Device and method for handling containers with a mechanical braking device
A technology for braking equipment and processing containers, which is applied in mechanical equipment, liquid processing, brake actuators, etc., and can solve problems such as servo motor compensation and excessive torque fluctuations
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Embodiment 1
[0098] Figure 1a Shown is a compressed air brake or brake system 4 , 5 with a first control valve V1a, in particular a five-way, two-position valve V1a, as is known in the art. Wherein, when the braking process starts, the first control valve V1a is fully opened for braking by means of a quick relief valve, in which case the expansion of at least one elastic element causes a braking force, and the at least one elastic element acts on a braking force. dish( Figure 1a not shown) or a brake drum ( Figure 1a not shown) thus utilizing a brake shoe from a ( Figure 1a not shown) braking force.
[0099] It is known that the first number in a directional control valve indicates the number of connection ports of the directional control valve, while the second number indicates the number of switching positions of the directional control valve.
[0100] Figure 1a The valve V1a shown in can not be adjusted, so when considering the current situation such as the speed of the carrier, the ...
Embodiment 2
[0102] Such as Figure 1b Shown is the switching diagram of the braking device 4, 5 for braking the rotational speed of the carrier according to embodiment 2, which can be used in the device of the present invention to achieve a linear deceleration of the rotational speed for at least a certain period of time process. In this embodiment, the valve V1a shown in FIG. 1 is replaced by two valves V1b and V2b. In particular, different pressures P1 and P2 act on the two three-way two-position valves V1b and V2b respectively, so different pressure values are set in the respective valves. This means that the valve V1b allows a pressure which differs in value from the valve V2b, such as the operating pressure value P1 (gaseous medium such as compressed air or hydraulic medium) to be transmitted in the direction of the corresponding storage zone. The two valves V1b and V2b can thus be switched, e.g. in an alternating manner, ie offset from each other in time, by means of a control d...
Embodiment 3
[0104] Figure 1c The switching schematic diagram of Fig. 1 also shows the application of different pressures of the present invention, in this example two valves are used which can be switched independently and can have different pressure values at least part of the time, wherein the system shown in Example 3 The moving equipment 4 and 5 are replaced by two five-way two-position valves V1c and V2c Figure 1b The three-way two-position valves V1b and V2b shown in .
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