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Mechanical Engineering Applications
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Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Dec 11, 2015

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Lizette Pursley
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Page 1: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Mechanical EngineeringApplications

Page 2: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

When planning construction an understanding of materials has to

be your starting point

Page 3: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

As you design each part - ask yourselves

A) What is the parts function?

B) Which direction will forces be exerted?

C) How much force will be applied?

Page 4: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

A-Arm Example

Page 5: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Types of Materials

Steel A lum inum Titanium

Metals

Fiberglass Lam inates Carbon fiber

Com posites

Plastics Cloth Foam

Other

Page 6: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

SteelA) Mild - Easy to formB) Tool - Wear resistantC) Stainless - Stiff, wear and

rust resistantD) Chromoly- Strong but not

brittleE) ETC.

All are weldable

Page 7: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Tie Rod

Page 8: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

AluminumA) Cast - Hard, wear resistantB) 4043 - Soft, workableC) 6063 T-6 - Aircraft grade,hard,

weldableD) 7075 T-6 - Aircraft grade,

very hard, can bemachined but notwelded

E) ETC.

Page 9: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Aluminum Parts

Page 10: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.
Page 11: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Titanium

Titanium comes in different degrees of hardness and brittleness. It tends to crackin the corners then rip.

Page 12: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Examples

Page 13: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Fiberglass This material takes advanced

thought. You can make changes to it after construction. However, changes not in the original plan often create a reduction in strength or a significant increase in weight. We have found it difficult to use fiberglass and prevent the resign from creating more weight than We would like. There are also dangers in working with and breathing the components used in this process.

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Page 19: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

LaminatesThere are a number of possibilities in

this area. We have used corrugated plastic, corrugated fiberglass (flooring from passenger planes), and Reynolite (an aluminum and plastic laminate used for signs). Another laminate construction is wood. Boats, canoes and home built aircraft use wood laminate as a method of construction.

Page 20: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Carbon fiberWe have researched this possibility and shied away from it. We feel:

A) It is excessively expensiveB) To design a structure you must

learn at a completely different level the material and process

C) You must think through EVERY detail in advance

D) A mold is time consuming

Page 21: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

PlasticsWe have used .035 Lexan for a number

of applications. One of those being our wind shield. We have also used it in our battery box. It insulates the box while providing a visible check of the batteries without removing the the seal from the box. Lexan is pliable and easy to work with. Canopy is another application. Plastic has also been formed to produce our lenses for our lights. This has been done by having a laser harden resign in layers.

Stretch and shrink wrap is another option.

Page 22: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

ClothIn some locations spandex is useful.

This might be done where you want to hinder air flow but allow movement.

Airplane cloth on the other hand can provide reduced weight and allowenough strength to with stand a mansweight.

Page 23: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Airplane Cloth

Page 24: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

FoamHouston Mississippi is a great

example. The outer airfoil of their carhas been foam insulation for homes. It is light weight and cuts the air well.

We have used foam to laminate,providing a shape between layers to create strength.

Page 25: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Construction Joining MethodsA) Bolt D) FiberglassB) Rivet E) SolderC) Weld F) Glue

1) Rosette2) Spot3) Seam

Page 26: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Fastening MethodsA) VelcroB) Roll pinsC) Cotter pinsD) Hitch pinE) Push pinF) Zip tiesG) HaspsH) ZeusI) CaulkJ) Spirolox

Page 27: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Zeus

Page 28: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Chassis

Page 29: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Chassis DesignsA) MonocoqueB) I – Beam / C - ChannelC) Tubular

1) Round2) Square3) Rectangular4) Extruded

Page 30: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

SS I

Page 31: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

SS I Rolling

Page 32: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.
Page 33: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

SS II

Page 34: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.
Page 35: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

SS III

Page 36: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.
Page 37: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Chassis ConsiderationsA) Design each member to

perform its functionB) A triangle is the strongest

structureC) Use struts or corner braces

to spread out stress and loads

Page 38: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Suspension

Page 39: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

SuspensionSuspensions can very greatly. If

you are racing only at the track event you can save the weight of suspension PROVIDED your car has a low stable center of gravity. On the road races that is not true. For those races no suspension will make the car hard to control, fatigue the driver, and tend to shake the car apart.

Page 40: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Types of suspension might include the following:

A) Double A-ArmB) Go-KartC) Radius link solid axelD) Trailing arm (motorcycle)E) RockerF) Shocked fork

Page 41: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

How can you provide shock absorption? I think the ways are limitless. Let you minds think outside the box. Here are but a few suggestions:

A) Car, snowmobile, motorcycle, bicycle4-wheeler, or airplane shocks

B) ElastimersC) SpringsD) Budgie cordsE) A Piece of a tireF) Use your imagination

Page 42: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Shocks

Page 43: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Steering

To do this properly you need an autosteering development program. We use A-Arm Pro.

(use last years breaking mishap as the example)

Page 44: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

A-Arm Pro

Page 45: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Aerobody

Page 46: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

A) How important is it?B) What considerations might I need

to take a look at?C) What shape is the best?

Page 47: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

How important is it?

This, in my opinion, differs for different teams.If you plan to play the role of the tortes it is notreal important to your racing ability. If you plan to maintain a speed below 25 mph it will not make a great difference. On the other handIf you plan to run at faster speeds it is very important. An additional consideration mightbe sponsorships. I think the more sleek and professional the car looks the more you car is noticed and the better the exposure for your sponsors. Which translates to easier fund raising

Page 48: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

What considerations might I need to take a look at? (in no particular order)

A) Frontal areaB) Shape (tear drop, wedge, etc.)C) Stability (other vehicles, weather)D) Planned speedE) Height off of the groundF) High / Low pressure areas

(computer program)G) Safety if impacted ( review later)

Page 49: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

C) What shape is the best?

You will need to decide. If no other factors existed a tear drop is consideredthe most aerodynamic by most. You do not want lift nor do you want downforce. The car should be as neutral as possible.

Page 50: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Solar Body ShellHandout

Page 51: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.
Page 52: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Look at your design with Discriminating eyes

Consider the following. If an impact or mechanical failure occurred how would it affect the driver, car and others?

Page 53: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Examples:If a car impacted your design from theside at 90 degrees would the driver besafe?

Considering the height of car and truckbumpers, what would be the results to your driver if the breaks failed and theyrear ended a vehicle?

Page 54: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

If your car were driving at 45 mph and the left front tire and rim separated from the car what might be the result?

If the front of your car impacts something solid would it cause parts ofthe car to shear of and pose a danger tothe driver?

If an impact occurred would it cause the driver exit to become jammed to hinderthe driver from reaching safety?

Page 55: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.
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Page 60: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Join halves

Page 61: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Added roll bar

Page 62: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

SS VI

Crush Zones

Page 63: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.

Car designs of others

Page 64: Mechanical Engineering Applications. When planning construction an understanding of materials has to be your starting point.
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