WO2024055454A1 - 一种共用机座架及带共用机座架的压槽加工中心 - Google Patents

一种共用机座架及带共用机座架的压槽加工中心 Download PDF

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Publication number
WO2024055454A1
WO2024055454A1 PCT/CN2022/138552 CN2022138552W WO2024055454A1 WO 2024055454 A1 WO2024055454 A1 WO 2024055454A1 CN 2022138552 W CN2022138552 W CN 2022138552W WO 2024055454 A1 WO2024055454 A1 WO 2024055454A1
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Prior art keywords
base
grooving
frame
steel pipe
common
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PCT/CN2022/138552
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English (en)
French (fr)
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陈卫东
孙敬伦
周桐
陈宗勇
孙允月
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玫德集团有限公司
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Publication of WO2024055454A1 publication Critical patent/WO2024055454A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D17/00Forming single grooves in sheet metal or tubular or hollow articles

Definitions

  • the present disclosure relates to the field of design and manufacturing of steel pipe grooving equipment, and in particular to a common machine base and a grooving processing center with a common machine base.
  • the structure of steel pipe grooving equipment usually includes two systems: the grooving host part and the steel pipe support part.
  • Even the production line system is designed separately for the grooving machine and the pipe frame, and is installed separately on the ground plane.
  • the function of the support frame is only to support the weight of the other end of the steel pipe.
  • the grooved end of the steel pipe is hung on the groove roller of the groove pressing machine.
  • the forming and positioning of the groove is more dependent on the pipe wall. This often occurs during the processing. Problems such as oblique mouth, bell mouth, too large port diameter, out-of-round pipe mouth and other geometric dimensions that are seriously out of tolerance.
  • the present disclosure provides a common base frame for the steel pipe grooving machine, which can not only meet the end face grooving requirements of large-diameter steel pipes, but also meet the needs of small-diameter steel pipes. Trench work.
  • the disclosure also provides a grooving machining center with a common machine base, which integrates the grooving host device system, steel pipe support platform, steel pipe end face flat equipment system, intelligent measurement control system and various power device systems into a common On the machine base, it becomes a grooving machining center with high precision, stable and intelligent control of the main process of the operation, which fundamentally eliminates many uncontrollable factors of the split machine.
  • the first aspect of the present disclosure provides a common frame for steel pipe grooving machines, which includes a common frame body, and the common frame body includes: a base, a planar guide rail, a guide rail fixing piece, a support, and a
  • the frame is fixedly installed on the base, the support is located at the bottom of the base, and the planar guide rail is arranged on the upper plane of the base through the guide rail fixing member.
  • the base is a segmentally welded steel base, and the welded steel base has a base plane located on the same horizontal line.
  • the base and the frame are connected by riveting or bolting.
  • the frame is a rigid structural frame type frame.
  • the present disclosure also provides a grooving processing center with a common frame for the steel pipe grooving machine, including: a common frame body, a steel pipe grooving machine, a grooving device, a steel pipe support platform, a steel pipe Support wheel system, traction stop positioning device, spindle power source, leveling machine and intelligent measurement control system, steel pipe support platform with steel pipe support wheel system, steel pipe grooving machine with spindle power source and grooving device, traction
  • the stop positioning device, flat mouth machine, intelligent measurement control system and several power devices are respectively fixed and installed on the common machine base body.
  • the grooving machining center also includes a display screen and a software system, and the intelligent measurement control system is connected with a steel pipe size deflection sensor, a platform angle or level sensor, a depth sensor, a slope sensor, The diameter circle sensor and the coordinate sensor are electrically connected and relevant data are collected through the sensor.
  • the disclosed grooving machining center with a shared machine base is a carrier and bracket for integrating various functional systems and devices. Its beneficial effects include but are not limited to:
  • the disclosed grooving machining center with a shared machine base can meet the integrated installation and debugging requirements of the grooving host system, steel pipe support platform, steel pipe flat mouth device system, intelligent measurement control system, and various power systems. And meet the working conditions of the operation process.
  • the disclosed grooving machining center with a common base frame serves as a basic carrier component, on which is installed the intelligent measurement of the spatial coordinates, horizontality, and verticality of the steel pipe grooving machine itself. , concentricity and other measurement systems, it is also equipped with sensing sensors for data measurement of various parameters of pipe fittings, as well as data collection and supporting software systems and transmission systems. It has a high degree of integration and can meet the requirements of various calibers, especially the grooving operations of medium and large diameter steel pipes. need.
  • Figure 1 is a top view of a shared machine base provided by an embodiment of the present disclosure
  • Figure 2 is a front view of a shared machine base provided by an embodiment of the present disclosure
  • Figure 3 is a front view of the assembled grooving machining center with a common base provided by the embodiment of the present disclosure
  • Figure 4 is a front view of the assembled grooving machining center with a common machine base and steel pipe support platform provided by the embodiment of the present disclosure
  • Figure 5 is a top view of the assembled grooving machining center with a common machine base and steel pipe support platform provided by an embodiment of the present disclosure
  • Figure 6 is a front view of the steel pipe grooving machine of the grooving processing center provided by the embodiment of the present disclosure.
  • the shared machine base of the present disclosure integrates the grooving host device system, the steel pipe support platform, the steel pipe end flat equipment system, the intelligent measurement control system and the power device system on the common machine base, becoming a high-precision, stable and intelligent control operation master. Process grooving machining center.
  • the common frame body 1 includes a base 2, a planar guide rail 3, a guide rail fixing part 3a, and a support. 5 and a frame 18, the frame 18 is fixedly installed on the base 2, the support 5 is located at the bottom of the base 2, and the planar guide rail 3 is arranged on the upper surface of the base 2 through the guide rail fixing member 3a.
  • the base 2 is a segmentally welded steel base.
  • the structure of the base 2 is a steel base that is welded in sections and then assembled into one body.
  • the processing of the common base frame requires the processing deformation of the control mechanism, so it should be made by segmented processing and then assembly and molding.
  • the welded steel base has base planes that are on the same horizontal line. After the machine base is assembled into a whole, the equipment installation plane and base plane of the base are machined into a unified plane. The assembled base frame must be machined to create an integrated assembly surface before it can be used.
  • the outline structure of the planar frame with tracks provided on the machine base plane is not limited to the structure in the drawings of the present disclosure, including structural design, processing methods, planar structures, etc., as long as it can meet the horizontal laying of the track, sufficient rigidity, and stability. , the allowable range of deformation, and the technical requirements of various stress conditions are also within the scope of protection required by this disclosure.
  • base plane horizontal measuring points 12 are provided on the base 2 . Further, the base plane horizontal measuring points 12 are set at the four corners of the base 2 .
  • the base 2 and the frame 18 are connected by riveting or bolting, and the frame 18 is rigid. Structural frame frame. In this embodiment, the base 2 and the frame 18 are connected by riveting.
  • the distribution of the rod system structure of the rigid structure frame-type frame of the frame 18 is not limited to the currently provided pattern form and processing technology. No matter which structure and processing method is used, as long as it can meet the rigidity, vibration resistance, stability, force bearing, etc. of the equipment. Various technical requirements are also within the protection scope required by this disclosure.
  • a rigid structural frame-type adapter is installed on the base to form an integral machine frame.
  • the frame 18 and the base 2 are connected by riveting and bolt locking.
  • the present disclosure also provides a grooving machining center with a common frame, including: a common frame body 1, a guide rail fixing 3a, a steel pipe grooving machine 4, a grooving device 6, Traction stop positioning device 10, spindle power source 20 and intelligent measurement control system.
  • the steel pipe grooving machine 4 is formed with a steel pipe grooving machine vertical surface 9 .
  • the common machine base body 1 includes: a base 2, a planar guide rail 3, a guide rail fixing part 3a, a support 5 and a frame 18.
  • a frame 18 is fixedly installed on the base 2.
  • the support 5 is located at the bottom of the base 2.
  • a planar guide rail 3 is arranged on the upper surface of the base 2 through a guide rail fixing part 3a.
  • the base 2 and the planar guide rail 3 , guide rail fixings 3a, frame 18 and support 5 together constitute a common machine base body 1, the steel pipe grooving machine 4 with spindle power source 20 and grooving device 6, traction stop positioning device 10, flat mouth
  • the machine 21, the intelligent measurement control system and several power devices are respectively fixedly installed on the common machine base body 1.
  • the present disclosure also provides a grooving machining center with a common frame, including: a common frame body 1, a base 2, a planar guide rail 3, a guide rail fixing part 3a, and a steel pipe grooving Machine 4, support 5, groove pressing device 6, steel pipe support platform 7, steel pipe support wheel system 8, traction stop positioning device 10, frame 18, spindle power source 20, flat mouth machine 21 and intelligent measurement control system.
  • a frame 18 is fixedly installed on the base 2, the support 5 is located at the bottom of the base 2, and the planar guide rail 3 is arranged on the upper surface of the base 2 through the guide rail fixing part 3a.
  • the fixing part 3a, the frame 18 and the support 5 together constitute a common machine base body 1, a steel pipe support platform 7 with at least one set of steel pipe support wheel systems 8, a steel pipe press with a spindle power source 20 and a pressure groove device 6.
  • the groove machine 4, the traction stop positioning device 10, the flat mouth machine 21, the intelligent measurement control system and several power devices are respectively fixedly installed on the common machine base body 1.
  • the flat mouth machine 21 may not be included. Whether the flat mouth machine 21 is installed or not does not affect the realization of the design purpose of the present disclosure.
  • the base plane is paved with steel pipes to support the moving guide rails of the platform, as well as the walking, stopping and positioning mechanism systems, as well as the power circuit and wiring system.
  • the steel pipe support platform is installed with guide rails and supporting systems that run along the length of the pipe, as well as the intelligent system of the pressure groove host system, etc.
  • the groove processing center also includes a display screen 19 and a software system.
  • the intelligent measurement control system is connected with the steel pipe size deflection sensor 11, the platform angle or level sensor 13, and the depth sensor.
  • the sensor 14, the inclination sensor 15, the diameter circle sensor 16 and the coordinate sensor 17 are electrically connected and relevant data are collected through the sensors.
  • the shared machine base frame and base frame of the present disclosure are manufactured using an integral welding process. After the welded shared machine base is aged, the base plane is processed uniformly, and then the rails and various supporting tooling are laid. When the entire shared frame is welded and formed, it is very important to control the welding deformation process. Only by taking control measures to control the dimensional accuracy within a controllable range can we produce a shared frame with welding technology. It needs to undergo heat treatment or aging treatment before machining can be carried out. Operation.
  • the disclosed grooving processing center with a shared machine base can meet the integrated installation and debugging requirements and operating procedures of the grooving host system, steel pipe support platform, steel pipe flat mouth device system, intelligent measurement control system, and various power systems.
  • Working conditions the steel pipe grooving machine equipment's own spatial coordinates intelligent measurement, perception, data collection, display, computing system, horizontality, verticality, concentricity and other measurement systems are installed on the shared frame, and various pipe fittings are also installed.
  • the design of the shared machine frame meets the needs of the steel pipe grooving process, processing accuracy, quality requirements, supporting device performance requirements and content, power mechanism characteristics, measurement and control system requirements and other requirements.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Milling, Broaching, Filing, Reaming, And Others (AREA)
  • Bending Of Plates, Rods, And Pipes (AREA)

Abstract

一种钢管压槽机共用机座架,包括基座(2)、平面导轨(3)、导轨固定件(3a)、支座(5)以及框架(18),在所述基座上固定安装有框架,所述支座位于基座的底部,平面导轨通过导轨固定件设置在基座上平面,所述基座、平面导轨、导轨固定件、支座及框架共同构成了共用机座架本体(1);还公开了一种带有共用机座架的压槽加工中心,将压槽主机装置系统、钢管支撑平台(7)、钢管端面平口设备系统、智能测量控制系统及各种动力装置系统集成在共用机座架上,成为具有高精度、能稳定智能控制作业主流程的压槽加工中心。

Description

一种共用机座架及带共用机座架的压槽加工中心
相关申请的横向引用
本公开是以申请号为202222454906.3,申请日为2022年9月16日的中国申请为基础,并主张其优先权,该中国申请的公开内容在此作为整体引入本公开中。
技术领域
本公开涉及钢管压槽设备的设计制造领域,尤其涉及一种共用机座架及带共用机座架的压槽加工中心。
背景技术
目前钢管压槽设备的结构通常包括压槽主机部分和钢管支撑部分两个系统,即便是生产线系统也是压槽机和管架分别设计,分体安装在地平面上。支撑架的作用仅是支撑钢管另一端的重量,钢管的压槽端挂在压槽机的凹槽辊上,沟槽的成型定位更多是靠管壁自找定位,在加工过程中常常出现斜口、喇叭口、端口直径偏大、管口不圆等几何尺寸严重超差的问题。
在沟槽成型过程中,经常出现摆动跳动不定、跑偏等人工很难控制的局面,尤其在面临厚壁管时,中型口径如DN200左右的钢管压槽难度更大,导致工时大量消耗,还需要花费额外精力去除废品,这严重制约了钢管压槽连接技术的发展。此外,在中国管径DN600以上的沟槽连接管很少见,缺少相关连接管成为该种管道连接漏水的最大因素。目前的钢管压槽机钢管圆度无加工,钢管端口、几何尺寸不 能达标,尺寸精度无法保障工程质量,分体的压槽设备仅能勉强满足小口径、刚性接口的压槽作业,不能满足大口径钢管的压槽作业。
公开内容
针对目前分体式钢管压槽设备的不足,以及加工机械的缺陷问题,本公开提供了一种钢管压槽机共用机座架,不仅能满足大口径钢管端面压槽,也能满足小口径钢管的沟槽作业。本公开还提供了一种带有共用机座架的压槽加工中心,将压槽主机装置系统、钢管支撑平台、钢管端面平口设备系统、智能测量控制系统以及各种动力装置系统集成在一个共用机座架上,成为高精度、稳定智能控制作业主流程的压槽加工中心,从根本上消除了分体机的诸多不可控因素。
具体地,本公开第一方面提供了一种钢管压槽机共用机座架,包括共用机座架本体,所述共用机座架本体包括:基座、平面导轨、导轨固定件、支座以及框架,所述基座上固定安装有框架,所述支座位于基座的底部,平面导轨通过导轨固定件设置在基座上平面。
在一种可能的设计中,所述基座为分段焊接的钢基座,且焊接后的钢基座具有位于同一水平线的基座平面。
在一种可能的设计中,所述基座与框架的连接方式为铆接或螺栓连接。
在一种可能的设计中,所述框架为刚性结构框架式衔架。
第二方面,本公开还提供了一种带有上述钢管压槽机共用机座架的压槽加工中心,包括:共用机座架本体、钢管压槽机、压槽装置、钢管支撑平台、钢管支撑轮系统、牵引止动定位装置、主轴动力源、 平口机和智能化测量控制系统,带有钢管支撑轮系统的钢管支撑平台、带有主轴动力源和压槽装置的钢管压槽机、牵引止动定位装置、平口机、智能化测量控制系统和若干动力装置分别固定安装在共用机座架本体上。
在一种可能的设计中,所述压槽加工中心还包括有显示屏及软件系统,所述智能化测量控制系统与钢管尺寸偏度传感器、平台角度或水平传感器、深度传感器、斜度传感器、直径圆传感器以及坐标传感器电连接并通过传感器进行相关数据采集。
在一种可能的设计中,所述基座的平面上还铺设有动力电路及布线系统。
本公开的带有共用机座架的压槽加工中心,是各种功能系统、装置集成的载体和托架,其有益效果包括但不限于:
(1)本公开的带有共用机座架的压槽加工中心,能满足承载压槽主机系统、钢管支撑平台、钢管平口装置系统、智能测量控制系统、各种动力系统的集成安装调试需求,并满足作业流程的工作条件。
(2)本公开的带有共用机座架的压槽加工中心,共用机座架作为一个基础性载体部件,其上安装有钢管压槽机自身的空间坐标智能化测量、水平度、垂直度、同心度等测量系统,还设置了对管件各种参数进行数据测量的感知传感器以及数据采集及配套软件系统、传输系统,集成度高,满足各种口径尤其是中大口径钢管的压槽作业需求。
附图说明
图1为本公开实施例提供的共用机座架的俯视图;
图2为本公开实施例提供的共用机座架的主视图;
图3为本公开实施例提供的带有共用机座架的压槽加工中心组装后的主视图;
图4为本公开实施例提供的带有共用机座架和钢管支撑平台的压槽加工中心组装后的主视图;
图5为本公开实施例提供的带有共用机座架和钢管支撑平台的压槽加工中心组装后的俯视图;
图6为本公开实施例提供的压槽加工中心的钢管压槽机的主视图。
其中:1、共用机座架本体;2、基座;3、平面导轨;3a、导轨固定件;4、钢管压槽机;5、支座;6、压槽装置;7、钢管支撑平台;8、钢管支撑轮系统;9、钢管压槽机竖立面;10、牵引止动定位装置;11、钢管尺寸偏度传感器;12、基座平面水平测点;13、平台角度或水平传感器;14、深度传感器;15、斜度传感器;16、直径圆传感器;17、坐标传感器;18、框架;19、显示屏;20、主轴动力源;21、平口机。
具体实施方式
本公开的共用机座架,将压槽主机装置系统、钢管支撑平台、钢管端面平口设备系统、智能测量控制系统和动力装置系统集成在共用机座架上,成为高精度、稳定智能控制作业主流程的压槽加工中心。
实施例一
如图1、2所示,为钢管压槽机共用机座架,包括共用机座架本体1,所述共用机座架本体1包括基座2、平面导轨3、导轨固定件3a、支座5以及框架18,在所述基座2上固定安装有框架18,所述支座5位于基座2的底部,平面导轨3通过导轨固定件3a设置在基座2上平面。
进一步的,所述基座2为分段焊接的钢基座。基座2的结构为分段焊接的钢基座,再组合成一体,共用机座架的加工需要控制机构的加工变形,宜采用分段加工再装配成型的方式制作。
焊接后的钢基座具有位于同一水平线的基座平面。机座组装成整体后,基座的设备安装平面、基座平面,经机械加工成统一个平面。将装配成型的机座架,通过机械加工出集成装配面,才能使用。所述机座平面设有轨道的平面框架的外形结构并不限于本公开的附图结构,包括结构设计、加工工艺方法,平面结构等,只要能满足轨道水平的铺设、足够的刚性、稳定性、变形允许范围、各种受力条件的技术要求,也均在本公开所要求的保护范围内。
在本实施例中,所述基座2上设置有若干基座平面水平测点12。进一步的,所述基座平面水平测点12设置在所述基座2的四个角。
实施例二
在本公开的另一具体实施例中,其他结构特征与实施例一的技术特征相同,更进一步的,所述基座2与框架18的连接方式为铆接或螺栓连接,所述框架18为刚性结构框架式衔架。在本实施例中,所述基座2与框架18的连接方式为铆接。所述框架18刚性结构框架式 衔架的杆系统结构的分布不限于目前提供图样形式、加工工艺,无论哪一种结构及加工方法,只要能满足设备的刚性、抗震动、稳定、受力等各种技术要求,也均在本公开所要求的保护范围内。
在基座上安装有刚性结构框架式衔架,形成一个整体机座架,其框架18与基座2的连接方式为铆接及螺栓锁固。在共用机座架自身需要安装的支撑杆、框架等增强刚性或强度的结构件安装、护栏的装配时均采用铆接及螺栓固定,减少安装应力作用。
实施例三
如图3所示,本公开还提供了一种带有共用机座架的压槽加工中心,包括:共用机座架本体1、导轨固定件3a、钢管压槽机4、压槽装置6、牵引止动定位装置10、主轴动力源20和智能化测量控制系统。其中钢管压槽机4上成型有钢管压槽机竖立面9。
所述共用机座架本体1包括:基座2、平面导轨3、导轨固定件3a、支座5以及框架18。在所述基座2上固定安装有框架18,所述支座5位于基座2的底部,平面导轨3通过导轨固定件3a设置在基座2上平面,所述基座2、平面导轨3、导轨固定件3a、框架18及支座5共同构成了共用机座架本体1,所述带有主轴动力源20和压槽装置6的钢管压槽机4、牵引止动定位装置10、平口机21、智能化测量控制系统和若干动力装置分别固定安装在共用机座架本体1上。
实施例四
如图4所示,本公开还提供了一种带有共用机座架的压槽加工中心,包括:共用机座架本体1、基座2、平面导轨3、导轨固定件3a、钢管压槽机4、支座5、压槽装置6、钢管支撑平台7、钢管支撑轮系统8、牵引止动定位装置10、框架18、主轴动力源20、平口机21和智能化测量控制系统,在所述基座2上固定安装有框架18,所述支座5位于基座2的底部,平面导轨3通过导轨固定件3a设置在基座2上平面,所述基座2、平面导轨3、导轨固定件3a、框架18及支座5共同构成了共用机座架本体1,带有至少一套钢管支撑轮系统8的钢管支撑平台7、带有主轴动力源20和压槽装置6的钢管压槽机4、牵引止动定位装置10、平口机21、智能化测量控制系统和若干动力装置分别固定安装在共用机座架本体1上。
在其他实施例中,还可以不包括所述平口机21,所述平口机21是否设置并不影响本公开设计目的的实现。
基座平面上铺有钢管支撑平台移动的导轨及行走、止动、定位机构系统,及动力电路及布线系统。在共用机座架的上平面上安装钢管支撑平台沿管长方向行走的导轨及配套系统、压槽主机系统智能系统等。
进一步的,如图5、6所示,所述压槽加工中心还包括有显示屏19及软件系统,所述智能化测量控制系统与钢管尺寸偏度传感器11、平台角度或水平传感器13、深度传感器14、斜度传感器15、直径圆传感器16以及坐标传感器17电连接并通过传感器进行相关数据采集。
本公开的共用机座架与基架的制造,采用整体焊接工艺。将焊接好的共用机座架时效后,统一加工基座平面,再铺设道轨及配套各种工装。共用机座架整架焊接成型时,控制焊接变形工艺方法十分重要,采取控制措施控制尺寸精度在可控范围内才能制作焊接工艺的共用机座架,需要经过热处理或者时效处理后才能进行机加工作业。
本公开的带有共用机座架的压槽加工中心,能满足承载压槽主机系统、钢管支撑平台、钢管平口装置系统、智能测量控制系统、各种动力系统的集成安装调试需求及作业流程的工作条件,共用机座架上安装有钢管压槽机设备自身的空间坐标智能化测量、感知、数据采集、显示、运算系统、水平度、垂直度、同心度等测量系统,还设置了管件各种数据测量系统的感知传感器数据采集和传输系统。共用机座架的设计满足钢管压槽工艺流程、加工精度、品质质量要求、配套装置性能要求及内容、动力机构特点、测量控制系统要求等需求。
显然,上述实施例仅仅是为清楚地说明所作的举例,而并非对实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。而由此所引申出的显而易见的变化或变动仍处于本公开的保护范围之中。因此,本公开的保护范围以所附权利要求为准。

Claims (10)

  1. 一种钢管压槽机共用机座架,包括共用机座架本体(1),其特征在于,所述共用机座架本体(1)包括基座(2)、平面导轨(3)、导轨固定件(3a)、支座(5)以及框架(18),所述基座(2)上固定安装有框架(18),所述支座(5)位于基座(2)的底部,平面导轨(3)通过导轨固定件(3a)设置在基座(2)上平面。
  2. 根据权利要求1所述的钢管压槽机共用机座架,其特征在于,所述基座(2)为分段焊接的钢基座,且焊接后的钢基座具有位于同一水平线的基座平面。
  3. 根据权利要求1所述的钢管压槽机共用机座架,其特征在于,所述基座(2)与框架(18)的连接方式为铆接或螺栓连接。
  4. 根据权利要求1所述的钢管压槽机共用机座架,其特征在于,所述框架(18)为刚性结构框架式衔架。
  5. 一种包括如权利要求1-4之任一项所述的钢管压槽机共用机座架的压槽加工中心,其特征在于,还包括钢管压槽机(4)、压槽装置(6)、钢管支撑平台(7)、钢管支撑轮系统(8)、牵引止动定位装置(10)、主轴动力源(20)、平口机(21)和智能化测量控制系统。
  6. 根据权利要求5所述的压槽加工中心,其特征在于,带有钢管支撑轮系统(8)的钢管支撑平台(7)、带有主轴动力源(20)和压槽装置(6)的钢管压槽机(4)、牵引止动定位装置(10)、平口机(21)、智能化测量控制系统和若干动力装置分别固定安装在共用机座架本体(1)上。
  7. 根据权利要求5所述的压槽加工中心,其特征在于,所述压槽加工中心还包括显示屏(19)。
  8. 根据权利要求5所述的压槽加工中心,其特征在于,所述智能化测量控制系统与进行数据采集的传感器电连接。
  9. 根据权利要求8所述的压槽加工中心,其特征在于,所述进行数据采集的传感器包括钢管尺寸偏度传感器(11)、平台角度或水平传感器(13)、深度传感器(14)、斜度传感器(15)、直径圆传感器(16)和/或坐标传感器(17)。
  10. 根据权利要求5所述的压槽加工中心,其特征在于,所述基座(2)上还铺设有动力电路及布线系统。
PCT/CN2022/138552 2022-09-16 2022-12-13 一种共用机座架及带共用机座架的压槽加工中心 WO2024055454A1 (zh)

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