Position adjusting structure of supporting seat of wind power blade grinding machine

文档序号:478272 发布日期:2022-01-04 浏览:22次 中文

阅读说明:本技术 一种风电叶片打磨机支撑座的位置调节结构 (Position adjusting structure of supporting seat of wind power blade grinding machine ) 是由 龙晓斌 冯绘常 于 2021-09-07 设计创作,主要内容包括:本发明公开了一种风电叶片打磨机支撑座的位置调节结构,包括支撑座和固定架,固定架上设置有能够承托支撑座的固定板,固定板和支撑座之间设置有能够在支撑座相对于固定板移动时给支撑座导向的导向机构,固定板和支撑座之间还设置有能够在支撑座移动后将支撑座与固定板锁紧的锁定装置。安装自动打磨机之前,通过本发明的位置调节结构将支撑座的水平位置调整到位,可保证自动打磨机处于较佳的工作位置。(The invention discloses a position adjusting structure of a supporting seat of a wind power blade grinding machine, which comprises a supporting seat and a fixing frame, wherein a fixing plate capable of supporting the supporting seat is arranged on the fixing frame, a guide mechanism capable of guiding the supporting seat when the supporting seat moves relative to the fixing plate is arranged between the fixing plate and the supporting seat, and a locking device capable of locking the supporting seat and the fixing plate after the supporting seat moves is also arranged between the fixing plate and the supporting seat. Before the automatic grinding machine is installed, the horizontal position of the supporting seat is adjusted in place through the position adjusting structure, and the automatic grinding machine can be guaranteed to be located at a better working position.)

1. The utility model provides a position control structure of wind-powered electricity generation blade polisher supporting seat, its characterized in that, includes supporting seat (4) and mount (6), be provided with on mount (6) and can bear fixed plate (61) of supporting seat (4), be provided with between fixed plate (61) and the supporting seat (4) can give when supporting seat (4) remove for fixed plate (61) the guiding mechanism of supporting seat (4) direction, still be provided with between fixed plate (61) and the supporting seat (4) can be in after supporting seat (4) remove the locking device of supporting seat (4) and fixed plate (6) locking.

2. The structure of adjusting the position of a supporting seat of a wind turbine blade grinding machine according to claim 1, wherein the guiding mechanism comprises a first strip-shaped hole (42) provided in the supporting seat (4) and arranged in the left-right direction, and a second strip-shaped hole (611) provided in the fixed plate (61) and arranged in the front-back direction.

3. The structure of adjusting the position of a supporting seat of a wind turbine blade grinding machine according to claim 2, characterized in that the locking device comprises a bolt assembly which can pass through the first strip-shaped hole (42) and the second strip-shaped hole (611) and lock the supporting seat (4) and the fixing plate (61).

4. The position adjusting structure of the supporting seat of the wind-power blade grinding machine according to claim 1, characterized in that a height adjusting device capable of adjusting the up-down position of the supporting seat (4) is further arranged between the fixing plate (61) and the supporting seat (4).

5. The structure of claim 4, wherein the height adjustment device comprises a screw hole (612) formed in the fixing plate (61) and an adjustment screw (8) engaged with the screw hole (612), and the threaded end of the adjustment screw (8) passes through the screw hole (612) and abuts against the bottom surface of the supporting seat (4).

Technical Field

The invention relates to the technical field of wind power blade machining, in particular to a position adjusting structure of a supporting seat of a wind power blade grinding machine.

Background

Wind power blades are formed by firstly dividing 2 half blades and then forming the whole blade in a die. When dividing 2 half blades to be formed, the formed 2 half blades can form redundant sharp corners and burrs on the die assembly surface, and the die assembly can be carried out to form the whole blade after the die assembly surface is polished. The prior art cuts unnecessary closed angle and deckle edge and polishes through the manual work, and machining efficiency is low, and work load is big, and manual operation careless will cause the damage of different degrees to the blade slightly, influences the quality of blade, and can produce dust and piece at the cutting in-process of polishing, influences operational environment and critical operating personnel's healthy.

In order to solve the problem, the wind power blade can be automatically polished by specially-made wind power blade polishing equipment, referring to fig. 1, the wind power blade polishing equipment comprises an automatic polishing machine 1 and a blade forming die set 2, and the specific operation process is as follows: firstly, a forming die frame 2 is placed on the ground, and a wind power blade is formed in a mounting groove 21 of the forming die frame 2. Be provided with a plurality of supporting seats 4 that are used for bearing automatic sander 1 on blade shaping die carrier 2, automatic sander have with a plurality of supporting legs 3 of 4 one-to-one of supporting seats, be provided with between supporting leg 3 and the supporting seat 4 that corresponds and be used for the unsmooth cooperation structure of location and be used for the keeper formula rapid fixture 5 with the two locking. After the automatic grinding machine 1 is lifted and installed on the supporting seat 4, the wind power blade is automatically ground.

However, since the automatic grinding machine 1 and the blade forming die carrier 2 have a large size and a width of several meters, after the supporting seat 4 is installed on the blade forming die carrier 2, the position of the supporting seat 4 is prone to deviation, which results in the occurrence of the situation that the concave-convex matching structure between the supporting leg 3 and the supporting seat 4 is not aligned.

Disclosure of Invention

In view of this, the invention aims to provide a position adjusting structure of a supporting seat of a wind power blade grinding machine.

The technical scheme adopted by the invention for solving the technical problem is as follows:

the utility model provides a position control structure of wind-powered electricity generation blade polisher supporting seat, includes supporting seat and mount, be provided with on the mount and can bear the fixed plate of supporting seat, be provided with between fixed plate and the supporting seat can give when the supporting seat removes for the fixed plate the guiding mechanism of supporting seat direction, still be provided with between fixed plate and the supporting seat can the locking device of supporting seat and fixed plate locking after the supporting seat removes.

In a preferable aspect of the present invention, the guide mechanism includes a first strip-shaped hole provided in the support base and arranged in a left-right direction, and a second strip-shaped hole provided in the fixed plate and arranged in a front-rear direction.

In a preferred embodiment of the present invention, the locking device includes a bolt assembly that can pass through the first strip-shaped hole and the second strip-shaped hole and lock the supporting seat and the fixing plate.

In a preferred embodiment of the present invention, a height adjusting device capable of adjusting the up-down position of the supporting seat is further disposed between the fixing plate and the supporting seat.

In a preferred embodiment of the present invention, the height adjusting device includes a screw hole provided in the fixing plate and an adjusting screw engaged with the screw hole, and a threaded end of the adjusting screw passes through the screw hole upward and abuts against a bottom surface of the support seat.

The invention has the beneficial effects that: before the automatic grinding machine is installed, the horizontal position of the supporting seat is adjusted in place through the position adjusting structure, and the automatic grinding machine can be guaranteed to be located at a better working position.

Drawings

FIG. 1 is a front view of a wind blade sharpening apparatus;

FIG. 2 is an exploded view of an assembly structure of the support leg, the support base and the fixing plate.

Detailed Description

The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.

It should be noted that all the directional indicators (such as up, down, left, right, front, and rear …) in the embodiment of the present invention are only used to explain the relative position relationship between the components, the movement situation, etc. in a specific posture (as shown in the drawing), and if the specific posture is changed, the directional indicator is changed accordingly. In addition, the descriptions related to "preferred", "less preferred", etc. in the present invention are for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "preferred" or "less preferred" may explicitly or implicitly include at least one such feature.

Referring to fig. 1 to 2, an embodiment of the present invention provides a position adjustment structure for a supporting seat of a wind turbine blade grinding machine, including a supporting seat 4 and a fixing frame 6, wherein a fixing plate 61 capable of supporting the supporting seat 4 is disposed on the fixing frame 6, a guiding mechanism capable of guiding the supporting seat 4 when the supporting seat 4 moves relative to the fixing plate 61 is disposed between the fixing plate 61 and the supporting seat 4, and a locking device capable of locking the supporting seat 4 and the fixing plate 6 after the supporting seat 4 moves is further disposed between the fixing plate 61 and the supporting seat 4.

In a preferred aspect of the present invention, the guide mechanism includes a first bar-shaped hole 42 provided to the support base 4 and arranged in the left-right direction, and a second bar-shaped hole 611 provided to the fixed plate 61 and arranged in the front-rear direction. The locking means comprises a bolt assembly capable of passing through the first and second bar-shaped holes 42 and 611 and locking the supporting seat 4 and the fixing plate 61. The bolt assembly comprises a bolt 71 and a nut 72, and the bolt 71 penetrates through the first strip-shaped hole 42 and the second strip-shaped hole 611 and then is screwed with the nut 72, so that the supporting seat 4 and the fixing plate 61 can be locked.

When the horizontal position of supporting seat 4 needs to be adjusted, nut 72 is unscrewed, then supporting seat 4 is moved to the target position, and finally nut 72 is screwed down again to complete the adjustment. Before the automatic sander 1 is installed, the supporting seat 4 is horizontally adjusted in place, so that the automatic sander 1 can be ensured to be in a better working position.

In some embodiments of the present invention, the guide rail mechanism for moving two shafts may be used instead of the first and second bar-shaped holes 42 and 611, but the cost of the guide rail mechanism for moving two shafts is higher.

The quantity of supporting seat 4 and supporting leg 3 generally is 4, and the back is fixed on blade forming die carrier 2 in the installation of mount 6, and the deviation also appears easily in the high position of each supporting seat 4.

In order to solve the above problem, a height adjusting device capable of adjusting the up-down position of the support base 4 is further provided between the fixing plate 61 and the support base 4.

In a preferred embodiment of the present invention, the height adjusting means comprises a screw hole 612 provided on the fixing plate 61 and an adjusting screw 8 engaged with the screw hole 612, wherein a threaded end of the adjusting screw 8 passes upward through the screw hole 612 and abuts against the bottom surface of the support base 4. The number of the adjusting screws 8 is generally 3-5, and when the height position of the supporting seat 4 needs to be adjusted, the supporting seat 4 with the lower position is lifted to a position approximately equal to the height of other supporting seats 4 by screwing each adjusting screw 8.

The above description is only a preferred embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications and equivalents of the present invention, which can be directly or indirectly applied to other related technical fields without departing from the spirit of the present invention, are intended to be included in the scope of the present invention.

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