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The materials used are of a concrete cylinder, a rubber sample and particulate materials which are sands of different particle size and shape classification.
Simultaneous bite measurements using a multiple-point sheet sensor demonstrated that the bite force, active pressure and maximum pressure point were greater for the harder silicone rubber sample.
The effect of the parameters of interest, with the value of the rate of heating and the thickness of the rubber sample, is determined.
A series of in situ synchrotron X-ray diffraction experiments are performed during the stretching of weakly and highly vulcanized carbon black (CB), silica and grafted silica filled natural rubber sample (NR).
Thus, the rate of heating is faster at the beginning of the process when the rubber sample is heated up to a temperature where the reaction starts, and becomes lower within the temperature range where the reaction develops.
Using a high-flux synchrotron microbeam, WAXD patterns with less than 20 ms exposure time were acquired while the notched rubber sample was subjected to cyclic dynamic stretching at a frequency of 1 Hz, similar to the loading conditions in tear fatigue experiments.
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The modulus of rubber samples decreased considerably under swollen conditions.
Filled natural rubber samples were slid against optically smooth CaF2 counter-samples.
They were instructed to compare the hardness of these two rubber samples and indicate which was harder (right or left).
In parallel, LIF spectroscopy was explored as a tool for detection of biofilms on silicon rubber samples.
Metal rubber samples made with nitinol constitutive material are fabricated and tested under different quasi-static loading and temperature conditions.
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