UD beam storage mechanism and using method thereof

By designing the supporting vertical rod, rotation adjustment component, and top support component, the problem of the inability to adjust the UD beam storage mechanism was solved, achieving stable support for the UD beam and reducing impact damage.

CN121269232APending Publication Date: 2026-01-06SINOMA TECH (YANGJIANG) WIND POWER BLADE CO LTD
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Patent Information

Application Number
CN202511467161.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-14
Publication Date
2026-01-06

AI Technical Summary

Technical Problem

The existing UD beam storage mechanism cannot adjust the restriction of the placement opening, causing the top of the UD beam to lose its fit restriction, making it easy to shift and be damaged, and the hard contact of the pad block can easily cause bump damage.

Method used

The system employs support rods, a rotating adjustment assembly, and a top support assembly. Through the cooperation of the rotating adjustment assembly and the top support assembly, flexible support and positioning of the top and bottom of the UD beam are achieved. Silicone material is used to reduce impact damage.

Benefits of technology

Stable support for the UD beam is achieved, preventing displacement and damage. The combination of the rotation adjustment component and the top support component forms a more stable restraint and protection, reducing impact damage to the top of the UD beam.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a UD beam storage mechanism and a using method thereof.The mechanism comprises supporting vertical rods, a rotary adjusting assembly, a jacking assembly and a positioning assembly, and jacking rods are fixedly connected to the middles of the opposite sides of the multiple sets of supporting vertical rods; the multiple rotary adjusting assemblies are arranged at the tops of the multiple supporting vertical rods correspondingly, each rotary adjusting assembly comprises a rotary part and an adjusting part, and the rotary parts are meshed with the adjusting parts; the jacking assembly comprises a jacking part and a connecting part, the connecting part is connected to the top of the rotating part, and the jacking part is in threaded fit with the connecting part; the multiple sets of positioning assemblies are slidably arranged on the outer wall of the top supporting rod in a sleeving mode. According to the device, the rotary adjusting assembly and the jacking assembly are arranged for supporting and limiting the top of the UD beam, the jacking angle and distance are adjusted according to different shapes and supporting positions of the UD beam, and after positioning of the bottom of the UD beam is matched, limiting of the top and the bottom of the UD beam in a mutual matching mode can be better formed, so that the mode of the UD beam is safer and more reliable.
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Description

Technical Field

[0001] This invention relates to the field of UD beam storage equipment, and particularly to a UD beam storage mechanism and its usage method. Background Technology

[0002] UD beams are prefabricated composite material components with glass fiber as reinforcement and resin as matrix. They are prefabricated in the factory and require a storage mechanism for support and storage after they are made.

[0003] Existing storage mechanisms of this type are mostly welded steel frames with a placement opening at the top. After the UD beam is placed in the opening, some padding structures are added for filling and restraint. Such storage mechanisms cannot adjust the restriction of the placement opening when storing UD beams of different shapes and types. This means that the UD beam is only supported at the bottom by the padding blocks, and there is no mutual restraint at the top of the UD beam. This is not conducive to restraining the UD beam. If the top of the UD beam shifts, it will cause damage to the UD beam structure. Moreover, the padding blocks in the existing storage mechanisms provide rigid support for the UD beam, which is prone to bumping and damage when the UD beam is placed at the top support rod. In view of this, this solution proposes a storage mechanism for UD beams and its usage method to solve the above problems. Summary of the Invention

[0004] The purpose of this invention is to provide a storage mechanism for UD beams and a method for using it, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a storage mechanism for UD beams, comprising:

[0006] Supporting vertical rods, multiple supporting vertical rods are symmetrically arranged along the vertical axis, and top support rods are fixedly connected to the middle of opposite sides of multiple sets of supporting vertical rods. The top support rods are used to support and place the UD beam.

[0007] A rotating adjustment assembly, wherein multiple sets of the rotating adjustment assemblies are respectively disposed on the top of multiple supporting vertical rods, the rotating adjustment assembly includes a rotating part and an adjusting part, the rotating part and the adjusting part are engaged with each other, and the adjusting part is unidirectionally locked to rotate;

[0008] A top support assembly, comprising a top support portion and a connecting portion, wherein the connecting portion is connected to the top of the rotating portion, and the top support portion is threadedly engaged with the connecting portion, and the top support portion is used for compression restriction of the top of the UD beam;

[0009] The positioning components, in multiple sets, are slidably sleeved on the outer wall of the top support rod, and are used for supporting and positioning the bottom of the UD beam.

[0010] Preferably, a reinforcing rod is fixedly connected to the bottom of the multiple sets of supporting vertical rods on opposite sides, a supporting horizontal rod is fixedly connected to the bottom end of each set of supporting vertical rods, and a silicone strip is fixedly connected to the top end of the top support rod.

[0011] Preferably, the adjustment unit includes:

[0012] An adjusting block is fixedly connected to the top of the supporting vertical rod, and an adjusting groove is provided at the top of the adjusting block;

[0013] An adjusting gear is rotatably connected to an adjusting groove and is used to mesh with a rotating part. A first supporting rotating rod is fixedly connected to the middle of the adjusting gear, and the two ends of the first supporting rotating rod are rotatably connected to the two sides of the adjusting block, respectively.

[0014] A locking element is provided on one side of the adjusting block and is tractively connected to one end of the first support rotating rod.

[0015] Preferably, a rotating groove is formed on one side of the adjusting block, and a locking groove is formed on the side wall of the rotating groove. The locking element includes:

[0016] A locking gear is rotatably connected in a rotating groove and is fixedly sleeved on one end of the first supporting rotating rod;

[0017] A blocking tooth block is rotatably connected to a locking groove, and the blocking tooth block is used to engage with the locking groove to lock the gear in a one-way rotational meshing.

[0018] Preferably, the rotating part includes:

[0019] A rotating block, one end of which is rotatably inserted into an adjusting groove, the end of which is inserted into the adjusting groove has a rotating groove, and the other end of which has a threaded through hole for threaded connection of the connecting part.

[0020] A locking gear is rotatably inserted into a rotating groove. The outer wall of the locking gear meshes with the outer wall of the locking gear. A second support rod is fixedly connected to the middle of the locking gear. The two ends of the second support rod pass through the rotating groove and the adjusting groove in sequence and are rotatably inserted into the adjusting block.

[0021] Preferably, the connecting portion includes:

[0022] A connecting screw, wherein the outer wall of the connecting screw is threadedly engaged with the inner wall of the threaded through hole;

[0023] A control turntable, which is fixedly connected to one end of a connecting screw;

[0024] A connecting push block is fixedly connected to the other end of the connecting screw, and the connecting push block is used to connect the top support.

[0025] Preferably, the top support includes:

[0026] A top support bar, the bottom end of which has a sliding opening, and the connecting screw passes through one end of the top support bar and is rotatably inserted into the sliding opening;

[0027] An arc-shaped pressure block, which is fixedly connected to the other end of the top support strip;

[0028] A rotating bearing is connected to the inner wall of one end of the sliding port, and the outer ring wall of the rotating bearing is detachably connected to the connecting push block.

[0029] Preferably, the positioning component includes:

[0030] A sliding block, wherein the bottom end of the sliding block is provided with a sliding opening, the sliding opening is used for sliding connection of the sliding block on the outer wall of the top support rod, and the top end of the sliding block is provided with a movable groove;

[0031] Positioning bolts, the threaded ends of multiple sets of positioning bolts are respectively threaded through and connected to both sides of the sliding block, and the threaded ends of multiple sets of positioning bolts all penetrate into the sliding port;

[0032] A positioning element, which is movably connected within a movable groove.

[0033] Preferably, the bottom of the movable groove is a spherical groove, the top of the movable groove is a cylindrical groove, and the inner wall of the bottom of the movable groove is provided with multiple positioning grooves. The positioning element includes:

[0034] A positioning rod is inserted into a cylindrical groove. A positioning support block is fixedly connected to the top of the positioning rod, and a rotating ball is fixedly connected to the bottom of the positioning rod. The rotating ball is movably connected into a spherical groove. Multiple positioning cones are fixedly connected around the outer wall of the rotating ball, and the positioning cones are inserted into the positioning groove.

[0035] A compression spring is sleeved on the outer wall of the positioning rod and disposed within a cylindrical groove.

[0036] A method of using a UD beam storage mechanism, comprising the following steps:

[0037] The first step is to place the corresponding number of storage mechanisms according to the location that the UD beam needs to support;

[0038] The second step is to adjust the positions of multiple positioning components and top support rods according to the location where the UD beam is to be supported. Multiple positioning components clamp and position the bottom of the UD beam from both sides, and adjust the support angle of the positioning components according to the location where the UD beam is to be supported.

[0039] The third step is to adjust the setting angle of the top support component by rotating the adjustment component after the bottom of the UD beam is restrained. The top support part of the top support component is aligned with the top position of the UD beam that needs to be supported.

[0040] Fourth step, adjust the horizontal position of the top support to press the top of the UD beam tightly against it.

[0041] The technical effects and advantages of this invention are as follows:

[0042] (1) The present invention constructs a placement structure for supporting UD beams by setting up a structure of supporting vertical rods and top support rods. At the same time, by using the sliding cooperation between the positioning component and the top support rod, the support positioning of the bottom of the UD beam can be adjusted. The positioning component can also be adjusted to adapt to different support points at the bottom of the UD beam, making the support of the bottom of the UD beam more flexible. In addition, the silicone shock-absorbing contact with the support point of the UD beam prevents the UD beam from being bumped and damaged when the top support rod is placed.

[0043] (2) The present invention sets up a rotation adjustment component and a top support component to support and restrict the top of the UD beam. When supporting the top of the UD beam, the angle and distance of the top support are adjusted according to the different shapes of the UD beam and the support position. After the bottom of the UD beam is positioned, the top and bottom of the UD beam can be better restricted in a mutually cooperating manner, so as to form a more stable restriction and protection for the UD beam when it is placed, making the UD beam safer and more reliable. Attached Figure Description

[0044] Figure 1 This is a schematic diagram of the overall structure of the storage mechanism of the present invention.

[0045] Figure 2 This is a front view of the overall structure of the storage mechanism of the present invention.

[0046] Figure 3 This is a schematic diagram showing the structural connection between the supporting vertical rod and the rotation adjustment assembly of the present invention.

[0047] Figure 4 This is a schematic diagram of the structural connection between the end of the supporting vertical rod and the rotation adjustment component of the present invention.

[0048] Figure 5 This is a side view showing the structural connection between the end of the supporting vertical rod and the rotation adjustment assembly of the present invention.

[0049] Figure 6This is a schematic diagram showing the structural connection between the top support assembly and the rotating part of the present invention.

[0050] Figure 7 This is a schematic diagram of the positioning component of the present invention.

[0051] Figure 8 This is a cross-sectional view of the positioning component of the present invention.

[0052] Figure 9 This is a schematic diagram of the positioning component of the present invention.

[0053] In the diagram: 1. Supporting vertical rod; 101. Adjusting block; 102. Top support rod; 103. Reinforcing rod; 104. Supporting horizontal rod; 105. Silicone strip; 2. Adjusting gear; 201. First supporting rotating rod; 202. Locking gear; 203. Blocking tooth block; 3. Rotating block; 301. Locking tooth disc; 302. Second supporting rotating rod; 303. Threaded through hole; 4. Top support bar; 401. Arc-shaped pressure block; 402. Rotating bearing; 5. Connecting screw; 501. Control turntable; 502. Connecting push block; 6. Sliding block; 601. Positioning bolt; 7. Positioning rod; 701. Positioning support block; 702. Rotating ball; 703. Positioning cone; 8. Downward pressure spring. Detailed Implementation

[0054] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0055] Example 1: The present invention provides as follows Figure 1 - Figure 9 The illustrated storage mechanism for UD beams includes:

[0056] Supporting vertical rod 1, multiple supporting vertical rods 1 are symmetrically arranged along the vertical axis, and top support rod 102 is fixedly connected to the middle of the opposite side of multiple sets of supporting vertical rods 1. The top support rod 102 is used to support and place the UD beam.

[0057] Specifically, a reinforcing rod 103 is fixedly connected to the bottom of the multiple sets of supporting vertical rods 1 on opposite sides, a supporting horizontal rod 104 is fixedly connected to the bottom of the multiple sets of supporting vertical rods 1, and a silicone strip 105 is fixedly connected to the top of the top support rod 102.

[0058] It should be noted that the reinforcing rod 103 is fixedly connected to the bottom of the multiple sets of supporting vertical rods 1 and located below the top support rod 102, in order to strengthen the connection between the supporting vertical rods 1 and the top support rod 102. Through this structural arrangement, the connection between the supporting vertical rods 1 and the top support rod 102 is more stable. The supporting horizontal rod 104 is welded to the bottom of the supporting vertical rod 1 in the horizontal direction, and the supporting vertical rod 1 and the supporting horizontal rod 104 form a 90-degree angle to form support. The silicone strip 105 is used to pad the UD beam support part placed at the top of the top support rod 102 to avoid the UD beam from being bumped or damaged.

[0059] A rotary adjustment assembly, with multiple sets of rotary adjustment assemblies respectively disposed on the top of multiple support vertical rods 1, the rotary adjustment assembly includes a rotating part and an adjusting part, the rotating part and the adjusting part meshing with each other, and the adjusting part rotating in a one-way locking manner;

[0060] Specifically, the regulating section includes:

[0061] Adjusting block 101 is fixedly connected to the top of the supporting vertical rod 1, and the top of the adjusting block 101 is provided with an adjusting groove;

[0062] Adjusting gear 2 is rotatably connected in the adjusting groove. A first support rotating rod 201 is fixedly connected to the middle of the adjusting gear 2. The two ends of the first support rotating rod 201 are rotatably inserted and connected to the two sides of the adjusting block 101 respectively. The adjusting gear 2 can rotate stably in the adjusting groove through the rotational support of the first support rotating rod 201.

[0063] A locking element is provided on one side of the adjusting block 101, and the locking element is connected to one end of the first support rotating rod 201 in a transmission manner.

[0064] Furthermore, a rotating groove is provided on one side of the adjusting block 101, and a locking groove is provided on the side wall of the rotating groove. The locking element includes:

[0065] The locking gear 202 is rotatably connected in the rotating groove and is fixedly sleeved on one end of the first support rotating rod 201;

[0066] The blocking tooth block 203 is rotatably connected in the locking groove. The blocking tooth block 203 is used to cooperate with the locking groove to perform unidirectional rotational engagement of the locking gear 202.

[0067] It should be noted that the teeth on the outer wall of the locking gear 202 are curved, and the teeth of the blocking block 203 are arc-shaped. In this design, the locking gear 202 can rotate clockwise in the forward-looking direction. During its clockwise rotation, the outer arc wall of the teeth of the locking gear 202 and the outer arc wall of the blocking block 203 press and push against each other. During this process, the blocking block 203 can rotate and retract into the locking groove, thereby losing its obstruction and restriction on the rotation of the locking gear 202. When locked... After the gear 202 and the blocking tooth block 203 rotate clockwise once, the blocking tooth block 203 will rotate under the action of gravity to expose the locking groove. When the locking gear 202 rotates counterclockwise in the front view direction, the inner arc wall of the locking gear 202 and the inner arc wall of the blocking tooth block 203 mesh with each other. The outer arc wall of the blocking tooth block 203, in conjunction with the groove of the locking groove, restricts the outer arc wall of the locking gear 202, and the locking gear 202 cannot rotate. At this time, the blocking tooth block 203 prevents the locking gear 202 from rotating.

[0068] When it is necessary to rotate the locking gear 202 counterclockwise, the blocking tooth block 203 needs to be manually rotated into the locking groove, so that the locking gear 202 can be rotated.

[0069] Specifically, the rotating part includes:

[0070] Rotating block 3, one end of rotating block 3 is rotatably inserted into the adjustment groove, the end of rotating block 3 inserted into the adjustment groove is provided with a rotating groove, and the other end of rotating block 3 is provided with a threaded through hole 303, which is used for threaded connection of the connecting part;

[0071] The locking gear 301 is rotatably inserted into the rotating groove. The outer wall of the locking gear 301 meshes with the outer wall of the locking gear 202. A second support rotating rod 302 is fixedly connected to the middle of the locking gear 301. The two ends of the second support rotating rod 302 pass through the rotating groove and the adjusting groove in sequence and are rotatably inserted into the adjusting block 101.

[0072] It should be noted that the locking gear 301 is supported and rotated by the second support rotating rod 302, and the rotating block 3 is fixed at the insertion point of the second support rotating rod 302. Therefore, the rotation of the locking gear 301 can be synchronized with the rotation of the rotating block 3.

[0073] The top support assembly includes a top support part and a connecting part. The connecting part is connected to the top of the rotating part. The top support part and the connecting part are threaded together. The top support part is used for compression restriction of the top of the UD beam. The adjusting gear 2 is used to mesh with the rotating part.

[0074] Specifically, the connecting part includes:

[0075] Connecting screw 5, the outer wall of connecting screw 5 is threaded to the inner wall of threaded through hole 303;

[0076] Control turntable 501 is fixedly connected to one end of connecting screw 5;

[0077] Connecting push block 502 is fixedly connected to the other end of connecting screw 5. Connecting push block 502 is used to connect the top support.

[0078] It should be noted that the outer thread of the connecting screw 5 is compatible with the inner thread of the threaded through hole 303. By rotating the connecting screw 5, the connecting screw 5 moves horizontally along the support and guidance of the rotating block 3 under the threaded engagement. The rotating disk 501 can be controlled to rotate the connecting screw 5 more conveniently. The connecting push block 502 is welded and fixed to the end of the connecting screw 5. Therefore, the connecting push block 502 and the connecting screw 5 rotate and move synchronously.

[0079] Specifically, the top support includes:

[0080] The top support bar 4 has a sliding opening at its bottom end, and the connecting screw 5 passes through one end of the top support bar 4 and is rotatably inserted into the sliding opening;

[0081] Arc-shaped pressure block 401 is fixedly connected to the other end of the top support strip 4. Arc-shaped pressure block 401 can be replaced according to the actual top support situation. Arc-shaped pressure block 401 is made of silicone material. When providing contact support for the UD beam, it provides shock-absorbing padding for the contact point to avoid collision damage to the UD beam.

[0082] Rotary bearing 402 is connected to the inner wall of one end of the sliding port, and the outer ring wall of rotary bearing 402 is detachably connected to connecting push block 502.

[0083] It should be noted that the inner ring wall of the rotating bearing 402 is fixedly connected to the inner wall of one end of the sliding port, and the outer ring wall of the rotating bearing 402 is fixedly connected to two threaded rod structures. The connecting push block 502 has two sets of insertion holes. The threaded rod structures are inserted into the insertion holes, and after insertion, they are fitted with nuts and threaded rod structures. In the actual setting, the top support bar 4 is fitted on the top of the rotating block 3 through the sliding port. Through the structural setting of the rotating bearing 402, the rotation of the connecting screw 5 can be counteracted, so that the top support bar 4 can only move synchronously along the rotation of the connecting screw 5.

[0084] Positioning components, multiple sets of positioning components are slidably sleeved on the outer wall of the top support rod 102, and the positioning components are used for support and positioning of the bottom of the UD beam.

[0085] Specifically, the positioning components include:

[0086] The sliding block 6 has a sliding opening at its bottom end, which is used for sliding connection of the sliding block 6 to the outer wall of the top support rod 102. The sliding block 6 has a movable groove at its top end.

[0087] Positioning bolts 601, the threaded ends of multiple sets of positioning bolts 601 are respectively threaded through and connected to both sides of the sliding block 6, and the threaded ends of multiple sets of positioning bolts 601 all pass through the sliding port;

[0088] It should be noted that when adjusting the sliding block 6, rotate the positioning bolt 601 to move it away from the sliding block 6. After adjusting the sliding block 6, rotate the positioning bolt 601 to move it closer to the movable groove. When the threaded end of the positioning bolt 601 is close to the movable groove, it presses against the side wall of the top support rod 102, thereby restricting the position of the sliding block 6.

[0089] The positioning element is movably connected within the movable slot.

[0090] Specifically, the bottom of the movable groove is a spherical groove, the top of the movable groove is a cylindrical groove, and the inner wall of the bottom of the movable groove has multiple positioning grooves. The positioning components include:

[0091] The positioning rod 7 is inserted into the cylindrical groove. The top of the positioning rod 7 is fixedly connected to the positioning support block 701, which is also made of silicone material. When the UD beam is contacted and supported, the contact point is cushioned to avoid collision damage to the UD beam. The bottom of the positioning rod 7 is fixedly connected to the rotating ball 702, which is movably connected to the spherical groove. Multiple positioning cones 703 are fixedly connected around the outer wall of the rotating ball 702, and the positioning cones 703 are inserted into the positioning groove.

[0092] The compression spring 8 is sleeved on the outer wall of the positioning rod 7 and is set in a cylindrical groove.

[0093] It should be noted that the top of the cylindrical groove has an opening, the inner wall of which is smaller than the inner wall of the bottom of the cylindrical groove, and one end of the compression spring 8 is attached to the adjacent area between the bottom and top openings of the cylindrical groove.

[0094] The outer diameter of the positioning rod 7 is smaller than the inner wall of the groove at the top of the cylindrical groove, so as to ensure that the positioning rod 7 can change its angle after the rotating ball 702 rotates.

[0095] In actual operation, when it is necessary to adjust the angle of the positioning support block 701, first pull the positioning support block 701 and move it away from the sliding block 6. As the positioning support block 701 moves, it drives the positioning rod 7 and the rotating ball 702 to move synchronously. During the movement of the rotating ball 702, it will cooperate with the cylindrical groove to squeeze the pressure spring 8. At the same time, after the rotating ball 702 moves upward, the positioning cone 703 disengages from the positioning groove. In this way, the positioning support block 701 can be rotated. After the positioning support block 701 rotates, it drives the positioning rod 7 and the rotating ball 702 to rotate synchronously. Then, release the pull on the positioning support block 701. At this time, under the compression of the pressure spring 8, the rotating ball 702 approaches the spherical groove, and the positioning cone 703 engages with the positioning groove, thereby locking the rotation angle.

[0096] Example 2: This invention provides a method for using a UD beam storage mechanism, employing a UD beam storage mechanism from Example 1. The method includes the following steps:

[0097] The first step is to place the corresponding number of storage mechanisms according to the location where the UD beam will be supported. The number of storage mechanisms should be selected according to the length of the UD beam to be supported and the number of points that need to be supported.

[0098] The second step is to adjust the position of the multiple positioning components connected to the top support rod 102 according to the location where the UD beam is to be supported. The multiple positioning components clamp and position the bottom of the UD beam from both sides, and adjust the support angle of the positioning components according to the location where the UD beam is to be supported.

[0099] It should be noted that when adjusting the positioning component, first pull the positioning support block 701 upward. After the rotating ball 702 moves upward and the positioning cone 703 disengages from the positioning groove, rotate the positioning support block 701 so that it is aligned with the position to be supported. Then, under the pressure of the downward spring 8, the rotating ball 702 goes deep into the spherical groove. The rotated positioning cone 703 engages with the positioning groove, and the rotation angle of the rotating ball 702 is locked.

[0100] Then, screw the positioning bolt 601 away from the sliding block 6. After the positioning bolt 601 moves away from the sliding block 6, it releases the compression from the top support rod 102. Then, move the sliding block 6 horizontally. The sliding block 6 slides along the top support rod 102 through the sliding port until the positioning support block 701 supports the bottom of the UD beam. Then, screw the positioning bolt 601 so that its threaded end is tightly attached to the side wall of the top support rod 102 to form a compression positioning.

[0101] The third step is to adjust the setting angle of the top support component by rotating the adjustment component after the bottom of the UD beam is restrained. The top support part of the top support component is aligned with the top position of the UD beam that needs to be supported.

[0102] It should be noted that, firstly, in the initial state, the control dial 501 of the top support is adjusted to the position furthest away from the rotating block 3. Then, according to the position of the arc-shaped pressure block 401 aligned with the top support of the UD beam, the rotating block 3 is rotated. When it is necessary to rotate the rotating block 3 counterclockwise, simply rotate the rotating block 3 directly. At this time, the rotating block 3 and the locking gear 301 rotate synchronously. When the locking gear 301 rotates counterclockwise, it drives the adjusting gear 2 to rotate synchronously through meshing transmission. The rotation of the adjusting gear 2 drives the locking gear 202 to rotate synchronously clockwise. At this time, the blocking gear 203 will not obstruct the rotation adjustment. During this operation, when the rotation angle does not exceed 45°, the influence of gravity on the angle of the rotating block 3 does not need to be considered. When it exceeds 45°, the rotating block 3 needs to be supported to avoid exceeding the adjustment range. At the same time, when it is necessary to adjust the rotating block 3 clockwise, the meshing restriction of the blocking gear 203 on the locking gear 202 should be released first.

[0103] Fourth step, adjust the horizontal position of the top support to press the top of the UD beam tightly against it;

[0104] It should be noted that after the arc-shaped pressure block 401 is aligned with the top support position of the UD beam by rotating the angle, the connecting screw 5 is rotated by controlling the turntable 501. With the thread engagement with the threaded through hole 303, the connecting screw 5 pushes the top support bar 4 closer to the UD beam. After the top support bar 4 drives the arc-shaped pressure block 401 closer to the UD beam, it provides restrictive support to the top of the UD beam.

[0105] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A UD beam storage mechanism comprising, Include: Support vertical pole (1), a plurality of the support vertical pole (1) is arranged along the vertical axis symmetry, a plurality of groups of the support vertical pole (1) relative one side middle part is fixedly connected with top support rod (102), and the top support rod (102) is used for the support placement of UD beam; Rotary adjusting assembly, a plurality of the rotary adjusting assembly is arranged at the top of a plurality of support vertical pole (1) respectively, the rotary adjusting assembly includes rotation part and adjusting part, the rotation part and adjusting part are engaged with each other, and the adjusting part is one-way locking type rotation; Top support assembly, the top support assembly includes top support part and connecting part, the connecting part is connected to the top of rotation part, the top support part is screwed with the connecting part, and the top support part is used for the extrusion limit of the top of UD beam; Positioning assembly, a plurality of the positioning assembly is slidably sleeved on the outer wall of top support rod (102), and the positioning assembly is used for the support positioning of the bottom of UD beam.

2. The UD beam storage mechanism of claim 1, wherein, A plurality of the support vertical pole (1) relative one side bottom is fixedly connected with reinforcing rod (103), and the bottom of a plurality of groups of the support vertical pole (1) is fixedly connected with support cross bar (104), and the top end of the top support rod (102) is fixedly connected with silica gel strip (105).

3. The UD beam storage mechanism of claim 1, wherein, The adjusting part includes: Adjusting block (101), the adjusting block (101) is fixedly connected to the top of support vertical pole (1), and the top end of the adjusting block (101) is provided with adjusting groove; Adjusting gear (2), the adjusting gear (2) is rotatably connected in the adjusting groove, the adjusting gear (2) is used for being engaged with the rotation part, the middle part of the adjusting gear (2) is fixedly connected with first support rotating rod (201), and the both ends of the first support rotating rod (201) are rotatably connected with the both sides of adjusting block (101) respectively; Locking piece, the locking piece is arranged on one side of adjusting block (101), and the locking piece is drivingly connected with one end of first support rotating rod (201).

4. The UD beam storage mechanism of claim 3, wherein, One side of the adjusting block (101) is provided with rotating groove, the side wall of the rotating groove is provided with locking groove, and the locking piece includes: Locking gear (202), the locking gear (202) is rotatably connected in the rotating groove, and the locking gear (202) is fixedly sleeved on one end of first support rotating rod (201); Block (203) is prevented, the block (203) is rotatably connected in the locking groove, and the block (203) is used for the one-way rotation engagement of locking gear (202) in cooperation with locking groove.

5. The UD beam storage mechanism of claim 3, wherein, The rotation part includes: Rotary block (3), one end of the rotary block (3) is rotatably inserted into the adjusting groove, the rotary block (3) is inserted into the rotating groove on one end of the adjusting groove, the other end of the rotary block (3) is provided with threaded through hole (303), and the threaded through hole (303) is used for the threaded connection of connecting part; A locking gear plate (301) is rotatably connected in a rotating groove, an outer wall of the locking gear plate (301) is engaged with an outer wall of the locking gear (202), a middle part of the locking gear plate (301) is fixedly connected with a second supporting rotating rod (302), and two ends of the second supporting rotating rod (302) are sequentially penetrated through the rotating groove and the adjusting groove and are rotatably connected with the adjusting block (101).

6. A UD beam storage mechanism according to claim 5, wherein, The connecting part comprises: A connecting screw rod (5), an outer wall of the connecting screw rod (5) is threadedly matched with an inner wall of the threaded through hole (303); A control rotating disc (501) is fixedly connected to one end of the connecting screw rod (5); A connecting push block (502) is fixedly connected to the other end of the connecting screw rod (5), and the connecting push block (502) is used for connecting the supporting part.

7. A mechanism for storing a UD beam according to claim 6, wherein The supporting part comprises: A supporting strip (4), a bottom end of the supporting strip (4) is provided with a sliding opening, one end of the connecting screw rod (5) is penetrated through the supporting strip (4) and is rotatably connected in the sliding opening; An arc-shaped pressing block (401) is fixedly connected to the other end of the supporting strip (4); A rotating bearing (402) is connected to an inner wall of one end of the sliding opening, and an outer ring wall of the rotating bearing (402) is detachably connected with the connecting push block (502).

8. The UD beam storage mechanism of claim 1, wherein, The positioning assembly comprises: A sliding block (6), a bottom end of the sliding block (6) is provided with a sliding opening, the sliding opening is used for the sliding connection of the sliding block (6) on an outer wall of the supporting rod (102), and a top end of the sliding block (6) is provided with a movable slot; A plurality of groups of positioning bolts (601) are respectively threadedly connected at threaded ends to both sides of the sliding block (6), and the threaded ends of the plurality of groups of positioning bolts (601) are penetrated through the sliding opening; A positioning piece is movably connected in the movable slot.

9. A mechanism for storing a UD beam according to claim 8, wherein, The bottom of the movable slot is a spherical groove, the top of the movable slot is a cylindrical groove, an inner wall of the bottom of the movable slot is provided with a plurality of positioning grooves, and the positioning piece comprises: A positioning rod (7) is rotatably connected in the cylindrical groove, a top part of the positioning rod (7) is fixedly connected with a positioning support block (701), a bottom part of the positioning rod (7) is fixedly connected with a rotating ball (702), the rotating ball (702) is movably connected in the spherical groove, an outer wall of the rotating ball (702) is fixedly connected with a plurality of positioning cones (703) in a surrounding manner, and the positioning cones (703) are rotatably connected with the positioning grooves; A downward pressing spring (8) is sleeved on an outer wall of the positioning rod (7) and is arranged in the cylindrical groove.

10. A method of use for a UD beam storage mechanism, employing a UD beam storage mechanism comprising any of claims 1-9, characterized in that, The use method comprises the following steps: First, according to the position to be supported by the UD beam, a corresponding number of storage mechanisms are placed; Second step, according to the position of the UD beam to be supported, adjust the position of the plurality of positioning components and the top supporting rod (102), and clamp the UD beam from both sides by the plurality of positioning components, and adjust the top supporting angle of the positioning components according to the position of the UD beam to be supported; Third step, after the restriction and binding of the UD beam bottom are completed, adjust the setting angle of the top supporting component by rotating the adjusting component, and adjust the top supporting part of the top supporting component to align with the top position of the UD beam to be supported; Fourth step, adjust the horizontal transverse position of the top supporting part, and tightly press the UD beam top by the top supporting part.