Trebuchet Project By AM and CS.

Slides:



Advertisements
Similar presentations
Work and Simple Machines
Advertisements

Common Types of Nails Fasteners Unit.
Lifts  Four Bar Mechanisms  Rotary Jointed Arms  Scissor Lifts  Telescoping Lifts  Combined Systems Lift Concepts.
WinBot II AS Automaatio- ja systeemitekniikan projektityöt.
Exploring Engineering Darin Gray Group 5 July 15 th, 2011 Darren Draper Sinem Sargin Ryan Vo Marquel Jones-Francis.
Projectile Projection Trebuchets Jack Tiffany
Section 2.2 ~ Dealing With Errors
If it is lighter, is it farther? Project by Onyea Sholty 2009.
‘Castle Attack: the trebuchet’
The Trebuchet Design Project By: Nick Hansen, Thomas Smith, Matt Borges & Emily Byers University of the Pacific School of Engineering.
Popsicle Stick Bridge Challenge Engineering 9
The Super Scooper: Self Scooping Wheelbarrow
Hacky Sack Launch Mechanism By: Zachary Cowherd Wen Luu Keiichi McGuire.
By: Alexandro Perez Greg Desrosiers Laura Berg Tara Hodgetts.
Trebuchet Design Project Presentation Team H.E.D. Huy Nguyen | Edward Lau | Daniel Vizcaino Lab Section Tuesday 4-6 PM.
TEAM FTP LAB 5 Project PFADS n Kyle Harris n Sang Huynh n Bhupinder Shergill n Eric Stolp.
Trebuchet Team Members: Linda Hib, Charlene Obille, Hanh Phan, James Santos Lab: Thursday University of the Pacific School of Engineering and Computer.
Engineering 10 Trebuchet Project
Team JADS 1 The PFADS Competition Team JADS Sean McNary John Yoshimura ENGR 5 - Lab 5.
T r e b u c h e t By Jonathan Ching, Isaiah Lilly Karen Quach, Brain Westrick Lab: Wednesday 6-8 p.m.
Team JADS1 The PFADS Competition Team JADS David Rosenberry Adam Yee ENGR 5 - Lab 5.
The Creation of Hera “The Treb Tigers” Stacy Costello & Jennifer Shore oh, and the dudes too: Travis Ford & Kevin Petros University of the Pacific Engineering.
Problem Solving Unit 2. Problem Solving 1. Define the problem – What is the problem? 2. Generate possible solutions – What are some things I can do to.
MANUFACTURING PROTOTYPE How do all the aspects of manufacturing come together to make a final product?
Jessica Linus Engineering Foundations of Technology II February 16,2013 Mrs. Fitzpatrick.
The Scientific Method.
Project Launcher Project #3 Introduction to Transportation.
Storm the Castle Building Portfolio Mini Competition 2011
WinBot II AS Automaatio- ja systeemitekniikan projektityöt.
Kaia Anderson, Courtney Spang, Alex Elshaw, and Zac Repinski! Hour 5
Problem Statement There are over 25 million children under the age of 5 in the United States, many of these children are taken out to restaurants to eat.
1 TREBUCHETTREBUCHET A trebuchet owner’s manual by Jennifer & Andrea.
Trebuchet! All The Way!!! The Construction of a deadly weapon.
Scientific Investigation Science & Technology. Scientific Investigation2 Learning objectives: To identify the major steps in carrying out a scientific.
Trebuchet Basics Fritz R. Fiedler. Basic Sling Trebuchet.
What are the conditions necessary for the peak efficiency of a trebuchet? Matt Keller, Chase Kernan, Calvin Ward, and Simon Monley.
The Mystery Machine Created by Kyle Rockwell, Ronan Shaffer, Dalton Scheiner, Emmy Nam.
Ancient Egypt Design Cycle Project. How will you be graded? You will be graded on each step of the Design Cycle: 1)Inquiring and Analyzing 2)Developing.
They are not just for birthday parties Anymore! They are not just for birthday parties Anymore!
Paton Jenkins Fall 2014 ¼” Scale Prototype The Building Process Finished Product.
 Key Learning ◦ Energy can be transferred through a mechanism to perform a given task.  Unit Essential Question ◦ How can energy be transferred from.
By: Jacob Anderson. Designs Arm Pivot Location Launch Sac Triggering Device.
By Emily Beaumont. To complete this exercise, I took a piece of paper and screwed it up and just let it unfold naturally. I set it in front of me and.
Magnetic Levitation 8th Grade Technology Transportation Unit Eric Wasacz, Ken Bouwens Thomas Rozelle.
Process Technology 3 Brendan Nolan My Idea When I first started to think about making this project the most important aspect for me was the type.
Cyrique Pitt and Jared Burns.  Goal: Our goal for this challenge was to make the best parachute possible that can carry a weight for the longest amount.
By: Jason Anna, Cody Beatty, Mark Brumbaugh, Dave Clapper, Trevor Helsley, Ben Zurilla.
The Effects of Newton’s Law on a Catapult By: Jonas Exey, Bjorn Grong, David Dininger, Donald Kjornes, Tyler Hamann.
Mr/Ms Period ---- Class. Take a couple of minutes and write down a couple of sentences explaining what Science means to you.
Making the Chassis (1/4) Create Chassis: 1.Use the Xacto knife, metal straight edge, wood and cardboard to cut your pieces (Sides & Tops) for the chassis.
Design and Engineer an Accurate Trebuchet Anyone who has played Age of Empires will know exactly what a trebuchet is, and what it does. A trebuchet exists.
1 Westwood Catapults 2014 Elliot Rose March 19, 2014
Gravity Cruiser By Emma, Julia, Layla, George, and Dean.
Centre No Artist – Gareth Kelly Unit 3 Working to a Project Brief.
Trebuchet Project By AM and CS.
Nazaha Muntafi May-cie
Stringing your car to determine wheel alignment is decidedly old school, but it's also effective, efficient and cheap. Begin by placing your car in a level.
Catapult.
Tools.
4th Grade Motion & Design
Structures.
Popsicle stick bridge Ryan and Simon.
Sam Sensenig Jess Rudick Eleanor Hatch
POPSICLE STICK BRIDGE PROJECT
Electric Car Project Riley Walz, 7-7.
Kimberly Gonzalez United Engineering & Technology Magnet
By Savannah and Sophie Block 5
Trebuchet Basics Fritz R. Fiedler.
Engineering Fundamentals 151 Fall 2008 Final Project “Ode to Phil”
Alina M, Chloe L, Freya G, Matthew H, Nick W
Presentation transcript:

Trebuchet Project By AM and CS

Introduction Inquiry Statement: Historical technical innovation has contributed to advances in modern day human progress. Global Concepts: Scientific and technical innovation. Design Specification: Students will design and build a trebuchet that is capable of throwing an object with repeated accuracy. IB Design Cycle

Investigation

Pros and Cons The swinging counter weight Vertical counterweight Easy to adjust Cons: Possibly difficult to move? The fixed counterweight on a fixed frame Pros Easiest to build Cons Shakes frame Non-vertical fall Not as efficient Difficult to adjust The fixed counterweight on a floating frame Pros: Wheels More vertical fall Easy to move and adjust Cons: Counterweight may be difficult to attach The floating arm trebuchet most accurate Vertical counterweight Difficult to build

Planning Process Choosing the arm: We chose the swinging counterweight trebuchet because it was the easiest for us to build with limited resources. Easily adjustable for distance by adding or removing weight. The vertical counterweight fall adds more power to the trebuchet we built.

Guiding Questions How big will the base be? These questions were to illustrate the many number of choices we were faced with on this project. A different answer could have completely changed the outcome. How big will the base be? How will we attach the wood together? What will we use as a counterweight? What type of axel will we use? What will the sling be made of?

Roles ALEX: Designing (drawings), Arm (cutting, sanding, construction) , sling, track construction CHLOE: base construction (cutting, gluing, stapling, sanding) track support (cutting, sanding, gluing, stapling) Throughout the trebuchet process we would consult each other for opinions or assistance.

Materials Given Wood Nails Eyehooks Metal rod Ready rod Bolts Washers String Twine Glue Fabric

We drew out the rough design to scale and recorded the measurements. Designing We drew out the rough design to scale and recorded the measurements. (Unfortunately we didn’t see that the base was too wide and too short.)

Creation Measurements and rough sketch Planning the cuts Building and Sanding the pieces

The Final Product

Goal To have the trebuchet fire a tennis ball 25 feet into a plastic recycling bucket.

Testing Attempt #1: Attempt #2 Attempt #3 Attempt #4 10 lbs. of weight. Traveled roughly 3 feet. Ball went higher up than further. This may have been because of the weights hitting the track when going downward. So, we decided to shorten the loop attaching the weight to the arm. Attempt #2 Traveled roughly 4 feet. The ball went slightly further. In an attempt to make it travel even further, we added 1.5 lbs. of weight and shortened the sling length. Attempt #3 Travel about 6 feet. The ball went quite a bit further but still nowhere near the box. We decided to change the twine attaching the sling to a thin green string hoping it would change the tension. Attempt #4 Traveled around 8 feet. We used a ten pound weight, and loosened the sling loop. We also slightly adjusted the sling rod. It was our most successful trial, and it traveled more than twice the distance of our first try.

Evaluation Unfortunately, our trebuchet didn’t complete our intended goal. This is probably because our base was too long, and so the angle between the supports was far too wide, thus shortening the base itself. With such a short base, we had to make our arm much shorter than we intended, so it would fit inside the base. Because of this, our throwing distance suffered, and we weren’t able to come close to our target. If we were to redo this project, we would pay closer attention to the measurements and see if they fit together, and also model the base measurements for optimal arm length.