TWM283013U - Tumbler base for structure - Google Patents

Tumbler base for structure Download PDF

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Publication number
TWM283013U
TWM283013U TW094207922U TW94207922U TWM283013U TW M283013 U TWM283013 U TW M283013U TW 094207922 U TW094207922 U TW 094207922U TW 94207922 U TW94207922 U TW 94207922U TW M283013 U TWM283013 U TW M283013U
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TW
Taiwan
Prior art keywords
base
rotating
rotation
tenon
rotating spherical
Prior art date
Application number
TW094207922U
Other languages
Chinese (zh)
Inventor
Wei-Liang Lee
Original Assignee
Wei-Liang Lee
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 Wei-Liang Lee filed Critical Wei-Liang Lee
Priority to TW094207922U priority Critical patent/TWM283013U/en
Publication of TWM283013U publication Critical patent/TWM283013U/en
Priority to JP2006003498U priority patent/JP3123586U/en
Priority to US11/433,447 priority patent/US20060260222A1/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F15/00Suppression of vibrations in systems; Means or arrangements for avoiding or reducing out-of-balance forces, e.g. due to motion
    • F16F15/02Suppression of vibrations of non-rotating, e.g. reciprocating systems; Suppression of vibrations of rotating systems by use of members not moving with the rotating systems
    • F16F15/021Decoupling of vibrations by means of point-of-contact supports, e.g. ball bearings

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Acoustics & Sound (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Buildings Adapted To Withstand Abnormal External Influences (AREA)
  • Vibration Prevention Devices (AREA)

Description

M283013 四、創作說明(1)M283013 Fourth, creation instructions (1)

【新型所屬之技術領域 本創作是-種適用於土木建築H 之隔震裝置。隔震基座包含一種類似=寺相關運用領域 提供裝置一種止滑卡榫之空間。 $形之特定形狀; 【先前技術】 震目前以錯心橡膠、摩擦型 一 二句/、本作品之形狀及裝置技術有相春=寺產品為主, 展之目的與原理則相同。一般隔震:差異,但是其隔 ㊁m裝[使構造物擁;巧隔震原理, 動週期,達到隔震之目的。 原展動週期長之擺 械與震動領域中,相對擺動之構 二,可達到延長擺動週期 擁有不等擺動 術。 為—般熟知之技 【新型内容】 士創作為減緩構造物震 功效敘述如下冰委日a a之隔辰裝置。其主要內办Λ 如下,清參閱圖1及圖2: 赘内各與 徑較小、τ μ 疋轉擺線弧面6,其上疑轉祕 τ旋轉擺線弧面半徑較大。上旋轉球面以半[Technical Field to which the New Type belongs] This creation is a kind of seismic isolation device suitable for civil construction H. Isolation bases include a similar application area to provide a space for anti-slip dowels. The specific shape of the $ -shape; [Previous technology] At present, the earthquake is mainly distorted rubber and friction type. The shape and installation technology of this work are mainly related to the products of the temple. The purpose and principle of the exhibition are the same. General isolation: the difference, but its isolation 装 m installed [enclosing structures; clever isolation principle, dynamic period, to achieve the purpose of isolation. In the swing and vibration fields where the original moving period is long, the relative swing structure can achieve a longer swing period and has different swing techniques. This is a well-known technique. [New content] The creation of a soldier is to slow down the structural earthquake. The effect is described as follows. The main internal tasks Λ are as follows. Refer to Figure 1 and Figure 2 for details: The diameters of the internal loops are small, and τ μ 疋 cycloid arc 6 is suspected to have a larger radius. Rotate the sphere in half

M283013 四、創作說明(2) == 觸大。小之接合面緊密㈣,下旋轉擺線狐面與 2·不倒基座1轉動時,除提供不倒基座〗盥 相對移動外,因為不倒基座】採用滾動方式月動基面2水平 摩擦力相對小’能輕易藉由轉動方式進/二動移= 將不會發生水平滑動之情形。 <辰動條件下, 3韓座1擁有旋轉半徑相對小之上旋轉球面5,擁有旋 線弧面6,則不倒基座經二可 時’比較移動前之上旋轉球心7與移動後之田 水平移位 4旋動永前二基離座位置,由幾何關係顯示’移動後之上 越大,偏離旦 不倒基座旋轉後承載點垂線9,且移^ 之功能。里越大,顯示不倒基座1擁有自動恢復原位置 考^ : Si 2震動條件下,不倒基座1不會產生滑移,惟 :骨ΐϊ3Λ:"條件之特殊狀況,在不倒基座底部裝置 何關係,則V面進型女之全广方士式。觀察不倒基座轉動時之幾 活動條件。 孓之止滑卡榫的活動空間4能提供較佳之 一般隔震裝罟& & Λ Λ 置右此配合減震裝置運用,將會提高整體構告 M283013 — 創作說明(3) ____ 物耐震條件。因此構 ^ " 1〜、 =,配合整體減震方案;裝置垂直震動 式。 將疋貝務運用上極為建議之方卞 【實施方式】 本創作最佳之實施方式之一窃 構造物承載座裝置,及 ,疋一種將具有之盤狀彈筈 置,其除可以發揮本 滑卡榫,裝置於本次創作之^ 直震動減緩之功效; 本隔震功能外,上可提供垂 第6]〜3圖、第7小 多。閱第3圖、第4圖、第5 + 3圖、 回。各圖内容之詳細說明如下: 1 ·不倒基座本體1包括 且具有止滑卡榫弧形空=轉球面5、下旋轉攏線弧面6, 件。其在滑動基面2以B。’能提供止滑卡榫3自由活動條 原位置之功能。 回痕擺運動為主,並有自動回復 2·與盤狀彈簧結合之可 上,作為基座與構造物 7載座1 4直接裝置於不倒基座 3·第4圖清楚表現整體穿番連結,提供垂直震動減緩功能。 平移動相對大之功效。、置移動前後之相對位置,顯示水 旋二,造物不;,座裝” 面。 Μ凹之滑動面,調整為外凸之滑動 1^· M283013 四、創作說明(4) 第9圖為另一種包含盤狀彈簀與柱狀活塞之構造物不倒基 座裝置方式。其主要是提供裝置盤狀彈簧或螺旋彈簧之可 能性,柱狀活塞裝置可在一定平面面積條件下,提供相對 大之垂直衝程。M283013 Fourth, the creation instructions (2) == Touch. The small joint surface is tightly closed. When the lower trochoidal fox surface and 2 do not fall the base 1 rotate, in addition to providing the non-falling base, the relative movement of the toilet, because the non-falling base] uses the rolling method to move the base 2 The horizontal friction force is relatively small, and it can be easily moved forward / two-way by rotating = horizontal sliding will not occur. < Under the condition of moving, 3 Hanza 1 has a relatively small radius of rotation above the rotating spherical surface 5 and has a curved line surface 6, so that the base is not rotated and the base 7 is compared. The horizontal position of Houzhitian is 4 rotations. The position of the two bases of Yongqian is away from the seat. The geometric relationship shows that the greater the upper position after moving, the greater the deviation from the vertical line of the bearing point after the rotation of the base. The larger the distance, it shows that the base 1 does not fall back to its original position. ^: Under the condition of Si 2 vibration, the base 1 does not slip, but the special condition of the epiphysis 3Λ: What's the relationship between the devices at the bottom of the base, then the V-side enters the woman's Quanguang Alchemist style. Observe the movement conditions when the base is not turned. The movable space 4 of the non-slip tenon can provide better general vibration isolation equipment & & Λ Λ Set this to the right and use the vibration damping device to improve the overall structure M283013 — Creative Instructions (3) condition. Therefore, ^ " 1 ~, =, cooperate with the overall shock absorption scheme; the device is of vertical vibration type. The most highly recommended way to use the shellfish [Embodiment] One of the best implementation methods of this creation is to steal the structure bearing seat device, and a disk-shaped elastic device that can be used in addition to this. The tenon is installed in the creation of the effect of reducing the direct vibration. In addition to this vibration isolation function, the upper part can be provided with 6] ~ 3, and 7th. Read Figure 3, Figure 4, Figure 5 + 3, and back. The details of the contents of each figure are as follows: 1. The base body 1 does not fall down and has a non-slip tenon arc-shaped = turning spherical surface 5; It is B on the sliding base surface 2. ’It can provide the function of the original position of the free-moving bar of the anti-slip tenon 3. The pendulum is mainly based on the movement, and it has an automatic return. It can be combined with a disc spring. It can be used as a base and a structure. Link for vertical vibration mitigation. Relatively large effect of translation. The relative position before and after the movement shows the water spin II, the creation is not; the seat is installed. The sliding surface of the concave is adjusted to the convex sliding 1 ^ · M283013 4. Creation instructions (4) Figure 9 is another A structure that does not fall over a base structure including a discoid spring and a cylindrical piston. It mainly provides the possibility of installing a disc spring or a coil spring. The cylindrical piston device can provide a relatively large amount of space under a certain plane area. Vertical stroke.

M283013 圖式簡單說明M283013 Simple illustration

【圖式簡單說明】裝置止潜本故 不倒隔=卡榫之構造杉炱基座旋轉前種 表置jl-、、应妒置 ^卡榫與盤狀拜 旋轉前後狀況示"^卡榫與盤狀彈第5 — 1圖:預留萝“罢L 1 圖 裝置止滑榫活動 第1圖 第2圖 第3圖 第4圖 第5-2圖 圖 預留裴置止 不倒隔震基座 示意 簧之構造物不倒隔震 黃之構造物不倒隔震 空間之不倒隔震基座 滑榫活動空間 之不倒隔震基座 預留衣置止滑榫活動空間之不倒隔震基座 第6-1圖 第6 - 2圖 第6-3圖 苐7 ~ 1圖 第7-2圖 第7-3圖 第8圖: 意 一種可 5上旋轉球面旋轉之盤狀彈簧 一種;配合上旋轉球面旋轉之盤狀彈簧 一種;Ϊ Ϊ t旋轉球面旋轉之盤狀彈簀 一 # s "為圓球狀卡榫之上視圖 一種頂圓球狀卡榫之正視圖種外凸榫之側視圖 疋轉球面之構造物不倒隔震 f盤狀彈簧 與杈狀活塞之構造物不倒 基座 基座 上視 正視 側視 視圖 視圖 視圖 座示 隔震[Simplified illustration of the drawing] The device does not prevent the dive from falling apart = the structure of the tenon. The base of the fir tree is rotated before the jl-, and should be jealous. ^ The tenon and the disk are shown before and after the rotation. Tongue and disc-shaped bullets Picture 5-1: Reservoir "L1" Picture device to prevent sliding tenon activity Picture 1 Picture 2 Picture 3 Picture 4 Picture 5-2 The seismic base indicates that the structure of the spring does not fall down. The structure of the yellow is not down. Inverted base of isolation Figure 6-1 Figure 6-2 Figure 6-3 Figure 7 ~ 1 Figure 7-2 Figure 7-3 Figure 8 Figure: A disc shape that can be rotated on a 5 sphere A kind of spring; a kind of disc spring combined with a rotating spherical rotation; Ϊ Ϊ t rotating spherical rotation of a disc spring 箦 # s " is a top view of a ball-shaped tenon Side view of the external tenon. The structure of the rotating spherical surface is not inverted. The structure of the disc spring and the branched piston is not inverted. The base is isolated from the front side view.

$ 9頁 圖式簡單說明 主要元件符號說明 1、 不倒隔震基座本體 2、 滑動基面 3、 止滑卡榫 4、 不倒隔震基座本體留設之止$ 9page Brief description of the drawings Symbol description of the main components 1. The base body of the non-inverting base 2. The sliding base 3. The sliding tongue 4. The base body of the base

5、 不倒隔震基座上旋轉球面 榫弧形空fE 6、 不倒隔震基座下旋轉擺線弧面 7、 不倒隔震基座旋轉前上旋轉球面球心 、不倒隔震基座旋轉後上旋轉球面球心 、不倒隔震基座旋轉後承載點垂線 丨::構旋轉球面旋轉之盤狀” 12、 旋轉前構造物原始位置 13、 旋轉後構造物位置 4 5 6 Ίχ IX 11 座 較 承 旋 可 之 合 結意 簧示 彈簧 狀彈 盤狀 與盤 承 轉 旋 可 之 合 密 面 球 轉 旋 上 座 基 震 隔 倒 不 與 M283013 圖式簡單說明 1 7、固定於不倒基座之上旋轉球 1 8、具有配合上旋轉球面構造之構造物示意 1 9、構造物上旋轉球面構造示意 2 0、端部具有配合上旋轉球面之柱狀活塞示意 2 1、一種盤狀彈簧示意 2 2、具有配合柱狀活塞構造之構造物示意 画__5. Rotating spherical dove arc-shaped empty fE on non-isolating base 6. Rotating cycloid arc surface under non-isolating base 7. Rotating spherical sphere center before rotating and isolating base After the base is rotated, the upper spherical center is rotated, and the load-bearing point perpendicular after the base is rotated is not inverted 丨 :: the disk shape of the rotating spherical rotation "12. The original position of the structure before rotation 13, The position of the structure after rotation 4 5 6 Ίχ IX 11 seat is more suitable for the combination of rotation and rotation, the spring-shaped spring disk and the disk bearing rotation can be combined to close the surface of the ball. The base seat is not isolated from the M283013 diagram. Rotating ball on the inverted base 1 8. Schematic illustration of a structure with a matching rotating spherical structure 1 9. Schematic illustration of a rotating spherical structure on the structure 20 0. Illustrating a cylindrical piston with a matching rotating spherical surface at the end 2 1. A disk Schematic drawing of spring 2 2. Schematic drawing of structures with cylindrical piston structure __

Claims (1)

M283013 _案號 94207922_年 $ 月 ^ 曰__ 五、申請專利範圍 1、 一種構造物隔震裝置之不倒基座,其為類似飛碟之形 狀,並包括具有可旋轉滑動之上旋轉球面,具有可旋轉滾 動之下旋轉擺線弧面;其上旋轉球面半徑較小、下旋轉擺 線弧面半徑較大。 2、 如申請專利範圍第1項所述之不倒基座,其底部具有提 供裝置之止滑榫自由活動的弧形空間。M283013 _Case No. 94207922_year $ month ^ __ V. Application for Patent Scope 1. A non-tilted base of a structure isolation device, which is similar to a flying saucer and includes a rotating spherical surface with a rotatable slide, It has a rotating cycloid arc surface under a rotatable roll; its upper rotating spherical surface has a smaller radius and a lower rotating cycloid arc has a large radius. 2. The non-tilted base as described in item 1 of the scope of the patent application has a curved space at the bottom of the device that provides free movement of the sliding tongue. 第12頁Page 12
TW094207922U 2005-05-17 2005-05-17 Tumbler base for structure TWM283013U (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
TW094207922U TWM283013U (en) 2005-05-17 2005-05-17 Tumbler base for structure
JP2006003498U JP3123586U (en) 2005-05-17 2006-05-11 Seismic isolation base
US11/433,447 US20060260222A1 (en) 2005-05-17 2006-05-15 Rocking-type seismic isolation base for protecting structure against earthquake

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW094207922U TWM283013U (en) 2005-05-17 2005-05-17 Tumbler base for structure

Publications (1)

Publication Number Publication Date
TWM283013U true TWM283013U (en) 2005-12-11

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Application Number Title Priority Date Filing Date
TW094207922U TWM283013U (en) 2005-05-17 2005-05-17 Tumbler base for structure

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US (1) US20060260222A1 (en)
JP (1) JP3123586U (en)
TW (1) TWM283013U (en)

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US20100083591A1 (en) * 2008-10-03 2010-04-08 Yoshioki Tomoyasu Billiard mode aseismatic architecture
JP6199632B2 (en) * 2013-07-04 2017-09-20 オイレス工業株式会社 Seismic isolation support device
JP6199634B2 (en) * 2013-07-09 2017-09-20 オイレス工業株式会社 Seismic isolation support device
US20170342734A1 (en) * 2014-12-22 2017-11-30 Oiles Corporation Base isolation supporting device
CN104652641A (en) * 2015-01-24 2015-05-27 南阳理工学院 Anti-seismic low-carbon building structure
CN107386480B (en) * 2017-07-28 2023-11-21 华侨大学 Self-vibration-reduction structure of local shaking column
CN107476460B (en) * 2017-07-28 2023-11-21 华侨大学 Self-vibration-reduction structure capable of resisting earthquake collapse
CN107606045A (en) * 2017-10-12 2018-01-19 谢文欢 Damping device
CA3037330A1 (en) * 2018-09-20 2020-03-20 Uwm Research Foundation, Inc. Connector assembly for wall panel
WO2020121029A1 (en) * 2018-12-12 2020-06-18 Universidad Católica De La Santísima Concepción Kinematic seismic isolation device

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US2208872A (en) * 1938-02-11 1940-07-23 Soule Steel Company Rocker support for building structures and the like
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JP2834980B2 (en) * 1993-08-04 1998-12-14 良三 米田 Seismic support structure for structures
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JP3123586U (en) 2006-07-20
US20060260222A1 (en) 2006-11-23

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