The invention generally relates to lifting equipment, more specifically to a bank-run container lifter which is able to lift two 40 feet containers at a time.
The increasing requirements of container transportation in the world and the continuous increment of the handling capacity of the container port put forward new and increased demands on the technical equipment for loading and unloading containers, and an urgent need for the design and development of high efficient bank-run container load and unload systems to meet the demand of the lifter productivity needed by the larger ships.
Currently, lifters are only able to lift only one 40 feet container at a time and its efficiency is low.
An object of the invention is to provide a type of the container lifter which is able to lift two 40 feet containers at a time and to improve the low efficiency of the container lifter of the prior art which is able to lift only a single 40 feet container at a time.
The technical scheme of the invention is as follows:
A type of the container lifter which is able to lift two 40 feet container at a time comprises a crane main lifting mechanism and rope winding system, a crane and drive cylinder, and pulleys arranged at the crane upper frame and a lifting pulley group arranged on a carrier, it also includes a second crane lifting mechanism, a second crane and drive cylinder, the pulleys arranged at a second crane upper frame, a second crane lifting pulley group arranged on the carrier, and the main lifting wire rope winding system by which the first crane main lifting mechanism and the second crane main lifting mechanism being separate respectively are parallelly united; said first crane main lifting mechanism and the second crane main lifting mechanism are respectively equipped with a barrel, a crane lifting mechanism motor, a brake and a crane redection gear box, the two sets of the crane lifting mechanisms are synchronously operated, the approach and separation of the two cranes are achieved by the first crane and the second crane using a connection cylinder.
The highly efficient container load and unload equipment of the invention is able to lift two 40 feet containers at a time so that the efficiency of the load and unload operation is increased by at least 60% compared to the prior art, thus the high repayment is obtained with correspondingly less increase in the equipment cost, a beneficial result is obtained, also it has the wider applicable utility. The container lifter of the invention lifts two 40 feet containers at a time, and has overcome the following eight difficulties:
1. the change of the gap between two 40 feet containers;
2. the arrangement of two 40 feet containers;
3. the arrangement of two 40 feet containers in the length direction is a slightly trapezoid form;
4. the position deviation of two 40 feet containers in the length direction;
5. one end of the two 40 feet container being higher than another end of same (i.e. longitudinal slope);
6. the top planes of two 40 feet container are not horizontal, there is a angle between the top plane and a horizontal plane;
7. the two 40 feet containers are not aligned parallel with the main guided way of the container lifter;
8. the overloading of two 40 feet containers.
The invention uses two separate cranes, the functions of separation, differential in height, displacement, included angle and releasing of the two cranes are achieved by the cylinders, also the cylinders can be separated so that the separate operation of the two cranes can be obtained.
Each 40 feet container is driven by a separate main lifting mechanism and the wire rope winding system. The separation of the two 40 feet containers can be achieved by the cylinders connecting the two canes.
Reference to FIGS. 1 to 5, an example of the container lifter of the invention being able to lift two 40 feet container at a time is equipped with two separate sets of crane main lifting mechanisms and the wire rope winding system, as well as two cranes and drive cylinders connected mutually each other. The pulleys are arranged at a crane upper frame, as shown in
As shown in
The two sets of crane main lifting mechanisms 7,8 are synchronously run by electrical synchronization or by mechanical synchronization so that the two sets of redection gear boxs are united as a set in order to operate two 40 feet containers. A single 40 feet container of 60 t under the crane is operated or two 20 feet containers of 60 t under the crane are operated when the weight of two 40 feet containers exceeds the designed value. The operation of a single 40 feet container of 60 t under the crane or the operation of two 20 feet containers of 60 t under the crane may be achieved by the separate individual use of the two sets of the main lifting mechanisms. If a redection gear box is shared between the two sets of main lifting mechanisms, the output of the redaction gear box and power mechanism is directed only to a set of the winding barrel.
As shown in
The two 20 feet separable cranes and the upper frame are arranged at the water side and land side respectively, the two separable cranes are sphere-articulatedly connected by two parallel cylinders so as to achieve the approach and separation of the two cranes. The centre distance between the two cranes is 2500 mm when the two cranes are closed, the centre distance is 3700 mm when the two cranes are separated, thus the range of the gap between the two containers is from 0 to 1200 mm. The staggered position of the two cranes in the length direction is attained by the push of another cylinder, the range of the staggered position is from 0 to 400 mm.
The loading and unloading of two 40 foot containers in any position can be achieved by fast releasing of the connection of the cylinders of the two cranes, also one of the two 20 feet cranes can by lifted to its highest position i.e. in the unused position. The loading and unloading of a 40 feed container with 60 t weight or two 20 feet containers with 60 t can be achieved by another crane.
The fixing of containers to the two 40 feet container cranes is performed sequentially, i.e. at first the fixing and locking of containers by the first crane is performed, then the fixing and locking of containers by the second crane is performed. After the fixing and locking of the two 40 feet containers is confirmed, the two 40 feet containers are lifted and run at same time. If the gap between two 40 feet containers accidentally exceeds the stretch and contraction range of the cylinder then, at first the fixing of a container by one crane is performed, then the carrier is run so that the fixing of a container by the second crane can be operated, thus larger flexibility can be achieved.
If the weight of two 40 feet container exceeds 80 t and the operation of the two 40 feet containers can not be carried out at same time, the respective crane must be lifted and fixed to the highest position by the lifting mechanism, the operation of two 20 feet containers with 60 t weight or a single 40 feet container with 60 t weight may be carried out by another set of main lifting mechanism.
With reference to
As shown in
Number | Date | Country | Kind |
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03141943.7 | Jul 2003 | CN | national |
This application is a continuation of International Application No. PCT/CN2004/000825, filed on Jul. 19, 2004, which claims priority to Chinese Patent Application No. 03141943.7, filed Jul. 30, 2003, the contents of which are incorporated in their entirety by reference herein.
Number | Date | Country | |
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Parent | PCT/CN04/00825 | Jul 2004 | US |
Child | 11342309 | Jan 2006 | US |