TWM339584U - An embedded stud with taper surface and key for root joint of wind turbine blade - Google Patents

An embedded stud with taper surface and key for root joint of wind turbine blade Download PDF

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Publication number
TWM339584U
TWM339584U TW96220924U TW96220924U TWM339584U TW M339584 U TWM339584 U TW M339584U TW 96220924 U TW96220924 U TW 96220924U TW 96220924 U TW96220924 U TW 96220924U TW M339584 U TWM339584 U TW M339584U
Authority
TW
Taiwan
Prior art keywords
stud
wind turbine
root
keyway
blade
Prior art date
Application number
TW96220924U
Other languages
Chinese (zh)
Inventor
Chao-Cheng Wu
Jyh-Nan Ho
Original Assignee
United Ship Design & Dev Ct
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by United Ship Design & Dev Ct filed Critical United Ship Design & Dev Ct
Priority to TW96220924U priority Critical patent/TWM339584U/en
Publication of TWM339584U publication Critical patent/TWM339584U/en

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/74Wind turbines with rotation axis perpendicular to the wind direction

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  • Wind Motors (AREA)

Abstract

The invention relates to a stud which can be embedded into the root part of a fiber reinforced plastic (FRP) wind turbine blade for bolt connection to the pitch bearing on blade hub and transmitting the rotary forces from blade to hub. Some layers of the dry fiber cloth is placed on the blade mould at the root part firstly then the studs are placed on the perimeter in accordance with the design. The taper part of the stud is designed with key. Fiber can be placed into the key way to enhance the mechanical lock. Then, rest of dry fiber cloth is lay up as designed. By vacuum assisted resin transfer molding (VARTM) method, after closing with plastic bag, resin is pull into the dry fiber cloth in vacuum condition and hardened following the curing process. Owing to the thread on the outside surface of stud and the key way in the taper part, in the vacuum process the dry fiber is compressed into the thread/key way space. After the VARTM, not only the thread but also the key way provides the maximum lock force between the fiber reinforced plastic blade root and the metal stud which will both contribute to the fulfillment of the functions of the blade root connection.

Description

M339584 八、新型說明: 【新型所屬之技術領域】 本創作係錢—種可供纖維強化_製作之風力發電機葉片根部埋設 的柱螺栓(Stud),使f #與風雜雜承能明栓鎖接崎遞葉片的旋 轉動力。由於本裝置的_栓四周有螺紋,在中後部位有削斜面,又設有 賴’藉蝴齡人時候的抽真空的壓力差,玻賴維布將触螺检充分 ^ 咬合’在__布充分含騎脂硬化後,可以提紐設雜螺栓最大咬 合力,達到風力發電機葉片根部應用此裝置的目標。 【先前技術】 纖維強化塑膠製作的風力發電機葉片與風力機軸穀是以螺检鎖接,葉 片根部因此f要製作雜介錢構,關槪賴能可靠地進行。使用埋 入柱螺栓(Stud),再贿空_翻旨觀成縣(Va_咖㈣ transfer molding- VARTM)-體製作成葉片含根部螺栓鎖接介面機構為業 .界重要m求埋☆雜螺栓長度足夠傳輕力又能使_布能平整佈 設,在柱螺栓表面有粗化處理,在柱螺栓後部相接處需使㈣材提供轉換 段,使纖維布能平整佈設。由於要使㈣材_助材料,過錄繁複,且 沒有鍵槽提供固著力,柱螺栓總長度也需較長。 【新型内容】 有鏗於此,本創作之目的即在提出一種具有削斜面及鍵槽的風力機葉 片根部預埋柱螺栓,以利完成上述工作。本創在柱螺栓中後段具有削斜面, 提供纖維布能平整佈設,並在柱螺栓外部設有螺紋,在祕面又設有鍵槽, 鍵槽中可以先置入纖維布,藉由抽真空的壓力差,纖維布將與柱螺栓表面 6 M339584 充分咬合,在纖維布充分含浸樹脂硬化後,所有表面與鍵槽上可以提供埋 設柱螺栓的最大咬合力,達到風力發電機葉片根部應用此裝置的目標。 【實施方式】 兹配合圖式將本創作較佳實施例詳細說明如下。 簽閱第一圖,為本創作『一種具有削斜面及鍵槽的風力機葉片根部預 埋柱螺栓』之平面圖。其中包含:柱螺栓10,外徑為D,外部螺紋2〇,用以 增進纖維強化塑膠製作的葉片根部與本柱螺栓的介面接著力,柱螺栓中心 線上有一直徑d的内部螺栓孔30,以利根部聯結螺栓鎖接使用;柱螺栓一端 削薄成為一個削斜面4〇,在削斜面上設有鍵槽5〇,用以增加固著力,柱螺 才王未削斜面的長度大於内部螺栓孔長度。 參閱第二圖,本創作『一種具有削斜面及鍵槽的風力機葉片根部預 埋柱螺栓』之側視圖。其中柱螺栓削斜面4〇,到最後的厚度約為刪,在 肖J斜面上设有鍵槽5〇,其後緣大致由柱螺栓中心線起,向下匕深度,再向前 P的長度,h約為(1/3 — i/5)d。 纖維布鋪設於根部模具7〇上後,因在柱螺栓外部設有螺紋,在削斜 面又叹有鍵槽置入纖維布,藉由抽真空的壓力差,纖維布將與柱螺栓充分 乂口,此時樹脂藉真空壓差灌注進來,使纖維布充分含浸,樹脂硬化後, 有表面與鍵槽上可以提供埋設柱螺栓的最大咬合力,達到風力發電機葉 片根部應用此裝置的目標。 、而上所述知本案所創作之『一種具有削斜面及鍵槽的風力機 葉片根部預埋柱螺栓』,提供有效解決麟強化瓣製狀風力發電機葉 片根。P埋⑤柱螺栓與介面咬合力充分建立的問題 ,已具有產業利用性、新 M339584 穎性及進步性,符合新型專利要件。惟以上所述者,僅為本創作之一較佳 實施例而已,並非絲限定摘作實狀麵。即凡依摘”請專利範 圍所做的均等變化與料,皆為本創作專利範圍所涵蓋。 【圖式簡單說明】 第一圖為本_『―種具有削斜面及鍵槽的風力機葉片根部預埋柱螺栓』 之平面圖。 第二圖為本創作『―種具有削斜面及鍵槽的風力機葉片根部預埋柱螺栓』 之側視圖。 、 ” 【主要元件符號說明】 ίο柱螺栓 20外部螺紋 30内部螺栓孔 & 40削斜面 50鍵槽M339584 VIII. New Description: [New Technology Field] This creation is a kind of stud that can be used for fiber reinforcement. The studs of the roots of wind turbine blades are made to make f# and wind and miscellaneous load-bearing bolts. Locks the rotational power of the blade. Since the _bolt of the device has a thread around it, there is a beveled surface in the middle and rear parts, and there is a pressure difference between the vacuuming of the borrower, and the Brayweb will touch the thread to fully smash the __ cloth. After fully containing the grease hardening, the maximum biting force of the bolts can be added to achieve the goal of applying the device to the root of the wind turbine blade. [Prior Art] The wind turbine blades made of fiber-reinforced plastics and the wind turbine shaft are screw-checked, and the roots of the blades are required to be made into a hybrid structure, which can be reliably carried out. Use buried studs (Stud), and then bribe _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ The length is sufficient to transmit light force and the _ cloth can be laid flat. The surface of the stud is roughened. At the back of the stud, the (four) material needs to be provided with a conversion section so that the fiber cloth can be laid flat. Since the (four) material-assisting material is complicated, and there is no keyway to provide the fixing force, the total length of the stud bolt needs to be longer. [New content] For this reason, the purpose of this creation is to propose a pre-embedded stud bolt for the blade root of a wind turbine with a beveled surface and a keyway to facilitate the above work. The creation has a chamfered surface in the rear part of the stud bolt, and the fiber cloth can be laid flat, and the thread is provided outside the stud bolt, and the key surface is provided with a key groove. The key groove can be first placed into the fiber cloth by the pressure of vacuuming. Poor, the fiber cloth will fully engage with the surface of the stud bolt 6 M339584. After the fiber cloth is fully impregnated with the resin, all the surfaces and the keyway can provide the maximum biting force of the embedded stud bolt to achieve the goal of applying the device to the root of the wind turbine blade. [Embodiment] The preferred embodiment of the present invention will be described in detail below with reference to the drawings. Signing the first picture is a plan view of the creation of a pre-embedded stud of a wind turbine blade with a beveled surface and a keyway. The utility model comprises: a stud bolt 10, an outer diameter D, and an outer thread 2〇, which is used for enhancing the interfacial adhesion force between the blade root portion of the fiber reinforced plastic and the stud bolt, and the inner bolt hole 30 of the diameter d is arranged on the center line of the stud bolt to The Ligan joint bolt is used for locking; one end of the stud is thinned into a chamfered surface 4〇, and a keyway 5〇 is provided on the chamfering surface for increasing the fixing force, and the length of the unsloped surface of the column screw is larger than the length of the inner bolt hole . Referring to the second figure, the side view of the creation of a wind turbine blade root pre-embedded stud with a beveled surface and a keyway is shown. The stud is cut by 4 〇, and the final thickness is about 删, and the keyway 5 设有 is provided on the slanting surface of the xiao J. The trailing edge is roughly from the center line of the stud, the depth is downward, and the length of the forward P is h is approximately (1/3 - i/5)d. After the fiber cloth is laid on the root mold 7〇, the thread is placed on the outside of the stud bolt, and the key groove is inserted into the fiber cloth on the beveled surface. By the pressure difference of vacuuming, the fiber cloth will be fully smashed with the stud bolt. At this time, the resin is infused by the vacuum pressure difference to fully impregnate the fiber cloth. After the resin is hardened, the surface and the key groove can provide the maximum biting force of the embedded stud bolt, and the target of applying the device to the root of the wind turbine blade is achieved. The above-mentioned "the wind turbine blade root pre-embedded column bolt with the beveled surface and the keyway" created by the above-mentioned case provides an effective solution to the blade root of the wind-enhanced flap-shaped wind turbine. The problem of fully establishing the bite force of the P-pillar and the interface is already industrially useful, and the new M339584 is notable and progressive, in line with the new patent requirements. However, the above description is only a preferred embodiment of the present invention, and is not limited to a solid surface. That is, the equal changes and materials made by the patent scope are covered by the scope of the creation patent. [Simple description of the diagram] The first picture is _ "- the blade root of the wind turbine with the beveled surface and the keyway Plan view of the pre-embedded studs. The second figure is a side view of the creation of the "pre-embedded studs for wind turbine blades with chamfered surfaces and keyways". , ” [Key symbol description] ίο stud bolt 20 external thread 30 internal bolt holes & 40 chamfered 50 key slot

70根部模具70 root mold

Claims (1)

M339584 九、申請專利範圍: hy種具有削斜面及鍵槽的風力機葉片根部預埋柱螺检,其包括有-預埋於 茶片根部之柱嫌,柱·外部具有外部螺紋,柱螺栓中心線上設有一内 部螺栓孔,以利根部聯結螺栓鎖接使用;其特徵在於柱螺栓-端為削斜面, 使纖維布可以平順佈放,並在削斜面上設有鍵槽,用以增進埋設柱螺栓的 口著力藉由娜注人時候的抽真空壓力差,纖維布將與㈣栓充分咬合, 此時树脂藉真空壓差灌注進來,使纖維布充分含浸,樹脂硬化後,達到所 有表面鍵槽與葉片結構充分結合的目標。 2. 如申請專利範圍第1項所述之一種具有削斜面及鍵槽的風力機葉片根部 預埋柱螺栓’其内部螺栓孔直徑與削斜面上的最小鍵槽深度比介於3到5 之間。 3. 如申請專利範圍第1項所述之一種具有削斜面及鍵槽的風力機葉片根部 預埋柱螺栓,其柱螺栓未削斜面的長度大於内部螺栓孔長度。M339584 Nine, the scope of application for patent: hy type of wind turbine blade root pre-embedded column screw inspection with chamfering surface and keyway, including: pre-buried in the root of the tea slice, column and external external thread, column bolt center line An internal bolt hole is provided for locking the root coupling bolt; the characteristic is that the stud end is a beveled surface, so that the fiber cloth can be laid smoothly, and a keyway is provided on the chamfer surface for enhancing the embedded stud bolt. With the pressure difference of vacuum pumping, the fiber cloth will be fully engaged with the (4) bolt. At this time, the resin is infused by the vacuum pressure difference to fully impregnate the fiber cloth. After the resin is hardened, all surface key grooves and blade structures are achieved. Fully combined goals. 2. A wind turbine blade root embedded stud with a beveled surface and a keyway as described in claim 1 has a ratio of the inner bolt hole diameter to the minimum keyway depth on the chamfered surface of between 3 and 5. 3. The wind turbine blade root pre-embedded stud having a beveled surface and a keyway according to claim 1, wherein the length of the un-cut surface of the stud is greater than the length of the inner bolt hole.
TW96220924U 2007-12-07 2007-12-07 An embedded stud with taper surface and key for root joint of wind turbine blade TWM339584U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104110352A (en) * 2014-06-19 2014-10-22 连云港中复连众复合材料集团有限公司 Method for manufacturing root portion of fan blade with square embedded bolt sleeve
US9109579B2 (en) 2011-11-25 2015-08-18 Industrial Technology Research Institute Windmill and hub sealing apparatus thereof
CN105736256A (en) * 2016-03-25 2016-07-06 吉林重通成飞新材料股份公司 Embedded bolt sleeve for megawatt wind power blade
CN112238566A (en) * 2020-09-18 2021-01-19 常州市宏发纵横新材料科技股份有限公司 Prefabricated part for wind power blade root and production method thereof

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9109579B2 (en) 2011-11-25 2015-08-18 Industrial Technology Research Institute Windmill and hub sealing apparatus thereof
CN104110352A (en) * 2014-06-19 2014-10-22 连云港中复连众复合材料集团有限公司 Method for manufacturing root portion of fan blade with square embedded bolt sleeve
CN104110352B (en) * 2014-06-19 2017-01-11 连云港中复连众复合材料集团有限公司 Method for manufacturing root portion of fan blade with square embedded bolt sleeve
CN105736256A (en) * 2016-03-25 2016-07-06 吉林重通成飞新材料股份公司 Embedded bolt sleeve for megawatt wind power blade
CN112238566A (en) * 2020-09-18 2021-01-19 常州市宏发纵横新材料科技股份有限公司 Prefabricated part for wind power blade root and production method thereof

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