Linear track shell, power track and track socket

By setting upright plates and anti-detachment grooves on both sides of the track opening of the shell base, and combining the support ribs with the installation groove, the problem of unstable installation of power rails is solved, achieving more stable installation and aesthetically pleasing power rail design.

CN223942171UActive Publication Date: 2026-02-24SINGAPORE GORE TECH DEV CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423321054.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-24
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The linear track housing is prone to wobbling after being installed on the mounting backplate, which makes the installation of the power track on the mounting surface unstable.

Method used

Upright plates are installed on both sides of the track opening of the shell base, and anti-detachment grooves are opened on the upright plates. The stability is improved by the contact between the upright plates and the mounting surface. At the same time, support ribs are installed on both sides of the shell base and are engaged with the mounting grooves to enhance the fixing effect.

Benefits of technology

It effectively improves the installation stability of the power rail on the mounting surface, prevents the adapter from detaching, and strengthens the fixation with support ribs, reducing shaking and improving aesthetics.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223942171U_ABST
    Figure CN223942171U_ABST
Patent Text Reader

Abstract

The utility model provides a linear track shell, an electric power track and a track socket, and relates to the technical field of track sockets, the linear track shell comprises an electric power track and an adapter, and the electric power track comprises the linear track shell and a core module. The linear rail shell comprises a shell base body and two vertical plates, a rail cavity is formed in the shell base body and used for installing the core module, a rail opening is formed in the outer portion of the shell base body, and the rail opening communicates with the rail cavity; the two vertical plates are fixedly arranged on the shell base body, are arranged on the two sides of the rail opening respectively and extend in the length direction of the shell base body. The vertical plates are arranged on the two sides of the track opening of the shell base body, when the power track is installed on the installation face, the shell base body is integrally arranged in the installation groove formed in the installation face, the six peripheral faces of the shell base body all abut against the groove wall of the installation groove, and the end faces, deviating from each other, of the two vertical plates abut against the installation face; the mounting stability of the power track on the mounting surface is improved, and the shaking of the power track after being mounted on the mounting surface is effectively reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the technical field of track sockets, and in particular to a linear track housing, an electric track, and a track socket. Background Technology

[0002] Track sockets are a new type of socket product, mainly consisting of a power track and an adapter. The power track, also known as a power rail, is typically installed on walls, tables, and baseboards. It includes a linear track housing with a mounting backplate snapped onto its back. The outer surface of the linear track housing has a track opening, and an internal track cavity is formed, connecting the track opening to the cavity. A conductive conductor is installed within the track cavity. Terminals are fixed at the ends of the linear track housing; one end of the terminal connects to the power source, and the other end connects to the conductive conductor, establishing an electrical connection between the conductor and the external power supply. To install the power track on a mounting surface, a mounting groove is first created. Then, the mounting backplate is screwed into the groove. Finally, the track housing and terminal are embedded into the mounting backplate, and the entire power track is embedded within the mounting groove.

[0003] Regarding the aforementioned technologies, the inventors discovered that after the linear track housing is installed on the mounting back plate, there will be shaking between the linear track housing and the mounting back plate, resulting in unstable installation of the power track on the mounting surface. Utility Model Content

[0004] To improve the problem of unstable installation of electric rails on the mounting surface, this application provides a linear rail housing, an electric rail, and a rail socket.

[0005] Firstly, this application provides a linear track housing using the following technical solution:

[0006] A linear track housing includes a housing base configured to be embedded in a mounting groove, having a track cavity inside and a track opening on the outside, the track opening communicating with the track cavity; and upright plates configured to extend through the mounting surface and fixed on the housing base, the number of which is at least two, with at least two upright plates placed on both sides of the track opening and extending along the length direction of the housing base.

[0007] Optionally, at least one upright plate has an anti-detachment groove on its end face facing the other upright plate. The anti-detachment groove extends along the length of the upright plate and is configured to engage with the adapter to prevent the adapter from detaching from the linear track housing.

[0008] Optionally, the housing base includes a bottom plate and a top plate disposed opposite to each other, and a first side plate and a second side plate disposed opposite to each other. The first side plate and the second side plate are respectively fixed on both sides of the bottom plate. The top plate is disposed opposite to the bottom plate and located above the bottom plate. The first side plate and the second side plate are connected to both sides of the top plate. The bottom plate, the first side plate, the second side plate and the top plate together form the track cavity. The track opening is opened on the top plate, and the upright plate is fixed on the top plate.

[0009] Optionally, at least one positioning ridge is formed in the housing matrix, and the positioning ridge is configured to engage with the insulating support.

[0010] Optionally, two positioning edges are provided, which are placed on both sides of the track opening. The end of the positioning edge near the track opening is inclined in the direction close to the vertical plate to form a guide slope.

[0011] Optionally, the first side plate and / or the second side plate are provided with support ribs, which are configured to snap into the mounting groove.

[0012] Optionally, the base plate is provided with a connection port for threading the power cord into the track cavity.

[0013] Optionally, end caps are provided at both ends of the track cavity.

[0014] Secondly, this application also provides a technical solution for electric rails using the following method.

[0015] An electric track includes a linear track housing and a core module disposed within the linear track housing; the core module includes an insulating support, a terminal block mounted at one end of the insulating support, a limiting block mounted at the other end of the insulating support, and at least two conductive conductors mounted within the insulating support, the conductive conductors being electrically connected to the terminal block.

[0016] Thirdly, this application also provides a track socket with the following technical solution.

[0017] A rail socket includes a second aspect of a power rail and one or more adapters, the adapters being detachably mounted on the power rail.

[0018] In summary, this application includes at least one of the following beneficial technical effects:

[0019] 1. By setting upright plates on both sides of the track opening of the housing base, when the electric rail is installed on the mounting surface, the entire housing base is placed in the mounting groove opened on the mounting surface, and all six outer peripheral surfaces of the housing base abut against the groove wall of the mounting groove. The opposite end faces of the two upright plates abut against the mounting surface, which improves the stability of the electric rail on the mounting surface and effectively reduces the shaking of the electric rail after it is installed on the mounting surface.

[0020] 2. By creating an anti-detachment groove on the upright plate, when the adapter is inserted into the track cavity through the track opening to draw power, the locking block on the power receiving part of the adapter can engage with the anti-detachment groove, effectively preventing the adapter from detaching from the power track after being inserted into the power track;

[0021] 3. By setting support ribs on both sides of the housing base, when the power rail is installed in the mounting groove, the support ribs are engaged with the groove wall of the mounting groove, which improves the stability of the power rail fixed installation in the mounting groove. Attached Figure Description

[0022] Figure 1 This is a three-dimensional schematic diagram showing the track socket of this application.

[0023] Figure 2 This is another perspective view of the track socket of this application.

[0024] Figure 3 It shows Figure 1 A three-dimensional schematic diagram of the adapter, in which the power-taking part of the adapter is extended.

[0025] Figure 4 It shows Figure 1 A three-dimensional diagram showing the middle track socket installed behind the mounting surface.

[0026] Figure 5 It shows Figure 1 Installation node diagram of the middle track socket installed on the mounting surface.

[0027] Figure 6 It shows Figure 1 A 3D schematic diagram of the core module.

[0028] Figure 7 It shows Figure 6 A three-dimensional schematic diagram of the middle wiring terminal.

[0029] Explanation of reference numerals in the attached drawings: 100, Electric rail; 101, Linear rail housing; 102, Core module; 1021, Insulating bracket; 10211, Opening cavity; 10212, Conductor cavity; 1022, Terminal; 10221, Terminal housing; 10222, Terminal conductor; 10223, Terminal screw; 1023, Limiting block; 10231, Limiting screw; 1024, Conductive conductor; 200, Adapter; 201, Base; 2011, Power take-up section; 2012, Power supply section; 202, Base cover; 203, Locking block; 300, Mounting groove; 400, Mounting surface;

[0030] 1. Shell base; 11. Bottom plate; 12. Top plate; 13. First side plate; 14. Second side plate; 2. Vertical plate; 3. Track cavity; 4. Track opening; 5. Anti-detachment groove; 6. Positioning ridge; 7. Guide slope; 8. Support rib; 9. Connection port; 10. End cap; 15. Plug screw. Detailed Implementation

[0031] The specific embodiments of this application will be described in detail below with reference to the accompanying drawings. It should be understood that these specific descriptions are only intended to teach those skilled in the art how to implement this application, and are not intended to exhaustively describe all possible methods of this application, nor to limit the scope of this application. In a specific embodiment of this application, the power track 100 is constructed to have a rectangular shape. "Conductive conductor 1024" refers to a conductor having a strip structure in which the dimension in its primary extension direction is greater than the dimensions in other directions; for example, in the following embodiments, the conductive conductor 1024 extends along its length direction, and its length is much greater than its width and thickness.

[0032] To enable those skilled in the art to better understand the present application, the following will be discussed in conjunction with the appendix. Figure 1-7 The technical solutions in the embodiments of this application will be clearly and completely described.

[0033] Reference Figure 1 and Figure 2 This application provides a track socket, which may include one or more adapters 200 and a power track 100. The adapters 200 can be installed on the power track 100 via track openings 4. It is understood that, although... Figure 1 Only one adapter 200 is shown, but the number of adapters 200 is not limited to one; for example, there can be two or more. When multiple adapters 200 are installed on the power rail 100, the positions of the multiple adapters 200 can be adjusted independently of each other.

[0034] Reference Figure 3The adapter 200 mainly includes a base 201 and a base cover 202 that rotatably engages with the base 201. The base 201 of the adapter 200 further includes a power-taking part 2011 and a power-supplying part 2012. The power-taking part 2011 of the base 201 is movably installed inside the base cover 202. When the adapter 200 draws power from the power rail 100, the power-taking part 2011 of the base 201 and part of the base cover 202 are inserted into the power rail 100. The power-taking part 2011 of the base 201 rotates and unfolds relative to the base cover 202 and contacts the conductive conductor 1024 inside the power rail 100, thereby enabling the adapter 200 to draw power from the power rail 100. The appliance connector is inserted into the socket on the base 201 and makes contact with the power supply part 2012 of the base 201. The current in the power rail 100 is transmitted to the appliance through the conductive conductor 1024, the power taking part 2011 and the power supply part 2012.

[0035] Reference Figure 1 , Figure 4 , Figure 5 and Figure 6 The electric track 100 includes a linear track housing 101 and a core module 102 installed within the linear track housing 101. The length of the core module 102 can be the same as or shorter than the length of the linear track housing 101. In this embodiment, the example given is that the core module 102 is shorter than the length of the linear track housing 101. When the core module 102 is shorter than the linear track housing 101, the core module 102 can slide and adjust within the linear track housing 101. After determining the usage position of the core module 102 according to the usage scenario, the core module 102 can be locked to the linear track housing 101.

[0036] Reference Figure 1 and Figure 5 The linear track housing 101 can be made of an alloy metal such as aluminum alloy, and the linear track housing 101 is a hollow plate. The linear track housing 101 includes a housing base 1 and two vertical plates 2 integrally disposed on the housing base 1.

[0037] Reference Figure 1 and Figure 5The shell base 1 is a hollow rectangular tube, including a bottom plate 11, a top plate 12, a first side plate 13, and a second side plate 14. The bottom plate 11 and the top plate 12 are parallel, and the first side plate 13 and the second side plate 14 are parallel. The first side plate 13 is integrally formed on the same side of the bottom plate 11 and the top plate 12, and the second side plate 14 is integrally formed on the other side of the bottom plate 11 and the top plate 12. A track cavity 3 is formed between the bottom plate 11, the first side plate 13, the second side plate 14, and the top plate 12. The core module 102 is slidably and adjustablely installed in the track cavity 3. A track opening 4 is formed through the middle of the top plate 12 along its length, and the track opening 4 is connected to the track cavity 3.

[0038] The two vertical plates 2 are arranged parallel to each other and are the same length as the shell base 1. The two opposing vertical plates 2 are integrally formed on the top plate 12 and are located on both sides of the track opening 4.

[0039] Reference Figure 4 and Figure 5 When the power rail 100 is installed on the mounting surface 400, a mounting groove 300 is first made on the mounting surface 400 according to the size of the power rail 100. This mounting groove 300 is a boss-type mounting groove 300, which is different from the traditional rectangular groove. Then, the linear rail housing 101 is installed in the mounting groove 300, and the gap between the linear rail housing 101 and the mounting groove 300 is filled with expanding foam. The opposing end faces of the two upright plates 2 abut against the mounting surface 400, and the six outer peripheral surfaces of the housing base 1 abut against the groove wall of the mounting groove 300, which improves the stability of the power rail 100 on the mounting surface 400 and effectively reduces the shaking of the power rail 100 after it is installed on the mounting surface 400. The upright plates 2 extending outward on both sides of the rail opening 4 can partially shield the rail opening 4, effectively preventing dust from entering the power rail 100 from the rail opening 4 during use, reducing the interference of dust on other components inside the linear rail housing 101, and extending the conductivity and service life of the power rail 100. The two upright plates 2 protrude from the end mounting surface 400 away from the shell base 1. Compared with the traditional embedded power rail 100, the power rail 100 of this application is installed behind the mounting surface 400, with only the two upright plates 2 protruding from the mounting surface 400. The structure is more concealed, and the power rail 100 installed behind the mounting surface 400 is simpler and more beautiful.

[0040] It is worth noting that, because the mounting slot 300 is Figure 5The boss structure shown prevents the linear track housing 101 from being directly installed in the mounting groove 300 from the front. One approach is to create a boss-structured mounting groove 300 on the back side of the mounting surface 400, then install the power track 100 from the back side of the mounting surface 400, fill the gap between the linear track housing 101 and the mounting groove 300 with expanding foam, and finally seal the opening on the back side of the mounting groove 300. Alternatively, a rectangular groove-type mounting groove 300 can be created on the front side of the mounting surface 400, then install the power track 100 from the front side of the mounting surface 400, fill the gap between the linear track housing 101 and the rectangular groove-type mounting groove 300 with expanding foam, and finally fill the cavity formed by the vertical plate 2 and the top plate 12 with a panel. The end face of the panel presses against the top plate 2, and the side face abuts against the vertical plate 2. The panel is integrated and fixed on the mounting surface 400 and can be considered as part of the mounting surface 400. In this embodiment, the panel can be a decorative panel such as a wood panel, PVC panel, or rock panel, or a rigid panel formed by the solidification of semi-solid decorative materials such as cement or putty.

[0041] Reference Figure 5 An anti-detachment groove 5 is formed on the side wall of one upright plate 2 facing the other upright plate 2 along the extension direction of the upright plate 2. When the adapter 200 is inserted into the track cavity 3 through the track opening 4 to draw power, the locking block 203 on the power drawing part 2011 of the adapter 200 can engage with the anti-detachment groove 5, effectively preventing the adapter 200 from detaching from the power track 100 after insertion. The setting of the single-sided anti-detachment groove 5 ensures that the adapter 200 can only be inserted into the power track 100 in a fixed direction to rotate and draw power. When the adapter 200 is inserted in reverse, due to the absence of the anti-detachment groove 5, the adapter 200 cannot rotate to draw power from the power track 100, effectively preventing the reverse connection of the live wire conductor 1024 and the neutral wire conductor 1024 when the adapter 200 draws power from the power track 100.

[0042] In another possible implementation, anti-detachment grooves 5 are provided on the opposing sides of both upright plates 2. Two locking blocks 203 are provided on the power take-up section 2011 of the corresponding adapter 200. After the adapter 200 is inserted into the power rail 100 and rotates, the two locking blocks 203 engage with the two anti-detachment grooves 5 respectively, making the force on the left and right sides of the power take-up section 2011 of the adapter 200 more balanced and improving the stability of the connection between the adapter 200 and the power rail 100.

[0043] Reference Figure 5Two positioning ridges 6 are integrally formed on the side of the top plate 12 facing the bottom plate 11. These two positioning ridges 6 are respectively located on both sides of the track opening 4, extending along the length of the top plate 12 and being of equal length to it. When the core module 102 is slidably and adjustablely installed in the track cavity 3, the core module 102 engages with the two positioning ridges 6, improving the stability of the core module 102 within the track cavity 3. Simultaneously, the positioning ridges 6 act as guides, facilitating the sliding adjustment of the core module 102 within the track cavity 3. During the sliding process, the opening of the core module 102 is always kept directly facing the track opening 4.

[0044] Furthermore, the end of the positioning ridge 6 closest to the track opening 4 in the width direction is inclined in the height direction away from the base plate 11 (closer to the vertical plate 2) to form a guide slope 7. That is, when the track opening 4 is facing upward, the guide slope 7 formed by the two positioning ridges 6 is arranged in a figure-eight shape. By setting the guide slope 7 on the positioning ridge 6, when the adapter 200 is inserted into the track cavity 3 through the track opening 4 to draw power, the guide slope 7 guides the power-drawing part 2011 of the adapter 200 into the core module 102.

[0045] Reference Figure 5 Both the first side plate 13 and the second side plate 14 have integrally formed support ribs 8 on their opposing sidewalls. In this embodiment, the number of support ribs 8 on both the first side plate 13 and the second side plate 14 is set to three. The three support ribs 8 are arranged side by side on the first side plate 13 or the second side plate 14, and the support ribs 8 extend along the length direction of the linear track housing 101. Furthermore, the cross-section of the support rib 8 is triangular, and the slope of its side near the top plate 12 is steeper than its slope near the bottom plate 11. This arrangement is beneficial for installing the linear track housing 101 in the mounting groove 300 opened in the mounting surface 400, and it is also beneficial for improving the connection strength between the linear track housing 101 and the mounting groove 300, and preventing the linear track housing 101 from being displaced relative to the mounting surface 400 by external forces.

[0046] Reference Figure 1 and Figure 2 The linear track housing 101 is also provided with end caps 10 at both ends. The end caps 10 are made of plastic and are inserted into the two ends of the track cavity 3 of the linear track housing 101. The bottom plate 11 is provided with plug screws 15 at both ends. The plug screws 15 pass through the linear track housing 101 and are threaded onto the end caps 10 to lock the end caps 10 on the linear track housing 101.

[0047] Reference Figure 5 and Figure 6 The core module 102 includes an insulating support 1021, a conductive conductor 1024, a terminal block 1022, and a limiting block 1023.

[0048] Reference Figure 5and Figure 6 The insulating support 1021 is made of an insulating material such as plastic. The insulating support 1021 has an opening 10211 and a conductor cavity 10212. The number of conductor cavities 10212 is set to two, located on both sides of the opening 10211 respectively. The conductor cavity 10212 opens to one side of the opening 10211 to realize the communication between the conductor cavity 10212 and the opening 10211.

[0049] In this embodiment, the conductive conductor 1024 can be made of conductive materials such as copper. The number of conductive conductors 1024 is set to three: a live wire conductive conductor 1024, a neutral wire conductive conductor 1024, and a ground wire conductive conductor 1024. The live wire conductive conductor 1024 and the neutral wire conductive conductor 1024 are respectively installed in the two conductor cavities 10212 and housed within the insulating support 1021, while the ground wire conductive conductor 1024 is fixedly installed at the bottom of the opening 10211 and housed within the insulating support 1021.

[0050] Reference Figure 5 and Figure 6 Each conductive conductor 1024 extends linearly along the insulating support 1021. Further, for both the live wire and neutral wire conductive conductors 1024, each conductive conductor 1024 includes an integrally formed first arc-shaped portion, a second arc-shaped portion, and a U-shaped connecting portion. The first arc-shaped portion and the second arc-shaped portion are fixed together via the U-shaped connecting portion. The first arc-shaped portion and the second arc-shaped portion are integrally disposed at both ends of the U-shaped connecting portion. The ends of the first arc-shaped portion and the second arc-shaped portion away from the U-shaped connecting portion are curved in opposite directions. That is, the opening of the conductive conductor 1024 is funnel-shaped, so that the power taking portion 2011 structure of the adapter 200 can more easily make contact and connect with the conductive conductor 1024 under the guidance of the first arc-shaped portion and the second arc-shaped portion. When the adapter 200 is inserted into the power rail 100 to draw power, the power-drawing part 2011 of the adapter 200 is clamped by the conductive conductor 1024. The conductive conductor 1024 and the power-drawing part 2011 of the adapter 200 are in contact and electrically connected, so that the power rail 100 can supply power to the adapter 200. The ground conductive conductor 1024 is plate-shaped and extends in a straight line along the insulating support 1021.

[0051] Reference Figure 6 and Figure 7One end of the insulating bracket 1021 along its length is provided with a terminal block 1022. Specifically, the terminal block 1022 includes a terminal housing 10221 and three terminal conductors 10222: a live wire terminal conductor 10222, a neutral wire terminal conductor 10222, and a ground wire terminal conductor 10222. The terminal housing 10221 is inserted and installed at one end of the insulating bracket 1021 along its length. A terminal screw 10223 is also provided on the terminal housing 10221. The terminal screw 10223 passes through and connects the housing base 1, the insulating bracket 1021, the ground wire terminal conductor 10222, and the terminal housing 10221 in sequence, thereby realizing the installation of the terminal block 1022 at one end of the insulating bracket 1021, and simultaneously realizing the fixed installation of the core module 102 within the linear track housing 101, as well as the grounding of the linear track housing 101. At this time, the live wire terminal conductor 10222 is connected to the live wire conductor 1024, the neutral wire terminal conductor 10222 is connected to the neutral wire conductor 1024, and the ground wire terminal conductor 10222 is connected to the ground wire conductor 1024.

[0052] Reference Figure 2 A wiring port 9 is provided on the base plate 11 of the linear track housing 101. When the core module 102 is installed in the mounting slot 300 of the linear track housing 101, the wiring port 9 is directly aligned with the wiring terminal 1022 of the core module 102. When wiring the power track 100, the power cord is passed through the wiring port 9 and then connected to the three terminal conductors 10222 respectively, thereby connecting the power track 100 to power. Afterwards, the adapter 200 can be inserted into the power track 100 to draw power. It should be understood that when it is necessary to adjust the position of the core module 102 in the linear track housing 101, a new wiring port 9 needs to be opened on the linear track housing 101 so that the wiring port 9 is directly aligned with the wiring terminal 1022. Alternatively, the power cord extending into the original wiring port 9 can be extended to ensure that the power cord is always electrically connected to the wiring terminal 1022. The extended power cord is placed inside the track cavity 3 and is blocked by the linear track housing 101.

[0053] Reference Figure 1 , Figure 2 and Figure 6A limiting block 1023 is inserted and installed at the end of the insulating bracket 1021 away from the terminal 1022. The limiting block 1023 is an insulating block made of plastic, and its shape and structure are adapted to the conductor cavity 10212 and the opening 10211. One end of the limiting block 1023 abuts against the conductive conductor 1024. A limiting screw 10231 is provided on the limiting block 1023. The limiting screw 10231 connects and locks the linear track housing 101, the insulating bracket 1021 and the limiting block 1023, so that the limiting block 1023 is stably installed on the insulating bracket 1021, and at the same time, the core module 102 is fixedly installed in the linear track housing 101.

[0054] The implementation principle of this application embodiment is as follows: By setting upright plates 2 on both sides of the track opening 4 of the housing base 1, when the power rail 100 is installed on the mounting surface 400, the two upright plates 2 protrude from the mounting surface 400, and the side of the upright plates 2 facing away from the housing base 1 is flush with the mounting surface 400. The housing base 1 is embedded in the mounting surface 400, which helps to improve the installation strength of the power rail 100 on the mounting surface 400 and improve the stability of the power rail 100 after installation on the mounting surface 400. Compared with the traditional embedded power rail 100, after the power rail 100 of this application is installed on the mounting surface 400, only the upright plates 2 are exposed from the mounting surface 400, with more hidden structures, and the power rail 100 is simpler and more aesthetically pleasing after installation on the mounting surface 400.

[0055] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A linear track housing, characterized in that: include: Mounting surface (400), mounting groove (300) is provided on mounting surface (400); The housing base (1) is configured to be embedded in the mounting groove (300), and a track cavity (3) is formed inside it, and a track opening (4) is opened on the outside, the track opening (4) being connected to the track cavity (3); The upright plate (2) is configured to extend through the mounting surface (400) and be fixed on the housing base (1). The number of the upright plate (2) is set to at least two, with at least two of the upright plates (2) placed on both sides of the track opening (4) and extending along the length direction of the housing base (1).

2. A linear track housing according to claim 1, characterized in that: At least one upright plate (2) has an anti-detachment groove (5) on its end face facing another upright plate (2). The anti-detachment groove (5) extends along the length direction of the upright plate (2). The anti-detachment groove (5) is configured to engage with the adapter (200) to prevent the adapter (200) from detaching from the linear track housing (101).

3. A linear track housing according to claim 1, characterized in that: The shell base (1) includes a bottom plate (11) and a top plate (12) arranged opposite to each other, and a first side plate (13) and a second side plate (14) arranged opposite to each other. The first side plate (13) and the second side plate (14) are respectively fixed on both sides of the bottom plate (11). The top plate (12) is arranged opposite to the bottom plate (11) and located above the bottom plate (11). The first side plate (13) and the second side plate (14) are connected to both sides of the top plate (12). The bottom plate (11), the first side plate (13), the second side plate (14) and the top plate (12) together form the track cavity (3). The track opening (4) is opened on the top plate (12). The upright plate (2) is fixed on the top plate (12).

4. A linear track housing according to claim 1, characterized in that: At least one positioning ridge (6) is formed within the housing base (1), and the positioning ridge (6) is configured to engage with the insulating bracket (1021).

5. A linear track housing according to claim 4, characterized in that: Two positioning edges (6) are provided, and the two positioning edges (6) are placed on both sides of the track opening (4). The end of the positioning edge (6) near the track opening (4) is inclined in the direction close to the vertical plate (2) to form a guide slope (7).

6. A linear track housing according to claim 3, characterized in that: The first side plate (13) and / or the second side plate (14) are provided with support ribs (8), which are configured to snap into the mounting groove (300).

7. A linear track housing according to claim 3, characterized in that: The base plate (11) has a connection port (9) for threading the power cord into the track cavity (3).

8. A linear track housing according to claim 1, characterized in that: The track cavity (3) is provided with end caps (10) at both ends.

9. An electric track, characterized in that: It includes a linear track housing (101) as described in any one of claims 1 to 8 and a core module (102) disposed within the linear track housing (101). The core module (102) includes an insulating bracket (1021), a terminal block (1022) installed at one end of the insulating bracket (1021), a limiting block (1023) installed at the other end of the insulating bracket (1021), and at least two conductive conductors (1024) installed in the insulating bracket (1021), wherein the conductive conductors (1024) are electrically connected to the terminal block (1022).

10. A track socket, characterized in that: Includes the power rail (100) as described in claim 9 and one or more adapters (200), the adapters (200) being detachably mounted on the power rail (100).