WO2019063029A1 - 一种线缆收纳装置 - Google Patents

一种线缆收纳装置 Download PDF

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Publication number
WO2019063029A1
WO2019063029A1 PCT/CN2018/118164 CN2018118164W WO2019063029A1 WO 2019063029 A1 WO2019063029 A1 WO 2019063029A1 CN 2018118164 W CN2018118164 W CN 2018118164W WO 2019063029 A1 WO2019063029 A1 WO 2019063029A1
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WO
WIPO (PCT)
Prior art keywords
cable
slot
shaped
corner
wire
Prior art date
Application number
PCT/CN2018/118164
Other languages
English (en)
French (fr)
Inventor
吴廷强
Original Assignee
绿灯实验室(深圳)科技有限公司
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
Priority claimed from CN201721291044.XU external-priority patent/CN207801373U/zh
Priority claimed from CN201710939188.XA external-priority patent/CN107658805A/zh
Application filed by 绿灯实验室(深圳)科技有限公司 filed Critical 绿灯实验室(深圳)科技有限公司
Publication of WO2019063029A1 publication Critical patent/WO2019063029A1/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

Definitions

  • the present invention relates to cable storage technology, and more particularly to a cable storage device.
  • each device needs to be connected to a power outlet to take power.
  • the TV also needs various signal transmission cables, which is the shortest connection device in the living room. Because the length of each line is different, and it is the standard of various manufacturers, it is difficult to put together, so that countless cables will appear messy, although there are some fixed cable devices on the market, but the need Mounting to the wall requires punching, cumbersome operation, high cost, and a device for accommodating and fixing the cable with a hose, but it is troublesome to install various wires into a relatively long hose, and even if it is installed Well, the appearance of the hose is equivalent to a very thick cable, and does not achieve the best effect of really hiding the cable, so it is necessary to provide a convenient installation, low cost, and can completely hide various cables.
  • Device is the appearance of the hose is equivalent to a very thick cable, and does not achieve the best effect of really hiding the cable, so it is necessary to provide a convenient installation, low cost, and can completely hide various cables.
  • the technical problem to be solved by the present invention is to provide a cable accommodating device capable of concealing a cable and being convenient to install.
  • an embodiment of the present invention provides a cable storage device including a plurality of storage wire slots, and a plurality of the storage wire grooves are sequentially spliced along a direction of the cable, and the storage wire grooves are formed in the storage line grooves.
  • the accommodating wire slot is formed with a loading port in the radial direction of the cable
  • the accommodating wire groove is formed with a communication port at an end portion along the axial direction of the cable, the communication port
  • the receiving port is connected to the inlet, and the receiving chambers of the plurality of receiving wire grooves are communicated through the communication port.
  • the cable storage device further includes a plurality of wire covers, the wire cover is connected to the storage wire slot, and the wire cover covers the loading port.
  • the line cover is provided with a line card for fixing the cable on the surface of the storage line slot; the line cover is fixedly connected with the attachment surface, and the line card is fixedly connected with the line cover or detachable The connection is directed toward the attachment surface, and the storage slot is fastened to the wire cover.
  • the line card has a bent shape, one end of which is fixedly connected to the line cover, and a gap is formed between the other end and the line cover, and a card slot is formed between the line card and the line cover.
  • the line card is L-shaped, one arm of the line card is fixedly connected to the line cover, and an end of the other arm is bent toward the line cover;
  • the line card has a circular arc shape.
  • the line cards on the wire cover are disposed in pairs, and two fixed connection points of the line cover and the line cover are respectively located at two sides of the line cover.
  • the wire cover is entirely made of a flexible material that can be bent.
  • the storage line groove is made of a flexible material that can be bent.
  • the storage line groove has a U-shaped, or L-shaped, or circular arc shape in a cross section perpendicular to the axial direction of the cable.
  • the receiving wire slot has a U-shaped cross section perpendicular to the axial direction of the cable, the U-shaped arms of the receiving wire slot are side plates, the middle portion is a bottom plate, the side plates and the side plate The bottom plate is plate-shaped, and the side plate is vertically fixed to the bottom plate, and the loading port is disposed opposite to the bottom plate.
  • the plurality of storage line slots include a standard wire groove, a short wire groove, a T-shaped wire trunking groove, a first corner wire groove, a second corner wire groove, a third corner wire groove, a retractable wire groove and a steering One or more combinations of wire grooves;
  • the two communication ports of the standard cable trough are respectively located at two ends of the standard cable trough in the axial direction of the cable;
  • the bottom plate and the side plates of the standard cable trough are all rectangular plates, and the length thereof The direction is the axial direction of the cable;
  • the communication port of the short-line slot is two, respectively located at two ends of the long-line slot in the axial direction of the cable; the bottom plate and the side plate of the short-line slot are both rectangular plates, and the length direction thereof is a line The axial direction of the cable; the length of the short groove is smaller than the length of the standard wire groove;
  • the receiving cavity, the loading inlet and the bottom plate of the T-shaped branching wire slot are all T-shaped, and the three arms of the T-shaped branching wire slot are U-shaped at the end faces in the axial direction perpendicular to the inner cable thereof, respectively.
  • the ends of the three arms of the T-shaped splitter slot are formed with communication ports;
  • the T-shaped splitter slots have three side plates, including one straight side plate and two L-shaped side plates.
  • the straight side plates extend along the straight sides of the bottom plate of the T-shaped branch line slot;
  • the two L-shaped side plates are oppositely disposed, and respectively along the two sides of the bottom plate of the T-shaped split line slot Extension at right angles;
  • the first corner slot is generally L-shaped, and the two arms are U-shaped at an end face perpendicular to the inner cable of the inner cable; the loading, bottom plate and side plate of the first corner slot are also L-shaped; two communication ports are respectively located at the ends of the two arms of the first corner slot; the two plate-shaped arms of the bottom plate of the first corner slot are at two intersecting planes.
  • the two side plates of the first corner trough are located at the L-shaped female corner of the bottom plate, and the two plate-shaped arms of the side plates of the first corner trough are located on the same plane;
  • the second corner trough is generally L-shaped, and the two end arms are U-shaped at an end face perpendicular to the inner cable of the inner cable; the second corner trough inlet, the bottom plate and the side plate are also L-shaped; two communication ports are respectively located at the ends of the two arms of the second corner slot; two plate-shaped arms of the bottom plate of the second corner slot are at two intersecting planes.
  • the two side plates of the second corner groove are located at the positive angle of the L shape of the bottom plate, and the two plate-shaped arms of the side plates of the second corner groove are located on the same plane;
  • the third corner slot is generally L-shaped, and the two arm ends are U-shaped at an end face perpendicular to the inner cable of the inner cable;
  • the third corner slot has a loading inlet, a bottom plate and a side panel Also having an L shape;
  • the communication ports are two, respectively located at the ends of the two arms of the third corner slot;
  • the two plate-shaped arms of the bottom plate of the third corner slot are at On the same plane;
  • both side plates of the second corner groove are located at the same plate surface of the bottom plate, and the two plate-shaped arms of the side plates of the third corner groove are located on two vertical planes ;
  • the length of the retractable cable slot in the axial direction of the cable can be telescopically adjusted;
  • the retractable cable slot includes a first sub-slot and a second sub-slot arranged along the axial direction of the cable, the first sub-segment
  • the cross section of the trunking and the second sub-slot in the axial direction perpendicular to the cable is U-shaped;
  • the first sub-groove has a sliding slot, and the sliding slot is perpendicular to the axial direction of the cable.
  • the U-shaped, the sliding groove is slidably disposed in the second sub-slot in the axial sliding direction of the cable;
  • One end of the steering trunk is provided with a steering plate that is parallel to the bottom plate of the steering trunk.
  • the wire cover is magnetically connected to the storage wire slot.
  • the cable accommodating device modularizes the cable accommodating device to form a plurality of splicing storage line slots, and the plurality of storage wire slots can be spliced according to the layout direction of the cables.
  • the accommodating cavities of the plurality of accommodating trunkings are sequentially connected to form a channel, and the cable is disposed in the channel, and the cable with the chaotic twist is fixed in the line groove, covering all the cables, and the curved line is turned into a straight line, so that the clutter is bent.
  • the cables are fixed and neat, the cables can be hidden, and the installation is convenient by splicing.
  • FIG. 1 is a schematic structural view of a standard cable trunk and a standard cable cover of a cable storage device according to a preferred embodiment of the present invention
  • FIG. 2 is a schematic perspective view of the standard wire slot and the standard wire cover of FIG. 1;
  • Figure 3 is a perspective view showing the three-dimensional structure of the standard wire groove and the standard wire cover of Figure 1;
  • FIG. 4 is a schematic view of a standard wire cover according to another embodiment of the present invention.
  • FIG. 5 is a schematic structural view of a short wire slot and a short wire cover of a cable accommodating device according to a preferred embodiment of the present invention
  • Figure 6 is a perspective view showing the structure of the short groove and the short wire cover of Figure 5;
  • FIG. 7 is a schematic structural view of a T-shaped wire trunking and a T-shaped wire cover of a cable accommodating device according to a preferred embodiment of the present invention.
  • Figure 8 is a perspective view showing the T-shaped branch line slot and the T-shaped line cover of Figure 7 at another angle;
  • FIG. 9 is a schematic structural view of a first corner trunk and a first corner cover of a cable storage device according to a preferred embodiment of the present invention.
  • Figure 10 is a perspective view showing the first corner line slot of Figure 9 and the first corner line cover at another angle;
  • FIG. 11 is a schematic structural view of a second corner trunking and a second corner cord cover of a cable storage device according to a preferred embodiment of the present invention.
  • Figure 12 is a perspective view showing the second corner of the second corner slot and the second corner cover of Figure 11;
  • FIG. 13 is a schematic structural view of a third corner slot and a third corner cover of the cable storage device according to a preferred embodiment of the present invention.
  • Figure 14 is a perspective view showing the third corner of the third corner slot and the third corner cover of Figure 13;
  • FIG. 15 is a schematic structural view of a retractable cable trunk and a retractable cable cover of a cable storage device according to a preferred embodiment of the present invention.
  • Figure 16 is a perspective view showing the three-dimensional structure of the retractable wire slot and the retractable wire cover of Figure 15;
  • FIG. 17 is a schematic structural view of a steering trunking and a steering line cover of a cable accommodating device according to a preferred embodiment of the present invention.
  • Figure 18 is a perspective view showing the steering trough and the steering line cover of Figure 17 at another angle;
  • 19 is a schematic structural view of a cable storage device according to a preferred embodiment of the present invention when applied to a cable layout;
  • Figure 20 is a schematic view showing the structure of the cable accommodating device of Figure 19 at another angle;
  • Figure 21 is an enlarged view of A in Figure 19;
  • Figure 22 is an enlarged view of AA in Figure 20;
  • Figure 23 is an enlarged view of B in Figure 19;
  • Figure 24 is an enlarged view of BB in Figure 20;
  • Figure 25 is an enlarged view of a portion C in Figure 19;
  • Figure 26 is an enlarged view of CC at Figure 20;
  • Figure 27 is an enlarged view of D in Figure 19;
  • Figure 28 is an enlarged view of the DD in Figure 20;
  • Figure 29 is an enlarged view of E in Figure 19;
  • Figure 30 is an enlarged view of the EE in Figure 20;
  • Figure 31 is an enlarged view of the portion F in Figure 19;
  • Figure 32 is an enlarged view of the FF in Figure 20
  • Fig. 33 is a view showing the configuration of another embodiment of the storage line groove of the cable accommodating device of the present invention.
  • a cable accommodating device provided by a preferred embodiment of the present invention includes a plurality of receiving wire slots and a plurality of wire covers; a receiving cavity for accommodating a cable is formed in the wire groove, and the receiving wire slot is perpendicular to the cable
  • the cross section in the axial direction is U-shaped, and an opening is formed at an opening thereof, and the receiving wire groove is formed with a communication port at an end portion along the axial direction of the cable, and the communication port is connected to the loading port And the accommodating chambers of the plurality of storage line slots communicate through the communication port.
  • the cable storage device is modularized to form a plurality of storage line slots that can be spliced, and the plurality of storage line slots can be sequentially spliced according to the layout direction of the cables, and the plurality of storage line slots are spliced and spliced.
  • the cavities are connected in sequence to form a channel, and the cable is disposed in the channel, and the cable with the chaotic twist is fixed in the line groove, covering all the cables, and the curved line is turned into a straight line, so that the messy and curved cable is fixed and can be hidden. Cables and splicing make installation easy.
  • the storage wire slot can be fixedly connected to the attachment surface, and the loading inlet is disposed away from the attachment surface.
  • the cable cover After the cable is inserted into the accommodating cavity, the cable cover is covered by the wire cover, and the cable can be stored, thereby The wiring is neat and tidy.
  • One wire cover can be connected to one storage wire slot.
  • one wire cover can also be connected to two storage wire slots at the same time, and one storage wire slot is simultaneously connected with two wire covers at the same time, thereby improving the storage wire slot.
  • the cable cover may be directly attached to the attachment surface without the wire cover, and the storage cable groove may be reversed to the wire groove toward the attachment surface of the storage wire groove. The cable is housed in the storage duct and makes the outside clean and tidy.
  • the standard wire slot 1, the long wire slot 2, the T-shaped wire trunking groove 3, the first corner wire groove 41, and the second corner wire groove 42 are included.
  • the third corner slot 43, the retractable slot 5 and the steering trunk, respectively, the cable storage device further includes a standard wire cover 91, a stub cover 92, a T-shaped wire cover 93, a first corner cover 941, and a first Two corner cover 942, a third corner cover 943, a retractable wire cover 95, and a steering wire cover 96.
  • the standard trunking 1, the long trunking 2, the T-shaped dividing trunking 3, the first corner trunking 41, the second corner trunking 42, the third corner trunking 43, the retractable trunking 5 and the steering trunking 6 are respectively A plurality of different embodiments of the storage trunking, a standard wire cover 91, a short wire cover 92, a T-shaped wire cover 93, a first corner wire cover 941, a second corner wire cover 942, a third corner wire cover 943, and a retractable wire
  • the cover 95 and the steering line cover 96 are respectively different embodiments of the wire cover, and one or several kinds of splicing may be selected during use, and the storage line slot and the wire cover used may be according to the cable.
  • the layout is set to go, and each of the storage line slots and the wire cover is described one by one.
  • the various storage line grooves have a U-shaped cross section perpendicular to the axial direction of the cable, and the U-shaped opening forms an inlet.
  • the section of the housing groove in the axial direction perpendicular to the cable may be L-shaped or arc-shaped, or a trapezoid having an open-ended bottom, and the like.
  • the end of the wire cover is provided with a snapping structure, and the snapping between the two wire covers is realized by the snapping structure.
  • a cable card is placed on the wire cover to secure the cable to the wire cover.
  • the standard trunking 1 is a storage duct of the middle section of the cable, which is a basic standard length.
  • the standard trunking 1 can be configured in a larger number to facilitate splicing into various lengths.
  • the length here refers to the dimension along the axial direction of the cable.
  • the standard trunking 1 may have a length of 10-20 cm.
  • a accommodating chamber 10 for accommodating a cable is formed in the standard trunking 1.
  • the standard trunking 1 has a U-shaped cross section perpendicular to the axial direction of the cable, and an opening 101 is formed at the opening thereof so as to be received into the accommodating chamber through the loading port 101. Load the cable in the middle.
  • the standard trunking 1 is formed with a communication port 102 at an end portion along the axial direction of the cable, and two communication ports 102 are respectively located at both ends of the standard cable groove 1 in the axial direction of the cable.
  • the communication port 102 is in communication with the loading port 101, and the accommodating chambers 10 of the plurality of standard modules are communicated through the communication port 102. After the cable is loaded into the accommodating cavity 10 through the loading port 101, the cable can be extended to the other through the communication port 102.
  • the accommodating chamber 10 of the wire trough is housed.
  • the two arms of the U-shaped standard slot 1 are the side plates 11, the middle portion is the bottom plate 12, the side plates 11 and the bottom plate 12 are all plate-shaped, and the side plates 11 are vertically fixed to the bottom plate 12, and the inlet 101 and the bottom plate are mounted. 12 relative setting to facilitate the processing preparation of the standard trunking 1.
  • the bottom plate 12 and the side plates 11 are each in the shape of a rectangular plate, and the longitudinal direction thereof is the axial direction of the cable.
  • An inlet 101 and a communication port 102 are formed between the two side plates 11.
  • the two communication ports 102 are respectively located at two ends of the side plate 11, and the loading port 101 is disposed opposite to the bottom plate 12.
  • the bottom plate 12 and the two side plates 11 may be integrally formed to facilitate processing. With the plate-like bottom plate 12, a fixed connection between the standard wire groove 1 and the attachment surface can be facilitated.
  • the loading port 101 of the standard trunking 1 is covered by a standard wire cover 91.
  • the standard wire cover 91 has a flat shape and its length can be made to coincide with the length of the standard wire groove 1 so as to completely cover the loading port 101 of the standard wire groove 1.
  • a standard line card 912 is provided on the surface of the standard wire cover 91 facing the standard wire slot 1 for fixing the cable to the standard wire cover 91.
  • the standard line card 912 is bent, one end of which is fixedly connected to the standard line cover 91, and the other end is provided with a gap between the standard line cover 91 to load the cable from the gap.
  • a card slot is formed between the whole of the standard line card 912 and the standard line cover 91, and the cable can be received in the card slot.
  • the standard line card 912 is L-shaped, one arm of the standard line card 912 is fixedly connected to the standard line cover 91, and the end of the other arm is bent toward the standard line cover 91 to reduce the standard line card 912.
  • the gap between the other end and the standard wire cover 91 prevents the cable from coming out of the gap.
  • the standard line card 912 may have an arc shape.
  • the standard line cards 912 on the standard line cover 91 are disposed in pairs, and the two fixed connection points of the pair of standard line cards 912 and the standard line cover 91 are respectively located at both sides of the standard line cover 91. After the cable is loaded, two standard line cards 912 are respectively located at both sides of the cable to clamp the cable.
  • the standard line cover 91 is provided with two pairs of standard line cards 912, that is, four standard line cards 912.
  • One end of the standard wire cover 91 is provided with a latching slot 915, and the other end is provided with a latching block 914.
  • the latching block 914 is configured to be engaged with the latching slot of the adjacent other cap to connect the two caps. together.
  • the snap groove 915 is a trapezoidal groove
  • the snap block 914 is a trapezoidal block shape.
  • the standard line card 912 is fixedly connected to the standard line cover 91.
  • the standard line card 912 is detachably connected to the standard line cover 91.
  • the standard line card 912 may be fixed.
  • the plug-in post is provided with a plug hole on the standard line cover 91, and the plug post is inserted into the plug hole, so that the detachable connection between the standard line card 912 and the standard line cover 91 can be realized.
  • the standard line card 91 can also be a circular tube.
  • the standard line card 912 can be set as a plurality of line cards of various diameter specifications to fit cables of various diameters, standard line cards 912 and standards of various specifications.
  • the detachable structure between the line covers 91 is the same.
  • the standard line cards 912 of different specifications can be selected and assembled into the slot according to different diameter cables; between the standard line card 912 and the standard line cover 91 It can be connected by other detachable structures such as buckles.
  • a protrusion 13 is disposed at an end of the side plate 11 away from the bottom plate 12.
  • the standard line cover 91 is provided with a groove 913, and the protrusion 13 is interference-fitted with the groove 913.
  • the groove 913 can be aligned with the projection 13 so that the projection 13 is inserted into the groove 913, thereby achieving the connection between the standard wire cover and the side plate 11.
  • the protrusions 13 may be cylindrical or square, and the corresponding grooves 913 may also be cylindrical or square.
  • the splicing between the standard wire cover 91 and the side plate 11 can be achieved by the cooperation structure of the hook and the card slot, or the direct connection between the standard wire cover 91 and the loading port 101 is directly matched. That is, the standard wire cover 91 is directly engaged between the two side plates 11.
  • one of the standard wire covers 91 and one of the standard wire slots may be connected together by magnetic connection.
  • the stub groove 2 is a storage line groove which is shorter than the length of the standard wire groove 1, and is used for mounting at a position where the wire distance is short or connecting two other storage wire grooves. It can be understood that the lengths of the standard trunking 1 and the short-line slot 2 refer to the distance between the two communication ports of the two.
  • the two arms of the U-shaped short groove 2 are the side plates 21, and the middle portion is the bottom plate 22.
  • the side plates 21 and the bottom plate 22 are both plate-shaped, and the side plates 21 are vertically fixed to the bottom plate 22
  • the loading port 201 is opposite to the bottom plate 22, and the communication port 202 is two, respectively located at the two ends of the short wire slot 2 in the axial direction of the cable; the bottom plate 22 and the side plate 21 of the short groove 2 are rectangular
  • the shape of the plate is the axial direction of the cable.
  • the stub groove 2 and the standard trunking 1 may be only differences in length dimension. In the specific implementation process, only the standard trunking 1 can be provided, and the short stub slot 2 can be formed through the standard trunking 1.
  • the stub groove 2 is correspondingly connected to the stub cover 92, and the stub cover 92 can cover the loading port of the stub groove 2, and the length of the stub cover 92 can be matched with the length of the stub groove 2 to completely cover the loading port of the stub groove 2.
  • the connection manner of the short-line slot 2 and the short-line cover 92 is the same as that of the standard cable slot 1 and the standard wire cover 91, and details are not described herein again.
  • the stub cover 92 is substantially identical in construction to the standard wire cover 91 except that the length of the stub cover 92 is short.
  • a cable card 922 is disposed on the short-line cover 92.
  • the structure of the line card 922 of the wire cover 92 can be the same as that of the line card 912 of the standard wire cover 91, and details are not described herein.
  • Both ends of the stub cover 92 are provided with a snap-fit structure.
  • one end of the stub cover 92 is provided with a latching slot 925, and the other end is provided with a latching block 924, and the latching block 924 is configured to be engaged with the latching slot of the adjacent another strip cover, so that two The wire covers are connected together.
  • the T-shaped branch line groove 3 has a T shape as a whole.
  • a T-shaped receiving cavity 30 for accommodating a cable is formed in the T-shaped branching slot 3, and the three arms of the T-shaped branching slot 3 are respectively U in an axial direction perpendicular to the internal cable thereof.
  • the U-shaped opening forms an inlet 301, and the inlet 301 is also T-shaped.
  • the ends of the three arms of the T-shaped branching slot 3 are each formed with a communication port 302, that is, three communication ports 302 to guide the cables to different directions.
  • the T-shaped splitter slot 3 includes a bottom plate 32 and a side plate.
  • the bottom plate 32 has a T shape, and the side plates are three, and include a straight side plate 31a and two L-shaped side plates 31b.
  • the straight side plate 31a is along the bottom plate 32.
  • Two L-shaped side plates 31b are disposed opposite each other and extend along two inner right-angled sides of the bottom plate 32, respectively.
  • the loading port 301 of the T-shaped branching slot 3 is covered by a T-shaped wire cover 93.
  • the T-shaped wire cover 93 has a flat plate shape as a whole, and its three arms respectively correspond to the three arms covering the T-shaped branching line groove 3.
  • the T-shaped wire slot 3 and the T-shaped wire cover 93 are connected to the groove 933 by an interference fit.
  • a cable card 932 is disposed on the T-shaped wire cover 93.
  • the wire card 932 is bent, one end of which is fixedly connected to the T-shaped wire cover 93, and the other end is provided with a gap between the T-shaped wire cover 93 to be loaded from the gap. Cable.
  • a card slot is formed between the entire line card 932 and the T-shaped wire cover 93, and the cable can be received in the card slot.
  • the line card 932 is L-shaped, one arm of the line card 932 is fixedly connected with the T-shaped line cover 93, and the end of the other arm is bent toward the T-shaped line cover 93 to reduce the line card 932.
  • a gap between one end and the T-shaped wire cover 93 prevents the cable from coming out of the gap.
  • the end of the T-shaped wire cover 93 is provided with a snap-fit structure to achieve a connection with other wire covers.
  • the end of the T-shaped wire cover 93 is provided with a snap groove 934 or a snap block 935.
  • both ends of the T-shaped wire cover 93 are provided with a snap groove 934, and the other end portion is provided with a snap block 935.
  • the T-shaped wire cover 93 may not be provided, and a T shape may be formed by splicing two or three short wire covers to cover the loading port of the T-shaped wire groove.
  • the first corner slot 41, the second corner slot 42 and the third corner slot 43 are used to implement a right-angled corner layout of the cable, wherein the first corner slot 41 is used to implement the cable in two mutually perpendicular planes.
  • the second corner slot 42 is used to realize a corner of the cable between two mutually perpendicular planes and a positive angle, and the third corner slot 43 is used to realize the cable on the same plane. Corner.
  • a receiving cavity 410 for accommodating a cable is formed in the first corner slot 41.
  • the first corner slot 41 is generally L-shaped, and the two arms are perpendicular to the inner line thereof.
  • the axial end face of the cable is U-shaped, and the U-shaped opening forms an inlet 4101, and the inlet 4101 of the first corner groove 41 is also L-shaped.
  • the bottom plate 412 and the side plate 411 of the first corner slot 41 are both L-shaped, and the two plate-shaped arms of the bottom plate 412 are on two intersecting planes; the two side plates 411 are both located in the L-shaped shade of the bottom plate 412.
  • the corners are such that the loading port 4101 is located at the L-shaped female corner of the first corner groove 41.
  • the two plate-shaped arms of the side plates 411 are located on the same plane. With the two arms of the bottom plate 412, it is possible to achieve a corner of the cable between two mutually perpendicular planes, such as the corner of the cable at the corner of the wall.
  • the loading port 4101 of the first corner slot 41 is covered by a first corner cover 941.
  • the first corner cover 941 is generally L-shaped, and has two vertically connected arms, a first corner line.
  • the two arms of the cover 941 are respectively connected to the two arms of the first corner slot 41, and the interference between the first corner cover 941 and the first corner slot 41 can be through the interference fit of the protrusion and the groove. connection.
  • Both ends of the first corner cover 941 are provided with a snap-fit structure. Specifically, one end of the first corner cover 941 is provided with a snap groove 9414, and the other end is provided with a snap block 9415 to facilitate corresponding connection with other wire covers.
  • a cable card 9412 is disposed on the surface of the first corner cover 941 facing the first corner slot 41 so as to fix the receiving cable.
  • the structural shape of the line card 9412 can be the same as that of the standard line cover 91, and no longer Narration.
  • a receiving cavity 420 for accommodating a cable is formed in the second corner slot 42.
  • the second corner slot 42 is generally L-shaped, and the two arms are perpendicular to the inner line thereof.
  • the axial end face of the cable is U-shaped, the U-shaped opening forms an inlet 4201, and the second corner groove 42 is also L-shaped.
  • the bottom plate 422 and the side plate 421 of the second corner groove 42 are both L-shaped, and the two plate-shaped arms of the bottom plate 422 are on two intersecting planes; the two side plates 421 are both located on the L-shaped yang of the bottom plate 422.
  • the corners are such that the loading port 4201 is located at the corner of the L-shape of the second corner groove 42.
  • the two plate-shaped arms of the side plates 421 are located on the same plane. With the two arms of the bottom plate 422, the angle of rotation of the cable between two mutually perpendicular planes, such as the corner of the cable at the corner of the wall, can be achieved.
  • the loading port 4201 of the second corner slot 42 is covered by a first corner cover 942.
  • the second corner cover 942 is generally L-shaped, having two vertically connected arms, and two branches of the second corner cover 942 The arms are respectively connected to the two arms of the second corner groove 42, and the second corner cover 942 and the second corner groove 42 are connected by an interference fit of the protrusion and the groove.
  • Both ends of the second corner cover 942 are provided with a snap-fit structure. Specifically, one end is provided with a snap groove 9422, and the other end is provided with a snap block 9425 so as to be connected with other wire covers.
  • a cable card 9422 is disposed on the surface of the second corner cover 942 facing the second corner slot 42 so as to fix the receiving cable.
  • the structural shape of the line card 9422 can be the same as that of the standard line cover 91, and no longer Narration.
  • a accommodating cavity 430 for accommodating a cable is formed in the third corner groove 43, and the third corner groove 43 is integrally L-shaped, and the two arms are respectively perpendicular to the axis of the internal cable thereof.
  • the upward end face is U-shaped, the U-shaped opening forms an inlet 4301, and the third opening slot 43 is also L-shaped.
  • Two communication ports 4302 are respectively connected to two ends of the loading inlet 4301.
  • the bottom plate 432 and the side plate 431 are both L-shaped, and the two plate-shaped arms of the bottom plate 432 are on two identical planes; the two side plates 431 are all located at the same plate surface of the bottom plate 432.
  • the two plate-shaped arms of the side plates 431 are located on two intersecting planes. With the two arms of the third corner slot 43, the corners of the cable on the same plane can be achieved.
  • the loading port 4201 of the third corner wire groove 43 is covered by a third corner wire cover 942, and the third corner wire cover 943 has an L-shaped flat plate as a whole, and has two vertically connected branches.
  • the two arms of the third corner cover 943 are respectively connected to the two arms of the third corner slot 43, and the third corner cover 943 and the third corner slot 43 can pass between the protrusion and the recess. The interference fit of the slots is connected.
  • Both ends of the third corner cover 943 are provided with a snap-fit structure. Specifically, one end is provided with a snap groove 9434, and the other end is provided with a snap block 9435 to facilitate corresponding connection with other wire covers.
  • a cable card 9432 is disposed on the surface of the third corner cover 943 facing the third corner slot 43 so as to fix the receiving cable.
  • the structural shape of the line card 9432 can be the same as that of the standard line cover 91, and no longer Narration.
  • a retractable slot 5 is formed with a receiving cavity for accommodating a cable.
  • the retractable slot 5 has a U-shaped cross section perpendicular to the axial direction of the cable, and an opening is formed at the opening to pass through.
  • the loading port loads the cable into the accommodating chamber 10.
  • the retractable cable groove 5 is formed with a communication port at an end portion along the axial direction of the cable, and two communication ports are respectively located at both ends of the standard wire groove 1 in the axial direction of the cable.
  • the communication port is connected to the loading port, and the receiving cavity of the retractable wire slot 5 communicates with the other receiving wire slot through the communication port. After the cable is loaded into the receiving cavity through the loading port, the cable can be extended to other storage through the communication port.
  • the retractable cable trunk 5 is mainly used for the length of the remaining cable cover which is not suitable for the length of the short module and the standard module, and therefore a module with a freely adjustable length is required to cover this position.
  • the retractable cable slot 5 includes a first sub-slot 51 and a second sub-slot 52 arranged along the axial direction of the cable, the first sub-slot 51 and the second The cross-section of the sub-groove 52 in the axial direction perpendicular to the cable is U-shaped.
  • the first sub-slot 51 and the second sub-slot 52 each have an inlet, and the inlets of the two are oriented the same.
  • the ends of the first sub-line groove 51 and the second sub-line groove 52 that face away from each other form two communication ports.
  • the first sub-slot 51 has a sliding groove 510.
  • the sliding groove 510 has a U-shaped cross section perpendicular to the axial direction of the cable.
  • the sliding groove 510 is slidably disposed in the second sub-slot 52 along the axial direction of the cable.
  • a first limiting mechanism is disposed between the sliding slot 510 and the second sub-slot 52 to facilitate a sliding fit between the sliding slot 510 and the second sub-slot 52.
  • the first limiting mechanism includes a first limiting block 531 and a first limiting slot 532.
  • the first limiting block 531 is slidably disposed in the first limiting slot 532, and the first limiting slot 532 is disposed along the axial direction of the cable.
  • the long strip shape has a closed shape at both ends, and the first limiting block 531 can be restrained from sliding in the first limiting slot 532 by the cooperation of the first limiting slot and the first limiting block 531, thereby avoiding the first strip.
  • the sub-slot is separated from the second sub-slot.
  • the first limiting block 531 is fixed on the first limiting slot 532, and the first limiting slot 532 is disposed on the second sub-groove 52.
  • the first limiting mechanism is two, symmetrically disposed at two sides of the sliding groove 510, and the stability of sliding between the sliding groove 510 and the second sub-line groove 52 can be ensured.
  • the loading port of the retractable cable trunk is covered by a retractable wire cover 95.
  • the retractable wire cover 95 includes a first sub-line cover 951 and a second sub-line cover 952.
  • the first sub-line cover 951 is fixedly connected to the first sub-line groove 51 for covering the loading port of the first sub-line groove 51
  • the second sub-line cover 952 is fixedly connected with the second sub-line groove 52 for covering the second The inlet of the sub-tank 52.
  • the first sub-line cover 951 has a sliding plate 9510, and the second sub-line cover 952 is provided with a sliding slot 9520.
  • the sliding plate 9510 is slidably disposed in the sliding groove 9520 along the axial direction of the cable.
  • the cross-section of the slide plate 9510 and the chute 9520 are trapezoidal to prevent the slide plate 9510 from coming out of the chute 9520 during the sliding process.
  • the cross-section of the slide plate 9510 and the chute 9520 may also be T. Shape or other shape.
  • a second limiting mechanism is disposed between the sliding plate 9510 and the second sub-line cover 952.
  • the second limiting mechanism includes a second limiting block 9541 and a second limiting slot 9542.
  • the second limiting block 9541 is fixed to the sliding plate 9510.
  • the second limiting slot 9542 is located in the sliding slot 9520, and the second limiting block 9541 is slidably disposed in the second limiting slot 9542 to ensure the stability of sliding between the sliding plate 9510 and the second sub-wire cover 952.
  • the second limiting slot 9542 may be disposed on the sliding plate 9510, and the second limiting block 9541 is disposed in the sliding slot 9520.
  • the end portion of the first sub-line cover 951 facing away from the second sub-line cover is provided with a snap-fit structure.
  • the first sub-line cover 951 is provided with a latching block 9514
  • the corresponding second sub-line cover 952 is provided with a latching slot 9515.
  • the latching slot 9515 is engaged with the latching block of the adjacent other line cover.
  • the second sub-line cover 952 may be provided with a snap block
  • the corresponding first sub-line cover 951 is provided with a snap groove.
  • the steering trunking 6 and the steering line cover 96 are used to change the orientation of the loading port, and the steering trunking 6 is coupled to the steering line cover 96 in a corresponding manner.
  • the main shape of the steering trunking 6 and the steering line cover 96 is similar to that of the standard trunking and the standard trunking, except that one end of the steering trunking 6 is provided with a deflecting plate 60 which is parallel to the bottom plate of the steering trunking 6. .
  • One end of the steering line cover 96 is provided with two slot plates 960, which are oppositely disposed to form a steering groove therebetween, and the two slot plates 960 and the steering line cover 96 are perpendicular to the cable axial direction.
  • the section is U-shaped.
  • the steering plate 60 is correspondingly connected to the two slot plates 960 to surround the cable.
  • the two slot plates 960 are provided with snap slots or snap blocks to connect the other cable covers.
  • the two slot plates 960 are provided with a latching slot 9615, and one end of the steering line cover 96 away from the slot plate 960 is provided with a snap-in block 9614 for correspondingly connecting other wire covers.
  • each line card is disposed on the line cover
  • the line cover can be installed first, the line cover is placed on the attachment surface, the cable is installed, the cable is fixed by the line card, and finally the storage line slot is installed. The cable is stored in the storage line slot.
  • a second corner line cover 942 and a second corner line groove 42 are disposed at the uppermost portion, so that a 90° turn of the cable at the corner of the wall and a lower card of the second corner cover 942 can be realized.
  • a short wire cover 92 is attached, and a short wire groove 2 is provided corresponding to the short wire cover 92.
  • a standard wire cover 91 is fastened under the short wire cover 92, and a standard wire slot 1 is disposed corresponding to the standard wire cover 91.
  • a plurality of standard wire covers 91 are sequentially snapped under the standard wire cover 91, and corresponding standards are set correspondingly. Trunking 1.
  • the bottom end of the standard wire cover 91 is engaged with a third corner wire cover 943, and a third corner wire groove 43 is correspondingly provided.
  • the cooperation of the third corner cover 943 with the third corner cover 943 can cause the cable to be bent by 90° from a vertically extending arrangement to a laterally extending arrangement.
  • a horizontal wire cover 91 is hooked to one end of the third corner wire cover 943, and a standard wire slot 1 is correspondingly disposed.
  • the other end of the standard wire cover 91 is snapped with another third corner wire cover 943, and is correspondingly provided with a third corner wire groove 43 so that the cable is bent by 90°, and is changed from a laterally extending arrangement to a vertically extending arrangement.
  • a T-shaped wire cover 93 is also engaged under the standard wire cover 91, and a T-shaped wire trunking groove 3 is provided correspondingly.
  • a retractable wire cover 95 is hooked to one end of the T-shaped wire cover 93, and a retractable wire slot 5 is correspondingly provided.
  • the other end of the retractable wire cover 95 is sequentially snapped with a standard wire cover 91, a short groove 2, and the like.
  • the bottom end of the T-shaped wire cover 93 is snapped with a plurality of standard wire covers 91, and correspondingly provided with the same number of standard wire slots 1.
  • a steering line cover 96 is further engaged under the standard line cover 91, and a corresponding steering line cover 96 is provided with a steering line slot 6, and the combination of the steering line cover 96 and the steering line slot 6 can be used.
  • the cable is changed from being fixed to an attachment surface to being fixed to another attachment surface that is perpendicular, but no cable turns are required.
  • the bottom end of the steering wire cover 96 is connected with a third corner wire cover 943, and is correspondingly provided with a third corner wire groove 43 so that the cable is bent by 90°, and is changed from a vertically extending arrangement to a laterally extending arrangement.
  • the other end of the third corner cover 943 is sequentially snapped with two standard wire covers 91, and two standard wire slots 1 are correspondingly disposed.
  • the other end of the standard wire cover 91 is hooked with a second corner wire cover 942, and correspondingly provided with a second corner wire groove 42 so that the cable can be bent at the corner of the wall.
  • the other end of the second corner cover 942 is connected with a standard wire cover 91, and is provided with a standard wire slot 1 corresponding thereto.
  • the other end of the standard wire cover 91 is hooked with a first corner cover and is provided with a first corner slot.
  • the other end of the first corner cover is sequentially connected with a standard wire cover 91 and a T-shaped wire cover 93, and correspondingly provided with a standard wire slot 1 and a T-shaped wire trunking groove 3.
  • the other ends of the T-shaped wire cover 93 are respectively connected with a short wire cover 92, and correspondingly provided with a short groove 2.
  • the cable storage device includes a branch storage line groove 8 and a branch line cover 99 in addition to the plurality of storage line grooves and the wire cover.
  • the structural shape of the branch receiving wire slot 8 and the branch wire cover 99 is the same as that of the storage wire slot and the wire cover. The difference is that the cross-sectional dimensions of the receiving cavity are different, and the receiving cavity of the branch receiving wire slot 8 has a small cross-sectional size for receiving Less or smaller diameter cables.
  • the branch storage line slot 8 and the branch line cover 99 can be divided into various forms in the same manner as the storage line slot and the line cover, so as to realize cornering and branching of the cable.
  • the stub cover 92 located on the upper and lower sides of the T-shaped wire cover 93 is hooked with the branch line cover 99, and is provided with a branch receiving wire slot 8 corresponding thereto.
  • the cables are received into the line cards of the respective line covers, and finally the storage line slots are installed, so that the cables are shielded in the storage line slots, thereby making the wiring clean and tidy.
  • each of the above-mentioned storage trunkings provided by the present invention can be spliced along the layout of the cable, covering all the cables, and the curved lines are straightened, so that the messy and curved cables are fixed and neat, and Easy to install.
  • each of the storage line grooves can be fixed to the attachment surface, and the adjacent two storage line grooves can abut each other to achieve splicing.
  • a locking structure may be disposed between two adjacent storage line slots, for example, a mating structure of the insertion hole and the plug post, and a cooperation of the hook and the card slot are provided.
  • the two storage ducts are firmly connected together to improve the structural strength of the overall cable storage device.
  • two adjacent storage slots are magnetically coupled.
  • a first magnetic member is disposed on one of the receiving wire grooves
  • a second magnetic member is disposed on the other of the receiving wire grooves
  • one of the receiving wire grooves is magnetically connected to the other of the receiving wires by the first magnetic member.
  • a second magnetic member on the slot.
  • the first magnetic member and the second magnetic member can both be magnets, or the first magnetic member is a magnet, and the second magnetic member is a ferromagnetic material.
  • the structure of the magnetic connection facilitates the disassembly and assembly of two adjacent wire slots.
  • the wire cover is fixedly connected to the attachment surface, and the line card can be fixedly connected or detachably connected to the wire cover, the cable is fixed to the wire cover, and the storage wire slot is reversed to the wire.
  • the cover allows the wire cover to be mounted to the loading port. Since the loading port faces the attachment surface, the size of the wire cover need not be the same as the size of the loading port, and only the connection between the wire cover and the storage wire slot can be realized.
  • the storage groove may be fixedly connected to the attachment surface, the attachment opening is directed away from the attachment surface, and the wire cover has a square plate shape, and the size thereof matches the loading port of the standard wire groove 1 and is utilized.
  • a plurality of wire covers can completely cover the loading ports of the plurality of storage wire slots.
  • the corners of the cable are realized by the first, second, and third corner trunks.
  • the receiving trunking may be made of a flexible material that is bendable as a whole, such as the aforementioned standard slot. 1 is made of a flexible material that can be bent, and the standard trunking 1 can be integrally bent to bend the standard trunking 1 into an L shape, thereby achieving the turning of the cable.
  • the wire cover can also be made of a flexible material that can be bent, so that the wire cover can be bent to form a first corner wire cover, a second corner wire cover 942 or a third corner wire cover 943 for carrying out with the storage wire slot. splice.
  • the loading port of the housing groove is covered by the wire cover, or the loading port is directed toward the attachment surface so that the cable is completely accommodated in the housing cavity without leaking.
  • the two side walls at the opening of the receiving slot can be snap-fitted to close the loading port.
  • the storage slot 1a is U-shaped, and the two opposite arms 11a are snap-fitted, and after the cable is fixed in the accommodating cavity of the accommodating slot, the accommodating slot 1a is accommodated.
  • the two arms 11a of the U shape are bent such that the tops of the two arms 11a are close to each other and are snap-fitted, thereby closing the loading port, so that the receiving wire slot 1a can completely block the cable, ensuring a simple shape.
  • the two arms 11a of the U-shaped receiving slot 1a can be curved into an arc shape, and the two can be buckled to form a smooth curved surface of the outer surface, so that the overall shape is simple and beautiful.
  • the storage slot is L-shaped
  • the first arm of the two arms is fixedly connected to the attachment surface, and the second arm is bent and connected to the first arm to store the cable in the first and the first Between the two arms.

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  • Architecture (AREA)
  • Civil Engineering (AREA)
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Abstract

本发明公开了一种线缆收纳装置,包括多个收纳线槽,多个收纳线槽沿线缆的走向依次拼接,收纳线槽内形成容纳线缆的容纳腔,收纳线槽在线缆径向上形成有装入口,收纳线槽在沿线缆轴向上的端部处形成有连通口,连通口与装入口相连接,且多个收纳线槽的容纳腔通过连通口连通。利用模块化的组合方式,将线缆收纳装置模块化,形成多个可以拼接的收纳线槽,多个收纳线槽可以根据线缆的布局走向依次进行拼接,拼接后多个收纳线槽的容纳腔依次连通形成通道,线缆设置在通道内,将弯曲混乱的线缆固定在线槽内,覆盖住所有线缆,将弯曲的线变成直线,使得杂乱弯曲的线缆被固定整齐,能够隐藏线缆,且通过拼接方式使得安装便捷。

Description

一种线缆收纳装置 技术领域
本发明涉及线缆收纳技术,尤其涉及一种线缆收纳装置。
背景技术
由于家里的新添各种大小的家电设备越来越多,每个设备都需要用线缆连接到电源插座取电,电视机还需要各种信号传输线缆,是客厅里最短连线的设备,由于每条线的长短都不一样,而且是各种厂家的标准,因此很难整理在一起,这样无数多的电缆就会显得杂乱,虽然市场上也有一些固定电缆的装置,但那种需要安装到墙体,需要打孔,操作繁琐,成本较高,还有一种是用软管来收纳和固定线缆的装置,但将各种线装进比较长的软管比较麻烦,而且即使安装好,软管的外观效果也相当于一条很粗的线缆,并没有达到真正隐藏线缆的最好效果,因此有必要提供一种安装便捷,成本低,且能完全隐藏各种线缆的装置。
发明内容
本发明所要解决的技术问题在于,提供一种线缆收纳装置,能够隐藏线缆,且安装便捷。
为了解决上述技术问题,本发明的实施例提供了一种线缆收纳装置,包括多个收纳线槽,多个所述收纳线槽沿线缆的走向依次拼接,所述收纳线槽内形成有用于容纳线缆的容纳腔,所述收纳线槽在线缆径向上形成有装入口,所述收纳线槽在沿所述线缆轴向上的端部处形成有连通口,所述连通口与所述装入口相连接,且多个所述收纳线槽的所述容纳腔通过所述连通口连通。
其中,所述线缆收纳装置还包括多个线盖,所述线盖与所述收纳线槽相连,且所述线盖覆盖于所述装入口。
其中,相邻两个所述线盖之间通过卡接结构连接。
其中,所述线盖上朝向所述收纳线槽的表面设置有用于固定线缆的线卡;所述线盖与附着面固定连接,所述线卡与所述线盖固定连接或者可拆卸式连接,所述装入口朝向附着面,所述收纳线槽扣合于所述线盖。
其中,所述线卡呈折弯状,其一端与所述线盖固定连接,另一端与所述线盖之间设有间隙,所述线卡整体与所述线盖之间形成卡槽。
其中,所述线卡呈L型,所述线卡的一支臂与所述线盖固定连接,另一支臂的端部朝向所述线盖弯曲;或者,
所述线卡为圆弧形。
其中,所述线盖上的所述线卡成对设置,一对所述线卡中,与所述线盖的两个固定连接处分别位于所述线盖的两侧处。
其中,所述线盖整体为能够弯曲的柔性材质制成。
其中,所述收纳线槽整体为能够弯曲的柔性材质制成。
其中,所述收纳线槽的装入口处的两个相对侧壁能够卡扣连接,以闭合所述装入口。
其中,所述收纳线槽在垂直于线缆轴向上的断面为U形、或L形、或圆弧形。
其中,所述收纳线槽在垂直于线缆轴向上的断面为U形,所述收纳线槽的U形的两个支臂为侧板、中间部分为底板,所述侧板及所述底板均为板状,且所述侧板垂直固定于所述底板,所述装入口与所述底板相对设置。
其中,多个所述收纳线槽中包含有标准线槽、短线槽、T形分线线槽、第一转角线槽、第二转角线槽、第三转角线槽、可伸缩线槽及转向线槽中一种或者两种以上组合;
所述标准线槽的所述连通口为两个,分别位于所述标准线槽在线缆轴向上的两端处;所述标准线槽的底板及侧板均为长方形板状,其长度方向为线缆的轴向;
所述短线槽的所述连通口为两个,分别位于所述长线槽在线缆轴向上的两端处;所述短线槽的底板及侧板均为长方形板状,其长度方向为线缆的轴向;所述短线槽的长度小于所述标准线槽的长度;
所述T形分线线槽的容纳腔、装入口及底板均为T形,T形分线线槽的三个支臂分别在垂直于其内部线缆的轴向上的端面为U形,T形分线线槽的三个支臂的端部均形成有连通口;所述T形分线线槽的侧板为三个,包括一个直边侧板及两个L形侧板,所述直边侧板沿所述T形分线线槽的底板的直边延伸设置;两个所述L形侧板相对设置,且分别沿所述T形分线线槽的底板的两个内直角边延伸设置;
所述第一转角线槽整体为L形,其两个支臂分别在垂直于其内部线缆的轴向上的端面为U形;第一转角线槽的装入口、底板及侧板亦为L形;连通口为两个,分别位于所述第一转角线槽的两个支臂的端部处;所述第一转角线槽的底板的两个板状的支臂处于两个相交平面上;所述第一转角线槽的两个侧板均位于其底板的L形的阴角处,所述第一转角线槽的侧板的两个板状的支臂位于同一平面上;
所述第二转角线槽整体为L形,其两个支臂分别在垂直于其内部线缆的轴向上的端面为U形;第二转角线槽的装入口、底板及侧板亦为L形;连通口为两个,分别位于所述第二转角线槽的两个支臂的端部处;所述第二转角线槽的底板的两个板状的支臂处于两个相交平面上;所述第二转角线槽的两个侧板均位于其底板的L形的阳角处,所述第二转角线槽的侧板的两个板状的支臂位于同一平面上;
所述第三转角线槽整体为L形,其两个支臂分别在垂直于其内部线缆的轴向上的端面为U形;所述第三转角线槽的装入口、底板及侧板亦为L形;所述连通口为两个,分别位于所述第三转角线槽的两个支臂的端部处;所述第三转角线槽的底板的两个板状的支臂处于同一平面上;所述第二转角线槽的两个侧板均位于其底板的同一板面处,所述第三转角线槽的侧板的两个板状的支臂位于两个垂直平面上;
所述可伸缩线槽在线缆轴向上的长度能够伸缩调节;所述可伸缩线槽包括沿线缆轴向排布的第一子线槽和第二子线槽,所述第一子线槽和第二子线槽的在垂直于线缆轴向上的断面均为U形;所述第一子线槽具有滑动槽,所述滑动槽在垂直于线缆轴向上的断面亦为U形,所述滑动槽沿线缆轴向滑动方向滑动设置于所述第二子线槽内;
所述转向线槽的一端设置有转向板,所述转向板平行于所述转向线槽的底板。
其中,相邻两个所述收纳线槽磁性连接。
其中,所述线盖与所述收纳线槽磁性连接。
本发明提供的线缆收纳装置,利用模块化的组合方式,将线缆收纳装置模块化,形成多个可以拼接的收纳线槽,多个收纳线槽可以根据线缆的布局走向依次进行拼接,拼接后多个收纳线槽的容纳腔依次连通形成通道,线缆设置在通道内,将弯曲混乱的线缆固定在线槽内,覆盖住所有线缆,将弯曲的线变成直线,使得杂乱弯曲的线缆被固定整齐,能够隐藏线缆,且通过拼接方式使得安装便捷。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明优选实施例提供的线缆收纳装置的标准线槽及标准线盖的结构示意图;
图2是图1中标准线槽及标准线盖的立体结构示意图;
图3是图1中标准线槽及标准线盖另一角度的立体结构示意图;
图4是本发明另一实施例提供的标准线盖的示意图;
图5是本发明优选实施例提供的线缆收纳装置的短线槽及短线盖的结构示意图;
图6是图5中短线槽及短线盖的立体结构示意图;
图7是本发明优选实施例提供的线缆收纳装置的T形分线线槽及T形线盖的结构示意图;
图8是图7中T形分线线槽及T形线盖另一角度的立体结构示意图;
图9是本发明优选实施例提供的线缆收纳装置的第一转角线槽及第一转角线盖的结构示意图;
图10是图9中第一转角线槽及第一转角线盖另一角度的立体结构示意图;
图11是本发明优选实施例提供的线缆收纳装置的第二转角线槽及第二转角线盖的结构示意图;
图12是图11中第二转角线槽及第二转角线盖另一角度的立体结构示意图;
图13是本发明优选实施例提供的线缆收纳装置的第三转角线槽及第三转角线盖的结构示意图;
图14是图13中第三转角线槽及第三转角线盖另一角度的立体结构示意图;
图15是本发明优选实施例提供的线缆收纳装置的可伸缩线槽及可伸缩线盖的结构示意图;
图16是图15中可伸缩线槽及可伸缩线盖另一角度的立体结构示意图;
图17是本发明优选实施例提供的线缆收纳装置的转向线槽及转向线盖的结构示意图;
图18是图17中转向线槽及转向线盖另一角度的立体结构示意图;
图19是本发明优选实施例提供的线缆收纳装置应用于一种线缆布局中时的结构示意图;
图20是图19中线缆收纳装置另一角度的结构示意图;
图21是图19中的A处放大图;
图22是图20中的AA处放大图;
图23是图19中的B处放大图;
图24是图20中的BB处放大图;
图25是图19中的C处放大图;
图26是图20中的CC处放大图;
图27是图19中的D处放大图;
图28是图20中的DD处放大图;
图29是图19中的E处放大图;
图30是图20中的EE处放大图;
图31是图19中的F处放大图;
图32是图20中的FF处放大图
图33是本发明中线缆收纳装置的收纳线槽另一实施例的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述。
本发明中优选实施例提供的一种线缆收纳装置,包括多个收纳线槽和多个线盖;线槽内形成有用于容纳线缆的容纳腔,所述收纳线槽在垂直于线缆轴向上的断面为U形,其开口处形成装入口,所述收纳线槽在沿所述线缆轴向上的端部处形成有连通口,所述连通口与所述装入口相连通,且多个所述收纳线槽的所述容纳腔通过所述连通口连通。
利用模块化的组合方式,将线缆收纳装置模块化,形成多个可以拼接的收纳线槽,多个收纳线槽可以根据线缆的布局走向依次进行拼接,拼接后多个收纳线槽的容纳腔依次连通形成通道,线缆设置在通道内,将弯曲混乱的线缆固定在线槽内,覆盖住所有线缆,将弯曲的线变成直线,使得杂乱弯曲的线缆被固定整齐,能够隐藏线缆,且通过拼接方式使得安装便捷。收纳线槽可以与附着面固定连接,装入口朝向远离附着面的方向设置,线缆装入到容纳腔后,再通过线盖将线槽的装入口覆盖,可以将线缆进行收纳,从而使得布线整洁。一个线盖可以连接于一个收纳线槽,在其他实施方式中,一个线盖也可以同时连接于两个收纳线槽,并且一个收纳线槽同时与两个线盖同时相连,可以提高收纳线槽之间的连接强度。此处,在其他实施方式中,也可以不设置线盖,将线缆直接固定于附着面,再使收纳线槽的装入口朝向附着面将收纳线槽倒扣于线槽,从而可以将线缆收纳在收纳线槽中,并使得外部整洁。
在本发明实施例提供的线缆收纳装置的一种具体布局方式中,包括标准线槽1、长线槽2、T形分线线槽3、第一转角线槽41、第二转角线槽42、第三转角线槽43、可伸缩线槽5及转向线槽,相应地,线缆收纳装置还包括标准线盖91、短线盖92、T形线盖93、第一转角线盖941、第二转角线盖942、第三转角线盖943、可伸缩线盖95、及转向线盖96。
标准线槽1、长线槽2、T形分线线槽3、第一转角线槽41、第二转角线槽42、第三转角线槽43、可伸缩线槽5及转向线槽6分别是收纳线槽的多个不同具体实施方式,标准 线盖91、短线盖92、T形线盖93、第一转角线盖941、第二转角线盖942、第三转角线盖943、可伸缩线盖95、及转向线盖96分别是线盖的多个不同具体实施方式,在使用过程中可以选择其中一种或若干种进行拼接,具体所用到的收纳线槽及线盖可以根据线缆的布局走向进行设置,以下对各个收纳线槽及线盖进行逐一描述。
在本实施例中,各种收纳线槽在垂直于线缆轴向上的断面均为U形,U形的开口处形成装入口。此处,在其他实施方式中,收纳线槽在垂直于线缆轴向上的断面还可以为L形或圆弧形,或者一底边为开口状的梯形,等等。线盖的端部设置有卡接结构,通过卡接结构实现相连两个线盖之间的卡接。线盖上设置有线卡,以便将线缆固定至线盖上。
如图1至图3所示,标准线槽1为线缆中段的收纳线槽,为基本的标准长度。标准线槽1可以配置较多的数量,以便于拼接成各种长度。此处长度是指沿线缆轴向的尺寸。作为优选,标准线槽1的长度可以为10-20cm。
标准线槽1内形成有用于容纳线缆的容纳腔10,标准线槽1在垂直于线缆轴向上的断面为U形,其开口处形成装入口101,以便通过装入口101向容纳腔中装入线缆。标准线槽1在沿线缆轴向上的端部处形成有连通口102,连通口102为两个,分别位于标准线槽1在线缆轴向上的两端处。连通口102与装入口101相连通,且多个标准模块的容纳腔10通过连通口102连通,线缆通过装入口101装入到容纳腔10中后,线缆可以通过连通口102延伸至其他收纳线槽的容纳腔10中。
标准线槽1的U形的两个支臂为侧板11,其中间部分为底板12,侧板11及底板12均为板状,且侧板11垂直固定于底板12,装入口101与底板12相对设置,以便于标准线槽1的加工制备。进一步,底板12及侧板11均为长方形板状,其长度方向为线缆的轴向。两个侧板11之间形成装入口101及连通口102,两个连通口102分别位于侧板11的两端,装入口101与底板12相对设置。底板12与两个侧板11可以为一体成型,以便于加工制备。利用板状的底板12,可以方便标准线槽1与附着面之间的固定连接。
标准线槽1的装入口101通过标准线盖91覆盖。标准线盖91为平板状,其长度可以与标准线槽1的长度一致,以便完整覆盖标准线槽1的装入口101。标准线盖91上朝向标准线槽1的表面设置有标准线卡912,用于将线缆固定在标准线盖91上。标准线卡912呈折弯状,其一端与标准线盖91固定连接,另一端与标准线盖91之间设有间隙,以从该间隙装入线缆。标准线卡912整体与标准线盖91之间形成卡槽,线缆可以收容在该卡槽中。
本实施里中,标准线卡912呈L型,标准线卡912的一支臂与标准线盖91固定连接,另一支臂的端部朝向标准线盖91弯曲,以减小标准线卡912另一端与标准线盖91之间的间隙,避免线缆从该间隙中脱出。此处,在其他实施方式中,如图4所示,标准线卡912也可以为圆弧状。
进一步,标准线盖91上的标准线卡912成对设置,一对标准线卡912中,与标准线盖91的两个固定连接处分别位于标准线盖91的两侧处。在装入线缆后,两个标准线卡912分别位于线缆的两侧处,以便将线缆夹持固定。本实施例中,标准线盖91上设置有两对标准线卡912,即四个标准线卡912。
标准线盖91的一端设置有卡接槽915、另一端设置有卡接块914,卡接块914用于与相邻另一线盖的卡接槽对应卡接,以使两个线盖连接在一起。本实施例中,卡接槽915为 梯形槽,卡接块914为梯形块状,二者相连后能使两个线盖固定在一起。
本实施例中,标准线卡912与标准线盖91固定连接,此处,作为另外的实施方式,标准线卡912可拆卸地连接于标准线盖91,例如,标准线卡912上可以固定有插接柱,标准线盖91上设置插接孔,插接柱插接于插接孔,可以实现标准线卡912与标准线盖91的可拆卸式连接。标准线卡91也可以为圆管状,此时,标准线卡912可以设置为多种直径规格的多个线卡,以适配各种直径的线缆,各种规格的标准线卡912与标准线盖91之间的可拆卸结构均相同,在安装过程中,可以根据不同直径的线缆选择不同规格的标准线卡912装配至线槽中;标准线卡912与标准线盖91之间还可以通过卡扣等其他可拆卸式结构进行连接。
如图2及图3所示所示,侧板11上远离底板12的端部处设置有凸起13,标准线盖91上设置有凹槽913,凸起13与凹槽913过盈配合,在进行装配时,可以将凹槽913对准凸起13,使得凸起13插入到凹槽913中,从而实现标准线盖与侧板11之间的连接。凸起13可以为圆柱形或方柱形,相应凹槽913亦可以为圆柱形或方柱形。此处,在其他实施方式中,标准线盖91与侧板11之间还可以通过卡勾与卡槽的配合结构实现拼接,或者,标准线盖91与装入口101之间直接为过盈配合,即标准线盖91直接卡接在两个侧板11之间。当然,在其它实施例中,一个所述标准线盖91与一个标准线槽还可以通过磁性连接的方式连接在一起。
如图5及图6所示所示,短线槽2是相对标准线槽1长度较短之间的收纳线槽,用于走线距离较短的位置安装、或者连接两个其他收纳线槽。可以理解的,标准线槽1与短线槽2的长度是指自身两个连通口之间的距离。短线槽2的U形的两个支臂为侧板21、中间部分为底板22,所述侧板21及所述底板22均为板状,且所述侧板21垂直固定于所述底板22,所述装入口201与所述底板22相对设置,连通口202为两个,分别位于短线槽2在线缆轴向上的两端处;短线槽2的底板22及侧板21均为长方形板状,其长度方向为线缆的轴向。短线槽2与标准线槽1可以仅仅是长度尺寸的区别。具体实施过程中,可以只配备标准线槽1,通过标准线槽1形成较短的短线槽2。
短线槽2与短线盖92对应连接,短线盖92能够覆盖短线槽2的装入口,短线盖92的长度可以与短线槽2的长度相匹配,以完整覆盖短线槽2的装入口。短线槽2与短线盖92的连接方式同标准线槽1与标准线盖91的连接方式,此处不再赘述。短线盖92与标准线盖91的结构大致相同,区别在于短线盖92的长度较短。短线盖92上设置有线卡922,线盖92的线卡922的结构可以与标准线盖91的线卡912的结构相同,此处不再赘述。
短线盖92的两端设置有卡接结构。本实施例中,短线盖92的一端设置有卡接槽925、另一端设置有卡接块924,卡接块924用于与相邻另一线盖的卡接槽对应卡接,以使两个线盖连接在一起。
如图7及图8所示,T形分线线槽3整体为T形。T形分线线槽3内形成有用于容纳线缆的T形的容纳腔30,T形分线线槽3的三个支臂分别在垂直于其内部线缆的轴向上的端面为U形,U形的开口处形成装入口301,装入口301亦为T形。T形分线线槽3的三个支臂的端部均形成有连通口302,即连通口302为三个,以将线缆引导至不同方向。T形分线线槽3包括底板32及侧板,底板32为T形,侧板为三个,包括一个直边侧板31a及 两个L形侧板31b,直边侧板31a沿底板32的直边延伸设置。两个L形侧板31b相对设置,且分别沿底板32的两个内直角边延伸设置。
T形分线线槽3的装入口301通过T形线盖93覆盖。T形线盖93整体为平板状,其三个支臂分别对应覆盖于T形分线线槽3的三个支臂。T形分线线槽3与T形线盖93通过凸起33与凹槽933过盈配合连接。
T形线盖93上设置有线卡932,线卡932呈折弯状,其一端与T形线盖93固定连接,另一端与T形线盖93之间设有间隙,以从该间隙装入线缆。线卡932整体与T形线盖93之间形成卡槽,线缆可以收容在该卡槽中。本实施里中,线卡932呈L型,线卡932的一支臂与T形线盖93固定连接,另一支臂的端部朝向T形线盖93弯曲,以减小线卡932另一端与T形线盖93之间的间隙,避免线缆从该间隙中脱出。
T形线盖93的端部设置有卡接结构,以实现与其他线盖之间的连接。具体的,T形线盖93的端部设置有卡接槽934或卡接块935。本实施例中,T形线盖93的两个端部均设置有卡接槽934,另一端部设置有卡接块935。
此处,也可以不设置T形线盖93,通过两个或三个短线盖拼接形成T形,以覆盖T形线槽的装入口。
第一转角线槽41、第二转角线槽42及第三转角线槽43用于实现线缆的直角拐弯布局,其中,第一转角线槽41用于实现线缆在两个相互垂直平面之间且为阴角的转角,第二转角线槽42用于实现线缆在两个相互垂直平面之间且为阳角的转角,第三转角线槽43用于实现线缆在同一平面上的转角。
如图9及图10所示,第一转角线槽41内形成有用于容纳线缆的容纳腔410,第一转角线槽41整体为L形,其两个支臂分别在垂直于其内部线缆的轴向上的端面为U形,U形的开口处形成装入口4101,第一转角线槽41的装入口4101亦为L形。连通口4102为两个,分别位于第一转角线槽41的两个支臂的端部处。装入口4101的两端分别连接两个连通口4102。第一转角线槽41的底板412及侧板411均为L形,且底板412的两个板状的支臂处于两个相交平面上;两个侧板411均位于底板412的L形的阴角处,以使装入口4101位于第一转角线槽41的L形的阴角处。侧板411的两个板状的支臂位于同一平面上。利用底板412的两个支臂,可以实现线缆在两个相互垂直平面之间的转角,例如线缆在墙阴角处的转角。
如图2所示,第一转角线槽41的装入口4101通过第一转角线盖941覆盖,第一转角线盖941整体为L型,其具有两个垂直连接的支臂,第一转角线盖941的两个支臂分别与第一转角线槽41的两个支臂对应连接,第一转角线盖941与第一转角线槽41之间可以通过凸起和凹槽的过盈配合相连接。
第一转角线盖941的两端设置有卡接结构。具体地,第一转角线盖941的一端设置有卡接槽9414,另一端设置有卡接块9415,以便于与其他线盖对应连接。
第一转角线盖941上朝向第一转角线槽41的表面设置有线卡9412,以便于固定收容线缆,线卡9412的结构形状可以与前述标准线盖91的线卡相同,此处不再赘述。
如图11及图12所示,第二转角线槽42内形成有用于容纳线缆的容纳腔420,第二转角线槽42整体为L形,其两个支臂分别在垂直于其内部线缆的轴向上的端面为U形,U 形的开口处形成装入口4201,第二转角线槽42的装入口4201亦为L形。连通口4202为两个,分别位于第二转角线槽42的两个支臂的端部处。装入口4201的两端分别连接两个连通口4202。第二转角线槽42的底板422及侧板421均为L形,且底板422的两个板状的支臂处于两个相交平面上;两个侧板421均位于底板422的L形的阳角处,以使装入口4201位于第二转角线槽42的L形的阳角处。侧板421的两个板状的支臂位于同一平面上。利用底板422的两个支臂,可以实现线缆在两个相互垂直平面之间的转角,例如线缆在墙阳角处的转角。
第二转角线槽42的装入口4201通过第一转角线盖942覆盖,第二转角线盖942整体为L型,其具有两个垂直连接的支臂,第二转角线盖942的两个支臂分别与第二转角线槽42的两个支臂对应连接,第二转角线盖942与第二转角线槽42之间可以通过凸起和凹槽的过盈配合相连接。
第二转角线盖942的两端设置有卡接结构。具体地,其一端设置有卡接槽9424,另一端设置有卡接块9425,以便于与其他线盖对应连接。
第二转角线盖942上朝向第二转角线槽42的表面设置有线卡9422,以便于固定收容线缆,线卡9422的结构形状可以与前述标准线盖91的线卡相同,此处不再赘述。如图10所示,第三转角线槽43内形成有用于容纳线缆的容纳腔430,第三转角线槽43整体为L形,其两个支臂分别在垂直于其内部线缆的轴向上的端面为U形,U形的开口处形成装入口4301,第三转角线槽43的装入口4301亦为L形。连通口4302为两个,分别位于第三转角线槽43的两个支臂的端部处。装入口4301的两端分别连接两个连通口4302。底板432及侧板431均为L形,且底板432的两个板状的支臂处于两个同一平面上;两个侧板431均位于底板432的同一板面处。侧板431的两个板状的支臂位于两个相交平面上。利用第三转角线槽43的两个支臂,可以实现线缆在同一个平面上的转角。
如图13及图14所示,第三转角线槽43的装入口4201通过第三转角线盖942覆盖,第三转角线盖943整体为L型的平板状,其具有两个垂直连接的支臂,第三转角线盖943的两个支臂分别与第三转角线槽43的两个支臂对应连接,第三转角线盖943与第三转角线槽43之间可以通过凸起和凹槽的过盈配合相连接。
第三转角线盖943的两端设置有卡接结构。具体地,其一端设置有卡接槽9434,另一端设置有卡接块9435,以便于与其他线盖对应连接。
第三转角线盖943上朝向第三转角线槽43的表面设置有线卡9432,以便于固定收容线缆,线卡9432的结构形状可以与前述标准线盖91的线卡相同,此处不再赘述。如图11所示,可伸缩线槽5内形成有用于容纳线缆的容纳腔,可伸缩线槽5在垂直于线缆轴向上的断面为U形,其开口处形成装入口,以便通过装入口向容纳腔10中装入线缆。可伸缩线槽5在沿线缆轴向上的端部处形成有连通口,连通口为两个,分别位于标准线槽1在线缆轴向上的两端处。连通口与装入口相连通,且可伸缩线槽5的容纳腔通过连通口与其他收纳线槽连通,线缆通过装入口装入到容纳腔中后,线缆可以通过连通口延伸至其他收纳线槽的容纳腔中。
如图15及图16所示,可伸缩线槽5主要用于线缆剩余覆盖长度不适合短模块和标准模块的长度,因此需要一个可以自由调节长度的模块来覆盖这个位置。
在一种可伸缩线槽的具体实施方式中,可伸缩线槽5包括沿线缆轴向排布的第一子线槽51和第二子线槽52,第一子线槽51和第二子线槽52的在垂直于线缆轴向上的断面均为U形。第一子线槽51和第二子线槽52分别具有装入口,且二者的装入口朝向相同。第一子线槽51与第二子线槽52二者相互背离的端部形成两个连通口。
第一子线槽51具有滑动槽510,滑动槽510在垂直于线缆轴向上的断面亦为U形,滑动槽510沿线缆轴向滑动方向滑动设置于第二子线槽52内,利用滑动槽510与第二子线槽52的滑动配合,可以改变第一子线槽51与第二子线槽52的整体长度,以适应覆盖相应长度的线缆。
滑动槽510与第二子线槽52之间设置有第一限位机构,以利于滑动槽510与第二子线槽52之间的滑动配合。第一限位机构包括第一限位块531及第一限位槽532,第一限位块531滑动设置于第一限位槽532中,第一限位槽532为沿线缆轴向设置的长条形,其两端为闭合状,利用第一限位槽和第一限位块531的配合,可以限制第一限位块531在第一限位槽532内滑动,从而避免第一子线槽与第二子线槽相分离。本实施例中,第一限位块531固定在第一限位槽532上,第一限位槽532设置在第二子线槽52上。第一限位机构为两个,对称设置在滑动槽510的两侧处,可以保证滑动槽510与第二子线槽52之间滑动的稳定性。
可伸缩线槽的装入口通过可伸缩线盖95覆盖。可伸缩线盖95包括第一子线盖951和第二子线盖952。第一子线盖951与第一子线槽51固定连接,用于覆盖第一子线槽51的装入口,第二子线盖952与第二子线槽52固定连接,用于覆盖第二子线槽52的装入口。
第一子线盖951具有滑板9510,第二子线盖952上设置有滑槽9520,滑板9510沿线缆轴向滑动设置于滑槽9520中。滑板9510及滑槽9520的横截面均为梯形,以避免滑板9510在滑动过程中从滑槽9520中脱出,此处在其他实施方式中,滑板9510及滑槽9520的横截面也可以均为T形或其他形状。
滑板9510与第二子线盖952之间设置有第二限位机构,第二限位机构包括第二限位块9541和第二限位槽9542,第二限位块9541固定于滑板9510,第二限位槽9542位于滑槽9520之中,第二限位块9541滑动设置于第二限位槽9542中,以保证滑板9510与第二子线盖952之间滑动的稳定性。此处,在其他实施方式中,也可以是,第二限位槽9542设置在滑板9510上,第二限位块9541设置在滑槽9520中。
第一子线盖951与第二子线盖相背离的端部设置有卡接结构。具体地,第一子线盖951上设置有卡接块9514,相应第二子线盖952上设置有卡接槽9515,卡接槽9515与相邻其他线盖的卡接块相配合卡接。此处,在其他实施方式中,也可以是,第二子线盖952上设置有卡接块,相应第一子线盖951上设置有卡接槽。
如图17及图18所示,转向线槽6及转向线盖96用于改变装入口的朝向,转向线槽6与转向线盖96对应配合连接。转向线槽6与转向线盖96的主体形状与标准线槽及标准线盖相似,不同之处在于,转向线槽6的一端设置有转向板60,转向板60平行于转向线槽6的底板。转向线盖96的一端设置有两个槽板960,两个槽板960相对设置,以在二者之间形成转向槽,两个槽板960与转向线盖96在垂直于线缆轴向上的断面为U形。转向板60与两个槽板960对应连接,以包围线缆。
两个槽板960上均设置有卡接槽或卡接块,以对应连接其他线盖。本实施例中,两个槽板960上均设置有卡接槽9615,转向线盖96上远离槽板960的一端设置有卡接块9614,以对应连接其他线盖。
在具体实施过程中,由于各线卡设置在线盖上,因此可以首先安装线盖,将线盖设置在附着面上,再安装线缆,利用线卡将线缆固定,最后再安装收纳线槽,使得线缆收纳于收纳线槽中。
如图19及图20所示,本发明一种具体使用过程中的线缆收纳装置的布局。从图的上方至下方依次进行说明。
如图21及图22所示,最上方布置有第二转角线盖942及第二转角线槽42,可以实现线缆在墙阴角处的90°拐弯,第二转角线盖942的下方卡接有一短线盖92,对应短线盖92设置有短线槽2。短线盖92的下方卡接有一标准线盖91,对应标准线盖91设置有标准线槽1,标准线盖91的下方依次卡接有若干个标准线盖91,并对应设置有相同数量的标准线槽1。
如图23及图24所示,标准线盖91的底端卡接有第三转角线盖943,并对应设置有第三转角线槽43。利用第三转角线盖943与第三转角线盖943的配合可以使得线缆折弯90°,由竖向延伸布置改变为横向延伸布置。
第三转角线盖943横向的一端卡接有标准线盖91,并对应设置有标准线槽1。标准线盖91的另一端卡接有另一第三转角线盖943,并对应设置有第三转角线槽43,以使得线缆折弯90°,由横向延伸布置改变为竖向延伸布置。
如图25及图26所示,标准线盖91的下方还卡接有T形线盖93,并对应设置有T形分线线槽3。T形线盖93的横向一端卡接有可伸缩线盖95,并对应设置有可伸缩线槽5。可伸缩线盖95的另一端依次卡接有标准线盖91及短线槽2等。T形线盖93的底端卡接有若干个标准线盖91,并对应设置有相同数量的标准线槽1。
如图27及图28所示,标准线盖91的下方还卡接有转向线盖96,对应转向线盖96设置有转向线槽6,利用转向线盖96和转向线槽6的配合,可以将线缆从固定至一附着面改变到固定至相垂直的另一附着面,但无需线缆拐弯。转向线盖96的底端连接有第三转角线盖943,并对应设置有第三转角线槽43,使得线缆折弯90°,由竖向延伸布置改变为横向延伸布置。
如图29及图30所示,第三转角线盖943的另一端依次卡接有两个标准线盖91,并对应设置有两个标准线槽1。标准线盖91的另一端卡接有第二转角线盖942,并对应设置有第二转角线槽42,以使得线缆可以在墙阴角处弯折。第二转角线盖942的另一端连接有标准线盖91,并对应设有标准线槽1。标准线盖91的另一端卡接有第一转角线盖,并设置有第一转角线槽。第一转角线盖的另一端依次卡接有标准线盖91及T形线盖93,并对应设置有标准线槽1及T形分线线槽3。T形线盖93另外两端分别连接有短线盖92,并对应设置有短线槽2。
如图31及图32所示,本实施例中,线缆收纳装置除了包含上述多种收纳线槽及线盖外,还设置有分支收纳线槽8及分支线盖99。分支收纳线槽8及分支线盖99的结构形状与收纳线槽及线盖相同,差别在于容纳腔的横截面尺寸不同,分支收纳线槽8的容纳腔的 横截面尺寸较小,用于容纳较少或直径较小的线缆。分支收纳线槽8及分支线盖99可以与收纳线槽及线盖一样分为多种形式,以便实现线缆的拐弯及分线等。
位于T形线盖93上下两侧的短线盖92均卡接有分支线盖99,并对应设置有分支收纳线槽8。
本具体实施方式中,在完成各个线盖的布局后,将线缆收纳至各个线盖的线卡中,最后安装收纳线槽,以使得将线缆遮挡在收纳线槽中,从而使得布线整洁。
利用本发明提供的上述各个收纳线槽的具体结构,可以沿线缆的走线布局进行拼接,覆盖住所有线缆,将弯曲的线变成直线,使得杂乱弯曲的线缆被固定整齐,且安装方便。
在上述实施方式中,可以将各个收纳线槽分别固定至附着面上,相邻两个收纳线槽相互抵接即可实现拼接。此处,在其他实施方式中,也可以是,相邻两个收纳线槽之间设置有卡接结构,例如设置有插接孔与插接柱配合结构、卡勾与卡槽的配合,以将两个收纳线槽牢固地连接在一起,以提高整体线缆收纳装置的结构强度。当然,在其它实施例中,相邻两个所述收纳线槽磁性连接。具体的,一个所述收纳线槽上设置第一磁性件,另一个所述收纳线槽上设置第二磁性件,一个所述收纳线槽通过第一磁性件磁性连接于另一个所述收纳线槽上的第二磁性件。可以理解的,第一磁性件和所述第二磁性件可以皆为磁铁,或者所述第一磁性件为磁铁,所述第二磁性件为铁磁性材料。磁性连接的结构利于相邻两个线槽拆装。
在上述实施方式中,先将线盖与附着面进行固定连接,线卡可以与线盖进行固定连接或者可拆卸式连接,将线缆固定至线盖上,再将收纳线槽倒扣于线盖,使得线盖安装至装入口处,由于装入口朝向附着面,线盖的尺寸无需与装入口的尺寸相同,只需能够实现线盖与收纳线槽之间的连接即可。此处,在其他实施方式中,可以收纳线槽与附着面固定连接,其装入口朝向远离附着面的方向,线盖为方形板状,其尺寸与标准线槽1的装入口相匹配,利用多个线盖可以将多个收纳线槽的装入口完全覆盖。
在上述实施方式中,利用第一、第二、第三转角线槽实现线缆的转角,在其他实施方式中,收纳线槽可以整体为能够弯曲的柔性材料制成,例如前述的标准线槽1采用能够弯曲的柔性材料制成,可以将标准线槽1整体进行弯曲,以使得标准线槽1弯曲成L形,从而实现线缆的转弯。相应地,线盖亦可以采用能够弯曲的柔性材料制成,以使得线盖可以折弯形成第一转角线盖、第二转角线盖942或第三转角线盖943,以便与收纳线槽进行拼接。
在上述实施方式中,利用线盖将收纳线槽的装入口进行覆盖,或者使装入口朝向附着面,以将线缆完全收容在容纳腔中不会外漏。此处,在其他实施方式中,收纳线槽开口处的两侧壁能够卡扣连接,以闭合所述装入口。例如,如图33所示,收纳线槽1a为U形,其两个相对的支臂11a能够卡扣连接,在将线缆固定至收纳线槽的容纳腔中之后,将收纳线槽1a的U形的两个支臂11a折弯,使得两个支臂11a的顶部相互靠近,并进行卡扣连接,从而将装入口闭合,使得收纳线槽1a可以将线缆完全遮挡,保证外形简洁。进一步,收纳线槽1a的U形的两个支臂11a可以弯曲为弧形,二者卡扣连接后能够形成外表面光滑的弧面,以使得整体外形简洁美观。或者,收纳线槽为L形时,其两个支臂中第一支臂与附着面固定连接,第二支臂弯曲与第一支臂卡扣连接,以将线缆收纳在第一、第二支臂之间。
以上的实施方式,并不构成对该技术方案保护范围的限定。任何在上述实施方式的精神和原则之内所作的修改、等同替换和改进等,均应包含在该技术方案的保护范围之内。

Claims (15)

  1. 一种线缆收纳装置,其特征在于,包括多个收纳线槽,多个所述收纳线槽沿线缆的走向依次拼接,所述收纳线槽内形成有用于容纳线缆的容纳腔,所述收纳线槽在线缆径向上形成有装入口,所述收纳线槽在沿所述线缆轴向上的端部处形成有连通口,所述连通口与所述装入口相连接,且多个所述收纳线槽的所述容纳腔通过所述连通口连通。
  2. 根据权利要求1所述的线缆收纳装置,其特征在于,所述线缆收纳装置还包括多个线盖,所述线盖与所述收纳线槽连接,且所述线盖覆盖于所述装入口。
  3. 根据权利要求2所述的线缆收纳装置,其特征在于,相邻两个所述线盖之间通过卡接结构连接。
  4. 根据权利要求2所述的线缆收纳装置,其特征在于,所述线盖上设置有用于固定线缆的线卡;所述线盖与附着面固定连接,所述线卡与所述线盖固定连接或者可拆卸式连接,所述装入口朝向附着面,所述收纳线槽扣合于所述线盖。
  5. 根据权利要求4所述的线缆收纳装置,其特征在于,所述线卡呈折弯状,其一端与所述线盖固定连接,另一端与所述线盖之间设有间隙,所述线卡整体与所述线盖之间形成卡槽。
  6. 根据权利要求5所述的线缆收纳装置,其特征在于,所述线卡呈L型,所述线卡的一支臂与所述线盖固定连接,另一支臂的端部朝向所述线盖弯曲;或者,
    所述线卡为圆弧形。
  7. 根据权利要求5所述的线缆收纳装置,其特征在于,所述线盖上的所述线卡成对设置,一对所述线卡中,与所述线盖的两个固定连接处分别位于所述线盖的两侧处。
  8. 根据权利要求2所述的线缆收纳装置,其特征在于,所述线盖整体为能够弯曲的柔性材质制成。
  9. 根据权利要求1所述的线缆收纳装置,其特征在于,所述收纳线槽整体为能够弯曲的柔性材质制成。
  10. 根据权利要求1所述的线缆收纳装置,其特征在于,所述收纳线槽的装入口处的两个相对侧壁能够卡扣连接,以闭合所述装入口。
  11. 根据权利要求1-10任一项所述的线缆收纳装置,其特征在于,所述收纳线槽在垂直于线缆轴向上的断面为U形、或L形、或圆弧形。
  12. 根据权利要求1-10任一项所述的线缆收纳装置,其特征在于,所述收纳线槽在垂直于线缆轴向上的断面为U形,所述收纳线槽的U形的两个支臂为侧板、中间部分为底板,所述侧板及所述底板均为板状,且所述侧板垂直固定于所述底板,所述装入口与所述底板相对设置。
  13. 根据权利要求12所述的线缆收纳装置,其特征在于,多个所述收纳线槽中包含有标准线槽、短线槽、T形分线线槽、第一转角线槽、第二转角线槽、第三转角线槽、可伸缩线槽及转向线槽中一种或者两种以上组合;
    所述标准线槽的所述连通口为两个,分别位于所述标准线槽在线缆轴向上的两端处;所述标准线槽的底板及侧板均为长方形板状,其长度方向为线缆的轴向;
    所述短线槽的所述连通口为两个,分别位于所述长线槽在线缆轴向上的两端处;所述 短线槽的底板及侧板均为长方形板状,其长度方向为线缆的轴向;所述短线槽的长度小于所述标准线槽的长度;
    所述T形分线线槽的容纳腔、装入口及底板均为T形,所述T形分线线槽的三个支臂分别在垂直于其内部线缆的轴向上的端面为U形,所述T形分线线槽的三个支臂的端部均形成有连通口;所述T形分线线槽的侧板为三个,包括一个直边侧板及两个L形侧板,所述直边侧板沿所述T形分线线槽的底板的直边延伸设置;两个所述L形侧板相对设置,且分别沿所述T形分线线槽的底板的两个内直角边延伸设置;
    所述第一转角线槽整体为L形,其两个支臂分别在垂直于其内部线缆的轴向上的端面为U形;第一转角线槽的装入口、底板及侧板亦为L形;连通口为两个,分别位于所述第一转角线槽的两个支臂的端部处;所述第一转角线槽的底板的两个板状的支臂处于两个相交平面上;所述第一转角线槽的两个侧板均位于其底板的L形的阴角处,所述第一转角线槽的侧板的两个板状的支臂位于同一平面上;
    所述第二转角线槽整体为L形,其两个支臂分别在垂直于其内部线缆的轴向上的端面为U形;第二转角线槽的装入口、底板及侧板亦为L形;连通口为两个,分别位于所述第二转角线槽的两个支臂的端部处;所述第二转角线槽的底板的两个板状的支臂处于两个相交平面上;所述第二转角线槽的两个侧板均位于其底板的L形的阳角处,所述第二转角线槽的侧板的两个板状的支臂位于同一平面上;
    所述第三转角线槽整体为L形,其两个支臂分别在垂直于其内部线缆的轴向上的端面为U形;所述第三转角线槽的装入口、底板及侧板亦为L形;所述连通口为两个,分别位于所述第三转角线槽的两个支臂的端部处;所述第三转角线槽的底板的两个板状的支臂处于同一平面上;所述第二转角线槽的两个侧板均位于其底板的同一板面处,所述第三转角线槽的侧板的两个板状的支臂位于两个垂直平面上;
    所述可伸缩线槽在线缆轴向上的长度能够伸缩调节;所述可伸缩线槽包括沿线缆轴向排布的第一子线槽和第二子线槽,所述第一子线槽和第二子线槽的在垂直于线缆轴向上的断面均为U形;所述第一子线槽具有滑动槽,所述滑动槽在垂直于线缆轴向上的断面亦为U形,所述滑动槽沿线缆轴向滑动方向滑动设置于所述第二子线槽内;
    所述转向线槽的一端设置有转向板,所述转向板平行于所述转向线槽的底板。
  14. 根据权利要求1所述的线缆收纳装置,其特征在于,相邻两个所述收纳线槽磁性连接。
  15. 根据权利要求2所述的线缆收纳装置,其特征在于,所述线盖与所述收纳线槽磁性连接。
PCT/CN2018/118164 2017-09-30 2018-11-29 一种线缆收纳装置 WO2019063029A1 (zh)

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