WO2006105700A1 - Mecanisme de levage differentiel a deux tambours pour portique a conteneurs capable d’elinguer deux conteneurs de 40 pieds cote quai - Google Patents

Mecanisme de levage differentiel a deux tambours pour portique a conteneurs capable d’elinguer deux conteneurs de 40 pieds cote quai Download PDF

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Publication number
WO2006105700A1
WO2006105700A1 PCT/CN2005/001740 CN2005001740W WO2006105700A1 WO 2006105700 A1 WO2006105700 A1 WO 2006105700A1 CN 2005001740 W CN2005001740 W CN 2005001740W WO 2006105700 A1 WO2006105700 A1 WO 2006105700A1
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Prior art keywords
differential
reducer
reel
motor
shaft
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PCT/CN2005/001740
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English (en)
French (fr)
Inventor
Jianguo Shan
Baohua Zhang
Original Assignee
Shanghai Zhenhua Port Machinery Co., Ltd.
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Publication date
Application filed by Shanghai Zhenhua Port Machinery Co., Ltd. filed Critical Shanghai Zhenhua Port Machinery Co., Ltd.
Priority to AU2005327459A priority Critical patent/AU2005327459B2/en
Publication of WO2006105700A1 publication Critical patent/WO2006105700A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66CCRANES; LOAD-ENGAGING ELEMENTS OR DEVICES FOR CRANES, CAPSTANS, WINCHES, OR TACKLES
    • B66C1/00Load-engaging elements or devices attached to lifting or lowering gear of cranes or adapted for connection therewith for transmitting lifting forces to articles or groups of articles
    • B66C1/10Load-engaging elements or devices attached to lifting or lowering gear of cranes or adapted for connection therewith for transmitting lifting forces to articles or groups of articles by mechanical means
    • B66C1/12Slings comprising chains, wires, ropes, or bands; Nets
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66DCAPSTANS; WINCHES; TACKLES, e.g. PULLEY BLOCKS; HOISTS
    • B66D1/00Rope, cable, or chain winding mechanisms; Capstans
    • B66D1/02Driving gear
    • B66D1/14Power transmissions between power sources and drums or barrels
    • B66D1/22Planetary or differential gearings, i.e. with planet gears having movable axes of rotation
    • B66D1/225Planetary or differential gearings, i.e. with planet gears having movable axes of rotation variable ratio or reversing gearing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66CCRANES; LOAD-ENGAGING ELEMENTS OR DEVICES FOR CRANES, CAPSTANS, WINCHES, OR TACKLES
    • B66C17/00Overhead travelling cranes comprising one or more substantially horizontal girders the ends of which are directly supported by wheels or rollers running on tracks carried by spaced supports
    • B66C17/06Overhead travelling cranes comprising one or more substantially horizontal girders the ends of which are directly supported by wheels or rollers running on tracks carried by spaced supports specially adapted for particular purposes, e.g. in foundries, forges; combined with auxiliary apparatus serving particular purposes
    • B66C17/20Overhead travelling cranes comprising one or more substantially horizontal girders the ends of which are directly supported by wheels or rollers running on tracks carried by spaced supports specially adapted for particular purposes, e.g. in foundries, forges; combined with auxiliary apparatus serving particular purposes for hoisting or lowering heavy load carriers, e.g. freight containers, railway wagons
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66CCRANES; LOAD-ENGAGING ELEMENTS OR DEVICES FOR CRANES, CAPSTANS, WINCHES, OR TACKLES
    • B66C19/00Cranes comprising trolleys or crabs running on fixed or movable bridges or gantries
    • B66C19/002Container cranes

Definitions

  • the present invention relates to a hoisting mechanism for a crane, and more particularly to a two-cylinder differential hoisting mechanism for a dual 40-foot shore container crane. Background technique
  • the main hoisting mechanism of the prior art crane only has the lifting and lowering work of one spreader, so that only one 40-foot container or two 20-foot containers can be hoisted at a time, which is not only limited in production efficiency, but also cannot Meet the needs of the market. Summary of the invention
  • the object of the present invention is to provide a two-cylinder differential hoisting mechanism for a double 40-foot shore container crane, which enables a lifting mechanism of a motor and a speed reducer to lift two 40 or 45 foot boxes at a time (or 4).
  • a 20-foot container and not only can achieve the simultaneous operation of double spreaders and single spreader operations, but also improve the loading and unloading efficiency of more than 60%, so as to adapt to the growing demand for loading and unloading efficiency in the ship transportation industry.
  • a two-roll differential lift mechanism for a dual 40-foot shore container crane comprising: a motor, a reducer coupled to the motor and its high speed brake, a reel disposed at the output of the reducer, and a reel connected to the reel Brake; characterized by:
  • the speed reducer connected to the output end of the motor uses a planetary differential speed reducer having a high speed input shaft, a low speed output shaft and a differential output shaft for controlling power distribution; the motor output The shaft is connected with the high speed input shaft of the planetary differential reducer, and at least one high speed brake is arranged on the high speed input shaft of the planetary differential reducer;
  • the reel is disposed as a land side reel and a sea side reel, and the two reels are respectively connected to the two low speed output shafts of the planetary differential speed reducer; at least one reel brake is disposed on each reel; Also includes: A differential shaft brake for controlling the power distribution of the planetary differential speed reducer, the differential shaft brake connection being disposed on the differential output shaft of the planetary differential speed reducer.
  • the land-side reel and the sea-side reel are respectively four-rope reels having four ropes;
  • the land side four-rope reel is connected to the land side low-speed output shaft of the planetary differential reducer, and the four outgoing ropes of the land side four-rope reel are connected to a spreader;
  • the sea-side four-rope reel is connected to the sea-side low-speed output shaft of the planetary differential reducer, and the four outgoing ropes of the sea-side four-rope reel are connected to another spreader.
  • the output end of the first motor is coupled to a high speed input shaft of the planetary differential reducer, and two high speed brakes are disposed on the high speed input shaft of the planetary differential reducer;
  • the output of the second motor is coupled to another high speed input shaft of the planetary differential reducer; two high speed brakes are provided on the high speed input shaft of the planetary differential reducer.
  • the differential axle brake has two first differential axle brakes for controlling the power distribution of the planetary differential retarder and
  • the second differential shaft brake is respectively connected to the two differential shafts of the planetary differential reducer.
  • the two-roll differential hoisting mechanism of the double 40-foot shore container crane of the present invention has the following advantages and positive effects compared with the prior art by adopting the above technical solution:
  • the present invention replaces the prior art speed reducer by using a planetary differential speed reducer with two sides of the output, that is, a set of motors and a speed reducer are used to connect the two sets of lifting mechanisms, and the power is actually controlled by the planetary differential speed reducer.
  • the load-carrying torque is automatically distributed from each reel, so that the double spreader can be synchronized, that is, two liftings at a time 40 or 45 foot boxes (or four 20-foot containers), increasing the loading and unloading efficiency of shore container cranes by more than 60%;
  • the differential differential shaft brake can be controlled by the two differential shaft brakes. Double spreader synchronization work or single spreader work to meet the loading and unloading needs; for example,
  • the braked differential axle brake limits the rotation of the corresponding differential output shaft of the planetary differential reducer, and the torque is transmitted to the corresponding one of the reels Above, the opened differential shaft is unconstrained, and the torque is transmitted to the reel on the other side, thereby realizing the single spreader operation;
  • the present invention uses a planetary differential reducer to drive two sets of lifting mechanisms, which not only reduces the electric motor, the drive (reducer) and the like, but also makes the structure simple and light, and the maintenance is simple.
  • FIG. 1 is a first embodiment of a two-cylinder differential hoisting mechanism of a dual 40-foot shore container crane according to the present invention
  • FIG. 1 is a schematic structural view of a crane hoisting mechanism having two motors
  • FIG. 2 is a second embodiment of a two-cylinder differential hoisting mechanism for a dual 40-foot shore container crane according to the present invention.
  • FIG. 2 is a schematic view showing the structure of a crane hoisting mechanism having a motor.
  • FIGS 1 and 2 are schematic views of the structure of the two-roll differential hoisting mechanism of the dual 40-foot shore container crane of the present invention.
  • the hoisting mechanism of the present invention comprises: a motor 10, a speed reducer 20 connected to the motor 10, a high speed brake 11 provided at the input end of the speed reducer 20, a reel 30 connected to the output end of the speed reducer 20, and a reel set on the reel 30 a brake 40 and a control reducer 20 connected to the speed reducer 20 Force-distributed differential shaft brake 50.
  • the motor 10 can be provided with one motor or two motors according to the condition of the motor power.
  • the speed reducer 20 disposed at the output end of the motor 10 is a planetary differential speed reducer, and the planetary differential speed reducer 20 has a high speed input shaft.
  • an output shaft of the motor 10 is coupled to the high speed input shaft of the planetary differential speed reducer 20, and at least one high speed brake 11 is disposed on the high speed input shaft of the planetary differential speed reducer 20;
  • the reels 30 are disposed in two, that is, a land side reel 31 and a sea side reel 32, and the two reels 31 and 32 are respectively connected to the two low speed output shafts 21 and 22 of the planetary differential speed reducer 20;
  • At least one reel brake 40 is disposed on the reel 30;
  • the differential shaft brake 50 is used to control the power distribution of the planetary differential reducer 20, in order to achieve control of the land side spreader and the sea side spreader, respectively, the differential shaft brake 50 has a first differential axle brake 51 and a second differential axle brake 52, and the two differential axle brakes 51 and 52 are respectively connected to the differential output of the two planetary gear trains of the planetary differential reducer 20.
  • Fig. 1 is a schematic view showing the first embodiment of a two-roll differential hoisting mechanism for a dual 40-foot shore container crane according to the present invention, that is, a structure of a crane hoisting mechanism having two motors.
  • the hoisting mechanism of the present invention is composed of a motor 10, a planetary differential reducer 20, a spool 30, a spool brake 40, and a differential shaft brake 50. .
  • the motor 10 is provided in two, that is, the first motor 11 and the second motor 12.
  • the planetary differential retarder 20 disposed at the output of the motor 10 has two high speed input shafts 23 and 24, two low speed output shafts 21 and 22, and two differential output shafts for controlling power distribution.
  • a high speed input shaft 23 is coupled to the output shaft of the first motor 11 on the high speed input shaft 23 of the planetary differential speed reducer 20.
  • Two high speed brakes 111 and 112 are provided; another high speed input shaft 24 is connected to the output of the second motor 12, and two high speed brakes 121 and 122 are provided on the high speed input shaft 24 of the planetary differential speed reducer 20.
  • the low speed output shaft of the planetary differential speed reducer 20 is used to drive the rotation of the four rope take-up reels; in the present embodiment, the planetary differential speed reducer 20 has two low speed output shafts 21 and 22 connected to the land.
  • On the side low speed output shaft 21 is a land side four rope take-up reel 31, and four out ropes 311, 312, 313 of the land side four rope take-up reel 31, 314 is connected to a spreader; connected to the low-speed output shaft 22 on the sea side is a sea-four-rope reel 32, and four eaves 321 , 322 , 323 , 324 of the sea-side four-rope reel 32 are connected to each other A spreader; the two four-rope reels 31 and 32 are rotated by the rotation of the low-speed output shaft of the planetary differential reducer 20.
  • a reel brake 40 for controlling the rotation of the four-rope reel 30 is provided on each of the four rope take-up reels 30 described above, in order to realize emergency braking of the two spreaders on the land side and the sea side, and two spreaders At the same time, the lifting and lowering are converted into a lifting device for lifting and lowering.
  • two reel brakes 40 are respectively disposed on the four-rope reel 30, that is, the four-rope reel 31 on the land side.
  • Two reel brakes 41 and 42 are provided thereon; two reel brakes 43 and 44 are also provided on the four-rope reel 32 on the sea side.
  • the differential shaft brake 50 provided on the differential output shaft of the planetary differential speed reducer 20 is for controlling the power distribution of the planetary differential speed reducer 20.
  • the differential shaft brake 50 has two differential axes.
  • the brake that is, the first planetary mechanism differential shaft brake 51 and the second planetary mechanism differential shaft brake 52, the two differential shaft brakes 51 and 52 are respectively connected to the two differential output shafts of the planetary differential speed reducer 20, The operating state of the four-rope reel 30 on the land side and the sea side is controlled; wherein the first planetary mechanism differential shaft brake 51 is coupled to a differential shaft of the planetary differential speed reducer 20, and the differential shaft is used for Controlling the four-rope reel 31 on either side of the land side or the sea side; the second planetary mechanism differential shaft brake 52 is coupled to another differential shaft of the planetary differential speed reducer 20 for the differential shaft To control the four-outlet reel 32 on the other side.
  • FIG. 2 is a schematic view showing the structure of a two-roll differential hoisting mechanism of a double 40-foot shore container crane according to the present invention.
  • the crane hoisting mechanism is composed of the motor 10, the speed reducer 20, the four-out rope reel 30, the reel brake 40, and the differential shaft brake 50.
  • the difference between this embodiment and the first embodiment is that when the power of the motor 10 is sufficiently large, a motor 11 can be provided; at this time, the output shaft of the motor 11 is connected to a high speed input shaft 23 of the planetary differential speed reducer 20, Two high speed brakes 111, 112 are provided on the high speed input shaft 23 of the planetary differential speed reducer 20.
  • the present invention is how the double spreader can be operated simultaneously and with a single spreader on either side.
  • the differential shaft brakes 51 and 52 of the present invention control the rotation of the differential output shaft of the two planetary gear trains of the planetary differential speed reducer 20 to control the simultaneous rotation of the land side reel and the sea side reel, or
  • the reel on the land side and the reel on the sea side are independently rotated to achieve simultaneous control of the land side spreader and the sea side spreader, and the control of the land side spreader and the sea side spreader respectively.
  • the differential shaft brakes 51 and 52 are all braked, all of the high speed axle brakes 111, 112 and the spool brake 40 are opened, and the power of the motor 11 is simultaneously outputted to the reels 31, 32 through the low speed output shaft of the planetary differential speed reducer 20, thereby realizing
  • the crane can lift two 40 (or 45) foot boxes at the same time, or one 40 (or 45) foot box plus two 20 foot boxes, or four 20 foot boxes;
  • the present invention adopts a planetary differential speed reducer with both sides of the sea and the sea, that is, a set of motor and reducer are used to connect two sets of lifting mechanisms, thereby improving the loading and unloading efficiency of the shore container crane;
  • the differential speed reducer and the two differential shaft brakes control the rotation of the two differential output shafts through two differential shaft brakes to control the work of each reel, thereby realizing the double spreader synchronization operation or the single spreader work.
  • the use of a planetary differential reducer to drive two sets of lifting mechanism not only simple structure, light weight, low cost, and simple and convenient maintenance, it is extremely practical.

Description

双 40英尺岸边集装箱起重机两卷筒差动式起升机构 技术领域
本发明涉及一种起重机的起升机构, 尤其涉及一种双 40英尺岸边集装箱起重 机两卷筒差动式起升机构。 背景技术
随着集装箱运输的快速发展, 运输船舶趋向大型化和高速化, 从而要求码头 配置能适合快速发展的船舶运输行业的需求, 设置具有更高效率的岸边集装箱起 重机。
目前现有技术起重机的主起升机构只具有负责一个吊具的起升和下降工作, 因此一次只能吊一个 40英尺的集装箱、 或 2个 20英尺的集装箱, 不仅生产效率受到 限制, 并且不能满足市场的需求。 发明内容
本发明的目的在于提供双 40英尺岸边集装箱起重机两卷筒差动式起升机构, 它能使一套电机和减速器的起升机构一次可以吊起 2个 40或 45英尺箱 (或 4个 20英 尺集装箱) , 并且不仅能实现双吊具的同步作业和单吊具作业, 同时能提高 60% 以上装卸效率, 从而能适应日趋发展的船舶运输行业对装卸效率的需求。
本发明的目的是这样实现的:
一种双 40英尺岸边集装箱起重机两卷筒差动式起升机构, 包括: 电机、 与电 机连接的减速器及其高速制动器、 设置在减速器输出端的卷筒、 与卷筒连接的卷 筒制动器; 其特征在于:
所述的电机至少设置一个;
所述的连接在电机输出端的减速器釆用的是一行星差动减速器, 该行星差动 减速器具有高速输入轴、 低速输出轴和控制动力分配的差动出轴; 所述的电机输 出轴与行星差动减速器高速输入轴连接, 在行星差动减速器高速输入轴上至少设 置一个高速制动器;
所述的卷筒设置为一陆侧卷筒和一海侧卷筒, 两个卷筒分别连接在行星差动 减速器的两低速输出轴上; 在各卷筒上至少设置一个卷筒制动器; 还包括: 一控制行星差动减速器动力分配的差动轴制动器, 该差动轴制动器连接设置 在行星差动减速器的差动出轴上。
在上述的双 40英尺岸边集装箱起重机两卷筒差动式起升机构中, 所述的陆侧 卷筒和海侧卷筒分别是具有四根出绳的四出绳卷筒; 其中,
所述的陆侧四出绳卷筒连接在行星差动减速器的陆侧低速输出轴上, 该陆侧 四出绳卷筒的四根出绳连接一个吊具;
所述的海侧四出绳卷筒连接在行星差动减速器海侧低速输出轴上, 该海侧四 出绳卷筒的四根出绳连接另外一个吊具。
在上述的双 40英尺岸边集装箱起重机两卷筒差动式起升机构中, 其中, 所述 的电机设置为两个, 即第一电机和第二电机;
第一电机的输出端与行星差动减速器的一高速输入轴连接, 在该行星差动减 速器的高速输入轴上设置两个高速制动器;
第二电机的输出端与行星差动减速器的另一高速输入轴连接; 在该行星差动 减速器的高速输入轴上设置两个高速制动器。
在上述的双 40英尺岸边集装箱起重机两卷筒差动式起升机构中, 其中, 所述 的电机设置为一个电机, 该电机的输出端与行星差动减速器的一高速输入轴连 接; 在该行星差动减速器的高速输入轴上设置两个高速制动器。
在上述的双 40英尺岸边集装箱起重机两卷筒差动式起升机构中, 其中, 所述 的陆侧四出绳卷筒上设置两个卷筒制动器; 所述的海侧四出绳卷筒上设置两个卷 筒制动器。
在上述的双 40英尺岸边集装箱起重机两卷筒差动式起升机构中, 其中, 所述 的差动轴制动器具有两个控制行星差动减速器的动力分配的第一差动轴制动器和 第二差动轴制动器, 两差动轴制动器分别连接设置在行星差动减速器的两差动出 轴上。
本发明双 40英尺岸边集装箱起重机两卷筒差动式起升机构由于采用了上述的 技术方案, 使之与现有技术相比, 具有以下的优点和积极效果:
1 . 本发明由于采用具有两侧输出的行星差动减速器替代现有技术的减速 器, 即用一套电机和减速器连接两套起升机构, 通过行星差动减速器将动力按实 际外载扭矩自动分配自各卷筒上, 从而可实现双吊具的同步作业, 即一次吊起 2个 40或 45英尺箱 (或 4个 20英尺集装箱) , 使岸边集装箱起重机的装卸效率提高 60% 以上;
2. 本发明由于釆用一行星差动减速器和设置在行星差动减速器差动出轴上 的两个差动轴制动器, 通过两差动轴制动器对差动出轴的控制, 可以实现双吊具 同步作业或单吊具工作的状态以满足装卸的需求; 如,
若将所有的差动轴制动器制动、 所有的卷筒制动器打开, 动力按实际外载扭 矩自动分配至各卷筒上, 从而实现双吊具的同步作业;
若将一个差动轴制动器制动且另一个差动轴制动器打开, 被制动的差动轴制 动器限制行星差动减速器相应差动出轴的转动, 扭矩就传递到相应一侧的卷筒 上, 而被打开的差动出轴由于不受约束, 扭矩就传递不到另一侧的卷筒, 由此可 实现单吊具作业;
3 . 本发明由于采用一套行星差动减速器驱动两套起升机构, 不仅减少电 机、 驱动器 (减速器)等设备, 使之结构简单重量轻, 并且维修简单。 附图概述
通过以下对本发明双 40英尺岸边集装箱起重机两卷筒差动式起升机构的若干 实施例结合其附图的描述, 可以进一步理解本发明的目的、 具体结构特征和优 点。 其中, 附图为: '
图 1是本发明双 40英尺岸边集装箱起重机两卷筒差动式起升机构第一实施例 具有两个电机的起重机起升机构的结构示意图;
图 2是本发明双 40英尺岸边集装箱起重机两卷筒差动式起升机构第二实施例 具有一个电机的起重机起升机构的结构示意图。
本发明的最佳实施方式
请参见图 1和图 2所示, 它们是本发明双 40英尺岸边集装箱起重机两卷筒差动 式起升机构的结构示意图。 本发明起升机构包括: 电机 10、 与电机 10连接的减速 器 20、 设置在减速器 20输入端的高速制动器 11、 连接在减速器 20输出端的卷筒 30、 设置在卷筒 30上的卷筒制动器 40、 以及连接在减速器 20上的控制减速器 20动 力分配的差动轴制动器 50。
电机 10可根据电机功率的情况设置一个电机或两个电机; 本发明中, 设置在 电机 10输出端的减速器 20采用的是一行星差动减速器, 该行星差动减速器 20具有 高速输入轴、 低速输出轴和控制动力分配的差动出轴; 电机 10输出轴与行星差动 减速器 20的高速输入轴连接, 在行星差动减速器 20的高速输入轴上至少设置一个 高速制动器 11 ; 卷筒 30设置为两个, 即一陆侧卷筒 31和一海侧卷筒 32, 两个卷筒 31和 32分别连接在行星差动减速器 20的两低速输出轴 21和 22; 每一卷筒 30上至少 设置一个卷筒制动器 40 ; 差动轴制动器 50用以控制行星差动减速器 20的动力分 配, 为了达到分别对陆侧吊具和海侧吊具的控制, 差动轴制动器 50具有第一差动 轴制动器 51和第二差动轴制动器 52, 两差动轴制动器 51和 52分别连接在行星差动 减速器 20的两个行星轮系的差动出轴上; 通过两差动轴制动器 51和 52控制行星差 动减速器 20两行星轮系的差动出轴的转动, 既可以控制陆侧的卷筒和海侧的卷筒 的同时转动, 也可以控制陆侧的卷筒或海侧的卷筒分别独立转动, 从而使之达到 既可以同时实现陆侧吊具和海侧吊具的同步控制, 也可达到分别对陆侧吊具和海 侧吊具的独立控制。
请参见图 1所示, 图 1是本发明双 40英尺岸边集装箱起重机两卷筒差动式起升 机构第一实施例, 即具有两个电机的起重机起升机构的结构示意图。 本发明起重 机起升机构由电机 10、 行星差动减速器 20、 卷筒 30、 卷筒制动器 40和差动轴制动 器 50组成。 .
在本实施例中, 电机 10设置为两个, 即第一电机 11和第二电机 12。 设置在电 机 10输出端的行星差动减速器 20具有两个高速输入轴 23与 24、 两个低速输出轴 21 与 22以及两个控制动力分配的差动出轴。
在所述的行星差动减速器 20的两个高速输入轴 23与 24中, 一高速输入轴 23与 第一电机 11的输出轴连接, 在该行星差动减速器 20的高速输入轴 23上设置有两个 高速制动器 111与 112; 另一高速输入轴 24与第二电机 12的输出端连接, 在该行星 差动减速器 20的高速输入轴 24上设置两个有高速制动器 121与 122。
所述的行星差动减速器 20的低速输出轴用以驱动四出绳卷筒的转动; 在本实 施例中, 行星差动减速器 20的有两个低速输出轴 21与 22, 连接在陆侧低速输出轴 21上的是一陆侧四出绳卷筒 31, 该陆侧四出绳卷筒 31的四根出绳 311、 312、 313、 314连接一个吊具; 连接在海侧低速输出轴 22上的是一海 ^四出绳卷筒 32, 该海侧 四出绳卷筒 32的四根出绳 321、 322、 323、 324连接另外一个吊具; 两个四出绳卷 筒 31和 32通过行星差动减速器 20低速输出轴的转动而随之转动。 在上述的各四出 绳卷筒 30上分别设置了控制四出绳卷筒 30转动的卷筒制动器 40, 为了实现陆侧、 海侧的两个吊具的应急制动和由两个吊具同时起升、 下降转换为一个吊具起升、 下降时使用, 在本发明中, 四出绳卷筒 30上分别设置两个卷筒制动器 40, 即, 在 陆侧的四出绳卷筒 31上设置了两个卷筒制动器 41和 42; 在海侧的四出绳卷筒 32也 设置两个卷筒制动器 43和 44。
设置在行星差动减速器 20的差动出轴上的差动轴制动器 50是用以控制行星差 动减速器 20的动力分配, 在本发明中, 差动轴制动器 50具有两个差动轴制动器, 即第一行星机构差动轴制动器 51和第二行星机构差动轴制动器 52, 两差动轴制动 器 51与 52分别连接设置在行星差动减速器 20的两差动出轴上, 以此控制陆侧、 海 侧的四出绳卷筒 30的工作状态; 其中, 第一行星机构差动轴制动器 51与行星差动 减速器 20中的一差动轴连接, 该差动轴用以控制 (陆侧或海侧中)任一侧的四出 绳卷筒 31 ; 第二行星机构差动轴制动器 52与行星差动减速器 20中的另一差动轴连 接, 该差动轴用以控制另一侧的四出绳卷筒 32。
上述控制行星差动减速器的差动轴制动器制 50的控制原理是:
若两差动轴制动器 51和 52全部动, 所有高速轴制动器 11和卷筒制动器 40打 开, 动力自动按外载扭矩分配到相应海侧卷筒、 陆侧卷筒;
若两行星机构差动轴制动器 51和 52中一个差动轴制动器打开、 另一个差动轴 制动器制动, 则动力集中传递给卷筒制动器打开的卷筒, 此时另一侧的卷筒制动 器闭合的卷筒没有获得电机的扭矩;
反之, 若两个差动轴制动器的制动和打开调换, 则动力集中传递给另一侧已 打幵使卷筒制动器的卷筒, 而相对另一侧的卷筒制动器闭合的卷筒制动没有获得 电机的扭矩。 '
请结合图 1参见图 2所示, 图 2是本发明双 40英尺岸边集装箱起重机两卷筒差 动式起升机构第二实施例具有一个电机的起重机起升机构的结构示意图。 在本实 施例中, 起重机起升机构由电机 10、 减速器 20、 四出绳卷筒 30、 卷筒制动器 40和 差动轴制动器 50组成。 本实施例与第一实施例不同的是, 当电机 10的功率.足够大时, 可以设置一个 电机 11 ; 此时电机 11的输出轴与行星差动减速器 20的一高速输入轴 23连接, 在该 行星差动减速器 20的高速输入轴 23上设置两个高速制动器 111、 112。
请参见图 1和图 2所示, 本发明是如何实现双吊具既可以同步作业又可以使任 何一侧的单吊具作业。
本发明中的差动轴制动器 51和 52通过控制行星差动减速器 20两行星轮系的差 动出轴的转动, 以控制陆侧的卷筒、 海侧的卷筒的同时转动, 也可控制陆侧的卷 筒、 海侧的卷筒分别独立转动, 达到同时实现陆侧吊具和海侧吊具的同步控制, 也可达到分别对陆侧吊具和海侧吊具的控制。
当需要双吊具同时作业时:
差动轴制动器 51和 52全部制动、 所有高速轴制动器 111、 112和卷筒制动器 40 打开, 电机 11的功率通过行星差动减速器 20低速输出轴同时输出至卷筒 31、 32, 从而实现起重机可同时吊起双 40 (或 45 )英尺箱、 或者一个 40 (或 45)英尺箱加 2 个 20英尺箱、 或者 4个 20英尺箱作业;
当需要单侧吊具作业时:
差动轴制动器 51和 52中一个制动器打开、 另一个制动器制动, 则动力集中传 递给卷筒制动器打开的卷筒, 此时另一侧的卷筒制动器闭合的卷筒没有获得电机 的扭矩。
综上所述, 本发明由于采用具有海陆两侧输出的行星差动减速器, 即用一套 电机和减速器连接两套起升机构, 提高岸边集装箱起重机的装卸效率; 同时由于 采用一行星差动减速器和两个差动轴制动器, 通过两差动轴制动器控制两差动出 轴的转动, 以控制每一卷筒的工作, 从而可以实现双吊具同步作业或单吊具工作 的状态, 以满足装卸的需求; 另外由于采用一套行星差动减速器驱动两套起升机 构, 不仅结构简单重量轻成本低, 并且维修简单方便, 因此极为实用。

Claims

权利要求
1. 一种双 40英尺岸边集装箱起重机两卷筒差动式起升机构, 包括: 电机 ( 10) 、 与电机(10)连接的减速器 (20)及其高速制动器(11 ) 、 设置在减速 器(20)输出端的卷筒 (30) 、 与卷筒(30)连接的卷筒制动器(40) ;
其特征在于:
所述的电机(10)至少设置一个;
所述的连接在电机(10)输出端的减速器(20)采用的是一行星差动减速器, 该行星差动减速器(20)具有高速输入轴、 低速输出轴和控制动力分配的差动出 轴; 所述的电机(10)输出轴与行星差动减速器(20) 高速输入轴连接, 在行星 差动减速器(20) 高速输入轴上至少设置一个高速制动器 (11 ) ;
所述的卷筒(30) 设置为一陆侧卷筒(31 )和一海侧卷筒(32) , 两个卷筒 (31、 32) 分别连接在行星差动减速器(20) 的两低速输出轴 (21、 22)上; 在 各卷筒 (30)上至少设置一个卷筒制动器(40) ;
还包括: 控制行星差动减速器(20)动力分配的差动轴制动器(50) , 它连接 设置在行星差动减速器(20) 的差动出轴上。
2. 如权利要求 1所述的双 40英尺岸边集装箱起重机两卷筒差动式起升机构, 其 特征在于:
所述的陆侧卷筒(31 )和海侧卷筒(32)分别是具有四根出绳的四出绳卷筒 (31、 32) ; 其中,
所述的陆侧四出绳卷筒 (31 )连接在行星差动减速器 (20) 的陆侧低速输出轴
(21 )上, 该陆侧四出绳卷筒(31 ) 的四根出绳 (311、 312、 313、 314)连接一 个吊具;
所述的海侧四出绳卷筒 (32)连接在行星差动减速器(20)海侧低速输出轴
(22)上, 该海侧四出绳卷筒(32) 的四根出绳 (321、 322、 323、 324)连接另 外一个吊具。
3. 如权利要求 1所述的双 40英尺岸边集装箱起重机两卷筒差动式起升机构, 其 特征在于: 所述的电机(10)设置为两个, 即第一电机 (11 )和第二电机
( 12) ;
第一电机(11 ) 的输出端与行星差动减速器(20) 的一高速输入轴 (23 )连 接, 在该行星差动减速器(20) 的高速输入轴 (23 )上设置两个高速制动器 ( 111、 112) ;
第二电机(12) 的输出端与行星差动减速器 (20) 的另一高速输入轴 (24)连 接; 在该行星差动减速器(20) 的高速输入轴 (24)上设置两个高速制动器 ( 121、 122) 。
4. 如权利要求 1所述的双 40英尺岸边集装箱起重机两卷筒差动式起升机构, 其 特征在于: 所述的电机(10)设置为一个电机(11 ) , 该电机(11 ) 的输出端与 行星差动减速器(20) 的一高速输入轴 (23 )连接; 在该行星差动减速器(20) 的高速输入轴 (23 )上设置两个高速制动器 (111、 112) 。
5. 如权利要求 1或 2所述的双 40英尺岸边集装箱起重机两卷筒差动式起升机 构, 其特征在于- 所述的陆侧四出绳卷筒 (31 )上设置两个卷筒制动器(41、 42) ;
所述的海侧四出绳卷筒 (32)上设置两个卷筒制动器 (43、 44) 。
6. 如权利要求 1所述的双 40英尺岸边集装箱起重机两卷筒差动式起升机构, 其特征在于: 所述的差动轴制动器 (50)具有两个控制行星差动减速器的动力分 配的第一差动轴制动器 (51 ) 和第二差动轴制动器 (52 ) , 两差动轴制动器
(51、 52)分别连接设置在行星差动减速器(20) 的两差动出轴上。
PCT/CN2005/001740 2005-04-06 2005-10-21 Mecanisme de levage differentiel a deux tambours pour portique a conteneurs capable d’elinguer deux conteneurs de 40 pieds cote quai WO2006105700A1 (fr)

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US7556161B2 (en) 2009-07-07
CN1785788A (zh) 2006-06-14
AU2005327459A1 (en) 2006-10-26
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US20060247085A1 (en) 2006-11-02
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