Power strip with wire winding structure
By setting up a flipped cable retracting block and non-electrical jack at the bottom of the slot, the problems of loose cables and complex structures are solved, and a compact cable retracting and easy-to-production slot design is achieved.
Patent Information
- Application Number
- CN202211279204.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-19
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2042-10-19
AI Technical Summary
The existing wire insert lacks a winding structure, which leads to loose winding of the cable and is difficult to position. The existing wire retracting structure increases the thickness and complexity of the socket, making it difficult to promote in conventional wire inserts.
A winding structure is designed. By providing the first and second retracting blocks at the bottom of the housing, the retracting block can be flipped and folded, and the cable is wound along the retracting block winding part and inserted into a non-electrical socket, combining the L-shaped groove and the suspension hole to achieve compact retracting.
It realizes compact storage of cables, simple structure and easy production, easy operation, does not occupy the original space for insertion, and is suitable for promotion and application.
Smart Images

Figure CN115642447B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of socket strips, and in particular to a socket strip with a wire winding structure. Background Art
[0002] At present, socket strips generally do not have a wire winding structure. If wire winding is needed, the conventional operation method is to wind the cable around the socket strip body. For this kind of wire collection method, on the one hand, since the plug of the cable is not positioned, the wound cable is prone to looseness. On the other hand, for the socket strip body after winding the cable, its overall outer surface is an irregular curved surface, and it is not easy to position when placed.
[0003] In addition, a portable socket is disclosed in CN 203481558 U, which includes a socket body. A cavity is provided at the bottom of the lower end of the socket body, and an automatic wire winder is provided in the cavity. The power cord of the socket body is wound around the automatic wire winder, and the wire collection switch of the automatic wire winder is arranged on the upper surface of the socket body. A cavity door is hinged outside the cavity, and the power cord can be pulled out by opening the cavity door. For this kind of socket, by providing a wire winder around the power cord, the power cord can be conveniently and quickly stored in the body. Another example is a retractable socket with a safety door disclosed in CN 205790568 U. The socket includes a housing, an inner housing, a wire groove, an inner housing base, a plug groove, a semicircular groove, a square opening, an outlet of the housing, jacks, USB ports, a safety door device, a square buckle, and an outlet of the inner housing; the inner housing is sleeved inside the housing; the inner housing includes a wire groove, an inner housing base, a plug groove, a semicircular groove, and a square opening. The safety door device is introduced into the socket to increase the safety performance of the product; the plug groove is introduced into the internal design of the socket to achieve the purpose of retractable wire.
[0004] For the above two kinds of sockets with built-in wire winding structures, they will greatly increase the thickness of the socket, and moreover, the structure is relatively complex. For the currently common socket strips, if these wire winding structures are used for reference in the design, it is necessary to subvert the original structure of the socket strip design, which is inconvenient for production and manufacturing, and the production cost is relatively high, so it is not suitable for popularization and application.
[0005] Therefore, it is necessary to study a new technical solution to solve the above problems. Summary of the Invention
[0006] In view of this, in view of the deficiencies of the existing technology, the main purpose of the present invention is to provide a socket strip with a wire winding structure, which realizes bottom wire collection. After the wire collection is completed, the plug is inserted into the non-electrical jack, which is very compact. Its structural design is simple and ingenious, and it will not occupy the original design space of the socket strip. Based on the basic design of the original socket strip, a wire collection block can be added, and only a slight structural change is needed, which is easy for production and manufacturing. Moreover, the folding and unfolding operations of the wire collection block are simple and convenient, with strong practicability and suitable for popularization.
[0007] To achieve the above object, the present invention adopts the following technical solutions:
[0008] An electrical socket strip with a wire winding structure includes a socket strip main body and a cable connected to the socket strip main body. The socket strip main body includes a housing. The housing has a shell panel portion and a shell bottom portion arranged opposite to each other. Electrical jacks are provided on the shell panel portion. The cable extends from one end of the housing, and the outer end of the cable has a plug.
[0009] The shell bottom is provided with a first wire collecting block, a second wire collecting block, and a non-electrical jack for inserting and fixing the plug at intervals. The non-electrical jack is located between the first wire collecting block and the second wire collecting block. One end of the first wire collecting block and the second wire collecting block is hinged to the bottom of the housing. The other ends of the first wire collecting block and the second wire collecting block can be reversibly folded and unfolded relative to the bottom of the housing. In the folded state, the first wire collecting block and the second wire collecting block are respectively attached to the bottom of the housing. After the first wire collecting block and the second wire collecting block are turned downward, the first wire collecting block and the second wire collecting block are both unfolded and stand below the bottom of the housing. The opposite sides of the first wire collecting block and the second wire collecting block serve as wire winding portions, so that the cable can be wound along the wire winding portions of the first wire collecting block and the second wire collecting block to achieve bottom wire collection. After the wire collection is completed, the plug is inserted into the non-electrical jack.
[0010] As a preferred solution, the first wire collecting block includes a first wire winding portion and a first wire blocking portion. One end of the first wire winding portion is hinged to the bottom of the shell. The other end of the first wire winding portion is connected to one end of the first wire blocking portion. The other end of the first wire blocking portion extends away from the second wire collecting block, and a first wire clamping groove is formed between the first wire blocking portion and the first wire winding portion. The wire winding portion of the first wire collecting block is arranged on the side surface of the first wire winding portion that can be attached to the bottom of the housing.
[0011] The second wire collecting block includes a second wire winding portion and a second wire blocking portion. One end of the second wire winding portion is hinged to the bottom of the shell. The other end of the second wire winding portion is connected to one end of the second wire blocking portion. The other end of the second wire blocking portion extends away from the first wire collecting block, and a second wire clamping groove is formed between the second wire blocking portion and the second wire winding portion. The wire winding portion of the second wire collecting block is arranged on the side surface of the second wire winding portion that can be attached to the bottom of the housing.
[0012] The cable is wound through the first wire clamping groove and the second wire clamping groove in sequence.
[0013] As a preferred solution, the first wire winding portion and the first wire blocking portion form a first L-shaped structure, and the second wire winding portion and the second wire blocking portion form a second L-shaped structure.
[0014] As a preferred solution, the included angle between the first wire winding portion and the first wire blocking portion is 80-100 degrees, and the included angle between the second wire winding portion and the second wire blocking portion is 80-100 degrees.
[0015] As a preferred solution, a first suspension hole is provided on the side of the first winding portion away from the bottom of the housing.
[0016] As a preferred solution, a second suspension hole is provided on the side of the second winding portion away from the bottom of the housing.
[0017] As a preferred solution, a third suspension hole is provided on the first wire blocking portion, and the hanging-in direction of the third suspension hole is perpendicular to the hanging-in direction of the first suspension hole.
[0018] As a preferred solution, a first folding groove is provided at the front end of the housing, and a second folding groove is provided at the rear end of the housing. The first wire blocking portion is folded into the first folding groove, and the second wire blocking portion is folded into the second folding groove.
[0019] As a preferred solution, the housing includes a front shell and a bottom shell. The panel portion of the housing is formed at the top of the front shell, and the bottom portion of the housing is formed at the bottom of the bottom shell;
[0020] A front extension portion that extends forward beyond the front end of the bottom shell is formed at the front end of the top of the front shell, and the first folding groove is formed between the front extension portion and the front end face of the bottom shell; a rear extension portion that extends backward beyond the rear end of the bottom shell is formed at the rear end of the top of the front shell, and the second folding groove is formed between the rear extension portion and the rear end face of the bottom shell;
[0021] First lateral extension portions extend downward from the left and right sides of the top of the front shell near the front end respectively. A third folding groove is formed between the first lateral extension portions on the left and right sides and the bottom portion of the housing. The first winding portion is folded into the third folding groove; the first folding groove and the third folding groove communicate to form a first L-shaped groove;
[0022] Second lateral extension portions extend downward from the left and right sides of the top of the front shell near the rear end respectively. A fourth folding groove is formed between the second lateral extension portions on the left and right sides and the bottom portion of the housing. The second winding portion is folded into the fourth folding groove; the second folding groove and the fourth folding groove communicate to form a second L-shaped groove.
[0023] As a preferred solution, a first operation notch for facilitating the unfolding of the first wire collecting block is provided on the front extension portion. In the folded state, the first wire blocking portion is exposed at the first operation notch. A second operation notch for facilitating the unfolding of the second wire collecting block is provided on the rear extension portion. In the folded state, the second wire blocking portion is exposed at the second operation notch.
[0024] Compared with the prior art, the present invention has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solution, it mainly achieves bottom wire collection through the arrangement of the first wire collection block, the second wire collection block, and the non-electrical jack. The other ends of the first wire collection block and the second wire collection block can be folded and unfolded in a flip manner relative to the bottom of the housing, enabling the cable to wind around the wire winding parts of the first wire collection block and the second wire collection block to achieve bottom wire collection. After the wire collection is completed, the plug is inserted into the non-electrical jack, which is very compact. Its structural design is simple and ingenious, without occupying the original design space of the socket strip. It can be based on the basic design of the original socket strip, add wire collection blocks, and make slight structural changes, which is easy to produce and manufacture. Moreover, the folding and unfolding operations of the wire collection blocks are simple and convenient, with strong practicability and suitable for popularization.
[0025] To more clearly elaborate on the structural features and functions of the present invention, the following will detail the present invention in combination with the attached drawings and specific embodiments. Brief Description of the Drawings
[0026] Figure 1 It is a three-dimensional view of the first embodiment of the present invention (in the state of not collecting wires);
[0027] Figure 2 It is another three-dimensional view of the first embodiment of the present invention (in the state of not collecting wires);
[0028] Figure 3 It is a cross-sectional view of the first embodiment of the present invention (in the state of not collecting wires);
[0029] Figure 4 It is a three-dimensional view of the first embodiment of the present invention (in the state of not collecting wires and with the first wire collection block and the second wire collection block in the unfolded state);
[0030] Figure 5 It is an exploded view of the first embodiment of the present invention (in the state of not collecting wires);
[0031] Figure 6 It is a three-dimensional view of the first embodiment of the present invention (in the state of collecting wires);
[0032] Figure 7 It is a cross-sectional view of the first embodiment of the present invention (in the state of collecting wires);
[0033] Figure 8 It is another three-dimensional view of the first embodiment of the present invention (in the state of collecting wires);
[0034] Figure 9 It is an application view of the first embodiment of the present invention that can be hung on vertical surfaces such as walls (in the state of not collecting wires);
[0035] Figure 10 It is a three-dimensional view of the second embodiment of the present invention (in the state of not collecting wires);
[0036] Figure 11 Another perspective three-dimensional view (unwound state) of the second embodiment of the present invention;
[0037] Figure 12 Three-dimensional view (wound state) of the second embodiment of the present invention;
[0038] Figure 13 Another perspective three-dimensional view (wound state) of the second embodiment of the present invention;
[0039] Figure 14 Application view (wound state) of the second embodiment of the present invention that can be hung on vertical surfaces such as walls.
[0040] Explanation of the attached drawing reference numerals:
[0041] Power strip main body 10, housing 11, housing panel part 111, housing bottom part 112, electrical jack 101, first L-shaped groove 102, second L-shaped groove 103, non-electrical jack 1121, first folding groove 113, second folding groove 114, face shell 1101, bottom shell 1102, third folding groove 115, fourth folding groove 116, front extension part 1, rear extension part 2, first lateral extension part 3, second lateral extension part 4, first operation notch 5, second operation notch 6, wire clamping protrusion 7, avoidance notch 8, hinge shaft hole 9, first stop part 91, second stop part 92, hinge shaft 93, avoidance groove 94, inner end face 941, rotation guiding arc part 95, convex arc part 96, cable 20, plug 21, first wire winding block 30, second wire winding block 40, wire winding part 304, first wire winding part 31, first wire blocking part 32, first wire clamping groove 301, second wire winding part 41, second wire blocking part 42, second wire clamping groove 401, first hanging hole 311, second hanging hole 411, third hanging hole 321, wall 50, hanging nail 51. Detailed implementation manners
[0042] Please refer to Figures 1 to 14 as shown, which shows the specific structures of two embodiments of the present invention.
[0043] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.
[0044] A power strip with a wire winding structure includes a power strip main body 10 and a cable 20 connected to the power strip main body 10.
[0045] The socket main body 10 includes a housing 11. The housing 11 has a housing panel portion 111 and a housing bottom portion 112 arranged oppositely. An electrical socket 101 is provided on the housing panel portion 111. Conductive terminals are provided inside the socket main body 10 corresponding to each electrical socket 101. Moreover, how each conductive terminal forms an electrical connection with the cable 20 is a mature technology of the socket and will not be elaborated here.
[0046] The housing bottom portion 112 is provided with a first wire-receiving block 30, a second wire-receiving block 40, and a non-electrical socket 1121 for the plug 21 to be inserted and fixed at intervals. The non-electrical socket 1121 is located between the first wire-receiving block 30 and the second wire-receiving block 40. One end of the first wire-receiving block 30 and the second wire-receiving block 40 is hinged to the housing bottom 112. The other ends of the first wire-receiving block 30 and the second wire-receiving block 40 can be reversibly folded and unfolded relative to the housing bottom 112. In the folded state, the first wire-receiving block 30 and the second wire-receiving block 40 are respectively attached to the housing bottom 112. After the first wire-receiving block 30 and the second wire-receiving block 40 are turned downward, the first wire-receiving block 30 and the second wire-receiving block 40 are both unfolded and stand below the housing bottom 112. The opposite sides of the first wire-receiving block 30 and the second wire-receiving block 40 serve as wire-winding portions 304, so that the cable 20 can wind along the wire-winding portions 304 of the first wire-receiving block 30 and the second wire-receiving block 40 to achieve bottom wire-receiving. After the wire-receiving is completed, the plug 21 is inserted into the non-electrical socket 1121.
[0047] The cable 20 extends from one end of the housing 11, and the outer end of the cable 20 has a plug 21. The cable 20 extends from the rear end of the housing 111. The first wire-receiving block 30 and the second wire-receiving block 40 are arranged at intervals in the front-rear direction. The opposite sides of the first wire-receiving block 30 and the second wire-receiving block 40 are arranged at intervals in the front-rear direction.
[0048] The first wire-receiving block 30 includes a first wire-winding portion 31 and a first wire-blocking portion 32. One end of the first wire-winding portion 31 is hinged to the housing bottom 112. The other end of the first wire-winding portion 31 is connected to one end of the first wire-blocking portion 32. The other end of the first wire-blocking portion 32 extends away from the second wire-receiving block 40. A first wire-clamping groove 301 is formed between the first wire-blocking portion 31 and the first wire-winding portion 32. The first wire-winding portion 31 and the first wire-blocking portion 32 form a first L-shaped structure. The included angle between the first wire-winding portion 31 and the first wire-blocking portion 32 is 80-100 degrees, preferably 90 degrees. The wire-winding portion 304 of the first wire-receiving block 30 is arranged on the side of the first wire-winding portion 31 that can be attached to the housing bottom 112.
[0049] The second wire take-up block 40 includes a second wire winding portion 41 and a second wire blocking portion 42. One end of the second wire winding portion 41 is hinged to the bottom 112 of the housing. The other end of the second wire winding portion 41 is connected to one end of the second wire blocking portion 42. The other end of the second wire blocking portion 42 extends away from the first wire take-up block 30. A second wire clamping groove 401 is formed between the second wire blocking portion 41 and the second wire winding portion 42. The second wire winding portion 41 and the second wire blocking portion 42 form a second L-shaped structure. The included angle between the second wire winding portion 41 and the second wire blocking portion 42 is 80-100 degrees, preferably 90 degrees. The wire winding portion 304 of the second wire take-up block 40 is disposed on the side of the second wire winding portion 41 that can be attached to the bottom 112 of the housing;
[0050] The cable 20 passes through the first wire clamping groove 301 and the second wire clamping groove 401 in sequence for wire winding. After the wire taking-up is completed, the plug is inserted into the non-electrical jack.
[0051] Considering the need for hanging use or storage, a first hanging hole 311 is provided on the side of the first wire winding portion 31 away from the bottom 112 of the housing. A second hanging hole 411 is provided on the side of the second wire winding portion 41 away from the bottom 112 of the housing. As Figure 9 shown, the first hanging hole 311 on the first wire winding portion 31 can be hung on the hanging nail 51 on the wall 50. Of course, the direction can also be changed, and the second hanging hole 411 on the second wire winding portion 41 can be hung on the hanging nail 51 on the wall 50, for example, for placing and positioning the socket strip. A third hanging hole 321 is provided on the first wire blocking portion 32. The hanging-in direction of the third hanging hole 321 is perpendicular to the hanging-in direction of the first hanging hole 311. As Figure 14 shown, after the wire taking-up is completed, the third hanging hole 321 on the first wire blocking portion 32 can also be hung on the hanging nail 51 on the wall 50 for easy storage.
[0052] A first folding groove 113 is provided at the front end of the housing 11, and a second folding groove 114 is provided at the rear end of the housing 11. The first wire blocking portion 32 is folded in the first folding groove 113, and the second wire blocking portion 42 is folded in the second folding groove 114. In this embodiment, the housing 11 includes a front shell 1101 and a bottom shell 1102. The shell panel portion 111 is formed at the top of the front shell 1101, and the shell bottom portion 112 is formed at the bottom of the bottom shell 1102. A front extension portion 1 that extends forward beyond the front end of the bottom shell 1102 is formed at the front end of the top of the front shell 1101. The first folding groove 113 is formed between the front extension portion 1 and the front end face of the bottom shell 1102. A rear extension portion 2 that extends backward beyond the rear end of the bottom shell 1102 is formed at the rear end of the top of the front shell 1101. The second folding groove 114 is formed between the rear extension portion 2 and the rear end face of the bottom shell 1102. First lateral extension portions 3 extend downward from the left and right sides of the top of the front shell 1101 near the front end. A third folding groove 115 is formed between the first lateral extension portions 3 on the left and right sides and the shell bottom portion 112. The first wire winding portion 31 is folded in the third folding groove 115. The first folding groove 113 and the third folding groove 115 communicate to form a first L-shaped groove 102. Second lateral extension portions 4 extend downward from the left and right sides of the top of the front shell 1101 near the rear end. A fourth folding groove 116 is formed between the second lateral extension portions 4 on the left and right sides and the shell bottom portion 112. The second wire winding portion 41 is folded in the fourth folding groove 116. The second folding groove 114 and the fourth folding groove 116 communicate to form a second L-shaped groove 103.
[0053] Further, a first operation notch 5 for facilitating the unfolding of the first wire collecting block 30 is provided on the front extension portion 1. In the folded state, the first wire blocking portion 32 is exposed at the first operation notch 5. Pressing the exposed portion thereof can rotate the first wire collecting block 30 downward to unfold it. Here, the first operation notch 5 is centrally provided. A second operation notch 6 for facilitating the unfolding of the second wire collecting block 40 is provided on the rear extension portion 2. Here, the second operation notches 6 are respectively provided on the left and right sides of the cable 20. A wire clamping convex portion 7 is provided at the bottom of the rear extension portion 2. A wire clamping groove is provided on the wire clamping convex portion 7. When the cable 20 extends out from the rear end of the housing 11, it passes through the wire clamping groove, and positioning is achieved by means of the wire clamping convex portion 7 to prevent the cable 20 from being excessively bent and possibly damaged. Also, an avoidance notch 8 is provided on the second wire blocking portion 41 for avoiding the wire outlet portion of the cable 20. In the folded state, the second wire blocking portion 42 is exposed at the second operation notch 6. Pressing the exposed portion thereof can rotate the second wire collecting block 40 downward to unfold it.
[0054] Also, the structural design of hinging the first wire collecting block 30 and the second wire collecting block 40 to the bottom of the housing 11 is rather ingenious. Specifically:
[0055] One end of each of the first winding part 31 and the second winding part 41 is provided with a hinge shaft hole 9, and a first stop part 91 and a second stop part 92 are respectively arranged on the first winding part 31 and the second winding part 41 on both sides of their respective hinge shaft holes 9; a hinge shaft 93 and an avoidance groove 94 are arranged at the bottom 112 of the shell, the hinge shaft 93 passes through the hinge shaft hole 9, and the avoidance groove 94 is recessed upward from the bottom 112 of the shell; in the unfolded state, the first stop part 91 abuts against the bottom 112 of the shell, and the second stop part 92 abuts against the inner end surface 941 of the avoidance groove 94. Rotation guiding arc parts 95 are respectively arranged on the first winding part 31 and the second winding part 41 on the left and right sides of the hinge shaft hole 9, and the first stop part 91 is arranged at the end of the rotation guiding arc part 95; a convex arc part 96 coaxial with the hinge shaft 93 is arranged at the bottom 112 of the shell. When the first wire collecting block 30 and the second wire collecting block 40 are flipped, the rotation guiding arc part 95 slides along the corresponding convex arc part 96. Here, since the convex arc parts 96 are respectively arranged on the left and right sides of the hinge shaft hole 9, the force balance is better, and the flipping operation is smoother. Moreover, the ends of the convex arc parts 93 on the left and right sides are flush, forming an integral structure, which is easy to produce and manufacture and has better structural strength.
[0056] It should be noted that Figures 1 to 9 as shown, it shows a single-row socket strip, while Figures 10 to 14 as shown, it shows a multi-row socket strip. In actual design and manufacture, one group or multiple groups of electrical jacks 101 can be arranged on the shell panel part 111. Usually, two or three electrical jacks 101 form a group. Multiple groups of electrical jacks 101 can be arranged in a row in the front-back direction to form a single-row socket strip, and two or more rows are arranged in the left-right direction to form a multi-row socket strip. As for the technical solution of the present invention, the arrangement mode and number of groups of the electrical jacks 101 can be not limited. In actual production and manufacture, the whole socket strip body is preferably in a long strip shape. For example, the length direction is designed along the wire outlet direction of the cable 20. One of the two wire collecting blocks is close to the wire outlet end of the cable 20, and the other is far from the wire outlet end of the cable 20. In this way, it is convenient for winding the wire, and it is convenient to fold the two wire collecting blocks at the front and rear ends of the socket strip body, and the design and manufacture are simpler. If they are arranged on the left and right sides of the socket strip body, it will inevitably increase the left and right width of the socket strip body. For a long-strip socket strip body, the increase in width will cause a large increase in the volume of the whole socket strip body, and the product compactness is not very ideal.
[0057] The design focus of the present invention lies in that mainly through the settings of the first wire winding block, the second wire winding block and the non-electrical jack, the other ends of the first wire winding block and the second wire winding block can be reversibly folded and unfolded relative to the bottom of the housing, so that the cable can be wound along the wire winding parts of the first wire winding block and the second wire winding block to achieve bottom wire winding. After the wire winding is completed, the plug is inserted into the non-electrical jack, which is very compact. Its structural design is simple and ingenious, and it will not occupy the design space of the original socket strip. Based on the basic design of the original socket strip, wire winding blocks can be added and slight structural changes can be made, which is easy to produce and manufacture. Moreover, the folding and unfolding operations of the wire winding blocks are simple and convenient, with strong practicability and suitable for popularization.
[0058] The above are only the preferred embodiments of the present invention, and do not impose any limitation on the technical scope of the present invention. Therefore, any minor modifications, equivalent changes and decorations made to the above embodiments according to the technical essence of the present invention still fall within the scope of the technical solution of the present invention.
Claims
1. A socket strip with a winding structure, comprising a socket strip main body and a cable connected to the socket strip main body. The socket strip main body includes a housing, the housing has a shell panel portion and a shell bottom portion arranged on opposite sides, the shell panel portion is provided with electrical jacks, the cable extends from one end of the housing, and the outer end of the cable has a plug. It is characterized in that: The housing includes a front shell and a bottom shell, the shell panel portion is formed on the top of the front shell, and the shell bottom portion is formed on the bottom of the bottom shell; the shell bottom portion is provided with a first wire-receiving block, a second wire-receiving block and a non-electrical jack for the plug to be inserted and fixed at intervals, and the non-electrical jack is located between the first wire-receiving block and the second wire-receiving block; one ends of the first wire-receiving block and the second wire-receiving block are hinged to the bottom of the housing, and the other ends of the first wire-receiving block and the second wire-receiving block can be turned over, folded and unfolded relative to the bottom of the housing. In the folded state, the first wire-receiving block and the second wire-receiving block are respectively attached to the bottom of the housing. After turning down the first wire-receiving block and the second wire-receiving block, the first wire-receiving block and the second wire-receiving block are both unfolded and stand below the bottom of the housing. The opposite sides of the first wire-receiving block and the second wire-receiving block are used as wire-winding portions, so that the cable can be wound along the wire-winding portions of the first wire-receiving block and the second wire-receiving block to realize bottom wire-receiving. After the wire-receiving is completed, the plug is inserted into the non-electrical jack; The first wire-receiving block includes a first wire-winding portion and a first wire-blocking portion. One end of the first wire-winding portion is hinged to the bottom of the shell, the other end of the first wire-winding portion is connected to one end of the first wire-blocking portion, and the other end of the first wire-blocking portion extends away from the second wire-receiving block, and a first wire-clamping groove is formed between the first wire-blocking portion and the first wire-winding portion; the wire-winding portion of the first wire-receiving block is arranged on the side surface of the first wire-winding portion that can be attached to the bottom of the housing; the second wire-receiving block includes a second wire-winding portion and a second wire-blocking portion. One end of the second wire-winding portion is hinged to the bottom of the shell, the other end of the second wire-winding portion is connected to one end of the second wire-blocking portion, and the other end of the second wire-blocking portion extends away from the first wire-receiving block, and a first wire-clamping groove is formed between the second wire-blocking portion and the second wire-winding portion; the wire-winding portion of the second wire-receiving block is arranged on the side surface of the second wire-winding portion that can be attached to the bottom of the housing; the cable is wound through the first wire-clamping groove and the second wire-clamping groove in sequence; A first folding groove is provided at the front end of the housing. The front end of the top of the front shell forms a front extension portion that extends forward beyond the front end of the bottom shell. The first folding groove is formed between the front extension portion and the front end surface of the bottom shell, and the first wire-blocking portion is folded in the first folding groove; a second folding groove is provided at the rear end of the housing. The rear end of the top of the front shell forms a rear extension portion that extends backward beyond the rear end of the bottom shell. The second folding groove is formed between the rear extension portion and the rear end surface of the bottom shell, and the second wire-blocking portion is folded in the second folding groove; on the left and right sides near the front end of the top of the front shell, first lateral extension portions extend downward respectively, and a third folding groove is formed between the first lateral extension portions on the left and right sides and the bottom of the shell, and the first wire-winding portion is folded in the third folding groove; the first folding groove and the third folding groove communicate to form a first L-shaped groove; on the left and right sides near the rear end of the top of the front shell, second lateral extension portions extend downward respectively, and a fourth folding groove is formed between the second lateral extension portions on the left and right sides and the bottom of the shell, and the second wire-winding portion is folded in the fourth folding groove; the second folding groove and the fourth folding groove communicate to form a second L-shaped groove.
2. The socket strip with a wire winding structure according to claim 1, wherein: The first winding part and the first wire blocking part form a first L-shaped structure, and the second winding part and the second wire blocking part form a second L-shaped structure.
3. The socket strip with a winding structure according to claim 2, characterized in that: The included angle between the first winding part and the first wire blocking part is 80-90 degrees, and the included angle between the second winding part and the second wire blocking part is 80-90 degrees.
4. The socket strip with a winding structure according to claim 1, characterized in that: A first suspension hole is provided on the side of the first winding part away from the bottom of the housing.
5. The socket strip with a wire winding structure according to claim 1, wherein: A second suspension hole is provided on the side of the second winding part away from the bottom of the housing.
6. The socket strip with a wire winding structure according to claim 1, wherein: A third suspension hole is provided on the first wire blocking part, and the hanging-in direction of the third suspension hole is perpendicular to the hanging-in direction of the first suspension hole.
7. The socket strip with a wire winding structure according to claim 1, wherein: A first operation notch for facilitating the deployment of the first wire collecting block is provided on the front extension part. In the folded state, the first wire blocking part is exposed at the first operation notch. A second operation notch for facilitating the deployment of the second wire collecting block is provided on the rear extension part. In the folded state, the second wire blocking part is exposed at the second operation notch.
Citation Information
Patent Citations
Portable socket
CN203481558U
Take line received socket of emergency exit
CN205790568U
Extension socket with winding structure
CN115642447A