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Therefore, compressive pressure during coaptation determines the seal quality.
Precision measurement and inspection of O-rings play a vital role in seal quality control.
The suggested method showed a 90% match between the actual and predicted seal quality.
Key factors affecting the sealing process and seal quality are discussed based on practical industrial applications.
We also found that both maximum coaptation temperature and vessel shrinking correlated with the seal quality.
The burst pressure of the resulting seal was determined as an indicator of seal quality.
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The response to sealing quality control tests of anodic films obtained in oxalic and sulphuric acid baths has been compared.
Adhesion strength between photosensitive layers and the surface of anodized aluminum has greatly increased with improvement of sealing quality.
Temperature, sealing time, pH is optimized in terms of chemical/mechanical properties, measured by Vickers hardness test, Tafel analysis, and sealing quality test based on ASTM-B680.
Cold sealing procedure has been applied to enhance the sealing quality of OPC drum and the result showed that cold sealing method is more effective than hot sealing when the pore size is extremely small.
This work compares the sealing process in TEA and in de-ionised water using electrochemical impedance spectroscopy (EIS), standard tests for the study of the sealing quality and weight change measurements.
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