A method is proposed for real-time process monitoring for expanded polystyrene (EPS) injection molding systems. The method employs measurement of two variables: vacuum pressure in the EPS supply hose and phase difference between two points along an acoustic standing wave generated within the EPS flow path. High-speed videography is utilized as a secondary means of monitoring the injection molding process. Video data are correlated with pressure and acoustic data to substantiate those variables’ validity as indicators of intended molding system performance. Data show recorded parameter curve shapes to be indicative of key injection molding milestone events, such as valve timing and changes in flow regime.

References

1.
Schellenberg
,
J.
, and
Wallis
,
M.
,
2010
, “
Dependence of Properties of Expandable Polystyrene Particle Foam on Degree of Fusion
,”
J. Appl. Polym. Sci.
,
115
(
5
), pp.
2986
2990
.
2.
Chang
,
R. R.
,
Chiang
,
T. H.
,
Tseng
,
Y. C.
, and
Su
,
C. Y.
,
2011
, “
Normalization Process Technique of Composite Foam-Filled Sandwich Wind Turbine Blades
,”
Procedia Eng.
,
14
, pp.
1988
1995
.
3.
Wall
,
K. F.
,
Bhavnani
,
S. H.
,
Overfelt
,
R. A.
,
Sheldon
,
D. S.
, and
Williams
,
K.
,
2003
, “
Investigation of the Performance of an Expandable Polystyrene Injector for Use in the Lost-Foam Casting Process
,”
Metall. Mater. Trans. B
,
34
(
6
), pp.
843
851
.
4.
Matson
,
D. M.
,
Venkatesh
,
R.
, and
Biederman
,
S.
,
2007
, “
Expanded Polystyrene Lost Foam Casting—Modeling Bead Steaming Operations
,”
ASME J. Manuf. Sci. Eng.
,
129
(
2
), pp.
425
434
.
5.
Smith
,
B. V.
, and
Biederman
,
S.
,
2000
, “
Examining Lost Foam's ‘White Side’
,”
Mod. Cast.
,
90
(
8
), pp.
30
34
.
6.
Kaczorowski
,
R.
,
Just
,
P.
, and
Pacyniak
,
T.
,
2013
, “
Test Bench for Analyzing the Lost Foam Process
,”
Arch. Foundry Eng.
,
13
(
1
), pp.
57
62
.
7.
Biederman
,
S.
,
Zhao
,
Q.
, and
Matson
,
D. M.
,
2006
, “
High-Speed Video Analysis of Pattern Filling and Fusion in the Molding Operation of the Lost Foam Casting Process
,”
Trans. Am. Foundry Soc.
,
114
, pp.
913
920
.
8.
Lye
,
S. W.
, and
Yeong
,
H. Y.
,
1992
, “
Computer-Assisted Mould Design for Styrofoam Products
,”
Comput. Ind.
,
18
(
2
), pp.
117
126
.
9.
Hahn
,
O.
,
Fahrig
,
H. M.
, and
Wappelhorst
,
M.
,
1997
, “
Structure of an Information System for EPS Patternmaking During the Lost Foam Process
,”
Giesserei
,
84
, pp.
15
22
.
10.
Mencel
,
D. C.
,
Venkatesh
,
R.
, and
Matson
,
D. M.
,
2006
, “
Analyzing Fill Gun Transient Activity During Expanded Polystyrene Pattern Fill Operations
,”
Trans. Am. Foundry Soc.
,
114
, pp.
955
964
.
11.
Magarian
,
J. N.
,
2007
, “
Real-Time Digital Characterization of Two-Phase Flow During Expandable Polystyrene (EPS) Pattern Molding for the Lost Foam Casting Process
,” M.S. dissertation,
Tufts University
,
Medford, MA
.
12.
Biederman
,
S.
,
Zhao
,
Q.
, and
Matson
,
D. M.
,
2006
, “
Filling the Void in Lost Foam Patterns
,”
Mod. Cast.
,
96
(
12
), pp.
42
44
.
13.
Kalpakjian
,
S.
, and
Schmid
,
S. R.
,
2008
,
Manufacturing Processes for Engineering Materials
, 5th ed.,
Pearson Education
,
Upper Saddle River, NJ
, pp.
223
225
.
14.
Mencel
,
D. C.
, and
Matson
,
D. M.
,
2007
, “
Analytically Modeling Dynamic Bead Front Growth During the Fabrication of Expandable Polystyrene Patterns
,”
Trans. Am. Foundry Soc.
,
115
, pp.
911
922
.
15.
Yan
,
Y.
,
1996
, “
Mass Flow Measurement of Bulk Solids in Pneumatic Pipelines
,”
Meas. Sci. Technol.
,
7
(
12
), pp.
1687
1706
.
16.
Gajewski
,
J. B.
,
2013
, “
Accuracy of Cross Correlation Velocity Measurements in Two-Phase Gas–Solid Flows
,”
Flow Meas. Instrum.
,
30
, pp.
133
137
.
17.
Song
,
D.
,
Peng
,
L.
,
Lu
,
G.
,
Yang
,
S.
, and
Yan
,
Y.
,
2009
, “
Digital Image Processing Based Mass Flow Rate Measurement of Gas/Solid Two-Phase Flow
,”
J. Phys.: Conf. Ser.
,
147
(
1
), p.
012048
.
18.
Wang
,
Q.
,
Yang
,
C.
,
Wang
,
H.
,
Cui
,
Z.
, and
Gao
,
Z.
,
2013
, “
Online Monitoring of Gas–Solid Two-Phase Flow Using Projected CG Method in ECT Image Reconstruction
,”
Particuology
,
11
(
2
), pp.
204
215
.
19.
Yian
,
L.
,
Zhiyao
,
H.
,
Haifeng
,
J.
, and
Haiqing
,
L.
,
2008
, “
Solids Volume Fraction Measurement of Gas–Solid Two-Phase Flow Based on Terahertz Time-Domain Spectroscopy Technique
,”
2008 IEEE Instrumentation and Measurement Technology Conference Proceedings
, pp.
2141
2145
.
20.
Xu
,
G.
,
Liang
,
C.
,
Chen
,
X.
,
Liu
,
D.
,
Xu
,
P.
,
Shen
,
L.
, and
Zhao
,
C.
,
2013
, “
Investigation on Dynamic Calibration for an Optical-Fiber Solids Concentration Probe in Gas–Solid Two-Phase Flows
,”
Sensors
,
13
(
7
), pp.
9201
9222
.
21.
Kinsler
,
L. E.
,
Frey
,
A. R.
,
Coppens
,
A. B.
, and
Sanders
,
J. V.
,
2000
,
Fundamentals of Acoustics
, 4th ed.,
Wiley
,
New York
.
22.
Epstein
,
P. S.
, and
Carhart
,
R. R.
,
1953
, “
The Absorption of Sound in Suspensions and Emulsions. I. Water Fog in Air
,”
J. Acoust. Soc. Am.
,
25
(
3
), pp.
553
565
.
23.
Allegra
,
J. R.
, and
Hawley
,
S. A.
,
1972
, “
Attenuation of Sound in Suspensions and Emulsions: Theory and Experiments
,”
J. Acoust. Soc. Am.
,
51
(
5B
), pp.
1545
1564
.
24.
Davis
,
M. C.
,
1979
, “
Attenuation of Sound in Highly Concentrated Suspensions and Emulsions
,”
J. Acoust. Soc. Am.
,
65
(
2
), pp.
387
390
.
25.
Callister
,
W. D.
,
2003
,
Materials Science and Engineering: An Introduction
, 6th ed.,
Wiley
,
New York
, pp.
34
35
.
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