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7.12.9 Travel and traverse motions

The travel and transverse motions, where power driven, shall be provided with an in service brake, and where limiting devices are provided to control the travel motion, the brake shall be automatically applied by such limits. Where the crane is not cabin-controlled, the brake shall be applied automatically. Where the crane is cabin-controlled, the brake shall be capable of being locked on.

For outdoor cranes, where automatically applied in service brake or the wheel-to-rail frictional forces, assuming a coefficient of friction between wheel and rail of 0.15, are insufficient to restrain the crane or part of the crane when subjected to out of service forces, e.g., wind forces, then an out of service brake shall be provided. Such brakes shall be automatic for cranes with the dead weight of the structure exceeding 20 t and shall not be applied until the crane is at rest. Where the driving power is transmitted through a hydraulic coupling or other non-positive medium, the brake shall be located on the driven side of such medium. The out of service brake shall be capable of restraining movement assuming a coefficient of friction between wheel and rail of 0.15, or between hardened serrated pads and rail of 0.25.

Outdoor cranes shall be provided with an out of service brake/anchorage system where the in service brake(s) is insufficient to restrain the crane or part of the crane when subjected to out of service forces, e.g., wind forces. Appropriate Parts of the AS 1418 series may provide detailed requirements for out of service brakes.

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The Tool holder field show the status of the tool holder. It shows the status of the inputs that senses the tool holder positions. These sensors are located at the pneumatic cylinder that moves the tool holder.

This field also shows the status of the outputs that operate the pneumatic cylinder.

Booth sensors must not be activated at the same time and the sensors must represent the real state of the tool holder.

When the tool holder is not moving, the outputs are turned OFF.

The Arm Changer field shows the status of the arm. There are 2 inputs related to the position of the changer arm.

When the arm is at rest position, the input ¡°Changer arm home¡± will be on. The signal ¡°Stop changer arm¡± will be on only when is reached some position of interest to do something. This signal is most required for arm changing stage sequence.

The output shows the status of the output that drives the motor of the changer arm.

The ATC field shows the status of the signals related to the magazine movement and position.

The inputs are related to the pocket 1 detection and position counting. There is also a numeric field that shows the actual position known by the PLC controller.

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5.7 With some materials, a critical width of specimen may be found below which specimens will appear ductile, as evidenced by considerable drawing or necking down in the region behind the notch and by a relatively high-energy absorption, and above which they will appear brittle as evidenced by little or no drawing down or necking and by a relatively low-energy absorption. Since these methods permit a variation in the width of the specimens, and since the width dictates, for many materials, whether a brittle, low-energy break or a ductile, high energy break will occur, it is necessary that the width be stated in the speci?cation covering that material and that the width be reported along with the impact resistance. In view of the preceding, one should not make comparisons between data from specimens having widths that differ by more than a few mils.

5.8 The type of failure for each specimen shall be recorded as one of the four categories listed as follows:

C= Complete Break¡ªA break where the specimen separates into two or more pieces. H= Hinge Break¡ªAn incomplete break, such that one part of the specimen cannot support itself above the horizontal when the other part is held vertically (less than 90¡ã included angle). P= Partial Break¡ªAn incomplete break that does not meet the de?nition for a hinge break but has fractured at least 90 % of the distance between the vertex of the notch and the opposite side.

NB = Non-Break¡ªAn incomplete break where the fracture extends less than 90 % of the distance be- tween the vertex of the notch and the opposite side.

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