Group 24 - Cyclo HBB Parallel Shaft Helical Gearbox with Cyclo Reducer Input

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[[Gate 1 - Project Planning (Group 24)]][[File:Full Pic.jpg|400px|thumb|right|Cyclo HBB Parallel Shaft Helical Gearbox with Cyclo Reducer Input]]
 
[[Gate 1 - Project Planning (Group 24)]][[File:Full Pic.jpg|400px|thumb|right|Cyclo HBB Parallel Shaft Helical Gearbox with Cyclo Reducer Input]]
  
In gate 1 we chose a product and began to plan for the project ahead of us.  The goals were to prepare for the upcoming product dissection, to set up a management structure for the course of the semester, to carry out initial research, and to preform an initial analysis.
+
In gate one we chose a product and began to plan for the project ahead of us.  The goals were to prepare for the upcoming product dissection, to set up a management structure for the course of the semester, to carry out initial research, and to preform an initial analysis.
  
 
[[Gate 2 - Product Dissection (Group 24)]]
 
[[Gate 2 - Product Dissection (Group 24)]]
  
In gate 2 our group dissected the Cyclo HBB Gearbox.  The purpose of the dissection is to examine and later analyze the many different components inside of the gearbox.
+
In gate two our group dissected the Cyclo HBB Gearbox.  The purpose of the dissection is to examine and later analyze the many different components inside of the gearbox.
  
 
[[Gate 3 - Product Analysis (Group 24)]]
 
[[Gate 3 - Product Analysis (Group 24)]]
  
During gate 3 we chose and analyzed a few different components within the gearbox. As part of the analysis we discussed different factors that could have influenced the design and decision making behind the components in the gear box. Our analysis explores the component function, component form, the manufacturing methods, and the complexity of each component that we chose. We also chose three of the components and created three dimensional computer models for them in order to showcase them in a partial assembly. We finish by making three suggestions for design revisions that could be benefit the products versatility of performance.
+
During gate three we chose and analyzed a few different components within the gearbox. As part of the analysis we discussed different factors that could have influenced the design and decision making behind the components in the gear box. Our analysis explores the component function, component form, the manufacturing methods, and the complexity of each component that we chose. We also chose three of the components and created three dimensional computer models for them in order to showcase them in a partial assembly. We finish by making three suggestions for design revisions that could be benefit the products versatility of performance.
  
 
[[Gate 4 - Product Explanation (Group 24)]]
 
[[Gate 4 - Product Explanation (Group 24)]]
  
 +
In gate four we reassembled the Cyclo HBB Buddy Box and created a step by step tutorial for others to follow.  We also provided an explanation of the mechanisms within our product and we provided three suggestions for changes that could be made a system level.
 +
 +
[[File:Gate 5 - Presentation.pdf| Gate 5 - Power Point (Group 24)]]
  
<left>
 
 
{| class="wikitable" style="text-align:center;  width:60%;"
 
{| class="wikitable" style="text-align:center;  width:60%;"
  
! scope="col" | Complexity
+
! scope="col" | Group Member
! scope="col" | Stars
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! scope="col" | Role
! scope="col" | Component Form
+
 
! scope="col" | Component Interactions
+
 
|-
 
|-
  
|Not Complex
+
|Patrick Joy
|[[File:1 Star.png|125px]]
+
|Project Manager
|The component required only 1 manufacturing step to create.
+
|The component had only 1 or 2 interactions.
+
  
 
|-
 
|-
  
|Somewhat Complex
+
|Yuri Marsan
|[[File:2 Star.png|125px]]
+
|Lab Manager
|The component required 2 manufacturing steps to create.
+
|The component had 3 interactions.
+
  
 
|-
 
|-
  
|Complex
+
|Jason Feuer
|[[File:3 Star.png|125px]]
+
|Communication Liaison
|The component required 3 manufacturing steps to create.
+
|The component had 4 interactions.
+
  
 
|-
 
|-
  
|Very Complex
+
|Hao Kiat Tan
|[[File:4 Star.png|125px]]
+
|Technical Expert
|The component required 4 manufacturing steps to create.
+
|The component had 5 interactions.
+
  
 
|-
 
|-
  
|Extremely Complex
+
|Jason D'Souza
|[[File:5 Star.png|125px]]
+
|Technical Expert
|The component required 5 or more manufacturing steps to create.
+
|The component had 6 or more interactions.
+
  
 
|}
 
|}
</left>
+
 
  
  
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==Bibliography==
 
==Bibliography==
 +
Boston Gear. Engineering Information. 15 11 2012 <http://www.bostongear.com/litportal/pdfs/P-1482BG_pg133-153.pdf>.
 +
 +
Republic Blower Systems. High Speed Performance Characteristics of Ball and Roller. 18 November 2012 <http://www.republicsales.com/products/blowers/republic-centrifugal-blower/nsk-ceramic-ball-bearings/ceramic-steel-ball-roller.php>.
 +
 +
Sumitomo Drive Technologies. 6000 Series Cyclo HBB Manual. 7 October 2012 <http://www.smcyclo.com/uploads/product/files/file-1228.pdf>.
  
 
Sumitomo Drive Technologies. Cast Iron vs. Ductile Iron Housing Material. 14 November 2012 <http://www.smcyclo.com/uploads/product/files/file-1283.pdf>.
 
Sumitomo Drive Technologies. Cast Iron vs. Ductile Iron Housing Material. 14 November 2012 <http://www.smcyclo.com/uploads/product/files/file-1283.pdf>.

Revision as of 16:32, 30 November 2012

Gate 1 - Project Planning (Group 24)
Cyclo HBB Parallel Shaft Helical Gearbox with Cyclo Reducer Input

In gate one we chose a product and began to plan for the project ahead of us. The goals were to prepare for the upcoming product dissection, to set up a management structure for the course of the semester, to carry out initial research, and to preform an initial analysis.

Gate 2 - Product Dissection (Group 24)

In gate two our group dissected the Cyclo HBB Gearbox. The purpose of the dissection is to examine and later analyze the many different components inside of the gearbox.

Gate 3 - Product Analysis (Group 24)

During gate three we chose and analyzed a few different components within the gearbox. As part of the analysis we discussed different factors that could have influenced the design and decision making behind the components in the gear box. Our analysis explores the component function, component form, the manufacturing methods, and the complexity of each component that we chose. We also chose three of the components and created three dimensional computer models for them in order to showcase them in a partial assembly. We finish by making three suggestions for design revisions that could be benefit the products versatility of performance.

Gate 4 - Product Explanation (Group 24)

In gate four we reassembled the Cyclo HBB Buddy Box and created a step by step tutorial for others to follow. We also provided an explanation of the mechanisms within our product and we provided three suggestions for changes that could be made a system level.

File:Gate 5 - Presentation.pdf

Group Member Role
Patrick Joy Project Manager
Yuri Marsan Lab Manager
Jason Feuer Communication Liaison
Hao Kiat Tan Technical Expert
Jason D'Souza Technical Expert


During the course of the semester, these are the sources that we used for information during our research and analysis.

Bibliography

Boston Gear. Engineering Information. 15 11 2012 <http://www.bostongear.com/litportal/pdfs/P-1482BG_pg133-153.pdf>.

Republic Blower Systems. High Speed Performance Characteristics of Ball and Roller. 18 November 2012 <http://www.republicsales.com/products/blowers/republic-centrifugal-blower/nsk-ceramic-ball-bearings/ceramic-steel-ball-roller.php>.

Sumitomo Drive Technologies. 6000 Series Cyclo HBB Manual. 7 October 2012 <http://www.smcyclo.com/uploads/product/files/file-1228.pdf>.

Sumitomo Drive Technologies. Cast Iron vs. Ductile Iron Housing Material. 14 November 2012 <http://www.smcyclo.com/uploads/product/files/file-1283.pdf>.

Sumitomo Drive Technologies. Cyclo HBB Brochure. 7 October 2012 <http://www.smcyclo.com/uploads/product/files/file-89.pdf>.

Sumitomo Drive Technologies. Cyclo HBB Catalog. 7 October 2012 <http://www.smcyclo.com/uploads/product/files/file-1254.pdf>.

Sumitomo Drive Technologies. Installation Guide. 7 October 2012 <http://www.smcyclo.com/uploads/product/files/file-86.pdf>.

Sumitomo Drive Technologies. Operating and Maintenance Manual. 7 October 2012 <http://www.smcyclo.com/uploads/product/files/file-94.pdf>.

Sumitomo Drive Technologies. Parts List. 7 October 2012 <http://www.smcyclo.com/uploads/product/files/file-84.pdf>.

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