CN102950446A - Interfacing device for rotary part type components - Google Patents
Interfacing device for rotary part type components Download PDFInfo
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- CN102950446A CN102950446A CN2011102423011A CN201110242301A CN102950446A CN 102950446 A CN102950446 A CN 102950446A CN 2011102423011 A CN2011102423011 A CN 2011102423011A CN 201110242301 A CN201110242301 A CN 201110242301A CN 102950446 A CN102950446 A CN 102950446A
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Abstract
The invention discloses an interfacing device for rotary part type components and relates to an interfacing device for mechanical components. The interfacing device aims at solving the problem of incapability of realizing accurate interfacing caused by incapability of aligning axes of two horizontally adjacent components during assembly of the rotary part type components. A leveling device is mounted on two supporting legs at a rear end of a frame of the interfacing device respectively, upper ends of leveling device screws are connected with leveling device hand wheels, lower ends of the leveling device screws are connected with leveling device lifting seats, clamping supports are connected with the leveling device screws, vertical ribs are mounted on lower end faces of the clamping supports and fixedly connected with side walls of the supporting legs, a universal caster is mounted at two edges at a front end of the frame respectively, a directional caster is mounted at two edges at a rear end of the frame respectively, lifting platform hand wheels are fixedly mounted at upper ends of lifting screw rods, lower ends of the lifting screw rods are in internally threaded connection with fixing nuts, lifting platforms are fastened on the fixing nuts through set screws, and an interfacing platform and an interfacing car are juxtaposed horizontally. The interfacing device for rotary part type components is used for interfacing of the rotary part type components.
Description
Technical field
The present invention relates to a kind of docking facilities of mechanical component, be specifically related to a kind of docking facilities of rotary type assembly, belong to mechanical engineering technical field.
Background technology
At present, weight is more than 7 tons, diameter dimension is more than 1150mm, and the assembling of the rotary type assembly of length dimension more than 5200mm is very difficult, and reason is, when this class component is assembled, the axis of former and later two assemblies need to be aligned, because assembly not only heavily but also greatly, manpower can't be moved, on common platform, also the axis of former and later two assemblies can't be aligned, therefore can't realize the accurate docking of two assemblies.
Summary of the invention
The objective of the invention is the axis of former and later two assemblies to be aligned in order to solve the rotary type assembly when assembling, cause to realize the accurately problem of docking, and then a kind of docking facilities of rotary type assembly is provided.
Technical scheme of the present invention is: the docking facilities of rotary type assembly comprises dock and docking car, and described dock comprises framework, two levellers and two front end bearing supports;
Described framework comprises two frame rails, two cruciform bracings, four supporting legs and four lower margins, two frame rails and two cruciform bracings enclose the formation rectangular frame, all be fixedly connected with a supporting leg on the lower surface of the junction of each frame rails and corresponding cruciform bracing, all be fixedly connected with a lower margin on the lower surface of each supporting leg;
A front end bearing support all is installed on each cruciform bracing, and two coaxial settings of front end bearing support; On two supporting legs of back-end framework a leveller is installed respectively;
Each leveller includes leveller elevating bracket, leveller handwheel, leveller screw rod, stud and Ka Ding, the upper end of described leveller screw rod is connected with the leveller handwheel, the lower end of leveller screw rod is connected with the leveller elevating bracket, Ka Ding is arranged between leveller elevating bracket and the handwheel, Ka Ding is connected with the leveller screw flight, stud is fixedly mounted on the lower surface of Ka Ding, and stud is fixedly connected with the sidewall of supporting leg;
Described docking car comprises vehicle frame, four lifting platforms, two hoisting cross beams, four docking car elevating brackets, two direction-casters, two universal caster wheels and two rear end bearing supports;
Each lifting platform includes locknut, lifting platform handwheel, hoistable platform, lifting screw, rolling bearing and bearing package assembling;
Each docking car elevating bracket includes hold-down nut and elevating bracket standpipe;
Described vehicle frame is rectangle frame, a universal caster wheel respectively is installed on the lower surface of two corner angle of vehicle frame front end, a direction-caster respectively is installed on the lower surface of two corner angle of vehicle frame rear end, an elevating bracket standpipe respectively is installed on the upper surface of four corner angle of vehicle frame, the upper end of each elevating bracket standpipe all is connected with the hold-down nut external screw thread, on each hold-down nut of docking car elevating bracket a hoistable platform is installed;
The upper end of lifting screw is installed with the lifting platform handwheel, the lower end of lifting screw is passed hoistable platform and is connected with the hold-down nut internal thread, be provided with rolling bearing between lifting screw and the hoistable platform, rolling bearing is encapsulated in the hoistable platform by the bearing package assembling, locknut is threaded on the lifting screw, and holding screw is fixed on hoistable platform on the hold-down nut;
Be connected with a hoisting cross beam between two hoistable platforms of the front end of docking car, be connected with another hoisting cross beam between two hoistable platforms of the rear end of docking car;
A rear end bearing support all is installed on each hoisting cross beam, and two coaxial settings of rear end bearing support;
Be set up in parallel before and after described dock and the docking car.
The present invention compared with prior art has following effect: four supporting legs of dock of the present invention have two supporting legs to realize the length adjustment by leveller, prevented the problem of rocking that do not land simultaneously and produce because of four legs, and there are two directional wheels and two universal wheels in docking car below, realized in the horizontal direction any adjustment, there is the lifting platform of adjusting in the vertical direction at four angles at the docking vehicle carriage, adjust the short transverse size, make the axis coaxle to connected components.
Description of drawings
Fig. 1 is overall structure front view of the present invention, Fig. 2 is the front view of dock, Fig. 3 is the left view of Fig. 2, Fig. 4 is the top view of Fig. 2, Fig. 5 is the front view of leveller, Fig. 6 is the front view of docking car, Fig. 7 is the left view of Fig. 6, Fig. 8 is the top view of Fig. 6, Fig. 9 is the A place enlarged drawing of Fig. 7, and Figure 10 is the overall structure schematic diagram of lifting platform, and Figure 11 is the overall structure schematic diagram of hoisting cross beam, Figure 12 is the installation graph of a relation of front end bearing support and the first felt layers, and Figure 13 is the installation graph of a relation of rear end bearing support and the second felt layers.
The specific embodiment
The specific embodiment one: in conjunction with Fig. 1 to Figure 10 present embodiment is described, the docking facilities of the rotary type assembly of present embodiment comprises dock 1 and docking car 2, and described dock 1 comprises framework 1-1, two leveller 1-2 and two front end bearing support 1-3;
Described framework 1-1 comprises two frame rails 1-1-1, two cruciform bracing 1-1-2, four supporting leg 1-1-3 and four lower margin 1-1-4, two frame rails 1-1-1 and two cruciform bracing 1-1-2 enclose the formation rectangular frame, all be fixedly connected with a supporting leg 1-1-3 on the lower surface of the junction of each frame rails 1-1-1 and corresponding cruciform bracing 1-1-2, all be fixedly connected with a lower margin 1-1-4 on the lower surface of each supporting leg 1-1-3;
A front end bearing support 1-3 all is installed on each cruciform bracing 1-1-2, and the coaxial setting of two front end bearing support 1-3; On two supporting leg 1-1-3 of framework 1-1 rear end a leveller 1-2 is installed respectively;
Each leveller 1-2 includes leveller elevating bracket 1-2-1, leveller handwheel 1-2-2, leveller screw rod 1-2-3, stud 1-2-4 and card top 1-2-5, the upper end of described leveller screw rod 1-2-3 is connected with leveller handwheel 1-2-2, the lower end of leveller screw rod 1-2-3 is connected with leveller elevating bracket 1-2-1, card top 1-2-5 is arranged between leveller elevating bracket 1-2-1 and the handwheel 1-2-2, card top 1-2-5 is threaded with leveller screw rod 1-2-3, stud 1-2-4 is fixedly mounted on the lower surface of card top 1-2-5, and stud 1-2-4 is fixedly connected with the sidewall of supporting leg 1-1-3;
Described docking car 2 comprises vehicle frame 2-3, four lifting platform 2-1, two hoisting cross beam 2-2, four docking car elevating bracket 2-4, two direction-caster 2-5, two universal caster wheel 2-6 and two rear end bearing support 2-7;
Each lifting platform 2-1 includes locknut 2-1-1, lifting platform handwheel 2-1-2, hoistable platform 2-1-3, lifting screw 2-1-4, rolling bearing 2-1-5 and bearing package assembling 2-1-6;
Each docking car elevating bracket 2-4 includes hold-down nut 2-4-1 and elevating bracket standpipe 2-4-2;
Described vehicle frame 2-3 is rectangle frame, a universal caster wheel 2-6 respectively is installed on the lower surface of two corner angle of vehicle frame 2-3 front end, a direction-caster 2-5 respectively is installed on the lower surface of two corner angle of vehicle frame 2-3 rear end, an elevating bracket standpipe 2-4-2 respectively is installed on the upper surface of four corner angle of vehicle frame 2-3, the upper end of each elevating bracket standpipe 2-4-2 all is connected with hold-down nut 2-4-1 external screw thread, on each hold-down nut 2-4-1 of docking car elevating bracket 2-4 a hoistable platform 2-1-3 is installed;
The upper end of lifting screw 2-1-4 is installed with lifting platform handwheel 2-1-2, the lower end of lifting screw 2-1-4 is passed hoistable platform 2-1-3 and is connected with hold-down nut 2-4-1 internal thread, be provided with rolling bearing 2-1-5 between lifting screw 2-1-4 and the hoistable platform 2-1-3, rolling bearing 2-1-5 is encapsulated in the hoistable platform 2-1-3 by bearing package assembling 2-1-6, locknut 2-1-1 is threaded on the lifting screw 2-1-4, and holding screw 2-1-1 is fixed on hoistable platform 2-1-3 on the hold-down nut 2-4-1;
Be connected with a hoisting cross beam 2-2 between two hoistable platform 2-1-3 of the front end of docking car 2, be connected with another hoisting cross beam 2-2 between two hoistable platform 2-1-3 of the rear end of docking car 2;
A rear end bearing support 2-7 all is installed on each hoisting cross beam 2-2, and the coaxial setting of two rear end bearing support 2-7;
Described dock 1 and docking car 2 front and back are set up in parallel.
The specific embodiment two: present embodiment is described in conjunction with Figure 11, the hoisting cross beam 2-2 of present embodiment comprises hoisting cross beam arm 2-2-2 and two lift beam joint 2-2-1, the two ends of hoisting cross beam arm 2-2-2 respectively are connected with a lift beam joint 2-2-1, and hoisting cross beam arm 2-2-2 is connected with hoistable platform 2-1-3 by lift beam joint 2-2-1.So arrange, be convenient to install.Other composition is identical with the specific embodiment one with annexation.
The specific embodiment three: in conjunction with Figure 10 present embodiment is described, the lifting platform 2-1 of present embodiment also comprises handle 2-1-7, and described handle 2-1-7 vertically is installed on the lifting platform handwheel 2-1-2.So arrange, be convenient to adjust the height of lifting platform.Other composition is identical with the specific embodiment one or two with annexation.
The specific embodiment four: in conjunction with Figure 12 and Figure 13 present embodiment is described, the dock 1 of present embodiment also comprises two the first felt layers 1-4, and docking car 2 also comprises two the second felt layers 2-8; Be provided with the first felt layers 1-4 on the upper surface of each front end bearing support 1-3, be provided with the second felt layers 2-8 on each rear end bearing support 2-7 upper surface.So arrange, prevent from scratching connected components.Other composition and annexation and the specific embodiment one, two or three identical.
Operation principle: operation principle of the present invention is described in conjunction with Fig. 1 to Fig. 8, dock 1 is used for supporting one assembly 3, framework 1-1 with four supporting leg 1-1-3 supportings on the ground, wherein two supporting leg 1-1-3 are with leveller 1-2, four supporting leg 1-1-3 of dock 1 have two supporting legs to realize the length adjustment by leveller 1-2, solve four problems that supporting leg can not land simultaneously.Docking car 2 is used for another assembly 4 of supporting, and there are two directional wheel 2-5 and two universal wheel 2-6 in docking car 2 belows, have realized in the horizontal direction any adjustment; The lifting platform 2-1 of docking car 2 has realized the adjustment of short transverse size, by the adjustment of docking car horizontal direction and vertical direction, makes the axis coaxle of two assemblies, has realized accurate docking.
Claims (4)
1. the docking facilities of a rotary type assembly, it is characterized in that: docking facilities comprises dock (1) and docking car (2), and described dock (1) comprises framework (1-1), two levellers (1-2) and two front end bearing supports (1-3);
Described framework (1-1) comprises two frame rails (1-1-1), two cruciform bracings (1-1-2), four supporting legs (1-1-3) and four lower margins (1-1-4), two frame rails (1-1-1) and two cruciform bracings (1-1-2) enclose the formation rectangular frame, all be fixedly connected with a supporting leg (1-1-3) on the lower surface of the junction of each frame rails (1-1-1) and corresponding cruciform bracing (1-1-2), all be fixedly connected with a lower margin (1-1-4) on the lower surface of each supporting leg (1-1-3);
A front end bearing support (1-3) all is installed on each cruciform bracing (1-1-2), and the coaxial setting of two front end bearing supports (1-3); On two supporting legs (1-1-3) of framework (1-1) rear end a leveller (1-2) is installed respectively;
Each leveller (1-2) includes leveller elevating bracket (1-2-1), leveller handwheel (1-2-2), leveller screw rod (1-2-3), stud (1-2-4) He Kading (1-2-5), the upper end of described leveller screw rod (1-2-3) is connected with leveller handwheel (1-2-2), the lower end of leveller screw rod (1-2-3) is connected with leveller elevating bracket (1-2-1), Ka Ding (1-2-5) is arranged between leveller elevating bracket (1-2-1) and the handwheel (1-2-2), Ka Ding (1-2-5) is threaded with leveller screw rod (1-2-3), stud (1-2-4) is fixedly mounted on the lower surface of Ka Ding (1-2-5), and stud (1-2-4) is fixedly connected with the sidewall of supporting leg (1-1-3);
Described docking car (2) comprises vehicle frame (2-3), four lifting platforms (2-1), two hoisting cross beams (2-2), four docking car elevating brackets (2-4), two direction-casters (2-5), two universal caster wheels (2-6) and two rear end bearing supports (2-7);
Each lifting platform (2-1) includes locknut (2-1-1), lifting platform handwheel (2-1-2), hoistable platform (2-1-3), lifting screw (2-1-4), rolling bearing (2-1-5) and bearing package assembling (2-1-6);
Each docking car elevating bracket (2-4) includes hold-down nut (2-4-1) and elevating bracket standpipe (2-4-2);
Described vehicle frame (2-3) is rectangle frame, on the lower surface of two corner angle of vehicle frame (2-3) front end a universal caster wheel (2-6) is installed respectively, on the lower surface of two corner angle of vehicle frame (2-3) rear end a direction-caster (2-5) is installed respectively, an elevating bracket standpipe (2-4-2) respectively is installed on the upper surface of four corner angle of vehicle frame (2-3), the upper end of each elevating bracket standpipe (2-4-2) all is connected with hold-down nut (2-4-1) external screw thread, on docking each hold-down nut of car elevating bracket (2-4) (2-4-1) hoistable platform (2-1-3) is installed;
The upper end of lifting screw (2-1-4) is installed with lifting platform handwheel (2-1-2), the lower end of lifting screw (2-1-4) is passed hoistable platform (2-1-3) and is connected with hold-down nut (2-4-1) internal thread, be provided with rolling bearing (2-1-5) between lifting screw (2-1-4) and the hoistable platform (2-1-3), rolling bearing (2-1-5) is encapsulated in the hoistable platform (2-1-3) by bearing package assembling (2-1-6), locknut (2-1-1) is threaded on the lifting screw (2-1-4), and holding screw (2-1-1) is fixed on hoistable platform (2-1-3) on the hold-down nut (2-4-1);
Be connected with a hoisting cross beam (2-2) between two hoistable platforms (2-1-3) of the front end of docking car (2), be connected with another hoisting cross beam (2-2) between two hoistable platforms (2-1-3) of the rear end of docking car (2);
Each hoisting cross beam (2-2) all is equipped with a rear end bearing support (2-7), and the coaxial setting of two rear end bearing supports (2-7);
Be set up in parallel before and after described dock (1) and the docking car (2).
2. the docking facilities of rotary type assembly according to claim 1, it is characterized in that: hoisting cross beam (2-2) comprises hoisting cross beam arm (2-2-2) and two lift beam joints (2-2-1), the two ends of hoisting cross beam arm (2-2-2) respectively are connected with a lift beam joint (2-2-1), and hoisting cross beam arm (2-2-2) is connected with hoistable platform (2-1-3) by lift beam joint (2-2-1).
3. the docking facilities of rotary type assembly according to claim 1 and 2, it is characterized in that: lifting platform (2-1) also comprises handle (2-1-7), described handle (2-1-7) vertically is installed on the lifting platform handwheel (2-1-2).
4. the docking facilities of rotary type assembly according to claim 3, it is characterized in that: dock (1) also comprises two the first felt layers (1-4), docking car (2) also comprises two the second felt layers (2-8); Be provided with the first felt layers (1-4) on the upper surface of each front end bearing support (1-3), be provided with the second felt layers (2-8) on each rear end bearing support (2-7) surface.
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CN201110242301.1A CN102950446B (en) | 2011-08-23 | 2011-08-23 | Interfacing device for rotary part type components |
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CN201110242301.1A CN102950446B (en) | 2011-08-23 | 2011-08-23 | Interfacing device for rotary part type components |
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CN103286542A (en) * | 2013-06-13 | 2013-09-11 | 沈阳飞机工业(集团)有限公司 | Multi-lug-sheet large-size component movement butt joint unwheeling |
CN106975941A (en) * | 2017-03-29 | 2017-07-25 | 长治清华机械厂 | Arc support type component levelling device |
CN107192436A (en) * | 2017-06-26 | 2017-09-22 | 北京轩宇智能科技有限公司 | Balance optimization working service equipment in hot cell |
CN108860244A (en) * | 2017-05-09 | 2018-11-23 | 天津滨海光热技术研究院有限公司 | A kind of light field cell module transport installation vehicle and its application method |
CN108860245A (en) * | 2017-05-09 | 2018-11-23 | 天津滨海光热技术研究院有限公司 | A kind of application of light field cell module transport installation vehicle |
CN109483193A (en) * | 2018-11-27 | 2019-03-19 | 上海航天精密机械研究所 | A kind of revolving body space product is into cylinder regulating device and its application method |
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CN109483193A (en) * | 2018-11-27 | 2019-03-19 | 上海航天精密机械研究所 | A kind of revolving body space product is into cylinder regulating device and its application method |
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