WO2010066173A1 - 一种攀爬装置、攀爬系统、攀爬起吊系统及攀爬方法 - Google Patents

一种攀爬装置、攀爬系统、攀爬起吊系统及攀爬方法 Download PDF

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Publication number
WO2010066173A1
WO2010066173A1 PCT/CN2009/075251 CN2009075251W WO2010066173A1 WO 2010066173 A1 WO2010066173 A1 WO 2010066173A1 CN 2009075251 W CN2009075251 W CN 2009075251W WO 2010066173 A1 WO2010066173 A1 WO 2010066173A1
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WO
WIPO (PCT)
Prior art keywords
platform
climbing
fixing mechanism
climbing device
telescopic
Prior art date
Application number
PCT/CN2009/075251
Other languages
English (en)
French (fr)
Inventor
李成峰
姜福军
王新明
唐军军
Original Assignee
三一电气有限责任公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 三一电气有限责任公司 filed Critical 三一电气有限责任公司
Publication of WO2010066173A1 publication Critical patent/WO2010066173A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66CCRANES; LOAD-ENGAGING ELEMENTS OR DEVICES FOR CRANES, CAPSTANS, WINCHES, OR TACKLES
    • B66C23/00Cranes comprising essentially a beam, boom, or triangular structure acting as a cantilever and mounted for translatory of swinging movements in vertical or horizontal planes or a combination of such movements, e.g. jib-cranes, derricks, tower cranes
    • B66C23/18Cranes comprising essentially a beam, boom, or triangular structure acting as a cantilever and mounted for translatory of swinging movements in vertical or horizontal planes or a combination of such movements, e.g. jib-cranes, derricks, tower cranes specially adapted for use in particular purposes
    • B66C23/26Cranes comprising essentially a beam, boom, or triangular structure acting as a cantilever and mounted for translatory of swinging movements in vertical or horizontal planes or a combination of such movements, e.g. jib-cranes, derricks, tower cranes specially adapted for use in particular purposes for use on building sites; constructed, e.g. with separable parts, to facilitate rapid assembly or dismantling, for operation at successively higher levels, for transport by road or rail
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66CCRANES; LOAD-ENGAGING ELEMENTS OR DEVICES FOR CRANES, CAPSTANS, WINCHES, OR TACKLES
    • B66C23/00Cranes comprising essentially a beam, boom, or triangular structure acting as a cantilever and mounted for translatory of swinging movements in vertical or horizontal planes or a combination of such movements, e.g. jib-cranes, derricks, tower cranes
    • B66C23/02Cranes comprising essentially a beam, boom, or triangular structure acting as a cantilever and mounted for translatory of swinging movements in vertical or horizontal planes or a combination of such movements, e.g. jib-cranes, derricks, tower cranes with non-adjustable and non-inclinable jibs mounted solely for slewing movements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66CCRANES; LOAD-ENGAGING ELEMENTS OR DEVICES FOR CRANES, CAPSTANS, WINCHES, OR TACKLES
    • B66C23/00Cranes comprising essentially a beam, boom, or triangular structure acting as a cantilever and mounted for translatory of swinging movements in vertical or horizontal planes or a combination of such movements, e.g. jib-cranes, derricks, tower cranes
    • B66C23/02Cranes comprising essentially a beam, boom, or triangular structure acting as a cantilever and mounted for translatory of swinging movements in vertical or horizontal planes or a combination of such movements, e.g. jib-cranes, derricks, tower cranes with non-adjustable and non-inclinable jibs mounted solely for slewing movements
    • B66C23/022Pivot axis common with column

Definitions

  • the present invention relates to a mechanical climbing technique, and more particularly to a climbing device, and to a climbing system, a climbing hoisting system and a climbing method.
  • Background technique
  • wind power industry has maintained rapid development, and the installed capacity of wind power in the world has accumulated to more than 70 million kilowatts.
  • the characteristics of wind power generation determine that wind farms are mostly located in sparsely populated areas, such as hills, deserts, beaches, and offshore areas.
  • Wind power generation systems generally include wind turbine towers, blades and fan machines.
  • the turbines are equipped with generators, gear boxes and main shafts.
  • the blades and the fan are rushed to the top of the fan tower, and the blades can rotate under the action of the wind, which drives the generator of the fan to generate electricity.
  • the top of the fan tower cannot be repaired or needs to be replaced, it is necessary to disassemble the faulty parts and transport the faulty parts to the ground with a crane; It is necessary to transport the repaired or replaced parts to the top of the fan tower for installation.
  • the height of the wind turbine tower is generally between 60 meters and 80 meters.
  • the overall weight of the wind turbine engine room is about 60 tons to 90 tons.
  • the single weight of large parts such as gear boxes, generators and blades is about 10 tons to 20 tons.
  • the crane used Limited to the height and weight requirements of the transport, the crane used must have a lifting height of 80 m and the corresponding lifting capacity, so the assistance of a large crane must be used to complete the disassembly and installation tasks.
  • the cost of large cranes is relatively high; on the other hand, because of the remote location of wind power generation sites, the transfer of large cranes is very difficult, which increases the maintenance cycle of wind power generation and further increases the cost of lifting.
  • a first object of the present invention is to provide a climbing device capable of climbing to a predetermined height based on a climbing object.
  • a second object of the present invention is to provide a climbing system capable of transporting respective persons and articles to a predetermined height position.
  • a third object of the present invention is to provide a climbing hoisting system capable of hoisting work at a high altitude, thereby reducing the cost of hoisting at a high altitude and improving the hoisting efficiency at a high altitude.
  • a fourth object of the present invention is to provide a climbing method based on a climbing object.
  • the fixing mechanism is mounted on the upper platform, and the lower fixing mechanism is mounted on the lower platform; the climbing device can be fixed on the object to be climbed by the upper fixing mechanism and the lower fixing mechanism, respectively.
  • the telescopic mechanism includes at least one telescopic cylinder, and both ends of the telescopic cylinder are respectively fixed to the upper platform and the lower platform.
  • the upper fixing mechanism and the lower fixing mechanism are clamping mechanisms
  • the clamping mechanism comprises a telescopic member and at least two clamping plates
  • at least one of the clamping plates is a movable clamping plate.
  • One ends of the upper and lower fixing members of the upper fixing mechanism are respectively fixed to the upper platform and the lower platform, and the other end of the telescopic member is mounted with a movable clamping plate, and the telescopic member can enable movable clamping Board moves.
  • the telescopic member is a clamping cylinder.
  • the upper platform and the lower platform are respectively provided with an intermediate hole; the intermediate hole can be placed outside the object to be climbed.
  • the upper platform comprises a fixed upper left platform and an upper right platform; the left lower platform and the lower right platform are connected, and the mating surface between the lower left platform and the lower right platform passes through the middle of the lower platform. hole.
  • the present invention provides a climbing system comprising the above-mentioned first or second type of climbing device and a supporting column, wherein the outer wall of the supporting column is provided with a plurality of matching with the upper fixing mechanism and the lower fixing mechanism.
  • the support portion; the upper fixing mechanism and the lower fixing mechanism are capable of cooperating with the support portion.
  • the upper fixing mechanism and the lower fixing mechanism respectively comprise a telescopic protrusion, and the support portion is an iHJ groove; the protrusion can cooperate with the IHJ groove.
  • Another climbing system includes the climbing device and the support column described in item 3 or 4 above.
  • each of the upper platform and the lower platform is provided with an intermediate hole penetrating through the middle; the intermediate hole can be sleeved outside the support column.
  • the climbing lifting system comprises a lifting device and a climbing device, the lifting device comprising a column, a boom, a pulley mechanism and a spreader, the hanging arm being mounted at an upper end of the column, the pulley mechanism Mounted on the boom, the spreader is connected to the pulley mechanism; the climbing device is the above climbing device or the above climbing system, and the column is installed on the upper platform or the lower portion of the climbing device on the platform.
  • the boom is rotatably mounted at an upper end of the column.
  • the climbing method provided by the present invention comprises the following steps:
  • the upper fixing mechanism works to fix the upper platform of the climbing device and the object to be climbed;
  • the upper platform and the lower platform are respectively provided with an upper fixing mechanism and a lower fixing mechanism;
  • the climbing device can respectively pass through
  • the fixing mechanism and the lower fixing mechanism are fixed on the object to be climbed;
  • a telescopic mechanism is arranged between the upper platform and the lower platform, and the telescopic mechanism can change the distance between the upper platform and the lower platform;
  • the telescopic mechanism works , changing the distance between the upper platform and the lower platform;
  • the lower fixing mechanism works to fix the lower platform and the object to be climbed;
  • the upper fixing mechanism works to separate the upper platform from the object to be climbed;
  • the telescopic mechanism works to change the distance between the upper platform and the lower platform.
  • step A2 the distance between the upper platform and the lower platform is changed, specifically, the distance between the upper platform and the lower platform is reduced;
  • step A5 the distance between the upper platform and the lower platform is changed, specifically, the distance between the upper platform and the lower platform is increased;
  • step A5 if the predetermined position is not reached, the process returns to the step A1.
  • the climbing device provided by the present invention comprises an upper platform, an upper fixing mechanism, a lower platform and a lower fixing mechanism, and a telescopic mechanism is provided between the upper platform and the lower platform, and the telescopic mechanism can change the distance between the upper platform and the lower platform.
  • the upper fixing mechanism is mounted on the upper platform, and the lower fixing mechanism is mounted on the lower platform.
  • the upper fixing mechanism can cooperate with the object to be climbed, and the climbing device is separately fixed on the object to be climbed, and the lower fixing mechanism can also be The climbing objects cooperate to secure the climbing device to the climbed object alone.
  • the upper fixing mechanism When climbing upwards, the upper fixing mechanism is activated to fix the upper platform and the object to be climbed, and the lower platform is in a free state, and the distance between the upper platform and the lower platform is reduced by the telescopic mechanism, and the lower platform and the lower fixing mechanism are raised together.
  • the lower fixing mechanism is activated to fix the lower platform on the object to be climbed; the cooperation between the upper fixing mechanism and the object to be climbed is released, so that the upper platform is separated from the object to be climbed; and then the upper platform is added by the telescopic mechanism
  • the distance between the upper platform and the upper platform is raised together; the upper fixing mechanism is activated to match the upper fixing mechanism with the object to be climbed, and the cooperation between the lower fixing mechanism and the object to be climbed is released.
  • the climbing device provided by the present invention is a movable device, and can climb from a plurality of positions as needed, as long as the fixing mechanism of the climbing device can be used with a suitable structure.
  • the climbing object can reach the predetermined position or height based on the climbing object, and can be applied to the maintenance of various artificial facilities; in addition, since the climbing device can be raised or lowered as a whole, the occupied space is small, the transfer transportation is very convenient, and d, Maintenance costs and cycles of related facilities.
  • the upper fixing mechanism and the lower fixing mechanism are clamping mechanisms formed by the clamping plates, and the clamping plate can cooperate to enable the fixing mechanism to be applied to more occasions. Improve the adaptability of the climbing device.
  • an intermediate hole is provided in the upper platform and the lower platform, and the intermediate hole is capable of accommodating the object to be climbed, and the object to be climbed is placed in the intermediate hole.
  • the climbed object is placed in the middle of the climbing device, and the center of gravity of the climbing device falls within the object to be climbed, which improves the stability and reliability of the climbing device.
  • the upper platform and the lower platform are respectively divided into two parts arranged in a lateral direction, which can facilitate the manufacture and transportation of the climbing device, and the upper platform and the lower platform can be on the scene when climbing is required. Assembly is performed to further improve the adaptability of the climbing device.
  • the climbing system provided by the present invention includes the above-described climbing device and support column, and the upper fixing mechanism and the lower fixing mechanism of the climbing device cooperate with the supporting column.
  • the support column can be fixed first, and the corresponding equipment is placed on the platform of the climbing device, so that the climbing device climbs up the support column to send the corresponding equipment to the predetermined position.
  • the climbing hoisting system provided by the invention comprises a lifting device and the above climbing device, the lifting device is fixed on the climbing device, the climbing device is raised to a certain height, and the lifting device can perform corresponding lifting operation to facilitate the maintenance of the related facilities. Since the wind power generation device is located at the top of the wind turbine tower, the climbing device provided in the climbing lifting device of the present invention can climb up to the top of the wind turbine tower by using the wind turbine tower, and bring the lifting device to the top of the wind turbine tower for the relevant equipment. Lifting is convenient, so it is especially suitable for the maintenance of wind power equipment.
  • the climbing method provided by the invention can climb to a predetermined height based on the climbing object, has the characteristics of simple and flexible, and can be applied in various occasions.
  • the climbing device provided by the invention is suitable for the maintenance of high altitude facilities; the provided climbing and lifting system
  • FIG. 1 is a schematic structural view of a climbing and lifting device provided in Embodiment 1;
  • FIG. 2 is a schematic structural view of a left half platform in the climbing device of the first embodiment
  • Figure 2-1 is a schematic view of the clamping principle of other clamping mechanisms
  • FIG. 3 is a schematic structural view of a climbing system provided by the present invention.
  • Figure 4 is a schematic structural view of a fixing mechanism in a climbing system
  • Figure 5 is a flow chart of the climbing method of the upward climbing provided by the present invention
  • Figure 6 is a flow chart of the climbing method of the downward climbing provided by the present invention.
  • Embodiment 1 provides a climbing hoisting system capable of hoisting and transporting a wind turbine tower tower top device, the climbing hoisting system including a climbing device 100 And lifting device 200.
  • the climbing device 100 and the lifting device 200 will be described separately below.
  • the climbing device 100 includes an upper platform 1, a lower platform 2, a telescopic mechanism 9 and 12 movable clamping plates 10, the upper platform 1 is provided with an intermediate hole 1-1, and the lower platform 2 is provided with an intermediate hole 2-1;
  • the upper platform 1 is composed of the upper left platform 1-2 and the upper right platform 1-3 which cooperate with each other; this example is a preferred technical solution, the upper left platform 1-2 and the upper right platform 1-3 are symmetric with each other, and the mating surface and the upper platform 1 plane Basically vertical, and through the middle hole 1-1; the upper left platform 1-2 and the upper right platform 1-3 are fixed by bolts; the structure of the lower platform 2 is the same as that of the upper platform 1, including the mutual cooperation, and the symmetrical lower left platform 2 2 and the lower right platform 2-3, the lower left platform 2-2 and the lower right platform 2-3 are also connected by bolts.
  • the movable clamping plate 10 is fixed at the end of the clamping cylinder 12, wherein the other ends of the six clamping cylinders 12 are fixed on the hole wall of the middle hole 1-1 of the upper platform 1, 6 movable clamping plates. 10 pairs of two, evenly distributed, can protrude to the center of the middle hole 1-1, six clamping cylinders fixed to the hole wall of the intermediate hole 1-1 and the movable clamping plate 10 constitute the upper platform 1 clamping mechanism. Similarly, the other ends of the other six clamping cylinders 12 are fixed to the wall of the intermediate hole 2-1 of the lower platform 2 to form a clamping mechanism for the lower platform 2 with the movable clamping plate.
  • the upper platform 1 and the lower platform 2 are connected by a telescopic cylinder 9, and both ends of the telescopic cylinder 9 are fixed to the upper platform 1 and the lower platform 2, respectively.
  • a telescopic mechanism between the upper platform 1 and the lower platform 2
  • the extension or retraction of the piston of the telescopic cylinder 9 can change the distance between the upper platform 1 and the lower platform 2, in this example, four telescopic cylinders 9 are provided.
  • the angular position is to ensure the stability and reliability of the change of the distance between the upper platform 1 and the lower platform 2.
  • the lifting device comprises a column 3, a boom 4, a pulley mechanism 5 and a spreader 6.
  • the column 3 is fixed to the upper surface of the upper platform 1 of the climbing device 100
  • the boom 4 is mounted at the upper end of the column 3
  • the pulley mechanism 5 is mounted on the boom 4, and the spreader 6 is connected to the pulley mechanism 5.
  • the hydraulic station 7 can provide hydraulic power to the climbing device, and the electronic control 8 can control the movement of the corresponding components of the climbing device 100 and the lifting device 200 through the circuit.
  • the weight 11 is opposite to the lifting component, and can It plays a balancing role in ensuring the stability and safety of the climbing and lifting system.
  • Other equipment or items can be placed on the upper platform 1 to meet other needs.
  • the upper right platform 1-3, the lower left platform 2-2, the lower right platform 2-3 and the four telescopic cylinders 9 are respectively transported under the wind turbine tower, assembled on site to form a climbing device; and the lifting device is installed on the upper On platform 1. After the assembly is completed, you can climb up.
  • the climbing process of the climbing device 100 is as follows:
  • the six movable clamping plates 10 jointly move toward the center of the intermediate hole 2-1 to contact the outer wall of the fan tower, and A corresponding force is applied to the outer wall of the fan tower to generate a frictional force between the outer wall of the fan tower and the movable clamping plate 10, and the friction force fixes the lower platform 2 on the outer wall of the fan tower.
  • the clamping mechanism on the lower platform 2 serves as a lower fixing mechanism for fixing the entire climbing and lifting system to the fan tower by fixing the lower platform 2 to the outer wall of the fan tower.
  • the pistons of the four telescopic cylinders 9 are simultaneously extended, so that the distance between the upper platform 1 and the lower platform 2 is increased. Since the lower platform 2 is fixed to the outer wall of the fan tower, the upper platform 1 is raised by a stroke distance.
  • the pistons of the clamping cylinders 12 of the upper platform 1 are simultaneously extended, and the six movable clamping plates 10 on the upper platform 2 jointly move toward the center of the intermediate hole 1-1, so that the outer wall of the wind turbine tower and the movable clamp A corresponding frictional force is generated between the holding plates 10 to fix the upper platform 1 on the outer wall of the fan tower.
  • the clamping mechanism on the upper platform 1 serves as an upper fixing mechanism for fixing the entire climbing hoisting system to the fan tower by fixing the upper platform 1 to the outer wall of the fan tower.
  • the clamping cylinder 12 on the lower platform 2 is retracted, and the movable clamping plate 10 on the lower platform 2 Detach from the outer wall of the fan tower.
  • the telescopic cylinder 9 piston is simultaneously retracted, so that the lower platform 2 is raised by one stroke.
  • the lifting device 200 After the climbing hoisting system reaches the top of the fan tower, the lifting device 200 starts to work, and the slewing support at the top of the column 3 drives the boom 4 to rotate to the fan machine under the driving of the hydraulic motor, and the pulley mechanism 5 cooperates with the spreader 4, The faulty component is lifted; the boom 4 is rotated again to the side away from the wind turbine tower. At this time, the weight 11 and the faulty component are respectively located on both sides of the column 3, which can play a balance function to prevent the climbing hoisting system from being skewed.
  • the climbing device is activated, and the climbing device is gradually lowered to the ground by repeated steps to repair the defective component.
  • the climbing hoisting system can be assembled on site, and therefore, the transportation of the system equipment is very convenient; in addition, the above-mentioned climbing hoisting system is used, and the lifting height is low, and the medium and small lifting is utilized.
  • the device can realize the lifting work of the faulty parts at high altitude, avoiding the utilization of large lifting equipment and reducing the lifting cost of the high-altitude faulty parts.
  • a slewing support is arranged at the top of the column, and the boom 4 is rotated to the outside of the upper platform 1 during the upward and downward climbing to keep the climbing process smooth.
  • the boom 4 is rotated to the top of the fan tower to facilitate lifting of the corresponding components.
  • the lifting operation of the high-altitude lifting is not limited to the above specific structure, and the lifting device 200 is not limited to being fixed on the upper platform 1 of the climbing device 100, and may be fixed on the lower platform 2; the lifting device may also be other specific structures.
  • It can also be a stand-alone crane; as long as it can be fixed on the climbing device 100, it can be carried by the climbing device 100 to the top of the fan tower, so that it can be lifted at a high altitude to reduce the cost of lifting at high altitude.
  • the above-mentioned telescopic mechanism is not limited to the telescopic cylinder 9, and the distance between the upper platform 1 and the lower platform 2 can be changed by other methods, for example, it can be realized by a pneumatic system, or a screw mechanism can be used, and one end and the lower end can be set.
  • the threaded rod fixed on the platform, and the other end of the threaded rod is threadedly engaged with the upper platform, and the rotation of the threaded rod is driven by other mechanisms to change the distance between the upper platform 1 and the lower platform 2, and the magnetic field can be changed. Realization, and so on.
  • the telescopic direction of the telescopic mechanism is not limited to be perpendicular to the surface of the upper platform 1, In the case where the telescopic direction is inclined, the climbing device 100 can rise or fall on a tilted fan tower or other climbed object.
  • an intermediate hole 1-1 and an intermediate hole 2-1 are respectively disposed on the upper platform 1 and the lower platform 2, and when climbing, the fan tower is located in the middle hole 1-1 and the middle hole 2-1,
  • This can ensure that the center of gravity of the climbing hoisting system falls within the tower of the wind turbine, reducing the rigidity and strength requirements of the clamping mechanism, and maintaining the stability and safety of the climbing hoisting system.
  • the clamping mechanism can also be extended outward from the upper platform and the lower platform, and the fan tower can also be outside the upper platform and the lower platform, as long as the clamping mechanism as the fixing mechanism has corresponding rigidity and strength, the same can be realized. Purpose of the invention.
  • the upper platform 1 and the lower platform 2 are not limited to the above structure, and the mating surface thereof may be a bevel or a cooperating toothed surface; the modularization of the climbing and lifting system can also be realized. It facilitates the manufacture, transportation and installation of climbing devices and climbing and lifting systems.
  • the clamping mechanism may comprise two opposite clamping plates for clamping the fan tower in the middle, or may comprise three clamping plates, which can also clamp the fan tower in the middle; in order to ensure the reliability of the clamping , you can increase the number or number of clamping plates.
  • the clamping plate may include a clamping plate fixed to the upper platform 1 or the lower platform 2, and at least one movable movable clamping plate, so that the clamping plate and the fan tower can be in a tight state. Convert between and separated states.
  • the conversion between the tightening state and the disengaged state is not limited to the method of using the hydraulic cylinder, and can also be realized by other telescopic members, for example, by using an electromagnetic field transformation, or by a pneumatic system, and in addition, climbing
  • the hoisting system is fixed to the fan tower and is not limited to the clamping method.
  • the climbing system provided by the present invention proposes another method of fixing the climbing device.
  • the climbing system includes a climbing device 100 and a support column 300, and the climbing device includes an upper platform 1 and a lower platform 2, a telescopic cylinder 9 as a telescopic mechanism, and a fixing mechanism 10-1.
  • the structure of the platform 1 and the lower platform 2 is the same as that of the climbing hoisting system, and each has a fixing mechanism; as shown in FIG. 4, the fixing mechanism 10-1 includes a fixing protrusion 10-11 and a fixed cylinder 10-10, a fixed cylinder The 10-10-ends are respectively fixed to the lower platform 1 or the lower platform 2, and the fixed bumps 10-11 are fixed to the other ends of the fixed cylinders 10-10.
  • the support post 300 includes a recess 300-1 that can be mated with the fixed bumps 10-11.
  • the piston of the fixed cylinder 10-10 can be extended to engage the fixing protrusion 10-11 with the groove 300-1, so that the convex groove 300 supports the climbing device. 100.
  • a boss can be provided on the support column 300 as a support portion, and the climbing device 100 can also be fixed on the support column 300.
  • a corresponding climbing system can also be obtained.
  • those skilled in the art can also combine the above technical features to form other specific implementation manners, for example, the upper platform and the lower platform of different structures can be combined, or different fixing mechanisms and different upper platforms and lower platforms can be combined.
  • Form a specific climbing device it can also be composed of different structures of support columns or supports and different climbing devices to form a specific climbing system; in order to meet the work at height, the climbing device can also be combined with other equipment to form other Combine devices and more.
  • the present invention also provides a climbing method, wherein, as shown in FIG. 5, the method of climbing upwards comprises the following steps:
  • the lower fixing mechanism works to fix the lower platform of the climbing device and the object to be climbed.
  • the climbing device comprises an upper platform, a lower platform, an upper fixing mechanism and a lower fixing mechanism, and the upper fixing mechanism is fixed to the upper platform.
  • the lower fixing mechanism is fixed to the lower platform, and the climbing device can be fixed on the object to be climbed by the upper fixing mechanism and the lower fixing mechanism respectively; a telescopic mechanism is arranged between the upper platform and the lower platform, and the telescopic mechanism can be changed The distance between the upper platform and the lower platform.
  • the telescopic mechanism is generally in a retracted state. Therefore, the lower platform is generally fixed first, and then the upper platform is raised by operating the telescopic mechanism.
  • the upper fixing mechanism works first.
  • the telescopic mechanism works to increase the distance between the upper platform and the lower platform, and raise the upper platform upward.
  • the upper fixing mechanism works to fix the upper platform on the object to be climbed.
  • the lower fixing mechanism works to separate the lower platform from the climbed object.
  • the telescopic mechanism works to reduce the distance between the upper platform and the lower platform, and raise the lower platform upward.
  • step S101 determining whether the predetermined height is reached, and if so, stopping; if not, returning to step S101. Repeat the above steps several times to reach the predetermined height and then stop climbing.
  • the method of climbing down includes the following steps:
  • the lower fixing mechanism works to fix the lower platform of the climbing device and the object to be climbed.
  • the climbing device can be the same as the climbing device used for climbing upwards. Also, depending on the initial state, the upper fixing mechanism can also be operated first.
  • the telescopic mechanism works to reduce the distance between the upper platform and the lower platform, so that the upper platform is lowered.
  • the upper fixing mechanism works to fix the upper platform on the object to be climbed.
  • the lower fixing mechanism works to separate the lower platform from the climbed object.
  • the telescopic mechanism works to increase the distance between the upper platform and the lower platform, and the lower platform is lowered.
  • step S201 determining whether the predetermined position is reached, and if so, stopping; if not, returning to step S201.
  • the above-described steps are repeated a plurality of times, and the predetermined position can be reached, and then the climbing is stopped.
  • the above is only a preferred embodiment of the present invention, and it should be noted that those skilled in the art can not deviate from the principle of the present invention. Several modifications and retouchings are also possible, which should also be considered as protection of the present invention.

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  • Mechanical Engineering (AREA)
  • Structural Engineering (AREA)
  • Transportation (AREA)
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Description

一种攀爬装置、 攀爬系统、 攀爬起吊系统及攀爬方法
本申请要求于 2008 年 12 月 10 日提交中国专利局、 申请号为 200810204570.7、 发明名称为"一种攀爬装置、 攀爬系统、 攀爬起吊系统及 攀爬方法"的中国专利申请的优先权, 其全部内容通过引用结合在本申请 中。
技术领域
本发明涉及一种机械攀爬技术, 特别涉及一种攀爬装置, 还涉及到一 种攀爬系统、 攀爬起吊系统及攀爬方法。 背景技术
近年来风力发电产业保持快速发展, 全球风力发电装机容量累计超过 7000万千瓦。 风力发电的特点决定了风力发电场大多处在人烟稀少的、 自 然环境恶劣的丘陵、 荒漠、 海滩、 近海等区域。
风力发电系统一般包括风机塔筒, 叶片和风机机抢, 风机机抢内安装 有发电机、 齿轮箱、 主轴。 叶片和风机机抢安装在风机塔筒的顶端, 叶片 能够在风力作用下旋转, 带动风机机抢的发电机运转产生电能。
在齿轮箱、 发电机、 叶片等大部件发生较大的故障, 在风机塔筒顶端 无法维修或需要更换时, 就需要将故障部件拆卸, 用起重机将故障部件运 送到地面; 在安装时, 也需要用起重机将修好或更换的部件运送到风机塔 筒顶端进行安装。 目前, 风机塔筒高度一般在 60米到 80米之间, 风机机 舱的整体重量大约为 60吨到 90吨, 齿轮箱、 发电机、 叶片等大部件的单 个重量大约为 10吨到 20吨。 限于需要运送的高度和重量的要求, 使用的 起重机必需具备 80米的起重高度和相应的起重能力, 因此, 必须用大型起 重机的协助才能完成拆卸和安装任务。 一方面, 大型起重机本身费用比较 高; 另一方面, 由于风力发电场所处位置比较偏远, 大型起重机转场运输 非常困难, 这样就增加了风力发电的维护周期, 也进一步增加了吊装成本。 以一个普通风力发电场的维修为例, 在一次拆卸或更换大部件的维护中, 仅吊装费用就高达 40万; 如果风力发电场设在海上, 则需要海上浮吊的配 合, 其费用会更高。 风力发电维护成本高的原因在于高空吊装困难, 成本比较高; 另外, 随着技术的进步, 陆地和海上建筑物或其他人工设施的高度不断增加, 由 于当前的升降装置是通过液压或电力驱动, 且难以与相应设施保持独立, 不能满足对这些设施进行多角度、 多方位、 灵活维护的要求; 在维护时, 也需要大型起重机进行高空吊装的协助才能完成, 因此, 在其他高空吊装 的场合, 同样也存在因高空吊装困难, 成本高导致的维护成本较高, 效率 较低的技术问题。
因此, 如何降低高空吊装的成本, 提高高空吊装效率成为亟待解决的 技术问题。
发明内容
针对上述技术问题, 本发明的第一个目的在于提供一种攀爬装置, 该 攀爬装置能够以被攀爬物为基础, 爬升到预定高度。
本发明的第二个目的在于提供一种能够将相应人员和物品运送到预定 高度位置的攀爬系统。
本发明的第三个目的是提供一种能够在高空进行吊装作业的攀爬起吊 系统, 以降低高空吊装成本, 提高高空吊装效率。
本发明的第四个目的是提供一种以被攀爬物为基础的攀爬方法。
本发明提供的攀爬装置包括上平台、 上固定机构、 下平台和下固定机 构, 上平台与下平台之间设有伸缩机构, 该伸缩机构能够改变上平台与下 平台之间的距离; 所述上固定机构安装在上平台上, 所述下固定机构安装 在下平台上; 所述攀爬装置能够分别通过上固定机构和下固定机构固定在 被攀爬物上。
优选地, 所述伸缩机构包括至少一个伸缩油缸, 所述伸缩油缸的两端 分别与上平台和下平台固定。
优选地, 所述的上固定机构和下固定机构为夹持机构, 所述的夹持机 构包括伸缩件和至少两个夹持板, 所述的夹持板至少有一个是活动式夹持 板; 所述上固定机构和下固定机构的伸缩件的一端分别与上平台和下平台 固定, 所述伸缩件的另一端安装有活动式夹持板, 所述的伸缩件能够使活 动式夹持板移动。 优选地, 所述伸缩件为夹持油缸。
优选地, 所述的上平台和下平台中分别设有中间孔; 所述中间孔能够 套在被攀爬物外。
优选地, 所述的上平台包括固定相连的左上平台和右上平台; 所述左 定相连的左下平台和右下平台, 所述的左下平台与右下平台之间的配合面 通过下平台的中间孔。
本发明提供的一种攀爬系统, 包括上述第一种或第二种的攀爬装置和 支撑柱, 所述的支撑柱外壁上设有多个与所述上固定机构和下固定机构配 合的支撑部; 所述的上固定机构和下固定机构能够与支撑部相配合。
优选地, 所述的上固定机构和下固定机构分别包括可伸缩的凸起, 所 述的支撑部为 iHJ槽; 所述凸起能够与 IHJ槽相配合。
提供的另一种攀爬系统, 包括上述第 3项或第 4项所述的攀爬装置和 支撑柱。
优选地, 所述的上平台和下平台中各设有互相贯通的中间孔; 所述中 间孔能够套在支撑柱外。
本发明提供的攀爬起吊系统, 包括起吊装置和攀爬装置, 所述的起吊 装置包括立柱、 吊臂、 滑轮机构和吊具, 所述的吊臂安装在立柱的上端, 所述的滑轮机构安装在吊臂上, 所述的吊具与滑轮机构相连; 所述的攀爬 装置为上述的攀爬装置或者为上述的攀爬系统, 所述的立柱安装在攀爬装 置的上平台或下平台上。
优选地, 所述的吊臂可旋转地安装在立柱的上端。
本发明提供的攀爬方法, 包括以下步骤:
A1 , 上固定机构工作, 使攀爬装置的上平台与被攀爬物固定; 所述的 上平台和下平台上分别设有上固定机构和下固定机构; 所述攀爬装置能够 分别通过上固定机构和下固定机构固定在被攀爬物上; 所述上平台和下平 台之间设有伸缩机构, 该伸缩机构能够改变上平台与下平台之间的距离; A2 , 所述伸缩机构工作, 改变上平台与下平台之间的距离;
A3 , 所述下固定机构工作, 使所述下平台与被攀爬物固定; A4, 所述上固定机构工作, 使上平台与被攀爬物相分离; A5 , 所述伸缩机构工作, 改变上平台与下平台之间的距离。
可选地, 所述的步骤 A2 中, 所述改变上平台与下平台之间的距离, 具体是, 减小上平台与下平台之间的距离;
所述的步骤 A5 中, 所述改变上平台与下平台之间的距离, 具体是, 增加上平台与下平台之间的距离;
在步骤 A5之后, 如果未到达预定位置, 返回步骤 Al。
本发明提供的攀爬装置包括上平台、 上固定机构、 下平台和下固定机 构、 上平台与下平台之间设有伸缩机构, 该伸缩机构能够使上平台与下平 台之间的距离产生变化; 上固定机构安装在上平台上, 下固定机构安装在 下平台上, 上固定机构能够与被攀爬物相配合, 单独使攀爬装置固定在被 攀爬物上, 下固定机构也能够与被攀爬物相配合, 单独使攀爬装置固定在 被攀爬物上。 在向上攀爬时, 启动上固定机构, 使上平台与被攀爬物固定, 下平台处于自由状态, 通过伸缩机构减小上平台和下平台之间的距离, 下 平台及下固定机构一起上升; 下固定机构启动, 将下平台固定在被攀爬物 上; 解除上固定机构与被攀爬物之间的配合,使上平台与被攀爬物相分离; 然后再通过伸缩机构增加上平台和下平台之间的距离, 使上平台及上固定 机构一起上升; 再启动上固定机构, 使上固定机构与被攀爬物相配合, 解 除下固定机构与被攀爬物之间的配合, 下平台处于自由状态, 再通过伸缩 机构减小上平台和下平台之间的距离, 使下平台及下固定机构一起上升, 这样通过循环上述过程使整个攀爬装置能够沿被攀爬物不断上升。 如果向 下攀爬, 可以釆用相对应的步骤使攀爬装置不断下降。 与现有的升降装置 相比, 本发明提供的攀爬装置为可移动式装置, 可以根据需要从多个位置 进行攀爬, 只要攀爬装置的固定机构釆用合适的结构, 就能够以被攀爬物 为基础到达预定的位置或高度,可以应用于对多种人工设施的维护; 另外, 由于攀爬装置可以整体上升或下降, 占用空间小, 转场运输非常方便, 可 以减 d、对相关设施的维护成本和周期。
在进一步的技术方案中, 所述的上固定机构和下固定机构为由夹持板 构成的夹持机构, 夹持板的配合能够使固定机构适用于更多的场合, 能够 提高攀爬装置的适应性能。
在进一步的技术方案中, 在上平台和下平台上设中间孔, 并使中间孔 能够容纳被攀爬物, 将被攀爬物套在中间孔内。 在攀爬过程中, 使被攀爬 物处于攀爬装置中间, 攀爬装置的重心落在被攀爬物内, 这样能够提高攀 爬装置的稳定性和可靠性。
在进一步的技术方案中, 上平台和下平台分别分为横向布置的两个部 分, 这样能够为攀爬装置的制造、 运输提供方便, 在需要攀爬时, 可以将 上平台和下平台在现场进行装配,这样能够进一步改善攀爬装置的适应性。
本发明提供的攀爬系统包括上述的攀爬装置和支撑柱, 攀爬装置的上 固定机构和下固定机构与支撑柱相配合。 在需要将相应设备运送到预定高 空时, 可以先将支撑柱固定, 将相应设备放置在攀爬装置的平台上, 使攀 爬装置沿支撑柱向上攀爬, 从而将相应设备送到预定位置。
本发明提供的攀爬起吊系统包括起吊装置和上述攀爬装置, 起吊装置 固定在攀爬装置上, 攀爬装置升到一定高度, 起吊装置可以进行相应吊装 作业, 为相关设施的维护提供便利。 由于风力发电设备位于风机塔筒顶端, 本发明提供的攀爬起吊装置中的攀爬装置能够利用风机塔筒爬升到风机塔 筒顶端, 并将起吊装置带到风机塔筒顶端, 为相关设备的吊装提供便利, 因此特别适用于对风力发电设备的维护。
本发明提供的攀爬方法, 能够以被攀爬物为基础, 攀爬到预定高度, 具有简单灵活的特点, 可以在多种场合适用。
本发明提供的攀爬装置适用于对高空设施的维护; 提供的攀爬起吊系 附图说明
下面结合附图和具体实施方式对本发明作进一步详细的说明。
图 1是实施例一提供的攀爬起吊装置结构示意图;
图 2是实施例一攀爬装置中左半平台结构示意图;
图 2-1是其他夹持机构的夹持原理示意图;
图 3是本发明提供的攀爬系统结构示意图;
图 4是攀爬系统中固定机构的结构示意图; 图 5是本发明提供的向上攀爬的攀爬方法流程图;
图 6是本发明提供的向下攀爬的攀爬方法流程图。
具体实施方式
本部分的描述仅是示范性和解释性, 不应对本发明的保护范围有任何 的限制作用。
为了避免重复, 下面对提供的攀爬起吊装置及攀爬系统具体实施方式 进行描述的同时, 对攀爬装置的结构进行相应描述, 不再单独对攀爬装置 的具体实施方式进行描述。
如图 1所示, 实施例一提供了一种攀爬起吊系统, 该攀爬起吊系统能 够用于对风力发电场风机塔筒顶端设备进行吊装和运送, 该攀爬起吊系统 包括攀爬装置 100和起吊装置 200。 以下对攀爬装置 100和起吊装置 200 分别进行描述。
所述攀爬装置 100包括上平台 1、 下平台 2、 伸缩机构 9和 12个活动 式夹持板 10 , 上平台 1设有中间孔 1-1 , 下平台 2设有中间孔 2-1 ; 上平台 1由相互配合的左上平台 1-2和右上平台 1-3组成;本例为优选的技术方案, 左上平台 1-2与右上平台 1-3相互对称, 其配合面与上平台 1平面基本垂 直, 且通过中间孔 1-1 ; 左上平台 1-2和右上平台 1-3通过螺栓固定相连; 下平台 2的结构与上平台 1结构相同, 包括相互配合, 且对称的左下平台 2-2和右下平台 2-3 , 左下平台 2-2和右下平台 2-3也通过螺栓固定相连。
参考图 2 , 活动式夹持板 10固定在夹持油缸 12—端, 其中 6个夹持 油缸 12另一端固定在上平台 1中间孔 1-1的孔壁上, 6个活动式夹持板 10 两两相对, 均匀分布, 能够向中间孔 1-1 中心伸出, 固定在中间孔 1-1的 孔壁上的 6个夹持油缸和活动式夹持板 10组成上平台 1的夹持机构。同样, 另外 6个夹持油缸 12的另一端固定在下平台 2中间孔 2-1孔壁上,与活动 式夹持板形成下平台 2的夹持机构。
上平台 1和下平台 2之间由伸缩油缸 9相连接, 伸缩油缸 9两端分别 与上平台 1和下平台 2固定。 作为上平台 1与下平台 2之间的伸缩机构, 伸缩油缸 9活塞的伸出或缩回能够改变上平台 1与下平台 2之间的距离, 本例中, 设有四个伸缩油缸 9 , 分别位于上平台 1和下平台 2之间的四个 角位置, 以保证上平台 1与下平台 2之间距离改变的稳定性和可靠性。 所述的起吊装置包括立柱 3、 吊臂 4、 滑轮机构 5和吊具 6。 立柱 3固 定在攀爬装置 100的上平台 1的上表面, 吊臂 4安装在立柱 3的上端, 滑 轮机构 5安装在吊臂 4上, 吊具 6与滑轮机构 5相连。
图 1中还示出了液压站 7、 电控拒 8和配重块 11。 液压站 7能够为爬 升装置提供液压动力, 电控拒 8能够通过电路控制攀爬装置 100和起吊装 置 200相应部件的运动, 在进行吊装、 运送作业时, 配重块 11与吊装部件 相对, 能够起到平衡的作用, 保证攀爬起吊系统的稳定和安全。 上平台 1 上也可以放置其他设备或物品, 以满足其他需要。
在需要对风机塔筒顶端的设备进行吊装与运送时, 可以先将左上平台
1-2、 右上平台 1-3、 左下平台 2-2、 右下平台 2-3及四个伸缩油缸 9分别运 输到风机塔筒下方, 现场组装成攀爬装置; 再将起吊装置安装在上平台 1 上。 组装完成后可以进行向上攀爬的工作。
攀爬装置 100向上攀爬的工作过程为:
第一步, 使下平台 2上的 6个夹持油缸 12的活塞同时伸出时, 6个活 动式夹持板 10共同向中间孔 2-1中心移动, 从而与风机塔筒外壁接触, 并 对风机塔筒外壁施加相应的作用力, 使风机塔筒外壁与活动式夹持板 10 之间产生摩擦力, 该摩擦力使下平台 2 固定在风机塔筒外壁上。 下平台 2 上的夹持机构作为下固定机构通过将下平台 2固定在风机塔筒外壁使整个 攀爬起吊系统与风机塔筒固定。
第二步, 四个伸缩油缸 9的活塞同时伸出, 使上平台 1和下平台 2之 间的距离增加, 由于下平台 2与风机塔筒外壁固定, 上平台 1会上升一个 行程的距离。
第三步, 上平台 1 的夹持油缸 12的活塞同时伸出, 上平台 2上的 6 个活动式夹持板 10共同向中间孔 1-1中心移动,使风机塔筒外壁与活动式 夹持板 10之间产生与相应摩擦力,使上平台 1固定在风机塔筒外壁上。 同 样, 上平台 1上的夹持机构作为上固定机构通过将上平台 1固定在风机塔 筒外壁使整个攀爬起吊系统与风机塔筒固定。
第四步, 下平台 2上夹持油缸 12缩回, 下平台 2上的活动夹持板 10 与风机塔筒外壁脱离。
第五步, 伸缩油缸 9活塞同时缩回, 使下平台 2上升一个行程。
然后重复第一步, 通过伸缩油缸 9的多次伸缩, 攀爬起吊装置的高度 不断增加, 逐渐地攀爬到风机塔筒顶端。
攀爬起吊系统到达风机塔筒顶端后, 起吊装置 200开始工作, 立柱 3 顶部的回转支撑在液压马达的驱动下带动吊臂 4旋转至风机机抢上空, 滑 轮机构 5与吊具 4配合, 将故障部件起吊; 吊臂 4再次旋转至远离风机塔 筒的一侧, 此时, 配重块 11与故障部件分别位于立柱 3两侧, 能够起到平 衡的作用, 防止攀爬起吊系统偏斜。 启动攀爬装置, 通过反复步骤, 使攀 爬起吊装置逐渐下降到地面上, 对故障部件进行维修。
根据上述描述, 可以理解攀爬起吊系统可以现场组装, 因此, 该系统 设备的运输转场非常方便; 另外, 釆用上述攀爬起吊系统, 由于需要的起 重高度较低, 利用中、 小型起吊装置就可以实现对故障部件的高空起吊作 业, 避免了大型起重设备的利用, 降低高空故障部件的吊装费用。
本例中,为保持攀爬起吊作业的安全性,在立柱顶端设置了回转支撑, 在向上和向下攀爬过程中, 使吊臂 4旋转至上平台 1外方, 以保持攀爬过 程的顺利; 在进行起吊时, 再使吊臂 4旋转至风机塔筒上方, 以方便相应 部件的起吊。 本领域技术人员可以理解, 实现高空起吊作业不限于上述具 体结构, 起吊装置 200不限于固定在攀爬装置 100的上平台 1上, 也可以 固定在下平台 2上; 起吊装置也可以是其他具体结构, 也可以是独立的起 重机; 只要能够固定在攀爬装置 100上, 就可以由攀爬装置 100带到风机 塔筒顶端, 就可以进行高空吊装, 降低高空吊装的成本。
下面对攀爬装置 100的技术特征进行说明。
上述伸缩机构不限于伸缩油缸 9,还可以釆用其他方式体实现上平台 1 与下平台 2之间距离的变化, 比如说, 可以通过气压系统实现, 也可以釆 用螺旋机构, 设一端与下平台固定的螺紋杆, 并使该螺紋杆的另一端与上 平台通过螺紋配合, 再通过其他机构驱动螺紋杆旋转就可以改变上平台 1 与下平台 2之间的距离, 还可以通过磁场的变换实现, 等等。 另外, 本领 域技术人员可以理解,伸缩机构的伸缩方向也不限于与上平台 1表面垂直, 在伸缩方向倾斜的情况下, 攀爬装置 100可以在倾斜的风机塔筒或其他被 攀爬物上上升或下降。
本例中, 在上平台 1和下平台 2上分别设中间孔 1-1和中间孔 2-1 , 在 攀爬时, 使风机塔筒位于中间孔 1-1和中间孔 2-1 中, 这样能够保证攀爬 起吊系统的重心落在风机塔筒内, 降低对夹持机构刚度和强度的要求, 保 持攀爬起吊系统的稳定和安全性, 本领域技术人员可以理解, 在攀爬过程 中, 也可以使夹持机构从上平台和下平台向外侧伸出, 风机塔筒也可以在 上平台和下平台外侧, 只要作为固定机构的夹持机构具备相应的刚度和强 度, 同样可以实现本发明目的。 另外, 本领域技术人员可以理解, 上平台 1和下平台 2不限于上述结构, 其配合面可以是一个斜面, 也可以是一个 相互配合的齿形面; 同样可以实现攀爬起吊系统的模块化, 便于攀爬装置 及攀爬起吊系统的制造、 运输和安装。 夹持机构可以包括两个相对的夹持板, 以将风机塔筒夹持在中间, 也可以 包括三个夹持板, 同样可以将风机塔筒夹持在中间; 为了保证夹持的可靠 性, 可以增加夹持板的对数或个数。 另外, 夹持板中可以包括与上平台 1 或下平台 2固定的夹持板, 和至少一个能够移动的活动式夹持板, 以使夹 持板与风机塔筒之间可以在抱紧状态和分离状态之间转换。 另外, 实现抱 紧状态与分离状态的转换也不限于釆用液压油缸的方式, 还可以用其他伸 缩件实现, 比如说可以利用电磁场的变换实现,也可以通过气压系统实现, 另外, 将攀爬起吊系统固定在风机塔筒上也不限于夹持的方法, 本发 明提供的攀爬系统提出了另一种固定攀爬装置的方法。
如图 3所示, 攀爬系统包括攀爬装置 100和支撑柱 300, 所述的攀爬 装置包括上平台 1和下平台 2 , 作为伸缩机构的伸缩油缸 9, 和固定机构 10-1 , 上平台 1和下平台 2结构与攀爬起吊系统中结构相同, 且均设有固 定机构;如图 4所示,固定机构 10-1包括固定凸块 10-11和固定油缸 10-10, 固定油缸 10-10—端分别与下平台 1或下平台 2固定, 固定凸块 10-11与 固定油缸 10-10另一端固定。 当固定油缸 10-10活塞伸出或缩回时, 固定 凸块 10-11也随着移动;所述支撑柱 300包括凹槽 300-1 ,所述的凹槽 300-1 能够与固定凸块 10-11相配合。 在需要使攀爬装置 100与支撑柱 300固定 时, 可以使固定油缸 10-10 的活塞伸出, 使固定凸块 10-11 与凹槽 300-1 配合, 从而使凸槽 300支撑攀爬装置 100。 本领域技术人员可以理解, 实 现上述支撑的方法还可以有多种选择, 比如说, 可以在支撑柱 300上设凸 台作为支撑部, 同样可以使攀爬装置 100固定在支撑柱 300上。 本领域技 根据以上描述, 本领域技术人员可以理解, 将实施例一中的攀爬装置 100 与一个支撑柱相结合, 也可以得到相应的攀爬系统。 另外, 本领域技 术人员还可以将上述技术特征进行组合形成其他的具体实现方式,比如说, 可以将不同结构的上平台和下平台组合, 或者将不同的固定机构与不同的 上平台和下平台组成具体的攀爬装置; 也可以将不同结构的支撑柱或支撑 物与不同的攀爬装置组成具体的攀爬系统; 为了满足高空作业, 也可以将 攀爬装置与其他设备相结合形成其他的组合设备等等。
在提供上述攀爬起吊系统、 攀爬系统的基础上, 本发明还提供了一种 攀爬方法, 其中, 如图 5所示, 向上攀爬的方法包括以下步骤:
5101 , 下固定机构工作, 使攀爬装置的下平台与被攀爬物固定, 所述 的攀爬装置包括上平台、 下平台、 上固定机构和下固定机构, 上固定机构 与上平台固定, 下固定机构与下平台固定, 所述攀爬装置能够分别通过上 固定机构和下固定机构固定在被攀爬物上; 所述上平台和下平台之间设有 伸缩机构, 该伸缩机构能够改变上平台与下平台之间的距离。 一般来讲, 初始状态的攀爬装置中伸缩机构一般为缩回状态, 因此, 一般使下平台先 固定, 然后通过使伸缩机构工作, 将上平台顶升。 本领域技术人员可以理 解, 如果初始状态下伸缩机构保持伸出状态, 也可以先将上平台与被攀爬 物固定, 上固定机构先工作。
5102, 伸缩机构工作, 使上平台与下平台之间的距离增加, 将上平台 向上顶升。
5103 , 上固定机构工作, 使上平台固定在被攀爬物上。
5104, 下固定机构工作, 使下平台与被攀爬物分离。 5105 , 伸缩机构工作, 使上平台与下平台之间的距离减小, 将下平台 向上抬升。
5106, 判断是否到达预定高度, 如果是, 则停止; 如果否则返回步骤 S101。 多次反复进行上述步骤, 能够到达预定的高度, 然后停止攀爬。
上述过程的基本原理请参照上述对攀爬装置的描述, 此处不再赘述。 另外, 如图 6所示, 向下攀爬的方法包括以下步骤:
S201 , 下固定机构工作, 使攀爬装置的下平台与被攀爬物固定。 所述 的攀爬装置与向上攀爬使用的攀爬装置可以相同。 同样, 根据初始状态的 不同, 也可以先使上固定机构工作。
S202, 伸缩机构工作, 使上平台与下平台之间的距离减小, 使上平台 下降。
5203 , 上固定机构工作, 使上平台固定在被攀爬物上。
5204, 下固定机构工作, 使下平台与被攀爬物分离。
5205 , 伸缩机构工作, 使上平台与下平台之间的距离增加, 使下平台 下降。
5206, 判断是否到达预定位置, 如果是, 则停止; 如果否, 则返回步 骤 S201。 多次反复进行上述步骤, 能够到达预定位置, 然后停止攀爬 以上所述仅是本发明的优选实施方式, 应当指出, 对于本技术领域的 普通技术人员来说, 在不脱离本发明原理的前提下, 还可以做出若干改进 和润饰, 这些改进和润饰也应视为本发明的保护范围。

Claims

权 利 要 求
1、 一种攀爬装置, 其特征在于, 包括上平台、 上固定机构、 下平台和 下固定机构, 上平台与下平台之间设有伸缩机构, 该伸缩机构能够改变上 平台与下平台之间的距离; 所述上固定机构安装在上平台上, 所述下固定 机构安装在下平台上; 所述攀爬装置能够分别通过上固定机构和下固定机 构固定在被攀爬物上。
2、根据权利要求 1所述的攀爬装置, 其特征在于, 所述伸缩机构包括 至少一个伸缩油缸, 所述伸缩油缸的两端分别与上平台和下平台固定。
3、根据权利要求 1所述的攀爬装置, 其特征在于, 所述的上固定机构 和下固定机构为夹持机构,所述的夹持机构包括伸缩件和至少两个夹持板, 所述的夹持板至少有一个是活动式夹持板; 所述上固定机构和下固定机构 的伸缩件的一端分别与上平台和下平台固定, 所述伸缩件的另一端安装有 活动式夹持板, 所述的伸缩件能够使活动式夹持板移动。
4、根据权利要求 3所述的攀爬装置, 其特征在于, 所述伸缩件为夹持 油缸。
5、 根据权利要求 1-4任一项所述的攀爬装置, 其特征在于, 所述的上 平台和下平台中分别设有中间孔; 所述中间孔能够套在被攀爬物外。
6、根据权利要求 5所述的攀爬装置, 其特征在于, 所述的上平台包括 固定相连的左上平台和右上平台; 所述左上平台与右上平台之间的配合面 通过上平台的中间孔;
所述下平台包括固定相连的左下平台和右下平台, 所述的左下平台与
7、 一种攀爬系统, 其特征在于, 包括权利要求 1或 2所述的攀爬装置 和支撑柱, 所述的支撑柱外壁上设有多个与上固定机构和下固定机构配合 的支撑部; 所述的上固定机构和下固定机构能够与支撑部相配合。
8、根据权利要求 7所述的攀爬系统, 其特征在于, 所述的上固定机构 和下固定机构分别包括可伸缩的凸起, 所述的支撑部为 IHJ槽; 所述凸起能 够与所述凹槽相配合。
9、 一种攀爬系统, 其特征在于, 包括权利要求 3或 4所述的攀爬装置 和支撑柱。
10、 根据权利要求 9所述的, 其特征在于, 所述的上平台和下平台中 各设有互相贯通的中间孔; 所述中间孔能够套在所述支撑柱外。
11、 一种攀爬起吊系统, 其特征在于, 包括起吊装置和攀爬装置, 所 述的起吊装置包括立柱、 吊臂、 滑轮机构和吊具, 所述的吊臂安装在立柱 的上端, 所述的滑轮机构安装在吊臂上, 所述的吊具与滑轮机构相连; 所 述的攀爬装置为权利要求 1-6任一项所述的攀爬装置或者为权利要求 7-10 任一项所述的攀爬系统,所述的立柱安装在攀爬装置的上平台或下平台上。
12、根据权利要求 11所述的攀爬起吊系统, 其特征在于, 所述的吊臂 可旋转地安装在所述立柱的上端。
13、 一种攀爬方法, 其特征在于, 包括以下步骤:
A1 , 上固定机构工作, 使攀爬装置的上平台与被攀爬物固定; 所述的 上平台和下平台上分别设有上固定机构和下固定机构, 所述攀爬装置能够 分别通过上固定机构和下固定机构固定在被攀爬物上; 所述上平台和下平 台之间设有伸缩机构, 该伸缩机构能够改变上平台与下平台之间的距离; A2 , 所述伸缩机构工作, 改变上平台与下平台之间的距离;
A3 , 所述下固定机构工作, 使所述下平台与被攀爬物固定;
A4 , 所述上固定机构工作, 使上平台与被攀爬物相分离;
A5 , 所述伸缩机构工作, 改变上平台与下平台之间的距离。
14、 根据权利要求 13所述的攀爬方法, 其特征在于,
所述的步骤 A2 中, 所述改变上平台与下平台之间的距离, 具体是, 减小上平台与下平台之间的距离;
所述的步骤 A5 中, 所述改变上平台与下平台之间的距离, 具体是, 增加上平台与下平台之间的距离;
在步骤 A5之后, 如果未到达预定位置, 返回步骤 Al。
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