m arch 3 1 : august n ovember january- april team 25 ... · document rubrics 95% satisfactory 98%...

1
ME, ECE, BE Capstone Design Programs To Predict To Design To Perform Budget Materials: $749.96 Instrumentation: $1353.45 Others: $381.84 Total: $2485.25 Team 25: Rotary Kiln Training Tool John Darbonne, Jacob Lee, Jaron Thurnau, Gregory Vied Adviser: Dr. Shengmin Guo Objectives To create a scaled model of the existing kiln for a better method of training employees Show shell manipulations and adjustments Include a scaling document to estimate resulting movements from supporting roller adjustments Background Phillips 66 Westlake facility uses a rotary kiln to process petroleum byproducts Adjustment methods are used to correct misalignment to prevent mechanical damage Current training methods are ineffective and/or costly Customer Requirements Visually train maintenance personnel on alignment discrepancies Hands-on interaction with representation of roller adjustment Educational Points Testing Objectives Handle and Latch Mounting Points: strength of mounts Fiberglass Tensile Test: robustness of case Shell Deformation Document Rubrics: usefulness and understanding Temperature: overheating of electronics Electronics Measuring Tools Casing Aluminum Shell Fasteners Others Safety Considerations Pinch points Rotating Machinery Heavy lifting Laser brightness Electrical shock Timeline (Major Milestones) Photo above (left) shows the side view deflection on the fiberglass. Pictured right is the front view. Left photo shows the tensile machine used. Right photo is the sample specimen after failure. Sponsor: Kelly Goudeau Phillips 66 April 24: End Tes ng, Opera on Manual, and Scaling Document February 15: Begin Opera on Manual and Scaling Document March 5: Begin Assembly January 20: Begin Manufacturing January 31: End Purchasing December 15: Begin Purchasing Parts April 17: End Assembly April 1: End Manufacturing September 11: Begin Engineering Specifica ons December 1: Begin Tes ng November 23: End Engineering Analysis August September March April May November December January- February October October 30: Begin CAD Drawings October 15: Begin Materials Selec on November 13: End Engineering Specifica ons November 7: End Materials Selec on October 5: Begin Engineering Analysis May 6: Final Report Due March 31: End CAD Drawings 1.995 1.997 1.999 2.001 2.003 2.005 2.007 2.009 0 deg 45 deg 90 deg 135 deg 180 225 270 315 Shell Deforma on 3 13 17 28 Engineering Specifications Constraint Goal Actual Value Weight ≤ 50 lbs 57 lbs Cost ≤$2500 $2485.25 Accuracy 5% of Travel .1% of Travel Set Up Time 5 min 2.5 min Size 8ft^2 4.5ft^2 Pictured above is the actual kiln at Phillips 66. Testing Results Desired Values Experimental Values Mounting Weight >40 lbf At least 46.3 lbf Document Rubrics 95% satisfactory 98% satisfactory Temperature <122°F 82.4°F Distance From Top End (in.) Radial Distance (in.) Pictured above is the side view of the model. The photo on the far right shows the front view displaying the roller and carriage assemblies. Near right is a picture of the prototype 3D drawing.

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Page 1: M arch 3 1 : August N ovember January- April Team 25 ... · Document Rubrics 95% satisfactory 98% satisfactory Temperature

ME, ECE, BE Capstone Design Programs

To Predict To Design To Perform

Budget• Materials: $749.96

• Instrumentation: $1353.45

• Others: $381.84

• Total: $2485.25

Team 25: Rotary Kiln Training ToolJohn Darbonne, Jacob Lee, Jaron Thurnau, Gregory Vied

Adviser: Dr. Shengmin Guo

Objectives• To create a scaled model of the existing kiln for a better

method of training employees

• Show shell manipulations and adjustments

• Include a scaling document to estimate resulting

movements from supporting roller adjustments

Background• Phillips 66 Westlake facility uses a rotary kiln to process

petroleum byproducts

• Adjustment methods are used to correct misalignment to

prevent mechanical damage

• Current training methods are ineffective and/or costly

Customer Requirements• Visually train maintenance personnel on alignment

discrepancies

• Hands-on interaction with representation of roller

adjustment

Educational Points

Testing Objectives• Handle and Latch Mounting Points: strength of mounts

• Fiberglass Tensile Test: robustness of case

• Shell Deformation

• Document Rubrics: usefulness and understanding

• Temperature: overheating of electronics

Electronics

Measuring ToolsCasing

Aluminum

ShellFasteners Others

Safety Considerations• Pinch points

• Rotating Machinery

• Heavy lifting

• Laser brightness

• Electrical shock

Timeline (Major Milestones)

Photo above (left) shows the side

view deflection on the fiberglass.

Pictured right is the front view.

Left photo shows the tensile

machine used. Right photo is

the sample specimen after

failure.

Sponsor: Kelly Goudeau Phillips 66

April24:EndTes ng,Opera onManual,andScalingDocument

February15:BeginOpera onManualandScalingDocument

March5:BeginAssembly

January20:BeginManufacturing

January31:EndPurchasing

December15:BeginPurchasingParts

April17:EndAssembly

April1:EndManufacturing

September11:BeginEngineeringSpecifica ons

December1:BeginTes ng

November23:EndEngineeringAnalysis

AugustSeptember

MarchAprilMay

NovemberDecember

January-February

October

October30:BeginCADDrawings

October15:BeginMaterialsSelec on

November13:EndEngineeringSpecifica ons

November7:EndMaterialsSelec on

October5:BeginEngineeringAnalysis

May6:FinalReportDue

March31:EndCADDrawings

1.995

1.997

1.999

2.001

2.003

2.005

2.007

2.009

0deg

45deg

90deg

135deg

180

225

270

315

ShellDeforma on

3

13

17

28

Engineering SpecificationsConstraint Goal Actual Value

Weight ≤ 50 lbs 57 lbs

Cost ≤$2500 $2485.25

Accuracy 5% of Travel .1% of Travel

Set Up Time

5 min 2.5 min

Size 8ft^2 4.5ft^2

Pictured above is the actual kiln at Phillips 66.

Testing Results

Desired Values Experimental Values

Mounting Weight >40 lbf At least 46.3 lbf

Document Rubrics 95% satisfactory 98% satisfactory

Temperature <122° F 82.4° F

Distance From

Top End (in.)

Radial

Distance

(in.)

Pictured above is the side view of the

model. The photo on the far right shows

the front view displaying the roller and

carriage assemblies. Near right is a

picture of the prototype 3D drawing.