Action Items: Entire
Project
|
5/5/2013
|
||
Task
|
Status
|
Lead
|
|
Sketch
|
|||
dimensions configured
|
DONE
|
all
|
|
components chosen
|
DONE
|
all
|
|
research
|
NA
|
all
|
|
Model (Solid Works)
|
|||
brake system
|
21-Jun
|
Ashley
|
|
shock system
|
21-Jun
|
Jose
|
|
steering system
|
21-Jun
|
Ryan
|
|
frame
|
21-Jun
|
Lauren, Rochelle
|
|
entire assembly
|
28-Jun
|
||
Analysis
|
|||
tubing
|
14-Jun
|
Lauren, Rochelle
|
|
frame
|
21-Jun
|
Lauren, Rochelle
|
|
entire assembly
|
28-Jun
|
||
Budget
|
|||
configure budget
|
DONE
|
all
|
|
generate parts list
|
|||
brake system
|
12-Jul
|
Ashley
|
|
shock system
|
12-Jul
|
Jose
|
|
steering system
|
12-Jul
|
Ryan
|
|
frame
|
12-Jul
|
Lauren, Rochelle
|
|
get quotes for material
|
|||
brake system
|
26-Jul
|
Ashley
|
|
shock system
|
26-Jul
|
Jose
|
|
steering system
|
26-Jul
|
Ryan
|
|
frame
|
26-Jul
|
Lauren, Rochelle
|
|
fundraisers
|
TBD
|
all
|
|
distribute funds
|
2-Aug
|
||
generate Pos
|
16-Aug
|
||
Buy All Needed Parts
|
|||
brake system
|
30-Aug
|
Ashley
|
|
shock system
|
30-Aug
|
Jose
|
|
steering system
|
30-Aug
|
Ryan
|
|
frame
|
30-Aug
|
Lauren, Rochelle
|
|
Assembly
|
|||
Frame
|
|||
generate a machining plan
|
30-Aug
|
||
machine all necessary parts
|
4-Oct
|
||
Weld all necessary components
|
1-Nov
|
||
Steering
|
|||
machine all necessary parts
|
4-Oct
|
||
assemble components
|
1-Nov
|
||
integrate into final assembly
|
22-Nov
|
||
Brake System
|
|||
machine all necessary parts
|
4-Oct
|
||
Assemble components
|
1-Nov
|
||
Integrate into final assembly
|
22-Nov
|
||
Shock System
|
|||
machine all necessary parts
|
4-Oct
|
||
assemble components
|
1-Nov
|
||
integrate into final assembly
|
22-Nov
|
||
Final Assembly
|
|||
integrate all components together
|
22-Nov
|
||
integrate collapsibility
|
22-Nov
|
||
check for safety measures
|
22-Nov
|
||
Assembly Testing and Analysis
|
|||
define testing procedures
|
22-Nov
|
||
run tests
|
6-Dec
|
||
analyze test results
|
13-Dec
|
||
Final Report
|
|||
generate report
|
20-Dec
|
Rochelle
|
|
generate presentation
|
20-Dec
|
Rochelle
|
California State University, Long Beach
Mechanical Aerospace Engineering Department
MAE 471/472 Group 12
Problem Statment
Design a cart that is safe, resilient, low-cost, low-weight, and user-friendly. The cart will be resilient by being strong and durable that can perform in multiple environments, extreme temperatures, absorbs impact and safely clears the ground. It will be user friendly by having free spinning wheels and will have a safe and efficient way to slow down and stop the cart. It will be light weight enough to be easily lifted, transported and collapsible. It will be safe enough for the riders, the dogs, and the bystanders. It will be single operant and be able to hold 2 average-weight people while being able to travel at speeds up to 30 mph.
Thursday, May 16, 2013
Action Items
Subscribe to:
Post Comments (Atom)
No comments:
Post a Comment