An azimuth adjustment device for wind turbine blade processing

By designing the orientation adjustment device for wind power blade processing, convenient positioning and detection of wind power blades is achieved, the problems of low efficiency and high damage rate in the existing technology are solved, and the convenience of operation and protection are improved.

CN113732983BActive Publication Date: 2025-08-05CHONGQING MACHINE TOOL GROUP
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Patent Information

Application Number
CN202111142008.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-28
Publication Date
2025-08-05
Estimated Expiration
2041-09-28

AI Technical Summary

Technical Problem

The existing wind power blade detection methods are inefficient and inconvenient to operate, and there is a problem of high damage rate.

Method used

A direction adjustment device for wind power blade processing is designed, including a base, a first direction adjustment component and a load-bearing component. Through the sliding connection between the adjustment seat and the bracket seat, the left and right directions of the wind power blade are realized, and the operation convenience is improved with auxiliary moving components.

Benefits of technology

It improves the operating efficiency of wind power blade detection, enhances the protection of the blade, and reduces the damage rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides an azimuth adjustment device for wind power blade processing, which includes a base, a first azimuth adjustment component and a bearing component; the first azimuth adjustment component includes two adjusting seats symmetrically arranged horizontally; the adjusting seats are slidably arranged on the base; the bearing component includes two bracket seats symmetrically arranged horizontally; the two bracket seats are correspondingly arranged on the two adjusting seats, the upper end of the adjusting seat is slidably connected to the lower end of the corresponding bracket seat, and the two bracket seats can move in the same direction in the left-right direction or move up and down in the vertical direction through the adjusting seats. The operation of the present invention is convenient, the efficiency is relatively high, and at the same time, the protection of the machine body and the corresponding devices is relatively good.
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Description

Technical Field

[0001] The present invention belongs to the technical field of wind power equipment, and particularly relates to an azimuth adjustment device for processing wind turbine blades. Background Art

[0002] Wind energy is regarded as the most potential energy in renewable energy due to its environmental protection, low cost, and relatively high maturity of manufacturing technology, and has been vigorously developed and applied in various countries around the world. As a key component of wind turbines, the cost of wind turbine blades accounts for more than 20% of the entire wind turbine, and its safety and durability are the guarantee for the safe and economic operation of the entire unit.

[0003] With the maturity of wind power manufacturing and operation technologies, the power of wind turbines is continuously increasing, and the corresponding size of wind turbine blades is also increasing. Since the maintenance and repair of wind turbine blades are carried out at high altitudes, once there are problems with the quality of wind turbine blades, it will result in huge repair or replacement costs, and will also affect the stability of the unit. Therefore, wind turbine blades are inspected during the manufacturing and forming process. The existing inspection methods generally involve static contact manual adjustment, which has low efficiency, inconvenient operation, and a relatively high damage rate of wind turbine blades in actual operation. Summary of the Invention

[0004] Aiming at the defects of the existing technology, the present invention provides an azimuth adjustment device for processing wind turbine blades, which is convenient to operate, has high efficiency, and has good protection for the machine body and corresponding devices.

[0005] The present invention provides an azimuth adjustment device for processing wind turbine blades, including a base, a first azimuth adjustment component, and a bearing component;

[0006] The first azimuth adjustment component includes two adjusting seats symmetrically arranged horizontally;

[0007] The adjusting seats are slidably arranged on the base;

[0008] The bearing component includes two support seats symmetrically arranged horizontally;

[0009] The two support seats are correspondingly arranged on the two adjusting seats. The upper end of the adjusting seat is slidably connected to the lower end of the corresponding support seat. The two support seats can move in the same direction in the left - right direction or move up and down in the vertical direction through the adjusting seats.

[0010] In the above technical solution, the present invention can also be improved as follows.

[0011] Preferred technical solution, with additional technical features: The first orientation adjustment component further includes two first horizontal slide rails, which are horizontally symmetrically arranged on the base, and the two adjusting seats are respectively arranged on the sliders of the two first horizontal slide rails.

[0012] Preferred technical solution, with additional technical features: The first orientation adjustment component further includes two inclined slide rails, which are horizontally symmetrically arranged at the lower end of the support seat, and the upper ends of the two adjusting seats are respectively connected to the sliders of the two inclined slide rails.

[0013] Preferred technical solution, with additional technical features: The upper end faces of the two adjusting seats are inclined surfaces and inclined towards the middle of the base.

[0014] Preferred technical solution, with additional technical features: It further includes a second orientation adjustment component. The base is arranged on the second orientation adjustment component, and the base can move back and forth in the front-back direction through the second orientation adjustment component.

[0015] Preferred technical solution, with additional technical features: The second orientation adjustment component includes a base and second horizontal slide rails. There are multiple bases, and the multiple bases are arranged in the front-back direction below the base. The multiple bases are horizontally arranged side by side in the left-right direction. Each base is provided with a second horizontal slide rail, and the lower end of the base is connected to the slider of the second horizontal slide rail.

[0016] Preferred technical solution, with additional technical features: The support seat includes a first seat body and a second seat body. The lower end of the first seat body is provided with the inclined slide rail. The upper end of the first seat body has an inclined surface end in an obtuse angle shape. The second seat body includes two vertical plates in the shape of right triangles. The two vertical plates are vertically arranged at the horizontal end surface of the upper end of the first seat body. The right-angle sides of the two vertical plates are fixedly connected, and the hypotenuse sides of the two vertical plates are both downward arc-shaped concave surfaces.

[0017] Preferred technical solution, with additional technical features: An arc-shaped support plate is provided at the horizontal end surface of the upper end of the first seat body. The lower end of the support plate is hinged to the upper end of the first seat body, and a compression spring is also connected between the plate body of the support plate and the upper end of the first seat body.

[0018] Preferred technical solution, with additional technical features: The bearing component further includes a bracket, which is arranged between the two first seat bodies, and the left and right ends of the bracket are respectively fixedly connected to the two first seat bodies.

[0019] Preferred technical solution, with additional technical features being that: the upper end surface of the bracket is higher than or flush with the lowermost end surface of the inclined surface end of the first seat body.

[0020] Compared with the prior art, the beneficial effects of the present invention are as follows: by providing a base, a first orientation adjustment component, and a carrying component, and directly placing the wind turbine blade on the carrying component, the first orientation adjustment component can drive the carrying component to perform a same-direction movement in the left-right direction or a lifting movement in the vertical direction. That is, it can achieve the left-right movement or the up-down movement of the wind turbine blade in the left-right direction. The operation of the present invention is more convenient, and at the same time, the protection for the wind turbine blade is better. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the specific embodiments or the prior art. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts do not necessarily draw to actual scale.

[0022] Figure 1 FIG. 1 is a schematic structural view of an orientation adjustment device for processing wind turbine blades in Embodiment 1 of the present invention.

[0023] Figure 2 FIG. 2 is a top view of an orientation adjustment device for processing wind turbine blades in Embodiment 1 of the present invention.

[0024] Figure 3 FIG. 3 is a schematic structural view of an orientation adjustment device for processing wind turbine blades in Embodiment 2 of the present invention.

[0025] Figure 4 FIG. 4 is a schematic structural view of an auxiliary moving component in Embodiment 2 of the present invention.

[0026] Figure 5 FIG. 5 is an installation view of an inclined block and a moving seat in Embodiment 2 of the present invention.

[0027] Figure 6 FIG. 6 is a schematic structural view when the hanging plate of the observation chamber in Embodiment 2 of the present invention is lowered.

[0028] In the figures, the meanings of each mark are as follows:

[0029] 1. Base; 2. First azimuth adjustment component; 21. Adjusting seat; 22. First horizontal slide rail; 23. Tilt slide rail; 3. Carrying component; 31. Support seat; 311. First seat body; 312. Second seat body; 313. Support plate; 32. Bracket; 4. Second azimuth adjustment component; 41. Base; 42. Second horizontal slide rail; 5. Auxiliary moving component; 51. Moving seat; 511. Groove; 512. Auxiliary wheel; 513. Third horizontal slide rail; 514. Vertical slide rail; 515. Observation chamber; 516. Suspension plate; 52. Inclined block; 53. Hydraulic rod; 54. Push pad; 55. Biaxial hydraulic motor; 56. First rope winding disc; 57. Roller; 58. Driving motor. Detailed implementation manners

[0030] In order to further understand the content, features and effects of the present invention, the following embodiments are cited and described in detail as follows:

[0031] Embodiment 1

[0032] Please refer to Figure 1 and Figure 2 , this embodiment provides an azimuth adjustment device for processing wind power blades, including a base 1, a first azimuth adjustment component 2 and a carrying component 3;

[0033] The first azimuth adjustment component 2 includes two adjusting seats 21 symmetrically arranged horizontally;

[0034] The adjusting seat 21 is slidably arranged on the base 1;

[0035] The carrying component 3 includes two support seats 31 symmetrically arranged horizontally;

[0036] The two support seats 31 are correspondingly arranged on the two adjusting seats 21, the upper end of the adjusting seat 21 is slidably connected to the lower end of the corresponding support seat 31, and the two support seats 31 can move in the same direction in the left - right direction or move up and down in the vertical direction through the adjusting seat 21.

[0037] In this embodiment, by setting the base 1, the first azimuth adjustment component 2 and the carrying component 3, during use, the staff directly places the wind power blade on the two support seats 31. The two support seats 31 are used to carry the wind power blade. Then, by sliding the adjusting seat 21, when the two adjusting seats 21 slide in the same direction, the two support seats 31 can be driven to move in the same direction, so as to realize the left - right movement of the wind power blade. When the two adjusting seats 21 move closer or farther apart, the two support seats 31 can be driven to rise or fall in the vertical direction, thereby driving the wind power blade to rise or fall in the vertical direction.

[0038] Please refer to Figure 1, the first orientation adjustment component 2 further includes two first horizontal slide rails 22 which are horizontally symmetrically arranged on the base 1, and the two adjusting seats 21 are respectively arranged on the sliders of the two first horizontal slide rails 22.

[0039] By providing the first horizontal slide rails 22, the two adjusting seats 21 can slide left and right on the first horizontal slide rails 22, thereby driving the two support seats 31 to move left or right.

[0040] Please refer to Figure 1 , the first orientation adjustment component 2 further includes two inclined slide rails 23 which are horizontally symmetrically arranged at the lower ends of the support seats 31, and the upper ends of the two adjusting seats 21 are respectively connected to the sliders of the two inclined slide rails 23.

[0041] By providing the inclined slide rails 23, the two adjusting seats 21 can slide on the support seats 31. Since the inclined slide rails 23 are inclined, when the adjusting seats 21 slide relative to the support seats 31, the support seats 31 will rise or fall.

[0042] Please refer to Figure 1 , the upper end surfaces of the two adjusting seats 21 are inclined surfaces and inclined towards the middle of the base 1.

[0043] The upper end of the adjusting seat 21 is made into an inclined surface to be adapted to the inclined slide rail 23, so that the sliding of the adjusting seat 21 is smoother.

[0044] Please refer to Figure 1 and Figure 2 , further includes a second orientation adjustment component 4, the base 1 is arranged on the second orientation adjustment component 4, and the base 1 can move back and forth in the front and back directions through the second orientation adjustment component 4.

[0045] The provided second orientation adjustment component 4 is used to adjust the orientation of the base 1, so that the base 1 can move forward or backward in the front and back directions, indirectly driving the wind power blade to move forward or backward in the front and back directions.

[0046] Please refer to Figure 1 and Figure 2 , the second orientation adjustment component 4 includes a base 41 and second horizontal slide rails 42. There are multiple bases 41, and the multiple bases 41 are arranged in the front and back directions below the base 1. The multiple bases 41 are horizontally arranged side by side in the left and right directions. Each base 41 is provided with a second horizontal slide rail 42, and the lower end of the base 1 is connected to the slider of the second horizontal slide rail 42.

[0047] By setting the base 41 and the second horizontal slide rail 42, the base 1 can move back and forth in the front and back directions along the second horizontal slide rail 42. The base 41 is used to mount the second horizontal slide rail 42 and at the same time support the base 1.

[0048] Please refer to Figure 1 and Figure 2 As shown, the bracket base 31 includes a first body 311 and a second body 312. An inclined slide rail 23 is provided at the lower end of the first body 311. The upper end of the first body 311 has an inclined end in an obtuse angle shape. The second body 312 includes two vertical plates in the shape of right triangles. The two vertical plates are vertically arranged at the horizontal end face of the upper end of the first body 311. The right-angle sides of the two vertical plates are fixedly connected, and the hypotenuse sides of the two vertical plates are both downward arc-shaped concave surfaces.

[0049] The provided first body 311 and second body 312 can support the wind power blade more stably.

[0050] Please refer to Figure 2 As shown, an arc-shaped support plate 313 is provided at the horizontal end face of the upper end of the first body 311. The lower end of the support plate 313 is hinged to the upper end of the first body 311. A compression spring is also connected between the plate body of the support plate 313 and the upper end of the first body 311.

[0051] The provided support plate 313 is used for auxiliary support of the wind power blade. The provided compression spring enables the support plate 313 to give a reaction force to the wind power blade even when it is pressed down by the wind power blade, realizing the auxiliary support of the wind power blade.

[0052] Please refer to Figure 1 and 2 As shown, the carrying component 3 further includes a bracket 32. The bracket 32 is arranged between the two first bodies 311. The left and right ends of the bracket 32 are respectively fixedly connected to the two first bodies 311.

[0053] The provided bracket 32 is used to connect the two first bodies 311. Here, the bracket 32 can be directly welded to the two ends of the two first bodies 311. At the same time, when the first body 311 slides away from each other under the action of the first horizontal slide rail 22 and the inclined slide rail 23, the bracket 32 can contact the lower end of the wind power blade to realize the support of the wind power blade.

[0054] Please refer to Figure 1 As shown, the upper end face of the bracket 32 is higher than or flush with the lowest end face of the inclined end of the first body 311.

[0055] Such a setting can increase the contact surface between the bracket 32 and the wind power blade when the wind power blade moves downward.

[0056] Example 2

[0057] The difference between this embodiment and embodiment 1 is that, please refer to Figures 3 to 6 , also includes an auxiliary moving component 5, the auxiliary moving component 5 includes a moving seat 51, a dual-axis hydraulic motor 55, a first rope drum 56, a roller 57 and a driving motor 58, the upper end of the moving seat 51 is provided with a plurality of grooves 511 in parallel, a single groove 511 is arranged along the front and rear direction of the moving seat 51, and a plurality of grooves 511 are arranged corresponding to a plurality of bases 41, and the inner side wall of the groove 511 is provided with a plurality of auxiliary wheels 512 in parallel along the longitudinal direction of the groove 511, and the front side end of the moving seat 51 is fixed with an inclined block 52 in parallel, and the height of the inclined block 52 is greater than The height of the base 41, the rear end of the movable seat 51 is fixedly provided with the dual-axis hydraulic motor 55, the two output ends of the dual-axis hydraulic motor 55 are respectively connected to the two first rope winding drums 56 for transmission, the two first rope winding drums 56 are symmetrically arranged on the movable seat 51, the front and rear ends of the base 1 are symmetrically provided with several hooks, there are four rollers 57 and they are evenly distributed at the lower end of the movable seat 51, the two rollers 57 at the rear end are connected by a rotating shaft, and the drive motor 58 is fixedly provided at the lower end of the movable seat 51 and is connected to the rotating shaft for transmission.

[0058] By turning on the drive motor 58, the drive motor 58 drives the roller 57 to rotate, thereby driving the mobile seat 51 to move to the rear of the base 1, connecting the rope on the first rope drum 56 to the hook, and at the same time, the mobile seat 51 continues to move toward the base 1, so that the inclined block 52 enters the space between the two bases 41. When the inclined block 52 contacts the front lower end of the base 1, the front lower end of the base 1 is tilted. At this time, several bases 41 are aligned with several grooves 511. The mobile seat 51 continues to move forward and the dual-axis hydraulic motor 55 is turned on at the same time. The dual-axis hydraulic motor 55 rotates and drives the first rope drum 56 to rotate and retract the rope. The base 1 is pulled toward the mobile seat 51, and at the same time, the base 41 contacts the auxiliary wheel 512, so that the base 1 can be smoothly pulled back to the mobile seat 51. This realizes the transportation of the base 1 and the components above the base 1. Compared with using cranes, forklifts and other mechanisms for transportation, the auxiliary moving component 5 provided in this embodiment occupies a smaller area and is safer and more reliable to move, thus avoiding the risk of the base 1 and components above the base 1 falling off during the lifting process.

[0059] See also Figure 3 and Figure 4 Several hydraulic rods 53 are arranged in parallel along the front-to-back direction in the movable seat 51 , and the telescopic ends of the hydraulic rods 53 extend horizontally into the groove 511 . Push pads 54 are provided at the telescopic ends of the hydraulic rods 53 .

[0060] During the outward extension of the hydraulic rod 53, it will come into contact with the base 41. Since there are auxiliary wheels 512 between the base 41 and the groove 511, and there are multiple auxiliary wheels 512 which are respectively arranged on the left, right and lower inner walls of the groove 511, the base 41 can be pushed more easily. Even if the wind power blade is directly placed on the two support seats 31, the hydraulic rod 53 can still push the base 41.

[0061] After the hydraulic rod 53 pushes the base 41 out of the groove 511 partially, the roller 57 is driven by the motor to rotate, so that the moving seat 51 moves away from the base 1 in a downward movement. Under the action of the ground friction and the auxiliary wheels 512, the base 41 and the components above the base 41 can be smoothly separated from the moving seat 51.

[0062] Please refer to Figure 3 、 Figure 4 and Figure 6 As shown in, on the moving seat 51, a third horizontal slide rail 513 is provided along the left - right direction. On the slide table of the third horizontal slide rail 513, a vertical slide rail 514 is provided. On the slide table of the vertical slide rail 514, an observation chamber 515 is fixedly provided. At the front end of the observation chamber 515, a hanging plate 516 is provided. The upper end of the hanging plate 516 is connected with the inside of the observation chamber 515 by a suspension rope, and the lower end of the hanging plate 516 is rotatably connected with the lower end of the observation chamber 515. An observation window is provided on the hanging plate 516.

[0063] The third horizontal slide rail 513 can drive the vertical slide rail 514 to move left and right in the horizontal direction, and the vertical slide rail 514 can drive the observation chamber 515 to move up and down in the vertical direction. By moving the observation chamber 515 to the position of the wind power blade, and at the same time pulling the base 1 by the double - axis hydraulic motor 55 or pushing the base 41 by the hydraulic rod 53, the wind power blade located on the bracket 32 can be made to approach or move away from the operator, realizing multi - azimuth detection of the wind power blade. In order to enable the operator to get closer to the wind power blade, by loosening the suspension rope, the hanging plate 516 is slowly lowered until it is finally parallel to the lower end of the observation chamber 515. After fixing one end of the suspension rope inside the observation chamber 515, at this time the hanging plate 516 forms a suspension bridge structure, and the operator can stand on the hanging plate to detect the wind power blade. In this embodiment, a fixed pulley is provided at the upper end of the observation chamber 515, and the rope body of the suspension rope is engaged with the fixed pulley. Inside the observation chamber 515, a second rope winding disc is provided and connected with the suspension rope, and the second rope winding disc winds and unwinds the rope. At the same time, an observation window is also provided on the hanging plate 516. When the hanging plate 516 does not need to be lowered, the operator can directly observe inside the observation chamber 515.

[0064] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present invention.

[0065] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, "a plurality of" means two or more unless otherwise specifically defined.

[0066] In the present invention, unless otherwise clearly defined and limited, the terms such as "mounted", "connected", "coupled", "fixed", etc. shall be construed in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the internal connection or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0067] In the present invention, unless otherwise clearly defined and limited, the first feature being "on" or "under" the second feature may be that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on top of" the second feature may be that the first feature is directly above or obliquely above the second feature, or merely indicates that the first feature has a higher horizontal height than the second feature. The first feature being "under", "beneath" and "underneath" the second feature may be that the first feature is directly below or obliquely below the second feature, or merely indicates that the first feature has a lower horizontal height than the second feature.

[0068] In the description of this specification, the description referring to terms such as "one embodiment", "some embodiments", "examples", "specific examples", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with that embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples. Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the present invention.

Claims

1. An azimuth adjustment device for wind turbine blade processing, characterized by: The invention comprises a base, a first azimuth adjustment assembly and a bearing assembly; the first azimuth adjustment assembly comprises two horizontally symmetrically arranged adjustment seats; the adjustment seats are slidably arranged on the base; the bearing assembly comprises two horizontally symmetrically arranged bracket seats; the two bracket seats are correspondingly arranged on the two adjustment seats, the upper ends of the adjustment seats are slidably connected to the lower ends of the corresponding bracket seats, and the two bracket seats can perform the same direction movement in the left and right directions or the vertical lifting movement through the adjustment seats; It also includes a second orientation adjustment component, the base is arranged on the second orientation adjustment component, and the base can move forward and backward in the forward and backward direction through the second orientation adjustment component; The second orientation adjustment assembly includes a base and a second horizontal slide rail, wherein the base is multiple, and the multiple bases are arranged below the base in the front-to-back direction, and the multiple bases are arranged horizontally in parallel along the left-to-right direction. Each of the bases is provided with the second horizontal slide rail, and the lower end of the base is connected to the slide table of the second horizontal slide rail; The bracket seat includes a first seat body and a second seat body, the lower end of the first seat body is provided with an inclined slide rail, the upper end of the first seat body has an obtuse-angled inclined surface end, and the second seat body includes two right-angled triangular vertical plates, the two vertical plates are vertically arranged at the horizontal end surface of the upper end of the first seat body, the right-angled sides of the two vertical plates are fixedly connected, and the oblique sides of the two vertical plates are both downward-facing arc-shaped concave surfaces; An arc-shaped support plate is provided at the horizontal end surface of the upper end of the first base body, the lower end of the support plate is hinged to the upper end of the first base body, and the body of the support plate and the upper end of the first base body are further connected by a compression spring; Base comprises support, castor, and frame upper is provided with guide rail, and support and conveyer frames movable end contact site are provided with recoil spring or rubber cushion, and castor is arranged on the pin of base bottom four, to carry mobile handler location. Several hydraulic rods are arranged in parallel along the front-to-back direction in the movable seat, and the telescopic ends of the hydraulic rods extend horizontally into the grooves, and the telescopic ends of the hydraulic rods are provided with push pads; A third horizontal slide rail is provided on the movable seat along the left and right directions, a vertical slide rail is provided on the slide platform of the third horizontal slide rail, an observation room is fixedly provided on the slide platform of the vertical slide rail, a hanging plate is provided at the front end of the observation room, the upper end of the hanging plate is connected to the observation room by a hanging rope, the lower end of the hanging plate is rotatably connected to the lower end of the observation room, and an observation window is provided on the hanging plate.

2. The orientation adjustment device for wind turbine blade processing according to claim 1, characterized in that: The first orientation adjustment assembly further includes a first horizontal slide rail. There are two first horizontal slide rails that are horizontally symmetrically arranged on the base. The two adjustment seats are respectively arranged on the slide platforms of the two first horizontal slide rails.

3. The orientation adjustment device for wind turbine blade processing according to claim 1, characterized in that: The first orientation adjustment component also includes an inclined slide rail. There are two inclined slide rails that are horizontally symmetrically arranged at the lower end of the bracket seat. The upper ends of the two adjustment seats are respectively connected to the slide platforms of the two inclined slide rails.

4. The orientation adjustment device for wind turbine blade processing according to claim 3, characterized in that: The upper end surfaces of the two adjustment seats are inclined surfaces and are inclined toward the middle of the base.

5. The orientation adjustment device for wind turbine blade processing according to claim 1, characterized in that: The bearing assembly further includes a bracket, which is disposed between the two first base bodies, and the left and right ends of the bracket are fixedly connected to the two first base bodies respectively.

6. The orientation adjustment device for wind turbine blade processing according to claim 5, characterized in that: The upper end surface of the bracket is higher than or flush with the lowermost end surface of the inclined end of the first base.

Citation Information

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