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Published byNorman Sparks Modified over 9 years ago
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Team West Pharmaceutical Sponsor: Tim Miller Adviser: Dr. Harris
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Sponsor and Business Leadership in Drug Administration Systems and Components Project Focus: rubber manufacturing for various rubber device components
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The Problem Rubber is being tested far too late in the manufacturing process and takes too long Results in excessive material waste, as production continues with wrong formulations
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Project Scope Create a rapid, at-line testing method to determine whether a rubber compound was properly mixed and will cure correctly.
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Technical Basis Focus on Rubber Production Scorch time, cure rate, performance, viscosity Factors relate to quality of batch
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Questions?
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Wants/Needs/Constraints Wants –Simple Readout –Cost Effective –Automated Needs –Accuracy of Prediction –Fast Testing –Minimize amount of sample destroyed Constraints –OSHA –FDA
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Key Metrics MetricTarget Uncertainty± 2σ Time< 10 min Weight Destroyed< 1/2 lb
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Selected Concept At-Line Viscosity Compression Test
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Supporting Theory
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Preliminary Testing Tests were performed in the CCM to verify testing method using the Instron 5567
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Design Determine Viscosity via compression test
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Fabrication The device was built from a combination of purchased motor components and machined framework
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Calibrations and Programming Labview & GalilTools –Automatically converts and sends appropriate commands to the controller –Allows user to set number of data points –Safeguard to power off motors before critical loads are reached.
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Video
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Results and Statistical Analysis SampleViscosity (lb-s/in 2 ) A10.0055 A20.0052 A30.0055 A40.0056 A50.0058 A60.0059 Standard Deviation = 2.48×10 -4 (lb-s/in^2) Viscosity factor= (w^4)*8*(1/(h^3))*dh/dt
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Meeting Key Metrics
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Deliverables Prototype with ability to perform the desired tests Labview program for controlling the tests Method for performing tests and gaining useful data
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Path Forward More Calibration Testing Develop a more polished program Build Database of viscosity data The device needs to be a bit more refined, with proper electrical enclosures
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Cost Summary Sponsor given range: $5,000 Actual Costs: $4,851.67 –Zaber: Stepper Motors-> $1222.00 –McMaster Carr and Materials-> $733.67 –Galil: Controller-> $1817.00 –Omega: Load Cell->$1079.00
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Thank You Comments/Questions?
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