WO2022083045A1 - 一种可调节线槽宽度的走线支架 - Google Patents

一种可调节线槽宽度的走线支架 Download PDF

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Publication number
WO2022083045A1
WO2022083045A1 PCT/CN2021/079348 CN2021079348W WO2022083045A1 WO 2022083045 A1 WO2022083045 A1 WO 2022083045A1 CN 2021079348 W CN2021079348 W CN 2021079348W WO 2022083045 A1 WO2022083045 A1 WO 2022083045A1
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Prior art keywords
plate
folded
support
slot
wire
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PCT/CN2021/079348
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English (en)
French (fr)
Inventor
熊少伟
赵韦华
夏瑞
曹铭
居承宗
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浙江一舟电子科技股份有限公司
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Application filed by 浙江一舟电子科技股份有限公司 filed Critical 浙江一舟电子科技股份有限公司
Priority to US18/246,020 priority Critical patent/US20230361544A1/en
Publication of WO2022083045A1 publication Critical patent/WO2022083045A1/zh

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/02Details
    • H02G3/04Protective tubing or conduits, e.g. cable ladders or cable troughs
    • H02G3/0437Channels
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/02Details
    • H02G3/04Protective tubing or conduits, e.g. cable ladders or cable troughs
    • H02G3/0406Details thereof
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/02Details
    • H02G3/04Protective tubing or conduits, e.g. cable ladders or cable troughs
    • H02G3/0437Channels
    • H02G3/045Channels provided with perforations or slots permitting introduction or exit of wires

Definitions

  • the invention relates to the technical field of wiring of multiple wire harnesses, in particular to a wire routing support with adjustable wire groove width.
  • the existing wire harness bracket only has the function of gathering multiple wire harnesses, and cannot classify the weak wire bundles and strong wire bundles in the multi wire harnesses, resulting in confusion in the classification of wire harnesses; secondly, the size of multiple wiring spaces cannot be adjusted, resulting in space The utilization rate is not high.
  • one type of wiring harness far exceeds the other types of wiring harnesses, there will be a situation where one wiring space is crowded, while the other wiring space is very small, which makes the space occupy more space and wastes resources.
  • the technical problem to be solved by the present invention is to provide a wiring support with adjustable wire slot width, which is used to solve the problem that the wiring harness support in the prior art cannot classify the wiring harness and the size of the wiring space Unable to adjust etc.
  • a wire routing bracket with adjustable wire groove width including:
  • each of the first end plate and the second end plate is provided with at least one wire routing slot
  • At least two supporting plates including a first supporting plate connected with the first end plate and a second supporting plate connected with the second end plate, the first supporting plate and the second supporting plate are slidably connected; the first supporting plate
  • the support plate is provided with a plurality of first connecting parts along its sliding direction
  • the second support plate is provided with a plurality of second connecting parts along its sliding direction;
  • a divider the divider includes a folded part, a first folded plate and a second folded plate connected by the folded part, and both the first and second folded plates can be along the The folded part is folded; the end of the first folded plate away from the folded part is detachably connected to any of the first connecting parts, and the end of the second folded plate away from the folded part is detachable connected to any of the second connecting parts.
  • two sides of the first support plate are respectively provided with a row of first connecting portions along the sliding direction thereof, and two sides of the second support plate are respectively provided with a row of second connecting portions along the sliding direction thereof.
  • the first connecting portion includes a first slot hole
  • the second connecting portion includes a second slot hole
  • one end of the first folded plate away from the folded portion is provided with two first limit positions
  • two second limiting blocks are opened at the end of the second folded plate away from the folded portion; the first limit blocks are snapped into the first slot to limit the first folded plate from being connected to the folded portion.
  • the second limiting block is snapped into the second slot hole to limit the movement of the second folding plate and the second supporting plate.
  • the first slot holes in each row are arranged at equal intervals, and the second slot holes in each row are arranged at equal intervals.
  • the movement between the separator, the first support plate, and the second support plate can be restricted.
  • both the first end plate and the second end plate are provided with two wire routing through grooves.
  • the height of the bottommost end of the wire routing slot is higher than or equal to the height of the upper surface of the support plate.
  • both the first end plate and the second end plate include: a main body, the wire routing through groove is opened on the main body, the support plate is fixed to the main body; a fixing part, the fixing part is used for fixing the first end plate or the second end plate.
  • both ends of the first end plate and the second end plate are provided with at least one connecting piece, and the connecting piece is used to connect a plurality of wiring supports.
  • the present invention at least has the following beneficial effects:
  • the first end plate, the first support plate and the first folded plate enclose a first wiring space
  • the second end plate, the second support plate and the second folded plate enclose a second wiring space. Since the first folding plate and the second folding plate can be folded, when the first supporting plate and the second supporting plate slide relative to each other, the first folding plate and the second folding plate are driven to be folded, thereby changing the first folding plate and the second folding plate.
  • the included angle between a folded plate and the second folded plate enables the size of the first wiring space and the second wiring space to be changed.
  • the first wiring space and the second wiring space increase at the same time; when the first pallet and the second pallet move toward each other When the direction slides, the first and second wiring spaces are reduced simultaneously, so that the size of the first and second wiring spaces can be adjusted by simply moving the first or second pallet. More convenient and easier to adjust.
  • Multiple wiring spaces can be adjusted, so that different types of wiring harnesses can be classified into the first wiring space and the second wiring space, so as to realize the classification and arrangement of various types of wiring harnesses;
  • the number of wiring harnesses is different, adjust the size of the first wiring space and the second wiring space, so that the size of multiple wiring spaces can be adaptively changed according to the number of wiring harnesses, so as to realize the wiring harness no matter in one wiring space.
  • the size of the corresponding wiring space can be adjusted to accommodate these wiring harnesses, so that the wiring harness does not have a swaying space in the wiring space, and finally plays a role in limiting the position of the multiple wiring harnesses.
  • the partition is set to have a first folded plate and a second folded plate, and the two folded plates can be bent to each other.
  • the advantages of this setting are: first, the adjustment of the wiring space can be realized only by adjusting the position of the corresponding one of the folding plates on the pallet, which is convenient for the operation of the staff during adjustment; second, when adjusting one of the wirings When the size of the space is changed, the size of the other wiring space changes very little, realizing the individual adjustment of a single wiring space; thirdly, the staff can also adjust the first folding plate and the second folding board at the same time according to the actual use requirements.
  • the position of the folded plate on the support plate that is, the angle between the first folded plate and the second folded plate remains unchanged, so that the sum of the first wiring space and the second wiring space remains unchanged, so as to achieve a
  • the maximum number of wire harnesses that can be accommodated in the wire support remains unchanged, which makes the use of the wire support more flexible; fourth, the first folding plate, the second folding plate and the support plate are fixed in a triangular shape after being fixed. , so that the spacer will not shake after being fixed on the support plate, and the formed first wiring space and the second wiring space are more stable, thereby improving the service life of the wiring support.
  • the height of the bottom end of the routing slot is higher than or equal to the height of the upper surface of the pallet.
  • FIG. 1 is a schematic structural diagram of a wiring support in an embodiment
  • FIG. 2 is a schematic structural diagram of the separator in FIG. 1 being removed in an embodiment
  • Fig. 3 is the structural representation of the separator in the embodiment
  • the present invention discloses a wire routing support with adjustable wire slot width, including:
  • first end plate 110 and the second end plate 120, the first end plate 110 and the second end plate 120 are both provided with at least one wire routing slot 121;
  • At least two supporting plates including a first supporting plate 210 connected with the first end plate 110 and a second supporting plate 220 connected with the second end plate 120, the first supporting plate 210 and the second supporting plate 220 are slidable connection; the first support plate 210 is provided with a plurality of first connection parts along its sliding direction, and the second support plate 220 is provided with a plurality of second connection parts along its sliding direction;
  • the divider 300, the divider 300 includes a folded part 320, a first folded plate 310 and a second folded plate 330 connected by the folded part 320, the first folded plate 310 and the second folded plate 330
  • the foldable plate 330 can be folded along the folded portion 320 ; the end of the first folded plate 310 away from the folded portion 320 can be detachably connected to any of the first connecting portions, and the second folded One end of the plate 330 away from the folded portion 320 is detachably connected to any of the second connecting portions.
  • the first end plate 110 , the first support plate 210 and the first folded plate 310 enclose a first wiring space
  • the second end plate 120 , the second support plate 220 and the second folded plate 330 enclose Second wiring space. Since the first folding board 310 and the second folding board 330 can be folded, when the first supporting board 210 and the second supporting board 220 slide relative to each other, the first folding board 310 and the second folding board 330 will be driven Folding, and then changing the angle between the first folding board 310 and the second folding board 330, so that the size of the first wiring space and the second wiring space can be changed.
  • the first wiring space and the second wiring space increase simultaneously; when the first supporting plate 210 and the second supporting plate 220 When sliding toward each other, the first wiring space and the second wiring space are reduced at the same time, so that the first wiring space and the second wiring space can be adjusted only by moving the first pallet 210 or the second pallet 220 .
  • the size of the line space is more convenient to operate and easier to adjust.
  • the first folding plate 310 is detachably connected to the first connection portion
  • the second folding plate 330 is detachably connected to the second connection portion. Therefore, the first folding plate 310 can be installed on the first connecting portion at any position to adjust the first wiring space to the required size; the second folding plate 330 can also be installed on the second connecting portion at any position, to adjust the second wiring space to the required size.
  • different types of wiring harnesses can be classified into the first wiring space and the second wiring space to realize the classification and arrangement of various types of wiring harnesses; at the same time, according to the number of different wiring harness types, adjust The size of the first wiring space and the second wiring space enables the size of multiple wiring spaces to be adaptively changed according to the number of wiring harnesses, so as to realize that no matter the number of wiring harnesses in one wiring space, the The size of the corresponding wiring space can be adjusted just to accommodate the wiring harnesses, so that the wiring harness does not have a swaying space in the wiring space, and finally plays a role of limiting the position of the multiple wiring harnesses.
  • the partition 300 is configured to have a first folded plate 310 and a second folded plate 330 and the two folded plates can be bent to each other, so that the first wire routing space and the second wire routing space can be adjusted independently. Specifically, when it is necessary to adjust the first wiring space, it is only necessary to adjust the distance between the first folded plate 310 and the first end plate 110 separately, and there is no need to adjust the distance between the second folded plate 330 on the support plate. position, that is, the size of the included angle between the first folding plate 310 and the second folding plate 330 is changed.
  • the adjustment of the wiring space can be realized only by adjusting the position of the corresponding one of the folding plates on the pallet, which is convenient for the operation of the staff during adjustment; second, when adjusting one of the wirings When the space is large, the change in the size of the other wiring space is very small, realizing the individual adjustment of a single wiring space; thirdly, the staff can also adjust the first folding plate 310 and the second folding board The position of the folding plate 330 on the support plate, that is, the angle between the first folding plate 310 and the second folding plate 330 remains unchanged, so that the sum of the first wiring space and the second wiring space remains unchanged, In order to realize that the maximum number of wire harnesses that can be accommodated in one cable routing bracket remains unchanged, the use method of the cable routing bracket is more flexible; fourth, the first folding plate 310, the second folding plate 330 and the supporting plate are After being fixed, the spacers are arranged in a triangle shape, so that the spacer 300 will not shake after being fixed on the support plate, and
  • this solution realizes individual adjustment of multiple wiring spaces, multi-level adjustment, and adjustment in multiple adjustment methods.
  • a row of first connecting portions are respectively defined on both sides of the first support plate 210 along the sliding direction thereof, and a row of second connecting portions are respectively defined on both sides of the second supporting plate 220 along the sliding direction thereof.
  • a plurality of slide rails can also be provided on the pallet, and the spacer 300 can slide on the slide rail and can be fixed to the pallet at any position of the slide rail by bolts, etc., so as to realize the first The size of the wiring space and the second wiring space is adjusted.
  • the first connecting portion includes a first slot hole 211
  • the second connecting portion includes a second slot hole 221 ; the end of the first folded plate 310 away from the folded portion 320 is provided with two first limits.
  • the position block 311, the end of the second folding plate 330 away from the folding portion 320 is provided with two second limiting blocks 331; the first limiting block 311 is snapped into the first slot 211 to The movement of the first folding plate 310 and the first supporting plate 210 is restricted, and the second limiting block 331 is inserted into the second slot 221 to restrict the movement of the second folding plate 330 and the second supporting plate 220 .
  • the first slot holes 211 in each row are arranged at equal intervals, and the second slot holes 221 in each row are arranged at equal intervals.
  • the spacer 300 can be adjusted.
  • the higher the precision that is, the higher the adjustable precision of the first routing space and the second routing space;
  • the detachable connection between the support plate and the separator 300 is realized by the engaging structure of the first slot hole 211 and the first limit block 311 or the second slot hole 221 and the second limit block 331 .
  • the position adjustment of the partition member 300 is realized, and finally the purpose of adjusting the size of the first wiring space and the second wiring space is achieved.
  • the first limiting block 311 can not only limit the movement of the first supporting plate 210 and the first folding plate 310 , when sliding the first supporting plate 210 and the second supporting plate 220 to any of the first grooves
  • the first limiting block 311 can pass through the first slot hole 211 and be snapped into the second slot hole 221 at the same time, so as to realize the connection between the first support plate 210 and the second support plate 220 . lock. Therefore, there is no need to additionally provide a locking member to lock the first support plate 210 and the second support plate 220, and the structure is cleverly simplified without reducing the use effect.
  • the first end plate 110 and the second end plate 120 are each provided with two wire routing slots 121 .
  • the wire harness can pass through one cable routing slot 121 into the routing space, and then pass through the other cable routing slot 121; when multiple cable routing brackets are used together, the wire harness can pass through it.
  • the cable routing slot 121 of one cable routing bracket penetrates into it, and then passes through the cable routing slot holes of the other cable routing brackets.
  • the height of the bottommost end of the wire routing slot 121 is higher than or equal to the height of the upper surface of the support plate.
  • the surface of the wire harness When the wire harness is routed, the surface of the wire harness will also contact the bottom end of the wire routing slot 121 while in contact with the pallet, so that the wire routing slot 121 can share the force at the pallet and will not cause the pallet to be affected. If the force is too large, it will be damaged, thereby improving the service life of the entire cable support.
  • the first end plate 110 and the second end plate 120 both include: a main body 122, the wire routing slot 121 is opened on the main body 122, the support plate is fixedly connected with the main body 122; and the main body 122 is a vertically fixed fixing portion 123 , the fixing portion 123 is used for fixing the first end plate 110 or the second end plate 120 .
  • the fixing part 123 is fixed to the equipment such as the cabinet, so that the entire wiring support is fixed on the equipment such as the cabinet, and the fixing part 123 and the equipment such as the cabinet can be fixed by bolts or the like.
  • Both ends of the first end plate 110 and the second end plate 120 are provided with at least one connecting piece 400 , and the connecting piece 400 is used to connect a plurality of wiring supports.
  • the connector 400 connects a plurality of wire routing supports into a whole, and realizes the cooperative use of the plurality of wire routing supports, and the staff can flexibly assemble the plurality of wire routing supports to meet different working conditions.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Installation Of Indoor Wiring (AREA)
  • Rehabilitation Tools (AREA)

Abstract

本发明公开的可调节线槽宽度的走线支架,包括:第一端板与第二端板,所述第一端板与所述第二端板均开设有至少一个走线通槽;第一托板与第二托板可滑动连接;所述第一托板沿其滑动方向开设有若干第一连接部,第二托板沿其滑动方向开设有若干第二连接部;分隔件,所述分隔件包括翻折部、通过所述翻折部连接的第一翻折板和第二翻折板,所述第一翻折板与第二翻折板均可沿所述翻折部翻折;所述第一翻折板远离所述翻折部的一端可拆卸连接于任意所述第一连接部,所述第二翻折板远离所述翻折部的一端可拆卸连接于任意所述第二连接部。本发明中的滑动托板即可调节多个走线空间的大小,操作更方便,调节更简单。

Description

一种可调节线槽宽度的走线支架 技术领域
本发明涉及多线束的布线技术领域,尤其涉及一种可调节线槽宽度的走线支架。
背景技术
在具有较多线束的使用工况下,如机柜等设备中,容易造成线束混乱,无法整理的情况,因此人们常常通过线束支架实现线束的走线,使得线束的走线更规整,利于整理。
而现有的线束支架仅具有将多线束聚拢的功能,无法将多线束中的弱电线束和强电线束等进行分类,导致线束分类混乱;其次,多个走线空间的大小不可调节,导致空间利用率不高,当其中一个种类的线束远远超过其他种类的线束时,会出现其中一个走线空间拥挤,而其他走线空间走线很少的情况,使得空间占用更大,浪费资源。
发明内容
针对现有技术的上述不足,本发明所要解决的技术问题在于,提出一种可调节线槽宽度的走线支架,用于解决现有技术中线束支架无法对线束进行分类且走线空间的大小无法调节等问题。
本发明解决其技术问题采用的技术方案是一种可调节线槽宽度的走线支架,包括:
第一端板与第二端板,所述第一端板与所述第二端板均开设有至少一个走线通槽;
至少两个托板,包括与第一端板连接的第一托板、与第二端板连接的第二托板,所述第一托板与第二托板可滑动连接;所述第一托板沿其滑动方向开设有若干第一连接部,第二托板沿其滑动方向开设有若干第二连接部;
分隔件,所述分隔件包括翻折部、通过所述翻折部连接的第一翻折板和第二翻折板,所述第一翻折板与第二翻折板均可沿所述翻折部翻折;所述第一翻 折板远离所述翻折部的一端可拆卸连接于任意所述第一连接部,所述第二翻折板远离所述翻折部的一端可拆卸连接于任意所述第二连接部。
优选地,所述第一托板的两侧分别沿其滑动方向开设一排第一连接部,所述第二托板的两侧分别沿其滑动方向开设一排第二连接部。
优选地,所述第一连接部包括第一槽孔,所述第二连接部包括第二槽孔;所述第一翻折板远离所述翻折部的一端开设有两个第一限位块,所述第二翻折板远离所述翻折部的一端开设有两个第二限位块;所述第一限位块卡入所述第一槽孔以限制第一翻折板与第一托板的移动,所述第二限位块卡入所述第二槽孔以限制第二翻折板与第二托板的移动。
优选地,每排第一槽孔等间距布置,每排第二槽孔等间距布置。
优选地,当所述第一限位块穿过所述第一槽孔且与卡入第二槽孔时,可限制分隔件、第一托板、第二托板之间的移动。
优选地,所述第一端板与所述第二端板上均开设有两个走线通槽。
优选地,所述走线通槽的最底端的高度高于或等于所述托板的上表面的高度。
优选地,所述第一端板与第二端板均包括:主体,所述走线通槽开设于所述主体上,所述托板与所述主体固接;与所述主体垂直固定的固定部,所述固定部用于固定所述第一端板或第二端板。
优选地,所述第一端板和第二端板的两端均设有至少一个连接件,所述连接件用于连接多个走线支架。
与现有技术相比,本发明至少具有以下有益效果:
1、第一端板、第一托板及第一翻折板围成第一走线空间,第二端板、第二托板及第二翻折板围成第二走线空间。由于第一翻折板与第二翻折板可翻折,当第一托板与第二托板发生相对滑动时,会带动第一翻折板与第二翻折板翻折,进而改变第一翻折板与第二翻折板的夹角,使得第一走线空间与第二走线空间的大小得以改变。更具体的,当第一托板与第二托板向彼此远离的方向滑动,第一走线空间与第二走线空间同时增大;当第一托板与第二托板向彼此靠近的方向滑动时,第一走线空间与第二走线空间同时减小,实现了仅移动第 一托板或第二托板即可调节第一走线空间与第二走线空间的大小,操作更方便,调节更简单。
2、多个走线空间可调节,因而可将不同类别的线束归类至第一走线空间和第二走线空间,以实现对多种类线束的分类布置;同时,还可根据不同线束种类的数量不同,调节第一走线空间与第二走线空间的大小,使得多个走线空间的大小可根据线束的数量多少进行适应性的改变,进而实现无论在一个走线空间内的线束数量是多少,都可调节对应的走线空间的大小刚好容纳这些线束,使得线束在该走线空间内不具有可晃动的空间,最终起到对多线束进行限位的作用。
3、将分隔件设置为具有第一翻折板和第二翻折板且两翻折板之间可相互弯折。这样设置的好处在于:第一,只需调节对应一个翻折板在托板上的位置即可实现走线空间的调节,方便了调节时工作人员的操作;第二,当调节其中一个走线空间的大小时,另一个走线空间的大小的变化很小,实现了单个走线空间的单独调节;第三,工作人员也可根据实际使用需求,同时调节第一翻折板与第二翻折板在托板上的位置,即第一翻折板与第二翻折板的夹角保持不变,使得第一走线空间与第二走线空间的总和保持不变,以实现一个走线支架内可容纳线束的最大数量保持不变,使得该走线支架的使用方法更灵活;第四,第一翻折板、第二翻折板与托板三者之间固定后呈三角形设置,使得分隔件固定在托板后不会晃动,所形成的第一走线空间与第二走线空间更稳定,以此提高该走线支架的使用寿命。
4、走线通槽最底端的高度高于或等于托板的上表面的高度。在线束走线时,线束的表面在与托板接触的同时还会与走线通槽的底端接触,使得走线通槽可分担托板处的受力,不会导致托板因受力过大而损坏,进而提高整个走线支架的使用寿命。
附图说明
图1为实施例中走线支架的结构示意图;
图2为实施例中图1去除分隔件的结构示意图;
图3为实施例中分隔件的结构示意图;
图中:110、第一端板;120、第二端板;121、走线通槽;122、主体;123、固定部;
210、第一托板;211、第一槽孔;220、第二托板;221、第二槽孔;
300、分隔件;310、第一翻折板;311、第一限位块;320、翻折部;330、第二翻折板;331、第二限位块;
400、连接件。
具体实施方式
以下是本发明的具体实施例并结合附图,对本发明的技术方案作进一步的描述,但本发明并不限于这些实施例。
请参照图1-图3,本发明公开了一种可调节线槽宽度的走线支架,包括:
第一端板110与第二端板120,所述第一端板110与所述第二端板120均开设有至少一个走线通槽121;
至少两个托板,包括与第一端板110连接的第一托板210、与第二端板120连接的第二托板220,所述第一托板210与第二托板220可滑动连接;所述第一托板210沿其滑动方向开设有若干第一连接部,第二托板220沿其滑动方向开设有若干第二连接部;
分隔件300,所述分隔件300包括翻折部320、通过所述翻折部320连接的第一翻折板310和第二翻折板330,所述第一翻折板310与第二翻折板330均可沿所述翻折部320翻折;所述第一翻折板310远离所述翻折部320的一端可拆卸连接于任意所述第一连接部,所述第二翻折板330远离所述翻折部320的一端可拆卸连接于任意所述第二连接部。
具体的说,第一端板110、第一托板210及第一翻折板310围成第一走线空间,第二端板120、第二托板220及第二翻折板330围成第二走线空间。由于第一翻折板310与第二翻折板330可翻折,当第一托板210与第二托板220发生相对滑动时,会带动第一翻折板310与第二翻折板330翻折,进而改变第一翻折板310与第二翻折板330的夹角,使得第一走线空间与第二走线空间的大小得以改变。更具体的,当第一托板210与第二托板220向彼此远离的方向滑动,第一走线空间与第二走线空间同时增大;当第一托板210与第二托板 220向彼此靠近的方向滑动时,第一走线空间与第二走线空间同时减小,实现了仅移动第一托板210或第二托板220即可调节第一走线空间与第二走线空间的大小,操作更方便,调节更简单。
同时,在本实施例中,由于第一翻折板310可拆卸的连接于第一连接部,第二翻折板330可拆卸的连接于第二连接部。因而可将第一翻折板310安装在任意位置的第一连接部,以调节第一走线空间至所需大小;亦可将第二翻折板330安装在任意位置的第二连接部,以调节第二走线空间至所需大小。
结合使用情景来说,可将不同类别的线束归类至第一走线空间和第二走线空间,以实现对多种类线束的分类布置;同时,还可根据不同线束种类的数量不同,调节第一走线空间与第二走线空间的大小,使得多个走线空间的大小可根据线束的数量多少进行适应性的改变,进而实现无论在一个走线空间内的线束数量是多少,都可调节对应的走线空间的大小刚好容纳这些线束,使得线束在该走线空间内不具有可晃动的空间,最终起到对多线束进行限位的作用。
将分隔件300设置为具有第一翻折板310和第二翻折板330且两翻折板之间可相互弯折,使得第一走线空间与第二走线空间可单独调节。具体的说,当需要调节第一走线空间时,只需单独调节第一翻折板310与第一端板110之间的距离即可,无需调节第二翻折板330在托板上的位置,即改变了第一翻折板310与第二翻折板330之间的夹角大小。这样设置的好处在于:第一,只需调节对应一个翻折板在托板上的位置即可实现走线空间的调节,方便了调节时工作人员的操作;第二,当调节其中一个走线空间的大小时,另一个走线空间的大小的变化很小,实现了单个走线空间的单独调节;第三,工作人员也可根据实际使用需求,同时调节第一翻折板310与第二翻折板330在托板上的位置,即第一翻折板310与第二翻折板330的夹角保持不变,使得第一走线空间与第二走线空间的总和保持不变,以实现一个走线支架内可容纳线束的最大数量保持不变,使得该走线支架的使用方法更灵活;第四,第一翻折板310、第二翻折板330与托板三者之间固定后呈三角形设置,使得分隔件300固定在托板后不会晃动,所形成的第一走线空间与第二走线空间更稳定,以此提高该走线支架的使用寿命。
综上,本方案实现了多个走线空间的单独调节,多级调节,多种调节方式进行调节。
所述第一托板210的两侧分别沿其滑动方向开设一排第一连接部,所述第二托板220的两侧分别沿其滑动方向开设一排第二连接部。
需要说明的是,本方案也可在托板上设置若干滑轨,分隔件300可在该滑轨上滑动且可在滑轨的任意位置与托板采用螺栓等形式固定,以此实现第一走线空间与第二走线空间的大小调节。
所述第一连接部包括第一槽孔211,所述第二连接部包括第二槽孔221;所述第一翻折板310远离所述翻折部320的一端开设有两个第一限位块311,所述第二翻折板330远离所述翻折部320的一端开设有两个第二限位块331;所述第一限位块311卡入所述第一槽孔211以限制第一翻折板310与第一托板210的移动,所述第二限位块331卡入所述第二槽孔221以限制第二翻折板330与第二托板220的移动。
每排第一槽孔211等间距布置,每排第二槽孔221等间距布置。
需要说明的时,当同一排的第一槽孔211/第二槽孔221中的任意相邻两个第一槽孔211/第二槽孔221间的间距越小时,其分隔件300可调的精度越高,即第一走线空间与第二走线空间可调节的精度越高;当同一排第一槽孔211/第二槽孔221中的任意相邻两个槽孔间的间距越大时,其分隔件300可调的精度越低,即第一走线空间与第二走线空间可调节的精度越低。
本实施例中,通过第一槽孔211与第一限位块311或第二槽孔221与第二限位块331的卡合结构来实现托板与分隔件300之间的可拆卸连接,以此实现分隔件300的位置调节,最终达到第一走线空间与第二走线空间的大小调节的目的。
当所述第一限位块311穿过所述第一槽孔211且与卡入第二槽孔221时,可限制分隔件300、第一托板210、第二托板220之间的移动。
具体的说,第一限位块311不仅仅可起到限制第一托板210与第一翻折板310的移动,当滑动第一托板210与第二托板220至任一第一槽孔211与任一第二槽孔221重合时,第一限位块311可穿过第一槽孔211的同时卡入第二槽 孔221,实现第一托板210、第二托板220的锁止。因而无需另外设置锁止构件来锁止第一托板210与第二托板220,在不降低使用效果的同时巧妙了简化了结构。
所述第一端板110与所述第二端板120上均开设有两个走线通槽121。
当一个走线支架单独使用时,线束可从一个走线通槽121穿进走线空间,而后由另一个走线通槽121穿出;当多个走线支架配合使用时,线束可从其中一个走线支架的走线通槽121内穿进,而后由其他走线支架的走线槽孔穿出。
所述走线通槽121的最底端的高度高于或等于所述托板的上表面的高度。
线束走线时,线束的表面在与托板接触的同时还会与走线通槽121的底端接触,使得走线通槽121可分担托板处的受力,不会导致托板因受力过大而损坏,进而提高整个走线支架的使用寿命。
所述第一端板110与第二端板120均包括:主体122,所述走线通槽121开设于所述主体122上,所述托板与所述主体122固接;与所述主体122垂直固定的固定部123,所述固定部123用于固定所述第一端板110或第二端板120。
具体的说,固定部123与机柜等设备进行固定,实现将整个走线支架固定在机柜等设备上,固定部123与机柜等设备可通过螺栓等固定。
所述第一端板110和第二端板120的两端均设有至少一个连接件400,所述连接件400用于连接多个走线支架。
连接件400将多个走线支架连接成一体,实现了多个走线支架的配合使用,工作人员可灵活组装多个走线支架以满足不同的使用工况。
本文中所描述的具体实施例仅仅是对本发明精神作举例说明。本发明所属技术领域的技术人员可以对所描述的具体实施例做各种各样的修改或补充或采用类似的方式替代,但并不会偏离本发明的精神或者超越所附权利要求书所定义的范围。

Claims (9)

  1. 一种可调节线槽宽度的走线支架,其特征在于,包括:
    第一端板与第二端板,所述第一端板与所述第二端板均开设有至少一个走线通槽;
    至少两个托板,包括与第一端板连接的第一托板、与第二端板连接的第二托板,所述第一托板与第二托板可滑动连接;所述第一托板沿其滑动方向开设有若干第一连接部,第二托板沿其滑动方向开设有若干第二连接部;
    分隔件,所述分隔件包括翻折部、通过所述翻折部连接的第一翻折板和第二翻折板,所述第一翻折板与第二翻折板均可沿所述翻折部翻折;所述第一翻折板远离所述翻折部的一端可拆卸连接于任意所述第一连接部,所述第二翻折板远离所述翻折部的一端可拆卸连接于任意所述第二连接部。
  2. 根据权利要求1所述的一种可调节线槽宽度的走线支架,其特征在于,所述第一托板的两侧分别沿其滑动方向开设一排第一连接部,所述第二托板的两侧分别沿其滑动方向开设一排第二连接部。
  3. 根据权利要求2所述的一种可调节线槽宽度的走线支架,其特征在于,所述第一连接部包括第一槽孔,所述第二连接部包括第二槽孔;所述第一翻折板远离所述翻折部的一端开设有两个第一限位块,所述第二翻折板远离所述翻折部的一端开设有两个第二限位块;所述第一限位块卡入所述第一槽孔以限制第一翻折板与第一托板的移动,所述第二限位块卡入所述第二槽孔以限制第二翻折板与第二托板的移动。
  4. 根据权利要求3所述的一种可调节线槽宽度的走线支架,其特征在于,每排第一槽孔等间距布置,每排第二槽孔等间距布置。
  5. 根据权利要求3或4所述的一种可调节线槽宽度的走线支架,其特征在于,当所述第一限位块穿过所述第一槽孔且与卡入第二槽孔时,可限制分隔件、第一托板、第二托板之间的移动。
  6. 根据权利要求1所述的一种可调节线槽宽度的走线支架,其特征在于,所述第一端板与所述第二端板上均开设有两个走线通槽。
  7. 根据权利要求6所述的一种可调节线槽宽度的走线支架,其特征在于,所述走线通槽的最底端的高度高于或等于所述托板的上表面的高度。
  8. 根据权利要求1所述的一种可调节线槽宽度的走线支架,其特征在于,所述第一端板与第二端板均包括:主体,所述走线通槽开设于所述主体上,所述托板与所述主体固接;与所述主体垂直固定的固定部,所述固定部用于固定所述第一端板或第二端板。
  9. 根据权利要求1所述的一种可调节线槽宽度的走线支架,其特征在于,所述第一端板和第二端板的两端均设有至少一个连接件,所述连接件用于连接多个走线支架。
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