2011:Mechanical 2 1.27: Difference between revisions
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(New page: = Attendance = '''Start time: ''' '''End time: ''' '''Members present: ''' '''Members Attending Next Meeting: ''' = Tasks Completed = *task **sub-task **sub-task *task = Tasks In Pr...) |
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= Attendance = | = Attendance = | ||
'''Start time: ''' | '''Start time: ''' | ||
'''End time: ''' | '''End time: ''' | ||
'''Members present: ''' | '''Members present:Alex W, Ciana R, Jonathan G, Ethan M, Mr. W, Mr. K''' | ||
'''Members Attending Next Meeting: ''' | '''Members Attending Next Meeting: ''' | ||
= Tasks Completed = | = Tasks Completed = | ||
* | *Arm prototyping | ||
* | *Designing upper structure<br> | ||
* | *determined which arm to use(telescope or folding[scale 1-10 {1 worst 10 best}])<br> | ||
= | {| cellspacing="1" cellpadding="1" border="1" style="width: 200px; height: 234px;" | ||
|- | |||
| <br> | |||
| folding | |||
| telescope | |||
|- | |||
| does it work | |||
| 9 | |||
| 3.5 | |||
|- | |||
| realibility(prototype or design error) | |||
| | |||
10 (prototyped latch part was a little faulty, spring would be set so that it latches each time) | |||
| 4 | |||
|- | |||
| how much force can it take | |||
| 9.5(prototype only 1 side of the latch was used, in final design both sides would be used, making the final design stronger)<br> | |||
| N/A | |||
|- | |||
| how easy is it to reset | |||
| 9 (1 person can reset)<br> | |||
| 2 people, fairly easy | |||
|- | |||
| autonomous mode | |||
| N/A | |||
| N/A | |||
|- | |||
| speed, timing | |||
| 9 (fast)<br> | |||
| 7 | |||
|- | |||
| how easy is it to fix | |||
| 9(outside plates and latches are the only things that might break. if they break they are very easy to replace)<br> | |||
| 7(arm could possibly break completly making it very hard to repair, unless you have a spare arm) <br> | |||
|- | |||
| which one has the most play | |||
| similar | |||
| similar | |||
|- | |||
| release mechanism | |||
| 9 (1 person) | |||
| | |||
(2 people) | |||
|- | |||
| speed of deployment | |||
| 9 | |||
| 8 | |||
|- | |||
| übertube loading | |||
| 9(arm simply folds at the beggining of the match)<br> | |||
| 4(arm has to be tucked in all the way, could create problems) | |||
|} | |||
= Tasks In Progress = | |||
** | |||
** | *Arm prototyping<br> * Designing upper structure<br><br> | ||
* | |||
= Tasks to Complete = | |||
**Arm prototyping<br> * Designing upper structure<br> | |||
*finalize dimensions <br> | |||
= Materials Needed = | = Materials Needed = | ||
Latest revision as of 18:02, 29 January 2011
Attendance
Start time:
End time:
Members present:Alex W, Ciana R, Jonathan G, Ethan M, Mr. W, Mr. K
Members Attending Next Meeting:
Tasks Completed
- Arm prototyping
- Designing upper structure
- determined which arm to use(telescope or folding[scale 1-10 {1 worst 10 best}])
folding | telescope | |
does it work | 9 | 3.5 |
realibility(prototype or design error) |
10 (prototyped latch part was a little faulty, spring would be set so that it latches each time) |
4 |
how much force can it take | 9.5(prototype only 1 side of the latch was used, in final design both sides would be used, making the final design stronger) |
N/A |
how easy is it to reset | 9 (1 person can reset) |
2 people, fairly easy |
autonomous mode | N/A | N/A |
speed, timing | 9 (fast) |
7 |
how easy is it to fix | 9(outside plates and latches are the only things that might break. if they break they are very easy to replace) |
7(arm could possibly break completly making it very hard to repair, unless you have a spare arm) |
which one has the most play | similar | similar |
release mechanism | 9 (1 person) |
(2 people) |
speed of deployment | 9 | 8 |
übertube loading | 9(arm simply folds at the beggining of the match) |
4(arm has to be tucked in all the way, could create problems) |
Tasks In Progress
- Arm prototyping
* Designing upper structure
Tasks to Complete
- Arm prototyping
* Designing upper structure
- Arm prototyping
- finalize dimensions