Convergence of straight beam
elements
Chapter 7 Line Models Section 7.3 Two-Story Building 7
Section 7.3
Two-Story Building
Problem Description
[1] All beams and
columns are made
of structural steel,
with a cross
section of W16x50. [2] The floor slabs
are made of reinforced
concrete, with a
thickness of 5".
[3] Each
floor-to-floor
height is 10'.
20'
20' 20'20'
Chapter 7 Line Models Section 7.3 Two-Story Building 8
Techniques/Concepts
• Adjust Cross Section
Alignments
• Concepts>Surface From
Edges
• Use of Selection Panes
• Flip Surface Normal
• Form New Part
• Import Engineering Data
• Inertial>Standard Earth
Gravity
• Inertial>Acceleration

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Ansys Workbench-Chapter07

  • 1. Chapter 7 Line Models 1 Chapter 7 Line Models 7.1 Step-by-Step: Flexible Gripper 7.2 Step-by-Step: 3D Truss 7.3 More Exercise: Two-Story Building 7.4 Review
  • 2. Chapter 7 Line Models Section 7.1 Flexible Gripper 2 Section 7.1 Flexible Gripper Problem Description [3] Actuation direction (input). [2] The ends are connected to a rigid ground (preventing translations and rotations). [4] Gripping direction (output). [1] The gripper is made of POM. P1(−70,0) P2(−90,40) P3(−69,120) P4(−35,160) P5(−34,100) P6(−24,60) P7(0,50) X Y
  • 3. Chapter 7 Line Models Section 7.1 Flexible Gripper 3 Techniques/Concepts • Line bodies • Cross Sections • Cross Section Alignments • Cross Section Solids • Beam Elements • Symmetry Conditions • Geometric Advantage 0 10 20 30 40 50 60 0 5 10 15 20 25 30 35 40 45 50 HorizontalDisplacement(mm) Input Displacement (mm)
  • 4. Chapter 7 Line Models Section 7.1 Flexible Gripper 4 52.24 52.26 52.28 52.30 52.32 0 125 250 375 500 625 OutputDisplacement(mm) Number of Elements Convergence Study of Beam Elements [1] In this exercise, we meshed with 34 elements, resulting 52.335 mm of displacement. [2] The displacement converges to 52.381 mm.
  • 5. Chapter 7 Line Models Section 7.2 3D Truss 5 200" 200" 75" P1P2 P3 P4 P5 P6 P7 P8 P9 P10 1 2 3 4 5 67 89 10 11 12 13 14 15 16 17 1819 20 21 22 23 24 25 100"100" X Y Z 75" Section 7.2 3D Truss Problem Description Design Loads for the Transmission Tower Joint FX (lb) FY (lb) FZ (lb) P1 1,000 -10,000 -10,000 P2 0 -10,000 -10,000 P3 500 0 0 P6 600 0 0
  • 6. Chapter 7 Line Models Section 7.2 3D Truss 6 Techniques/Concepts • Create points • Concepts>Lines From Points • Convergence of straight beam elements
  • 7. Chapter 7 Line Models Section 7.3 Two-Story Building 7 Section 7.3 Two-Story Building Problem Description [1] All beams and columns are made of structural steel, with a cross section of W16x50. [2] The floor slabs are made of reinforced concrete, with a thickness of 5". [3] Each floor-to-floor height is 10'. 20' 20' 20'20'
  • 8. Chapter 7 Line Models Section 7.3 Two-Story Building 8 Techniques/Concepts • Adjust Cross Section Alignments • Concepts>Surface From Edges • Use of Selection Panes • Flip Surface Normal • Form New Part • Import Engineering Data • Inertial>Standard Earth Gravity • Inertial>Acceleration