TWM610788U - Pre-embedding construction member - Google Patents

Pre-embedding construction member Download PDF

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Publication number
TWM610788U
TWM610788U TW109215521U TW109215521U TWM610788U TW M610788 U TWM610788 U TW M610788U TW 109215521 U TW109215521 U TW 109215521U TW 109215521 U TW109215521 U TW 109215521U TW M610788 U TWM610788 U TW M610788U
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Taiwan
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positioning
fixing
embedded component
sliding
carrier
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TW109215521U
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Chinese (zh)
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施鴻祺
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施鴻祺
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Priority to TW109215521U priority Critical patent/TWM610788U/en
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Abstract

本案提供一種預埋構件,其包含容器及可調式的承載結構。容器,具有底板、環繞側壁及第一開口。底板連接環繞側壁之第一側且與環繞側壁共同界定出容置空間,第一開口位於環繞側壁之第二側。承載結構,與容器連接,具有第一端與第二端。其中,第一端與第二端之間的距離為第一長度,第一長度可以調整。 This case provides a pre-embedded component, which includes a container and an adjustable load-bearing structure. The container has a bottom plate, a surrounding side wall and a first opening. The bottom plate is connected to the first side of the surrounding side wall and defines an accommodating space together with the surrounding side wall. The first opening is located on the second side of the surrounding side wall. The supporting structure is connected with the container and has a first end and a second end. Wherein, the distance between the first end and the second end is the first length, and the first length can be adjusted.

Description

預埋構件 Embedded components

本案是關於一種預埋構件,特別是一種支架的長度可以作調整的預埋構件。 This case is about a pre-embedded component, especially a pre-embedded component whose length can be adjusted.

一般來說,接線盒的用途是在於配置電線管路,及更進一步連接開關或插座。在搭建建築物或為建築物裝潢時,在牆板結構之間埋設接線盒是普遍常見的。牆板結構例如但不限於是立柱、模板、鋼梁、木架或橫撐等。在一些情況下,使用者將接線盒埋設於牆板結構之間的固定方式是:通過將接線盒連接於一支撐腳架(下簡稱「支架」),再將支架固定於牆板結構,進而使接線盒間接地固定於牆板結構之間。 Generally speaking, the purpose of the junction box is to configure wires and pipes, and further connect switches or sockets. When constructing buildings or decorating buildings, it is common to bury junction boxes between wall panel structures. The wall panel structure is, for example, but not limited to, a column, a template, a steel beam, a wooden frame, or a cross brace. In some cases, the fixing method for users to bury the junction box between the wall panel structure is to connect the junction box to a supporting stand (hereinafter referred to as "bracket"), and then fix the bracket to the wall panel structure. The junction box is indirectly fixed between the wall structure.

舉例而言,請一併參考圖1A~圖1C,圖1A~圖1C顯示習知的接線盒之應用及分解結構。如圖1A所示,習知的接線盒81利用支架82固定於牆板結構83。如圖1A~圖1C所示,習知的接線盒81係先行固定於支架82,再將支架82固定於牆板結構83,進而使接線盒間81接地固定於牆板結構83之間。 For example, please refer to Figure 1A~Figure 1C together. Figure 1A~Figure 1C show the application and decomposition structure of the conventional junction box. As shown in FIG. 1A, the conventional junction box 81 is fixed to the wall structure 83 by a bracket 82. As shown in FIGS. 1A to 1C, the conventional junction box 81 is first fixed to the bracket 82, and then the bracket 82 is fixed to the wall panel structure 83, so that the junction box 81 is grounded and fixed between the wall panel structure 83.

然而,不同型態、用途的建築物往往具有不同的牆板結構,如圖1A所示,牆板結構之間的間距D會隨著不同型態、用途的建築物而改變。礙於習知的支架82有長度固定的特性,長度固定的習知的支架82並不適用於不同型態、用 途的建築物或不同的牆板結構,影響接線盒81裝設上的不便。倘若使用者挑選了長度不適當的習知的支架82,容易造成無法牢固地固定接線盒81的問題。 However, buildings of different types and uses often have different wall panel structures. As shown in Figure 1A, the distance D between the wall panel structures will vary with buildings of different types and uses. Since the conventional bracket 82 has a fixed length, the conventional bracket 82 with a fixed length is not suitable for different types and applications. Inconvenience in installation of junction box 81 is affected by different buildings or different wall panel structures. If the user selects the conventional bracket 82 with an inappropriate length, it is easy to cause the problem that the junction box 81 cannot be firmly fixed.

因此,如何提供一種可調整長度的支架,讓接線盒適用裝設於不同型態、用途的建築物或不同的牆板結構,實屬一重要的課題。 Therefore, how to provide a bracket with adjustable length so that the junction box can be installed in buildings of different types and uses or different wall panel structures is really an important topic.

鑒於上述課題,本案提供一種預埋構件,其包含容器及可調式的承載結構。容器,具有底板、環繞側壁及第一開口。底板連接環繞側壁之第一側且與環繞側壁共同界定出容置空間,第一開口位於環繞側壁之第二側。承載結構,與容器連接,具有第一端與第二端。其中,第一端與第二端之間的距離為第一長度,第一長度可以作調整。 In view of the above-mentioned problems, the present application provides a pre-embedded component, which includes a container and an adjustable load-bearing structure. The container has a bottom plate, a surrounding side wall and a first opening. The bottom plate is connected to the first side of the surrounding side wall and defines an accommodating space together with the surrounding side wall. The first opening is located on the second side of the surrounding side wall. The supporting structure is connected with the container and has a first end and a second end. Wherein, the distance between the first end and the second end is the first length, and the first length can be adjusted.

在一些實施例中,承載結構連接於第一側。 In some embodiments, the carrying structure is connected to the first side.

在一些實施例中,承載結構具有一承載件、一第一固定件及一第二固定件,承載件分別而獨立地與第一固定件及第二固定件連接;第一固定件具有一第一滑動部及一第一固定部,第一固定部位於第一端;第二固定件具有一第二滑動部及一第二固定部,第二固定部位於第二端。 In some embodiments, the bearing structure has a bearing member, a first fixing member, and a second fixing member. The bearing member is connected to the first fixing member and the second fixing member separately and independently; the first fixing member has a first fixing member. A sliding part and a first fixing part, the first fixing part is located at the first end; the second fixing member has a second sliding part and a second fixing part, the second fixing part is located at the second end.

在一些實施例中,第一滑動部與承載件分別具有至少一第一定位部及至少一第一定位結構二者中的其中一者及其中另一者,且第二滑動部與承載件分別具有至少一第二定位部及至少一第二定位結構二者中的其中一者及其中另一者。 In some embodiments, the first sliding portion and the supporting member respectively have at least one of the first positioning portion and the at least one first positioning structure and the other of the two, and the second sliding portion and the supporting member respectively It has one of at least one second positioning portion and at least one second positioning structure and the other of the two.

在一些實施例中,第一滑動部與承載件分別具有至少二第一定位部及至少二第一定位結構二者中的其中一者及其中另一者,且第二滑動部與承 載件分別具有至少二第二定位部及至少二第二定位結構二者中的其中一者及其中另一者。 In some embodiments, the first sliding portion and the bearing member respectively have at least two first positioning portions and at least two first positioning structures, one of and the other of the two, and the second sliding portion and the bearing The carrier respectively has one of at least two second positioning portions and at least two second positioning structures and the other of the two.

在一些實施例中,第一滑動部與承載件分別具有至少四第一定位部及至少二第一定位結構二者中的其中一者及其中另一者,該些第一定位部兩兩一組且互為平行,該些第一定位部之間的連線形成類矩形及方形其中一者;且第二滑動部與承載件分別具有至少四第二定位部及至少二第二定位結構二者中的其中一者及其中另一者,該些第二定位部兩兩一組且互為平行,該些第二定位部之間的連線可形成類矩形及方形其中一者。 In some embodiments, the first sliding portion and the carrier have at least four first positioning portions and at least two first positioning structures, one of and the other of the at least two first positioning structures, and the first positioning portions are two by two. The connecting lines between the first positioning parts form one of a rectangular or a square shape; and the second sliding part and the bearing member respectively have at least four second positioning parts and at least two second positioning structures One of the second positioning parts and the other one, the second positioning parts are set in pairs and parallel to each other, and the connecting line between the second positioning parts can form one of a rectangle-like and a square.

在一些實施例中,第一定位部及第二定位部為孔狀。 In some embodiments, the first positioning portion and the second positioning portion are hole-shaped.

在一些實施例中,第一定位結構及第二定位結構為長條形孔狀。 In some embodiments, the first positioning structure and the second positioning structure are elongated holes.

在一些實施例中,承載件、第一滑動部與第二滑動部皆為片狀,並且三者彼此平行。 In some embodiments, the carrier, the first sliding part, and the second sliding part are all sheet-shaped, and the three are parallel to each other.

在一些實施例中,第一固定部與第一滑動部相垂直,且第二固定部與第二滑動部相垂直。 In some embodiments, the first fixing part is perpendicular to the first sliding part, and the second fixing part is perpendicular to the second sliding part.

綜上所述,本案所提供的預埋構件是藉由可調整長度的一承載結構,讓預埋結構適用裝設於不同間距的環境元件,進而解決習知的接線盒裝設不便、建築外觀不平整或接線盒固定不牢固的問題。 In summary, the embedded component provided in this case uses a load-bearing structure with an adjustable length, so that the embedded structure is suitable for installation in environmental components with different spacings, thereby solving the inconvenience of conventional junction box installation and architectural appearance. The problem of unevenness or inadequate fixing of the junction box.

1:容器 1: container

11:底板 11: bottom plate

12:環繞側壁 12: Surround the side wall

121:第一側 121: first side

122:第二側 122: second side

13:第一開口 13: first opening

2:承載結構 2: bearing structure

21:承載件 21: Carrier

211:第一定位部 211: The first positioning part

212:第二定位部 212: The second positioning part

22:第一固定件 22: The first fixing part

221:第一滑動部 221: first sliding part

222:第一固定部 222: The first fixed part

223:第一定位結構 223: The first positioning structure

23:第二固定件 23: The second fixing part

231:第二滑動部 231: second sliding part

232:第二固定部 232: The second fixed part

233:第二定位結構 233: second positioning structure

3:緊固件 3: fasteners

81:(習知的)接線盒 81: (Conventional) Junction Box

82:(習知的)支架 82: (Conventional) Bracket

83:環境元件 83: Environmental Components

9:預埋構件 9: Embedded components

D:間距 D: spacing

S:容置空間 S: housing space

P1:第一端 P1: first end

P2:第二端 P2: second end

L1:第一長度 L1: first length

圖1A為習知的接線盒之應用示意圖。 Figure 1A is a schematic diagram of the application of the conventional junction box.

圖1B為習知的接線盒之立體示意圖。 Fig. 1B is a three-dimensional schematic diagram of a conventional junction box.

圖1C為圖1B的分解示意圖。 Fig. 1C is an exploded schematic diagram of Fig. 1B.

圖2A為本案一實施例預埋構件的立體示意圖。 Fig. 2A is a three-dimensional schematic diagram of a pre-embedded component in an embodiment of the present invention.

圖2B為圖2A的分解示意圖。 Fig. 2B is an exploded schematic diagram of Fig. 2A.

圖3為本案一實施例承載結構的立體示意圖。 Fig. 3 is a three-dimensional schematic diagram of the carrying structure of an embodiment of the present invention.

圖4為圖3的俯視示意圖。 Fig. 4 is a schematic top view of Fig. 3.

圖5A~圖5B為本案一實施例承載結構的作動示意圖。 5A to 5B are schematic diagrams of the action of the bearing structure according to an embodiment of the present invention.

以下將參照相關圖式及透過特定實施例來說明本案所揭露有關「預埋構件」的實施方式。其中相同的元件將以相同的參照符號加以說明。 Hereinafter, the implementation of the "pre-embedded component" disclosed in this case will be described with reference to related drawings and specific embodiments. The same elements will be described with the same reference signs.

需要說明的是,本案的圖式僅為簡單示意說明,並非依實際尺寸描繪。本案各實施例中所有方向性用語(例如:上、下、左、右、前、後等)僅用於解釋某一特定狀態中各部件之間的相對位置關係或運動情況等。在不悖離本案的精神下,本說明書中的各項細節亦可基於不同觀點而應用。以下所述僅為舉例性,而非為限制性者。任何未脫離本案的精神與範疇,而對其進行之修改或變更者,皆應為本案之申請專利範圍所包含。 It should be noted that the drawings in this case are merely schematic illustrations, and are not depicted according to actual size. All directional terms (for example: up, down, left, right, front, back, etc.) in the embodiments of this case are only used to explain the relative positional relationship or movement of the components in a particular state. Without departing from the spirit of the case, the details in this specification can also be applied based on different viewpoints. The following descriptions are merely illustrative and not restrictive. Any amendments or changes made without departing from the spirit and scope of this case shall be included in the scope of the patent application of this case.

請參閱圖2A及圖2B,圖2A為本案一實施例預埋構件9的立體示意圖,圖2B為圖2A的分解示意圖。如圖所示,在一些實施例中,預埋構件9為接線盒(Junction box),預埋構件9包含一容器1及可調式的一承載結構2。容器1具有一底板11、一環繞側壁12及一第一開口13。底板11連接環繞側壁12之一第一側121且與環繞側壁12共同界定出一容置空間S,第一開口13位於環繞側壁12的一第二側122。在本實施例中,底板11略呈圓角矩形,環繞側壁12沿著底板11的形 狀垂直並一體成型地連接於底板11,底板11與環繞側壁12兩者共同界定出具有略呈六面體外觀的容置空間S。然而,在一些實施例中,底板11亦可例如但不限於呈正方形、圓形或多邊形等、環繞側壁12與底板11亦可採非一體成型的連接方式、以及容置空間S亦可例如但不限於呈更多面體的外觀等。換言之,本案不對容器1的形狀和製程態樣加以限制。在本實施例中,第一側121指環繞側壁12與底板11相連接的一側,第二側122指環繞側壁12相對第一側121的另一側,而第一開口13位於第二側122。 Please refer to FIGS. 2A and 2B. FIG. 2A is a three-dimensional schematic diagram of the embedded component 9 according to an embodiment of the present invention, and FIG. 2B is an exploded schematic diagram of FIG. 2A. As shown in the figure, in some embodiments, the embedded component 9 is a junction box, and the embedded component 9 includes a container 1 and an adjustable carrying structure 2. The container 1 has a bottom plate 11, a surrounding side wall 12 and a first opening 13. The bottom plate 11 is connected to a first side 121 of the surrounding side wall 12 and defines an accommodating space S together with the surrounding side wall 12. The first opening 13 is located on a second side 122 of the surrounding side wall 12. In this embodiment, the bottom plate 11 is slightly rounded rectangle, and the surrounding side walls 12 follow the shape of the bottom plate 11. The shape is vertical and integrally connected to the bottom plate 11, and the bottom plate 11 and the surrounding side wall 12 together define an accommodating space S having a slightly hexahedral appearance. However, in some embodiments, the bottom plate 11 can also be, for example, but not limited to, a square, circular, or polygonal shape, the surrounding side walls 12 and the bottom plate 11 can also be connected in a non-integral manner, and the accommodating space S can also be, for example, but It is not limited to the appearance of more faces. In other words, this case does not impose restrictions on the shape and manufacturing process of the container 1. In this embodiment, the first side 121 refers to the side where the surrounding side wall 12 is connected to the bottom plate 11, the second side 122 refers to the other side of the surrounding side wall 12 opposite to the first side 121, and the first opening 13 is located on the second side. 122.

如圖2B~圖4所示,在一些實施例中,承載結構2與容器1連接,其具有第一端P1及第二端P2。定義第一端P1與第二端P2之間的距離為一第一長度L1(如圖4),第一長度L1可以作調整。在本實施例中,承載結構2連接於環繞側壁12的第一側121,預埋構件9是透過承載結構2來固定或連接於環境元件(未繪示,指預埋構件9所固定的位置,例如但不限於為立柱、模板、鋼梁、木架或橫撐等)。第一端P1和第二端P2分別是指承載結構2最遠距離的兩端,亦即兩者之間距所定義出的第一長度L1即承載結構2的整體長度。如圖4所示,第一端P1為承載結構2在圖式中最右側的一端,第二端P2為承載結構2在圖式中最左側的一端。其中,第一長度L1並非固定不變,而針對第一長度L1的調整方式將於後續段落進一步作介紹。 As shown in FIGS. 2B to 4, in some embodiments, the carrying structure 2 is connected to the container 1, and has a first end P1 and a second end P2. The distance between the first end P1 and the second end P2 is defined as a first length L1 (as shown in FIG. 4), and the first length L1 can be adjusted. In this embodiment, the bearing structure 2 is connected to the first side 121 of the surrounding side wall 12, and the embedded member 9 is fixed or connected to the environmental element through the bearing structure 2 (not shown, refers to the position where the embedded member 9 is fixed) , Such as but not limited to columns, templates, steel beams, wooden frames or cross braces, etc.). The first end P1 and the second end P2 respectively refer to the two ends of the carrying structure 2 at the farthest distance, that is, the first length L1 defined between the two, that is, the overall length of the carrying structure 2. As shown in FIG. 4, the first end P1 is the end of the bearing structure 2 on the rightmost side in the drawing, and the second end P2 is the end of the bearing structure 2 on the leftmost side in the drawing. Among them, the first length L1 is not fixed, and the adjustment method for the first length L1 will be further introduced in subsequent paragraphs.

如圖2B及圖3所示,在一些實施例中,承載結構2具有一承載件21、一第一固定件22及一第二固定件23,承載件21分別而獨立地與第一固定件22及第二固定件23連接;第一固定件22具有一第一滑動部221及一第一固定部222,第一固定部222位於承載結構2的第一端P1;第二固定件23具有一第二滑動部231及一第二固定部232,第二固定部232位於承載結構2的第二端P2。第一固定部222及 第二固定部232分別是第一固定件22及第二固定件23用以連接環境元件的部位。具體而言,第一固定部222及第二固定部232可例如但不限於預設有孔洞,使用者可例如但不限於藉由螺絲在穿設孔洞後將第一固定部222及第二固定部232螺鎖於環境元件。第一滑動部221及第二滑動部231分別是第一固定件22及第二固定件23用以連接承載件21,並可相對於承載件21作移動的部位。 As shown in FIGS. 2B and 3, in some embodiments, the supporting structure 2 has a supporting member 21, a first fixing member 22, and a second fixing member 23, and the supporting member 21 is independent of the first fixing member. 22 and the second fixing member 23 are connected; the first fixing member 22 has a first sliding portion 221 and a first fixing portion 222, the first fixing portion 222 is located at the first end P1 of the supporting structure 2; the second fixing member 23 has A second sliding portion 231 and a second fixing portion 232 are located at the second end P2 of the supporting structure 2. The first fixing part 222 and The second fixing portion 232 is respectively a part of the first fixing member 22 and the second fixing member 23 for connecting environmental elements. Specifically, the first fixing portion 222 and the second fixing portion 232 may be preset with holes, for example, but not limited to, and the user may, for example, but not limited to, use screws to fix the first fixing portion 222 and the second fixing portion 222 and the second fixing portion after the holes are inserted. The part 232 is screwed to the environmental element. The first sliding part 221 and the second sliding part 231 are respectively the parts where the first fixing part 22 and the second fixing part 23 are connected to the carrier 21 and can move relative to the carrier 21.

如圖2B所示,在本實施例中,承載件21為長方形的片狀結構,其較長邊長相對的兩側各自連接第一固定件22及第二固定件23。在本實施例中,第一固定件22略呈L字形,具有相互垂直的第一滑動部221及第一固定部222;第二固定件23略呈L字形,具有相互垂直的第二滑動部231及第二固定部232。第一滑動部221和第二滑動部231分別是第一固定件22及第二固定件23用以連接承載件21的部位,而第一固定部222和第二固定部232分別是第一固定件22及第二固定件23用以連接環境元件且相對遠離承載件21的部位。在本實施例中,第一固定件22與第二固定件23於承載結構2上相互對稱。然而,在一些實施例中,第一固定件22與第二固定件23是不對稱的結構。在一些實施例中,第一固定件22或第二固定件23並不限於呈L字形,兩者可例如但不限於呈ㄇ字形、ㄑ字形或Z字形等。如前所述,第一端P1和第二端P2分別是指承載結構2最遠距離的兩端,在本實施例中,第一固定部222位於第一端P1,且第二固定部232位於第二端P2。 As shown in FIG. 2B, in this embodiment, the supporting member 21 is a rectangular sheet-like structure, and two opposite sides of its longer side are connected to the first fixing member 22 and the second fixing member 23 respectively. In this embodiment, the first fixing member 22 is slightly L-shaped and has a first sliding portion 221 and a first fixing portion 222 that are perpendicular to each other; the second fixing member 23 is slightly L-shaped and has a second sliding portion that is perpendicular to each other 231 and the second fixing portion 232. The first sliding part 221 and the second sliding part 231 are respectively the parts of the first fixing part 22 and the second fixing part 23 for connecting the carrier 21, and the first fixing part 222 and the second fixing part 232 are respectively the first fixing part. The part 22 and the second fixing part 23 are used to connect the environmental elements and are relatively far away from the supporting part 21. In this embodiment, the first fixing member 22 and the second fixing member 23 are symmetrical to each other on the supporting structure 2. However, in some embodiments, the first fixing member 22 and the second fixing member 23 have an asymmetric structure. In some embodiments, the first fixing member 22 or the second fixing member 23 is not limited to being L-shaped, and the two can be, for example, but not limited to, U-shaped, U-shaped, or Z-shaped. As mentioned above, the first end P1 and the second end P2 respectively refer to the two ends of the carrying structure 2 at the farthest distance. In this embodiment, the first fixing portion 222 is located at the first end P1, and the second fixing portion 232 Located at the second end P2.

如圖2B所示,在一些實施例中,承載件21、第一滑動部221與第二滑動部231皆為片狀,並且三者彼此平行。在本實施例中,承載件21、第一滑動部221和第二滑動部231皆是寬幅相同的片狀結構,第一滑動部221與第二滑動部231分別貼齊地重疊並連接於承載件21的兩側,三者間相互平行。 As shown in FIG. 2B, in some embodiments, the carrier 21, the first sliding portion 221, and the second sliding portion 231 are all sheet-shaped, and the three are parallel to each other. In this embodiment, the carrier 21, the first sliding portion 221, and the second sliding portion 231 are all sheet-like structures with the same width, and the first sliding portion 221 and the second sliding portion 231 are overlapped and connected to each other. The two sides of the carrier 21 are parallel to each other.

如圖2B及圖3所示,在一些實施例中,第一滑動部221與承載件21分別具有至少一第一定位部211及至少一第一定位結構223二者中的其中一者及其中另一者,且第二滑動部231與承載件21分別具有至少一第二定位部212及至少一第二定位結構233二者中的其中一者及其中另一者。在一些實施例中,第一滑動部221與承載件21分別具有至少二第一定位部211及至少二第一定位結構223二者中的其中一者及其中另一者,且第二滑動部231與承載件21分別具有至少二第二定位部212及至少二第二定位結構233二者中的其中一者及其中另一者。在一些實施例中,第一滑動部221與承載件21分別具有至少四第一定位部211及至少二第一定位結構223二者中的其中一者及其中另一者,該些第一定位部211兩兩一組且互為平行,該些第一定位部211之間的連線可形成類矩形及方形其中一者;且第二滑動部231與承載件21分別具有至少四第二定位部212及至少二第二定位結構233二者中的其中一者及其中另一者,該些第二定位部212兩兩一組且互為平行,該些第二定位部212之間的連線可形成類矩形及方形其中一者。 As shown in FIGS. 2B and 3, in some embodiments, the first sliding portion 221 and the carrier 21 have at least one first positioning portion 211 and at least one first positioning structure 223, and one of them On the other hand, the second sliding portion 231 and the carrier 21 respectively have at least one of the second positioning portion 212 and the at least one second positioning structure 233 and the other thereof. In some embodiments, the first sliding portion 221 and the carrier 21 respectively have at least two first positioning portions 211 and at least two first positioning structures 223, one of and the other of the two, and the second sliding portion The 231 and the carrier 21 respectively have one of at least two second positioning portions 212 and at least two second positioning structures 233 and the other of them. In some embodiments, the first sliding portion 221 and the carrier 21 have at least four first positioning portions 211 and at least two first positioning structures 223 respectively. The portions 211 are set in pairs and are parallel to each other. The connecting line between the first positioning portions 211 can form one of a rectangular shape and a square shape; and the second sliding portion 231 and the carrier 21 respectively have at least four second positioning Part 212 and at least two second positioning structures 233, one of them and the other of the two, the second positioning parts 212 are set in pairs and parallel to each other, the connection between the second positioning parts 212 The line can form one of a rectangle-like shape and a square shape.

詳言之,無論第一定位部211與第一定位結構223,或是第二定位部212與第二定位結構233之間,皆有著相關聯或相對應的連接關係。在本實施例中,第一定位部211及第二定位部212皆為圓形孔狀,第一定位結構223及第二定位結構233皆為長條形孔狀。承載件21的較長邊長之相對的兩側各自具有四個第一定位部211及四個第二定位部212,第一滑動部221具有兩個相互平行的第一定位結構223,以及第二滑動部231具有兩個相互平行的第二定位結構233。其中,第一定位部211的位置對應到第一定位結構223的位置,第二定位部212的位置對應到第二定位結構233的位置。在本實施例中,預埋構件9更具有複數個緊固件3, 第一定位部211與第一定位結構223、以及第二定位部212與第二定位結構233皆是透過該些緊固件3相連接。具體而言,在本實施例中,該些緊固件3為鉚釘,鉚釘的釘桿依序穿設圓孔的第一定位部211及長條孔狀的第一定位結構223,再對鉚釘兩端作敲擊或加壓,使釘桿遠離鉚釘的釘帽之一端變形,進而鉚接固定第一定位部211及第一定位結構223;同樣地,第二定位部212與第二定位結構233也藉由同前所述之鉚接方式作固定。如前所述,在本實施例中,第一定位部211及第二定位部212為圓孔,因此該些緊固件3會被限位於該些圓孔中;而第一定位結構223及第二定位結構233為長條孔狀,因此,該些緊固件3雖然亦被限位於該些長條孔中,但尚能在該些長條孔的範圍下作移動。換言之,第一定位結構223及第二定位結構233類似具有像滑軌的功能,可提供緊固件3於其中範圍作移動。如此一來,第一滑動部221及第二滑動部231可相對於承載件21作移動,進而達到承載結構2的第一長度L1可以作調整之功效。 In detail, no matter the first positioning portion 211 and the first positioning structure 223, or the second positioning portion 212 and the second positioning structure 233, there is an associated or corresponding connection relationship. In this embodiment, the first positioning portion 211 and the second positioning portion 212 are both circular holes, and the first positioning structure 223 and the second positioning structure 233 are both elongated holes. The two opposite sides of the longer side of the carrier 21 each have four first positioning portions 211 and four second positioning portions 212, the first sliding portion 221 has two first positioning structures 223 parallel to each other, and a second The two sliding parts 231 have two second positioning structures 233 parallel to each other. The position of the first positioning portion 211 corresponds to the position of the first positioning structure 223, and the position of the second positioning portion 212 corresponds to the position of the second positioning structure 233. In this embodiment, the embedded member 9 further has a plurality of fasteners 3, The first positioning portion 211 and the first positioning structure 223 and the second positioning portion 212 and the second positioning structure 233 are all connected through the fasteners 3. Specifically, in this embodiment, the fasteners 3 are rivets, and the rods of the rivets are sequentially pierced with the first positioning portion 211 of the round hole and the first positioning structure 223 of the elongated hole shape, and then the two rivets The end is knocked or pressurized to deform one end of the nail rod away from the cap of the rivet, thereby riveting and fixing the first positioning portion 211 and the first positioning structure 223; similarly, the second positioning portion 212 and the second positioning structure 233 are also It is fixed by riveting as described above. As mentioned above, in this embodiment, the first positioning portion 211 and the second positioning portion 212 are round holes, so the fasteners 3 are confined in the round holes; and the first positioning structure 223 and the second positioning structure 223 are round holes. The two positioning structures 233 are in the shape of elongated holes. Therefore, although the fasteners 3 are also limited in the elongated holes, they can still move within the range of the elongated holes. In other words, the first positioning structure 223 and the second positioning structure 233 similarly have a function like a sliding rail, and can provide the fastener 3 to move within the range. In this way, the first sliding portion 221 and the second sliding portion 231 can move relative to the carrier 21, so that the first length L1 of the carrier structure 2 can be adjusted.

然而,需要說敘明的是,在一些實施例中,緊固件3亦可選自螺栓、螺絲或定位銷等,或是緊固件3亦可係一體成型於第一定位部211或第二定位部212上的柱體結構等。本案不對此加以限制。 However, it needs to be clarified that in some embodiments, the fastener 3 can also be selected from bolts, screws, or positioning pins, or the fastener 3 can also be integrally formed on the first positioning part 211 or the second positioning part. The column structure on the section 212 and so on. This case does not impose restrictions on this.

特要一提的是,在本實施例中,預埋構件9具有四個第一定位部211及兩個相互平行的第一定位結構223;其中二個第一定位部211對應其中一第一定位結構223,而另二個第一定位部211對應到另一個第一定位結構223;換言之,第一定位部211基於設置的位置兩兩一組且互為平行,以及該些第一定位部211的連線可形成類矩形。藉由這樣的設置,可以增進第一固定件22相對承載件21移動時的順暢或穩定性,避免移動時易於偏斜、晃動或旋轉的問題。同樣地,在本 實施例中,對應設置的四個第二定位部212、及兩個平行的第一定位結構223,亦增進第二固定件23相對承載件21移動時的順暢或穩定性。 In particular, in this embodiment, the embedded member 9 has four first positioning portions 211 and two first positioning structures 223 parallel to each other; two of the first positioning portions 211 correspond to one of the first positioning structures 223. The positioning structure 223, and the other two first positioning portions 211 correspond to the other first positioning structure 223; in other words, the first positioning portions 211 are set in pairs based on the set positions and are parallel to each other, and the first positioning portions The connection line of 211 can form a similar rectangle. With this arrangement, the smoothness or stability of the movement of the first fixing member 22 relative to the carrier 21 can be improved, and the problem of easy deflection, shaking or rotation during movement can be avoided. Similarly, in this In the embodiment, the correspondingly provided four second positioning portions 212 and two parallel first positioning structures 223 also improve the smoothness or stability of the movement of the second fixing member 23 relative to the carrier 21.

圖2A、圖5A及圖5B用以示意預埋構件9在不同態樣下不同的第一長度L1,如圖所示,承載結構2的長度可作調整。值得一提的是,有別於習知接線盒的支架因不可調整長度,而具有接線盒裝設不便、建築外觀不平整或接線盒固定不牢固的問題,本案基於可調整的第一長度L1讓預埋構件9適用裝設於不同間距的使用情境,進而解決如前所述的習知問題。 2A, 5A, and 5B are used to illustrate different first lengths L1 of the embedded member 9 in different configurations. As shown in the figure, the length of the supporting structure 2 can be adjusted. It is worth mentioning that the brackets, which are different from the conventional junction box, cannot be adjusted in length, and have the problems of inconvenient installation of the junction box, uneven building appearance, or unstable fixing of the junction box. This case is based on the adjustable first length L1 The embedded components 9 are suitable for installation in use scenarios with different spacings, thereby solving the aforementioned conventional problems.

綜上所述,本案所提供的預埋構件是藉由可調整長度的一承載結構,讓預埋構件適用裝設於不同間距的環境元件,進而解決習知的接線盒裝設不便、建築外觀不平整或接線盒固定不牢固的問題。 To sum up, the embedded component provided in this case uses a load-bearing structure with an adjustable length, so that the embedded component is suitable for installation in environmental elements with different spacings, thereby solving the inconvenience of conventional junction box installation and architectural appearance. The problem of unevenness or inadequate fixing of the junction box.

以上所述僅為舉例性,而非為限制性者。任何未脫離本案的精神與範疇,而對其進行的等效修改或變更,均應包含於後附的申請專利範圍中。 The above description is only illustrative, and not restrictive. Any equivalent modifications or changes made to it without departing from the spirit and scope of this case shall be included in the scope of the attached patent application.

1:容器 1: container

11:底板 11: bottom plate

12:環繞側壁 12: Surround the side wall

121:第一側 121: first side

122:第二側 122: second side

13:第一開口 13: first opening

2:承載結構 2: bearing structure

21:承載件 21: Carrier

211:第一定位部 211: The first positioning part

212:第二定位部 212: The second positioning part

22:第一固定件 22: The first fixing part

221:第一滑動部 221: first sliding part

222:第一固定部 222: The first fixed part

223:第一定位結構 223: The first positioning structure

23:第二固定件 23: The second fixing part

231:第二滑動部 231: second sliding part

232:第二固定部 232: The second fixed part

233:第二定位結構 233: second positioning structure

3:緊固件 3: fasteners

9:預埋構件 9: Embedded components

P1:第一端 P1: first end

P2:第二端 P2: second end

Claims (10)

一種預埋構件,包含: A pre-embedded component, including: 一容器,其具有一底板、一環繞側壁及一第一開口;該底板連接該環繞側壁之一第一側且與該環繞側壁共同界定出一容置空間,該第一開口位於該環繞側壁之一第二側;以及 A container having a bottom plate, a surrounding side wall and a first opening; the bottom plate is connected to a first side of the surrounding side wall and defines an accommodating space together with the surrounding side wall, and the first opening is located on the surrounding side wall A second side; and 可調式的一承載結構,其與該容器連接,其具有一第一端與一第二端,該第一端與該第二端之間的距離為第一長度,該第一長度為可調整。 An adjustable load-bearing structure connected to the container has a first end and a second end, the distance between the first end and the second end is a first length, and the first length is adjustable . 如請求項1所述的預埋構件,其中該承載結構連接於該第一側。 The embedded component according to claim 1, wherein the bearing structure is connected to the first side. 如請求項1所述的預埋構件,其中該承載結構具有一承載件、一第一固定件及一第二固定件,該承載件分別而獨立地與該第一固定件及該第二固定件連接;該第一固定件具有一第一滑動部及一第一固定部,該第一固定部位於該第一端;該第二固定件具有一第二滑動部及一第二固定部,該第二固定部位於該第二端。 The embedded component according to claim 1, wherein the bearing structure has a bearing member, a first fixing member and a second fixing member, and the bearing member is independently and independently of the first fixing member and the second fixing member. The first fixing member has a first sliding portion and a first fixing portion, the first fixing portion is located at the first end; the second fixing member has a second sliding portion and a second fixing portion, The second fixing part is located at the second end. 如請求項3所述的預埋構件,其中該第一滑動部與該承載件分別具有至少一第一定位部及至少一第一定位結構二者中的其中一者及其中另一者,且該第二滑動部與該承載件分別具有至少一第二定位部及至少一第二定位結構二者中的其中一者及其中另一者。 The embedded component according to claim 3, wherein the first sliding portion and the carrier have at least one of at least one first positioning portion and at least one first positioning structure and the other one, and The second sliding portion and the carrier have at least one second positioning portion and at least one second positioning structure and the other one. 如請求項4所述的預埋構件,其中該第一滑動部與該承載件分別具有至少二第一定位部及至少二第一定位結構二者中的其中一者及其中另一者,且該第二滑動部與該承載件分別具有至少二第二定位部及至少二第二定位結構二者中的其中一者及其中另一者。 The embedded component according to claim 4, wherein the first sliding portion and the carrier have at least two first positioning portions and at least two first positioning structures, one of and the other of at least two first positioning structures, and The second sliding part and the carrier respectively have one of at least two second positioning parts and at least two second positioning structures and the other of the second positioning parts. 如請求項4所述的預埋構件,其中該第一滑動部與該承載件分別具有至少四第一定位部及至少二第一定位結構二者中的其中一者及其中另一者,該些第一定位部兩兩一組且互為平行,該些第一定位部之間的連線可形成類矩形及方形其中一者;且該第二滑動部與該承載件分別具有至少四第二定位部及至少二第二定位結構二者中的其中一者及其中另一者,該些第二定位部兩兩一組且互為平行,該些第二定位部之間的連線可形成類矩形及方形其中一者。 The embedded component according to claim 4, wherein the first sliding portion and the bearing member respectively have at least one of four first positioning portions and at least two first positioning structures and the other one, the The first positioning parts are set in pairs and parallel to each other, and the connecting line between the first positioning parts can form one of a rectangular shape and a square shape; and the second sliding part and the carrier have at least four One of the two positioning portions and at least two second positioning structures and the other of the two, the second positioning portions are set in pairs and parallel to each other, and the connection between the second positioning portions can be It forms one of rectangular and square-like shapes. 如請求項6所述的預埋構件,其中該第一定位部及該第二定位部為孔狀。 The embedded component according to claim 6, wherein the first positioning portion and the second positioning portion are hole-shaped. 如請求項6所述的預埋構件,其中該第一定位結構及該第二定位結構為長條形孔狀。 The embedded component according to claim 6, wherein the first positioning structure and the second positioning structure are elongated holes. 如請求項3所述的預埋構件,其中該承載件、該第一滑動部與該第二滑動部皆為片狀,並且三者彼此平行。 The embedded component according to claim 3, wherein the carrier, the first sliding portion, and the second sliding portion are all sheet-shaped, and the three are parallel to each other. 如請求項9所述的預埋構件,其中該第一固定部與該第一滑動部相垂直,且該第二固定部與該第二滑動部相垂直。 The embedded component according to claim 9, wherein the first fixing part is perpendicular to the first sliding part, and the second fixing part is perpendicular to the second sliding part.
TW109215521U 2020-11-23 2020-11-23 Pre-embedding construction member TWM610788U (en)

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