The application of quartz crystal microbalance (QCM) as a device to measure the rheology of colloidal suspensions has been studied. Using a commercial dip-probe QCM, the yield stress of magnesium hydroxide suspensions has been correlated to the resonance properties of a 5 MHz AT-cut quartz sensor. A stable resonance baseline was first established in air before submerging the sensor into the colloidal suspension. The response of the sensor resistance was shown to correlate to changes in the suspension yield stress, while the frequency response was found to result from more complex contact mechanics and suspension viscoelasticity contributions. Since the QCM is a relatively simple technique with no mechanically moving parts, this approach off...
The objective of this work is to understand the relationship between the rheological properties of c...
This work proposes the use of quartz crystal microbalances (QCMs) as a method to analyze and charact...
The research is to develop techniques to improve disease detection using a Quartz Crystal Microbalan...
The application of quartz crystal microbalance (QCM) as a device to measure the rheology of colloida...
The application of quartz crystal microbalance (QCM) as a device to measure the rheology of colloida...
The application of quartz crystal microbalance (QCM) as a device to measure the rheology of colloida...
The quartz crystal microbalance (QCM) is an ultra-sensitive weighing device. It consists of a piezoe...
The resonance properties, frequency and half-band-half-width, of a quartz crystal microbalance (QCM)...
The resonance properties, frequency and half-band-half-width, of a quartz crystal microbalance (QCM)...
The resonance properties, frequency and half-band-half-width, of a quartz crystal microbalance (QCM)...
This work proposes the use of quartz crystal microbalances (QCMs) as a method to analyze and charact...
Advances in sensors have revolutionized biomedical engineering, having an extreme affinity for speci...
Advances in sensors have revolutionized biomedical engineering, having an extreme affinity for speci...
The objective of this work is to understand the relationship between the rheological properties of c...
Advances in sensors have revolutionized the biomedical engineering field, having an extreme affinity...
The objective of this work is to understand the relationship between the rheological properties of c...
This work proposes the use of quartz crystal microbalances (QCMs) as a method to analyze and charact...
The research is to develop techniques to improve disease detection using a Quartz Crystal Microbalan...
The application of quartz crystal microbalance (QCM) as a device to measure the rheology of colloida...
The application of quartz crystal microbalance (QCM) as a device to measure the rheology of colloida...
The application of quartz crystal microbalance (QCM) as a device to measure the rheology of colloida...
The quartz crystal microbalance (QCM) is an ultra-sensitive weighing device. It consists of a piezoe...
The resonance properties, frequency and half-band-half-width, of a quartz crystal microbalance (QCM)...
The resonance properties, frequency and half-band-half-width, of a quartz crystal microbalance (QCM)...
The resonance properties, frequency and half-band-half-width, of a quartz crystal microbalance (QCM)...
This work proposes the use of quartz crystal microbalances (QCMs) as a method to analyze and charact...
Advances in sensors have revolutionized biomedical engineering, having an extreme affinity for speci...
Advances in sensors have revolutionized biomedical engineering, having an extreme affinity for speci...
The objective of this work is to understand the relationship between the rheological properties of c...
Advances in sensors have revolutionized the biomedical engineering field, having an extreme affinity...
The objective of this work is to understand the relationship between the rheological properties of c...
This work proposes the use of quartz crystal microbalances (QCMs) as a method to analyze and charact...
The research is to develop techniques to improve disease detection using a Quartz Crystal Microbalan...