WO2019061315A1 - 一种带保护套绳的建筑设备吊装组件 - Google Patents

一种带保护套绳的建筑设备吊装组件 Download PDF

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Publication number
WO2019061315A1
WO2019061315A1 PCT/CN2017/104437 CN2017104437W WO2019061315A1 WO 2019061315 A1 WO2019061315 A1 WO 2019061315A1 CN 2017104437 W CN2017104437 W CN 2017104437W WO 2019061315 A1 WO2019061315 A1 WO 2019061315A1
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Prior art keywords
protective
construction equipment
groove
hook
lanyard
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PCT/CN2017/104437
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English (en)
French (fr)
Inventor
张佩嫦
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张佩嫦
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Application filed by 张佩嫦 filed Critical 张佩嫦
Priority to PCT/CN2017/104437 priority Critical patent/WO2019061315A1/zh
Publication of WO2019061315A1 publication Critical patent/WO2019061315A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66CCRANES; LOAD-ENGAGING ELEMENTS OR DEVICES FOR CRANES, CAPSTANS, WINCHES, OR TACKLES
    • B66C9/00Travelling gear incorporated in or fitted to trolleys or cranes
    • B66C9/02Travelling gear incorporated in or fitted to trolleys or cranes for underhung trolleys or cranes

Definitions

  • the invention relates to the field of construction equipment, in particular to a construction equipment lifting assembly with a protective rope.
  • China is already a big engineering country.
  • China has almost the largest engineering and most engineering volume in the world. If there is the largest amount of construction site, the largest amount of construction in the year and the annual construction area, the largest amount of building materials will be consumed each year. High-rise buildings are often used, and hoisting components are often required in construction equipment.
  • a hoisting assembly for a construction equipment with a protective lanyard comprising a body, a mounting seat, a pump base and a control keyboard, wherein the mounting body is provided on the body, and the mounting seat is provided with a threaded hole, and the side of the body is arranged
  • a pump seat the pump base is provided with an air pump
  • the air pump end is provided with a cylinder
  • the cylinder is internally provided with a piston
  • the piston end is provided with a push rod
  • the push rod end is provided with a push plate
  • a bottom surface of the push plate is provided with a fixing groove
  • a horizontal axis is disposed in the fixing groove
  • a rope is disposed on the horizontal axis
  • a connecting block is disposed at the end of the rope
  • the inside of the sleeve is provided with a protective sleeve
  • the inside of the protective sleeve is provided with a reinforcing rope
  • the bottom surface of the rope is provided with
  • the material of the mounting seat is low carbon steel
  • the threaded hole is a blind hole and is made by drilling.
  • the flow rate of the air pump is 100 L/min
  • the air pump is fixed to the pump base by bolts
  • the cylinder is fixed to the air pump by bolts.
  • the piston is mated with the cylinder, and the maximum stroke of the push rod is 1200 mm.
  • the cross-sectional shape of the fixing groove is one of a circular arc groove or a rectangular groove, and the fixing groove is processed by milling, and the diameter of the horizontal axis 1 is not less than 15 mm.
  • the horizontal axis is welded to both sides of the fixing groove.
  • the cross-sectional shape of the mounting groove is consistent with the cross-sectional shape of the fixing groove
  • the mounting groove is processed by milling, and the horizontal axis is welded on both sides of the mounting groove.
  • the horizontal axis 1 and the horizontal axis 2 have the same size.
  • the sleeve has a radial dimension of not less than 10 mm, the cross-sectional area of the sleeve is circular, and the sleeve is coated with a calcium-based grease, and the connection block is fixed by Riveting.
  • the material of the protective sleeve is a tempered rubber
  • the thickness of the protective sleeve is not less than 1 mm
  • the material of the reinforcing rope is alloy steel
  • the thickness of the reinforcing rope is not less than 4 mm.
  • the connection manner of the reinforcing rope and the protective cover is welding.
  • the material of the fixing block is alloy steel
  • the maximum radius of curvature of the hook is 200 mm
  • the connection manner of the hook and the fixing block is welding.
  • the limit range of the force sensor is 20000N, and the force sensor is embedded in the hook.
  • the model of the control host is PLC S7-600
  • the material of the display screen is IPS
  • the control keyboard is embedded in the control host.
  • the upper sliding slot is slidably connected to the push plate, and the sliding groove is slidably connected to the push plate.
  • the height of the upper sliding slot is 10 mm larger than the height of the sliding groove.
  • the chute and the glide groove are coated with a calcium-based grease.
  • control host is electrically connected to the display screen, the air pump, the force sensor, and the control keyboard.
  • the utility model has the beneficial effects that: the fixing block and the pushing plate are connected by a lanyard, and the lanyard is riveted through the connecting block, and the protective rope made of the tempered rubber and the reinforcing rope made of the alloy steel are arranged in the rope.
  • the hook is flexibly protected during use to prevent the hook from falling out of the chute and avoiding the occurrence of a safety accident.
  • a powerful sensor is arranged inside the hook to obtain the gravity of the cargo and display it when lifting the cargo.
  • the real-time display on the screen allows the user to accurately control the weight of the hoisted cargo within the range of the failure weight of the lanyard to avoid the failure of the lanyard and affect the use.
  • Figure 1 is an external view of a hoisting assembly for a construction equipment with a protective tether according to the present invention
  • Figure 2 is an internal view of a hoisting assembly for a construction equipment with a protective lanyard according to the present invention
  • Figure 3 is a plan view of a hoisting assembly for a construction equipment with a protective lanyard according to the present invention
  • FIG. 4 is a partial cross-sectional view of a construction equipment lifting assembly with a protective tether according to the present invention.
  • a construction equipment hoisting assembly with a protective lanyard includes a body 2, a mounting seat 1, a pump base 10 and a control keyboard 11, and the mounting body 1 is disposed on the body 2,
  • the mounting seat 1 is provided with a threaded hole 13
  • the pump body 10 is disposed on the side of the body 2
  • the pump base 10 is provided with an air pump 9
  • the end of the air pump 9 is provided with a cylinder 8
  • the cylinder 8 is internally provided with a piston 22
  • the end of the piston 22 is provided with a push rod 23
  • the end of the push rod 23 is provided with a push plate 15
  • the bottom surface of the push plate 15 is provided with a fixing groove 17, the fixing groove
  • a transverse shaft 18 is disposed in the 17th
  • the horizontal shaft 18 is provided with a set of ropes 4, and the end of the set of ropes 4 is provided with a connecting block 12, and the protective rope 24 is internally provided with the protective sleeve 24, the protection
  • the material of the mounting seat 1 is low carbon steel
  • the mounting seat 1 is used to mount the body 2 in a use position
  • the threaded hole 13 is a blind hole, which is made by drilling.
  • the threaded hole 13 is fastened to the mount 1 by means of a screw.
  • the flow rate of the air pump 9 is 100 L/min, and the air pump 9 is fixed to the pump base 10 by bolts, and the air pump 9 is used to provide power for lateral movement of the hook 6.
  • the cylinder 8 is fixed to the air pump 9 by bolts for facilitating the traverse of the piston 22.
  • the piston 22 is in a transitional engagement with the cylinder 8 , and the piston 22 is used to drive the push rod 23 to traverse.
  • the maximum stroke of the push rod 23 is 1200 mm, and the push rod 23 is used. Drive The push plate 15 is traversed.
  • the cross-sectional shape of the fixing groove 17 is one of a circular arc groove or a rectangular groove, and the fixing groove 17 is processed by milling, and the fixing groove 17 is used to facilitate the
  • the string 4 passes through the transverse axis 18, the horizontal axis 18 has a diameter of not less than 15 mm, and the horizontal axis 18 is welded to both sides of the fixing groove 17, and the horizontal axis 18 is used.
  • the cross-sectional shape of the mounting groove 19 is consistent with the cross-sectional shape of the fixing groove 17, and the mounting groove 19 is processed by milling, and the mounting groove 19 is used to facilitate the sleeve.
  • the rope 4 passes through the horizontal axis 20, and the horizontal axis 20 is welded to both sides of the mounting groove 19.
  • the horizontal axis 18 and the horizontal axis 20 are the same size, and the horizontal axis Two 20 is used to make the set of ropes 4.
  • the sleeve 4 has a radial dimension of not less than 10 mm, the sleeve 4 has a circular cross-sectional area, and the sleeve 4 is coated with a calcium-based grease, and the sleeve 4 is coated with a grease. It is used to connect the push plate 15 and the fixing block 5, and the connecting block 12 is fixed by riveting, and the connecting block 12 is used to close the rope 4.
  • the material of the protective cover 24 is a tempered rubber
  • the thickness of the protective cover 24 is not less than 1 mm
  • the protective cover 24 is used to protect the sheathing rope 4
  • the material of the reinforcing rope 25 For the alloy steel, the reinforcing cord 25 has a thickness of not less than 4 mm, and the reinforcing cord 25 is welded to the protective sleeve 24 in a manner of welding, and the reinforcing cord 25 is used to increase the strength of the sheathing rope 4.
  • the material of the fixing block 5 is alloy steel, and the fixing block 5 is used for mounting and fixing the hook 6.
  • the maximum radius of curvature of the hook 6 is 200 mm, and the hook 6 is used.
  • the hook 6 is connected to the fixing block 5 by welding.
  • the limit range of the force sensor 21 is 20000N
  • the force sensor 21 is embedded in the hook 6
  • the force sensor 21 is used to acquire the force of the cargo at the hook 6 in real time. Size information.
  • the model of the control host 3 is PLC S7-600
  • the material of the display screen 7 is IPS
  • the control keyboard 11 is embedded in the control host 3.
  • the upper chute 14 is slidably connected to the push plate 15
  • the sliding groove 16 is slidably connected to the push plate 15 .
  • the height of the upper chute 14 is higher than the height of the sliding groove 16 .
  • a large 10 mm, the upper chute 14 and the glide groove 16 are coated with a calcium-based grease, and the upper chute 14 and the glide groove 16 are used to facilitate lateral movement of the push plate 15 therein.
  • control host 3 is electrically connected to the display screen 7, the air pump 9, the force sensor 21, and the control keyboard 11.
  • the specific working principle of the present invention is that the horizontal axis 20 in the mounting groove 19 on the fixing block 5 passes through the sleeve 4 while being in the fixing groove 17
  • the horizontal axis 18 passes through the set of ropes 4, and then the set of ropes 4 is riveted and closed by the connecting block 12, thus completing the fixing of the hooks 6,
  • the set of ropes 4 is provided with the protective cover 24, the material of the protective cover 24 is tempered rubber, so that the set of ropes 4 can be protected from the external environment to erode the set of ropes 4, while the set of ropes 4
  • the reinforcing rope 25 is provided, and the material of the reinforcing rope 25 is alloy steel, which has good rigidity and tensile strength, so that the strength of the rope 4 can be increased, thereby ensuring smooth operation of the entire lifting work.
  • the user fastens the component through the threaded hole 13 in the mounting seat 1 to fix it in the designated use position, after which the user fixes the cargo on the component through the hook 6.
  • the user sends a work instruction through the control keyboard 11, and the control host 3
  • the operation of the air pump 9 drives the piston 22 to traverse within the cylinder 8, the piston 22 drives the push rod 23 to traverse, and the push rod 23 drives the push plate 15 in the upper chute 14 and the sliding groove 16 is traversed, the hook 6 is traversed by the fixing block 5 to complete the movement of the goods, and when the gravity detecting function of the goods is needed, the user passes the control keyboard 11 sending a work instruction, the control host 3 controls the gravity sensor 21 to work in real time to obtain the hook 6
  • the gravity information of the cargo is transmitted back to the control host 3, and the control host 3 transmits the gravity information to the display screen 7 through the wire for real-time display for the user to observe and understand, so that the user can accurately grasp the hook.
  • the weight information of the cargo on the 6 can

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Load-Engaging Elements For Cranes (AREA)

Abstract

一种带保护套绳(4)的建筑设备吊装组件,包括机体(2)、安装座(1)、泵座(10)和控制键盘(11),机体上面设置有安装座,安装座内设置有螺纹孔(13),机体侧面设置有泵座,泵座上设置有气泵(9),气泵端部设置有气缸(8)。通过套绳(4)连接固定块(5)和推板(15)后通过连接块(12)将套绳进行铆接,且套绳内设置有调质橡胶制成的保护套(24)和合金钢制成的加固绳(25),能够对吊钩(6)在使用过程中进行柔性保护,防止吊钩推出滑槽而坠落,避免了安全事故的产生,同时吊钩内部设置有力传感器(21),能够在吊起货物时获取货物的重力的大小并在显示屏(7)上实时显示,方便使用者准确控制吊起货物的重量在套绳失效重力的范围以内,避免套绳失效而影响到使用。

Description

一种带保护套绳的建筑设备吊装组件 技术领域
本发明涉及建筑设备领域,特别是涉及一种带保护套绳的建筑设备吊装组件。
背景技术
从总体上,可以充分肯定地说,我国已经是工程大国。目前我国几乎同时拥有世界最大的工程和最多的工程量,如有最大量的建设工地,有最大量的年在建和年竣工的建筑面积,每年消耗最大量的建筑材料,因此现阶段城市中高楼林立,建筑设备中常常需要使用到吊装组件。
但传统情况下,吊装组件的连接块直接卡在推板上,使用过程中容易脱出而坠落,可能会产生安全事故,同时无法对吊钩处的力做出实时监测。
发明内容
本发明的目的就在于为了解决上述问题而提供一种带保护套绳的建筑设备吊装组件。
本发明通过以下技术方案来实现上述目的:
一种带保护套绳的建筑设备吊装组件,包括机体、安装座、泵座和控制键盘,所述机体上面设置有所述安装座,所述安装座内设置有螺纹孔,所述机体侧面设置有所述泵座,所述泵座上设置有气泵,所述气泵端部设置有气缸,所述气缸内部设置有活塞,所述活塞端部设置有推杆,所述推杆端部设置有推板,所述推板底面设置有固定凹槽,所述固定凹槽内设置有横轴一,所述横轴一上设置有套绳,所述套绳端部设置有连接块,所述套绳内部设置有保护套,所述保护套内侧设置有加固绳,所述套绳底面设置有横轴二,所述横轴二外侧设置有安装凹槽,所述安装凹槽外侧设置有固定块,所述固定块底面设置有吊钩, 所述吊钩内部侧面设置有力传感器,所述机体表面设置有控制主机,所述控制主机上设置有显示屏,所述显示屏旁侧设置有所述控制键盘,所述机体内部上面设置有上滑槽,所述机体内部下面设置有下滑槽。
本实施例中,所述安装座的材料为低碳钢,所述螺纹孔为盲孔,钻削制成。
本实施例中,所述气泵的流量为100L/min,所述气泵通过螺栓固定在所述泵座上,所述气缸通过螺栓固定在所述气泵上。
本实施例中,所述活塞与所述气缸过渡配合,所述推杆的最大行程为1200mm。
本实施例中,所述固定凹槽的截面形状为圆弧形槽或矩形槽中的一种,所述固定凹槽的加工方式为铣削,所述横轴一的直径不低于15mm,所述横轴一焊接在所述固定凹槽的两侧。
本实施例中,所述安装凹槽的截面形状与所述固定凹槽的截面形状一致,所述安装凹槽的加工方式为铣削,所述横轴二焊接在所述安装凹槽的两侧,所述横轴一和所述横轴二的尺寸相同。
本实施例中,所述套绳的径向尺寸不低于10mm,所述套绳的横截面积为圆形,所述套绳上涂覆钙基润滑脂,所述连接块的固定方式为铆接。
本实施例中,所述保护套的材料为调质橡胶,所述保护套的厚度不低于1mm,所述加固绳的材料为合金钢,所述加固绳的厚度不低于4mm,所述加固绳与所述保护套的连接方式为熔接。
本实施例中,所述固定块的材料为合金钢,所述吊钩的最大曲率半径为200mm,所述吊钩与所述固定块的连接方式为焊接。
本实施例中,所述力传感器的极限量程为20000N,所述力传感器内嵌在所述吊钩内。
本实施例中,所述控制主机的型号为PLC S7-600,所述显示屏的材质为IPS,所述控制键盘内嵌在所述控制主机上。
本实施例中,所述上滑槽与所述推板滑动连接,所述下滑槽与所述推板滑动连接,所述上滑槽的高度比所述下滑槽的高度大10mm,所述上滑槽和所述下滑槽内涂覆钙基润滑脂。
本实施例中,所述控制主机与所述显示屏、所述气泵、所述力传感器和所述控制键盘电连接。
本发明的有益效果在于:通过套绳连接固定块和推板后通过连接块将套绳进行铆接,且套绳内设置有调质橡胶制成的保护套和合金钢制成的加固绳,能够对吊钩在使用过程中进行柔性保护,防止吊钩推出滑槽而坠落,避免了安全事故的产生,同时吊钩内部设置有力传感器,能够在吊起货物时获取货物的重力的大小并在显示屏上实时显示,方便使用者准确控制吊起货物的重量在套绳失效重力的范围以内,避免套绳失效而影响到使用。
附图说明
图1是本发明所述一种带保护套绳的建筑设备吊装组件的外部图;
图2是本发明所述一种带保护套绳的建筑设备吊装组件的内部图;
图3是本发明所述一种带保护套绳的建筑设备吊装组件的俯视图;
图4是本发明所述一种带保护套绳的建筑设备吊装组件的局部剖视图。
1、安装座;2、机体;3、控制主机;4、套绳;5、固定块;6、吊钩;7、显示屏;8、气缸;9、气泵;10、泵座;11、控制键盘;12、连接块;13、螺纹孔;14、上滑槽;15、推板;16、下滑槽;17、固定凹槽;18、横轴一;19、安装凹槽;20、横轴二;21、力传感器;22、活塞;23、推杆;24、保护套;25、加固绳。
具体实施方式
下面结合附图对本发明作进一步说明:
如图1-图4所示,一种带保护套绳的建筑设备吊装组件,包括机体2、安装座1、泵座10和控制键盘11,所述机体2上面设置有所述安装座1,所述安装座1内设置有螺纹孔13,所述机体2侧面设置有所述泵座10,所述泵座10上设置有气泵9,所述气泵9端部设置有气缸8,所述气缸8内部设置有活塞22,所述活塞22端部设置有推杆23,所述推杆23端部设置有推板15,所述推板15底面设置有固定凹槽17,所述固定凹槽17内设置有横轴一18,所述横轴一18上设置有套绳4,所述套绳4端部设置有连接块12,所述套绳4内部设置有保护套24,所述保护套24内侧设置有加固绳25,所述套绳4底面设置有横轴二20,所述横轴二20外侧设置有安装凹槽19,所述安装凹槽19外侧设置有固定块5,所述固定块5底面设置有吊钩6,所述吊钩6内部侧面设置有力传感器21,所述机体2表面设置有控制主机3,所述控制主机3上设置有显示屏7,所述显示屏7旁侧设置有所述控制键盘11,所述机体2内部上面设置有上滑槽14,所述机体2内部下面设置有下滑槽16。
本实施例中,所述安装座1的材料为低碳钢,所述安装座1用来将所述机体2安装在使用位置,所述螺纹孔13为盲孔,钻削制成,所述螺纹孔13通过加装螺钉来紧固所述安装座1。
本实施例中,所述气泵9的流量为100L/min,所述气泵9通过螺栓固定在所述泵座10上,所述气泵9用来为所述吊钩6横向移动提供动力,所述气缸8通过螺栓固定在所述气泵9上,所述气缸8用来方便所述活塞22横移。
本实施例中,所述活塞22与所述气缸8过渡配合,所述活塞22用来带动所述推杆23横移,所述推杆23的最大行程为1200mm,所述推杆23用来带动所 述推板15横移。
本实施例中,所述固定凹槽17的截面形状为圆弧形槽或矩形槽中的一种,所述固定凹槽17的加工方式为铣削,所述固定凹槽17用来方便所述套绳4穿过所述横轴一18,所述横轴一18的直径不低于15mm,所述横轴一18焊接在所述固定凹槽17的两侧,所述横轴一18用来支撑所述套绳4。
本实施例中,所述安装凹槽19的截面形状与所述固定凹槽17的截面形状一致,所述安装凹槽19的加工方式为铣削,所述安装凹槽19用来方便所述套绳4穿过所述横轴二20,所述横轴二20焊接在所述安装凹槽19的两侧,所述横轴一18和所述横轴二20的尺寸相同,所述横轴二20用来制成所述套绳4。
本实施例中,所述套绳4的径向尺寸不低于10mm,所述套绳4的横截面积为圆形,所述套绳4上涂覆钙基润滑脂,所述套绳4用来连接所述推板15和所述固定块5,所述连接块12的固定方式为铆接,所述连接块12用来封闭所述套绳4。
本实施例中,所述保护套24的材料为调质橡胶,所述保护套24的厚度不低于1mm,所述保护套24用来保护所述套绳4,所述加固绳25的材料为合金钢,所述加固绳25的厚度不低于4mm,所述加固绳25与所述保护套24的连接方式为熔接,所述加固绳25用来增加所述套绳4的强度。
本实施例中,所述固定块5的材料为合金钢,所述固定块5用来安装固定所述吊钩6,所述吊钩6的最大曲率半径为200mm,,所述吊钩6用来吊装货物,所述吊钩6与所述固定块5的连接方式为焊接。
本实施例中,所述力传感器21的极限量程为20000N,所述力传感器21内嵌在所述吊钩6内,所述力传感器21用来实时获取所述吊钩6处货物的力的大小信息。
本实施例中,所述控制主机3的型号为PLC S7-600,所述显示屏7的材质为IPS,所述控制键盘11内嵌在所述控制主机3上。
本实施例中,所述上滑槽14与所述推板15滑动连接,所述下滑槽16与所述推板15滑动连接,所述上滑槽14的高度比所述下滑槽16的高度大10mm,所述上滑槽14和所述下滑槽16内涂覆钙基润滑脂,所述上滑槽14和所述下滑槽16用来方便所述推板15在里面横向移动。
本实施例中,所述控制主机3与所述显示屏7、所述气泵9、所述力传感器21和所述控制键盘11电连接。
本发明的具体工作原理为:在所述固定块5上的所述安装凹槽19内的所述横轴二20上穿过所述套绳4,同时在所述固定凹槽17内的所述横轴一18上穿过所述套绳4,之后将所述套绳4通过所述连接块12进行铆接使其封闭,这样变完成了对所述吊钩6的固定,所述套绳4内设置有所述保护套24,所述保护套24的材料为调质橡胶,从而能够对所述套绳4进行保护,防止外界环境侵蚀所述套绳4,同时所述套绳4内设置有所述加固绳25,所述加固绳25的材料为合金钢,具有很好的刚度和抗拉强度,从而能够增加所述套绳4的强度,进而保障整个吊装工作能够顺利进行,当需要使用组件时,使用者将组件通过所述安装座1上的所述螺纹孔13中加装螺钉来紧固在指定使用位置,之后使用者将货物通过所述吊钩6固定在组件上,使用者通过所述控制键盘11发送工作指令,所述控制主机3控制所述气泵9工作带动所述活塞22在所述气缸8内横移,所述活塞22带动所述推杆23横移,所述推杆23带动所述推板15在所述上滑槽14和所述下滑槽16中横移,所述吊钩6在所述固定块5的作用下横移来完成货物的移动,当需要使用货物的重力检测功能时,使用者通过所述控制键盘11发送工作指令,所述控制主机3控制所述重力传感器21工作实时获取所述吊钩6 处货物的重力信息会回传给所述控制主机3,所述控制主机3将重力信息通过导线传递至所述显示屏7上实时显示供使用者观察了解,方便使用者准确把握所述吊钩6上货物的重量信息,进而能够准确控制所述吊钩6吊起货物的重量在所述套绳4失效重力的范围以内,避免所述套绳4失效而影响到使用甚至发生安全事故。
以上显示和描述了本发明的基本原理、主要特征和优点。本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内。本发明要求保护范围由所附的权利要求书及其效物界定。

Claims (13)

  1. 一种带保护套绳的建筑设备吊装组件,其特征在于:包括机体(2)、安装座(1)、泵座(10)和控制键盘(11),所述机体(2)上面设置有所述安装座(1),所述安装座(1)内设置有螺纹孔(13),所述机体(2)侧面设置有所述泵座(10),所述泵座(10)上设置有气泵(9),所述气泵(9)端部设置有气缸(8),所述气缸(8)内部设置有活塞(22),所述活塞(22)端部设置有推杆(23),所述推杆(23)端部设置有推板(15),所述推板(15)底面设置有固定凹槽(17),所述固定凹槽(17)内设置有横轴一(18),所述横轴一(18)上设置有套绳(4),所述套绳(4)端部设置有连接块(12),所述套绳(4)内部设置有保护套(24),所述保护套(24)内侧设置有加固绳(25),所述套绳(4)底面设置有横轴二(20),所述横轴二(20)外侧设置有安装凹槽(19),所述安装凹槽(19)外侧设置有固定块(5),所述固定块(5)底面设置有吊钩(6),所述吊钩(6)内部侧面设置有力传感器(21),所述机体(2)表面设置有控制主机(3),所述控制主机(3)上设置有显示屏(7),所述显示屏(7)旁侧设置有所述控制键盘(11),所述机体(2)内部上面设置有上滑槽(14),所述机体(2)内部下面设置有下滑槽(16)。
  2. 根据权利要求1所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述安装座(1)的材料为低碳钢,所述螺纹孔(13)为盲孔,钻削制成。
  3. 根据权利要求1所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述气泵(9)的流量为100L/min,所述气泵(9)通过螺栓固定在所述泵座(10)上,所述气缸(8)通过螺栓固定在所述气泵(9)上。
  4. 根据权利要求3所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述活塞(22)与所述气缸(8)过渡配合,所述推杆(23)的最大行程为1200mm。
  5. 根据权利要求1所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述固定凹槽(17)的截面形状为圆弧形槽或矩形槽中的一种,所述固定凹槽(17)的加工方式为铣削,所述横轴一(18)的直径不低于15mm,所述横轴一(18)焊接在所述固定凹槽(17)的两侧。
  6. 根据权利要求1所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述安装凹槽(19)的截面形状与所述固定凹槽(17)的截面形状一致,所述安装凹槽(19)的加工方式为铣削,所述横轴二(20)焊接在所述安装凹槽(19)的两侧,所述横轴一(18)和所述横轴二(20)的尺寸相同。
  7. 根据权利要求1所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述套绳(4)的径向尺寸不低于10mm,所述套绳(4)的横截面积为圆形,所述套绳(4)上涂覆钙基润滑脂,所述连接块(12)的固定方式为铆接。
  8. 根据权利要求1所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述保护套(24)的材料为调质橡胶,所述保护套(24)的厚度不低于1mm,所述加固绳(25)的材料为合金钢,所述加固绳(25)的厚度不低于4mm,所述加固绳(25)与所述保护套(24)的连接方式为熔接。
  9. 根据权利要求1所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述固定块(5)的材料为合金钢,所述吊钩(6)的最大曲率半径为200mm,所述吊钩(6)与所述固定块(5)的连接方式为焊接。
  10. 根据权利要求1所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述力传感器(21)的极限量程为20000N,所述力传感器(21)内嵌在所述吊钩(6)内。
  11. 根据权利要求1所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述控制主机(3)的型号为PLC S7-600,所述显示屏(7)的材质为IPS, 所述控制键盘(11)内嵌在所述控制主机(3)上。
  12. 根据权利要求1所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述上滑槽(14)与所述推板(15)滑动连接,所述下滑槽(16)与所述推板(15)滑动连接,所述上滑槽(14)的高度比所述下滑槽(16)的高度大10mm,所述上滑槽(14)和所述下滑槽(16)内涂覆钙基润滑脂。
  13. 根据权利要求1所述的一种带保护套绳的建筑设备吊装组件,其特征在于:所述控制主机(3)与所述显示屏(7)、所述气泵(9)、所述力传感器(21)和所述控制键盘(11)电连接。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116988499A (zh) * 2023-09-26 2023-11-03 中铁城建集团第一工程有限公司 一种场地基坑排水装置及其施工方法

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008050165A (ja) * 2006-07-28 2008-03-06 Three H:Kk トロリー
CN202414957U (zh) * 2011-12-27 2012-09-05 广东省长大公路工程有限公司 一种适用于水上大型构件快速吊装的软连接装置
CN203021184U (zh) * 2013-01-09 2013-06-26 贵州盘江精煤股份有限公司 一种机房硐室内起吊梁行走小车
CN203715103U (zh) * 2013-12-09 2014-07-16 浙江海亮环境材料有限公司 一种轨道式吊装机构
CN205132903U (zh) * 2015-11-30 2016-04-06 攀钢集团攀枝花钢钒有限公司 钢丝绳索具
CN205419619U (zh) * 2016-02-16 2016-08-03 西安赫斯曼起重机械设备有限公司 一种电葫芦

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008050165A (ja) * 2006-07-28 2008-03-06 Three H:Kk トロリー
CN202414957U (zh) * 2011-12-27 2012-09-05 广东省长大公路工程有限公司 一种适用于水上大型构件快速吊装的软连接装置
CN203021184U (zh) * 2013-01-09 2013-06-26 贵州盘江精煤股份有限公司 一种机房硐室内起吊梁行走小车
CN203715103U (zh) * 2013-12-09 2014-07-16 浙江海亮环境材料有限公司 一种轨道式吊装机构
CN205132903U (zh) * 2015-11-30 2016-04-06 攀钢集团攀枝花钢钒有限公司 钢丝绳索具
CN205419619U (zh) * 2016-02-16 2016-08-03 西安赫斯曼起重机械设备有限公司 一种电葫芦

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116988499A (zh) * 2023-09-26 2023-11-03 中铁城建集团第一工程有限公司 一种场地基坑排水装置及其施工方法
CN116988499B (zh) * 2023-09-26 2023-11-28 中铁城建集团第一工程有限公司 一种场地基坑排水装置及其施工方法

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