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Various design parameters, such as height and diameter of pin-fin and width of pitch between fins are explored by experiment.
Various design parameters, such as the height and diameter of pin-fin and the width of pitch between fins, are explored in the experiment.
Firstly, the combination effects of structure parameters (diameter of pin-fin D1, depth of dimple δ and stream-wise spacing S) on flow structure and heat transfer were investigated in detail.
The stiffness and stability of a monolateral construct depends on the diameter of the pins, the numbers of pins in each segment of fixation, the use of pins in different planes, the diameter of the sidebar and the placement of the sidebar [6, 7, 8].
However this cannot be achieved by simply reducing the size of the pilot drill hole and increasing the major diameter of the pin; such a situation can lead to micro fractures, or crack propagation when the pin is forced into a small pilot hole.
Depending on the age of the child, the diameter of the pin used was 1.2 2.0 mm.
This was achieved by correlating spacing of PTFE reservoirs with diameter of the pin.
The diameter of a pin pile could be reduced due to soil encroachment into the hole.
At the same time, the incisions should only be as large as the diameter of the pin.
The drill bit must be selected according to the diameter of the pin, the shape of the thread and bone quality.
The design variables including the short width coefficient, the diameter of the pin, the width of the cycloid gear, etc. are defined.
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