Build Exercise with the VEX Robotics Kits

Slides:



Advertisements
Similar presentations
First Year Robotics Platform By: Andria Farnham, Adam Selinger, Curtis Langley.
Advertisements

Working with Wind Energy Stirling: March 2011 Nico Beute 1.
Worm and Wheel Gear Crank Wheel Gear (Driven) Worm Gear(Drive)
Project Lead the Way GTT Gateway to Technology.
Mechanical Gears Team Project. Teams You will be grouped into teams of four. Each team will have a Team Leader, Engineer, Graphic Designer, and Logistician.
Ryan O’Connor. The Problem  The problem identified is that it is difficult to effectively lay down straight and accurate foul lines on a baseball field,
Learning with Purpose February 25, 2013 Learning with Purpose February 25, Mechanical Design II Spring 2013.
Instructional Guide Technological Systems: Creating Mechanical Toys
Mechanisms Mechanisms PLTW Gateway
Mechanisms Get your notebook please- we are taking a few notes first
Gears and Gear Trains: Student Learning Goal
Kristen Woznick Andrew Kriebel Ahmed Al Haddad College of Engineering Penn State University 3 December 2012 Solar Powered Water Pumping in Senegal
Working with Wind Energy 24 September 2010 Moshe Kam SEP
Integrated Natural Science. for Detroit Public Schools Ropes and Pulleys Kat Woodring.
Mechanisms Mechanisms Gateway To Technology®
Wind Turbine Design Grade 1 – ENERGY IN OUR LIVES What have we learned? Wind has energy. The sun is the principal source of.
Renewable Energy Bob Jesberg FETC Conference Orlando, FL January 28 – 31,
Available at: 2.3, Build a Drift Chassis Build a Drift Chassis Graphic retrieved from, spn/gallery/enlargePhoto?id.
Compound Gears Unit 6.
ROBOTIC DESIGN CHALLENGE Robotics and Automation Copyright © Texas Education Agency, All rights reserved.
Mechanisms from Simple Machines
Ryan O’Connor. The Problem  The problem identified is that it is difficult to effectively lay down straight and accurate foul lines on a baseball field,
Period 1 presentation. The ruins of a Persian windmill.
 A push  A pull  A twist  Using a spring balance  The unit forces are measured in is the newton (after Sir Isaac Newton)  The symbol for a newton.
Motion and Velocity Case Study: cars IVHS Melissa Farmer.
Period 7.   The more curved side generates low air pressures, due to more surface area. While high pressure air, pushes on the other side of the design.
Bogey Wheel---- One of a number of modern tank-tread double-wheels used as an Idler/Tension Wheel.
fischertechnik Mechanisms
Robotics in Education How robotics can help students engage in STEAM learning.
Open Differentials Erwin Noriega. Objectives Enhance why differentials are required Present the basic mechanics of an open differential.
Wind and Solar Energy &t=Energy-Sources What else might there be that is NOT mentioned.
Automotive Differential
Mechanisms Mechanisms PLTW Gateway
BY B.JITHENDRA KUMAR Shaper Machine. Introduction The shaping machine is used to machine flat metal surfaces especially where a large amount of metal.
Unit D: Mechanical Systems What is a Simple Machine?  A simple machine has few or no moving parts.  Simple machines make work easier 2.
Mechanical Power Trasnmission. Introduction In this Unit students were introduced to some of the concepts of classical mechanics, and also of DC motors.
Warm Up Activity 1.Pick up a poker chip from the teacher. 2.3 chips per team: 1 white, 1 blue, and 1 red per team. 3.Sit with your team members.
Project Overview  An introduction to 3D printing  Designing 3D printing parts  Redesigning the Clawbot  3D printing new Claw components  Assembling.
VEX UNITS OF WORK UNIT 1: TUMBLERUNIT 2: CLAWBOTUNIT 3: MANUFACTURING UNIT 1.1: Autodesk Inventor TUMBLER Build UNIT 2.1: Autodesk Inventor CLAWBOT Build.
Integrated Hands-On Mechanical System Laboratories Arif Sirinterlikci, Ph.D., Professor of Engineering Tony Kerzmann, Ph.D., Assistant Professor of Mechanical.
The mills. Via del sale The mills are a feature of Trapani. In fact, we can find many mills in the path that goes from Trapani to Marsala is called "
Optical Encoders Vallejo High Engineering Academy Jack Gillespie 2010.
What is a Mechanism? Two pieces of a machine where motion of one part causes the other part to move.
Mechanisms Mechanisms PLTW Gateway
 How does a windmill create energy?.  You should be able to understand the purpose of gearing in a windmill.  You should understand how electricity.
Mechanisms © 2011 Project Lead The Way, Inc.Automation and Robotics VEX.
Using the Engineering Notebook and Designing Lesson 05.
With. Project Overview  Introduction to Factory Automation Numerical Control  Build an autonomous robotic solution  Testing an autonomous robot build.
Engineering Notebook - Part 4 Tumbler Research Section Overview of Build Lesson 1 Basic Vocabulary Motors / Batteries Name: Per #:
Mechanisms Mechanisms Gateway To Technology®
VEX UNITS OF WORK UNIT 1: TUMBLER UNIT 2: CLAWBOT
Speed, Power, Torque & DC Motors
Mechanical Power Transmission
Mechanisms Mechanisms PLTW Gateway
Mechanisms Mechanisms PLTW Gateway
VERTICAL AXIS TURBINE Most of the world's energy resources are from the sun's rays hitting earth. Some of that energy has been preserved as fossil energy,
Project Overview An introduction to 3D printing
After completing this phase, you will be able to:
Mechanisms Mechanisms PLTW Gateway
Darshan institute of engineering & technology
Manual Drivetrains and Axles
Mechanisms PLTW Gateway Unit 2 – Lesson 2.2 – Mechanical Systems
Mechanisms From Simple Machines.
PROBLEM RENEWABLE ELECTRICAL ENERGY GENERATION AND DISTRIBUTION
Mechanisms Automation and Robotics VEX
Jason Ng Cheng Hin Differentials: Gears and Spline Shafts.
Mechanisms Automation and Robotics VEX
MECHANISMS Mechanisms Mechanisms Automation and Robotics VEX
Presentation transcript:

Build Exercise with the VEX Robotics Kits

Teams consist of the following members: (actual number of personnel will be determined by the number of team members – varies by class) Project Leader 1 person Engineer 1 or 2 or 3 people Logistics 1 person Scientist 1 or 2 people

All builds must meet all the requirements to be considered completed All builds must meet all the requirements to be considered completed. Builds not meeting all the requirements will lose construction points. The mechanism is to be built entirely from VEX parts provided in the lab unless otherwise noted.

Builds are: Pull Toy Black Windmill Red 2 / 4wd Vehicle Yellow Solar Collection Dish Blue

Build Storage Area Column by Row

Build Storage Area Area Assignments (Column by Row) Area Assignments Column A Column B Column C Column D Column E Row 1 P1 – Team 1 P1 – Team 2 P1 – Team 3 P1 – Team 4 P2 – Team 1 Row 2 P2 – Team 2 P2 – Team 3 P2 – Team 4 P3 – Team 1 P3 – Team 2 Row 3 P3 – Team 3 P3 – Team 4 P4 – Team 1 P4 – Team 2 P4 – Team 3 Row 4 P4 – Team 4 P5 – Team 1 P5 – Team 2 P5 – Team 3 P5 – Team 4

Pull Toy Introduction A pull-toy is pulled along the ground and a movement is produced, such as a head nods, a tail wags or a figure bobs up and down. The pull-toys use mechanisms to transfer energy from the wheels to the characters that define them.

Pull Toy Procedure With your knowledge of mechanisms, you and your partners will use the design process to design and build a mechanism or series of mechanisms that will meet the following criteria: Sketch: In your engineering notebook (in blue or black ink), sketch what your first solution should look like. Label the input and output and present your sketch to your instructor before you begin building. Model: Construct a 3D model in Autodesk Inventor 2014 of your proposed item. Prototype: Construct a prototype using the parts that are available in a VEX Robotics Kit. The mechanism is to be built on a small 4 wheel chassis capable of being pulled across a table-top surface, the movement of the wheels will make the toy move. A gear mechanism attached to the wheels will make another part of the pull toy move. An illustration should be added to the output of the mechanism so as to simulate the toy.

Windmill Design Introduction As you know from your science class or Energy and the Environment unit, a windmill converts wind energy to a useful mechanical energy. One real-world use of a windmill is to grind grain into flour. The rotary movement of the sail, turned by the wind, is changed by 90º. The sail (blades) have to be able to be moved to face the wind direction.

Windmill Procedure Using your knowledge of the mechanisms recently built in class, design and build a windmill to grind grain into flour. The situation requires a change in direction of motion by 90º and may require a different input/output speed relationship. The structure you build will need to incorporate a mechanism to change the direction of the windmill blades and extra points if the input/output speed relationship can be changed. Your structure must be stable, rigid, and must hold the gears in proper relationship to each other. Sketch: With your knowledge of mechanisms, you and your partners will use the design process to design and build a mechanism or series of mechanisms that will meet the above criteria. In your engineering notebook (in blue or black ink), sketch what your first solution should look like. Label the input and output and present your sketch to your instructor before you begin building. Model: Construct a 3D model in Autodesk Inventor 2014 of your proposed item. Prototype: Construct a prototype using the parts that are available in a VEX Robotics Kit. The item must meet all the requirements to be considered completed. Items not meeting all the requirements will lose construction points.

Survival Challenge Introduction The year is 2201. The earth as we know it no longer exists. Civilization has destroyed itself through nuclear wars, pollution, and lack of respect for the environment. The human race has all but ceased to exist. A group of multi-cultural scientists, doctors, and engineers have survived by living in a biosphere for the last 20 years. As they emerge from their protected sphere, they find the earth totally destroyed. They need to rebuild the earth and civilization. They will have to rebuild using only recycled materials that can be scavenged from the countryside. You are one of the engineers assigned to complete one of the tasks. Your team’s job is to create mechanical machines that will help the scientists and doctors rebuild the earth.

Task 1: 2 / 4wd Vehicle Activity: The scientists and doctors need a vehicle that will take them over the rough terrain to search for other survivors and to collect data. Requirements: Needs to travel over rough terrain. Needs to have a differential drive shaft or universal joint. Must be able to switch from two-wheel drive to four-wheel drive. Sketch: In your engineering notebook (in blue or black ink), sketch what your first solution should look like. Label the input and output and present your sketch to your instructor before you begin building. Model: Construct a 3D model in Autodesk Inventor 2014 of your proposed item. Prototype: Construct a prototype using the parts that are available in a VEX Robotics Kit. The item must meet all the requirements to be considered completed. Items not meeting all the requirements will lose construction points.

Task 2: Solar Collection Dish Activity: The scientists need a machine that will rotate a solar collection dish from inside their labs. The machine must be located outside the building and around the corner. Requirements: Needs to have a minimum gear ratio of 1:5. Must be located around a corner. Needs to be angled toward the sun. Must be able to follow the sun. Sketch: In your engineering notebook (in blue or black ink), sketch what your first solution should look like. Label the input and output and present your sketch to your instructor before you begin building. Model: Construct a 3D model in Autodesk Inventor 2014 of your proposed item. Prototype: Construct a prototype using the parts that are available in a VEX Robotics Kit. The item must meet all the requirements to be considered completed. Items not meeting all the requirements will lose construction points.