CN211182650U - Row of inserting of adjustable direction - Google Patents

Row of inserting of adjustable direction Download PDF

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Publication number
CN211182650U
CN211182650U CN202020224162.4U CN202020224162U CN211182650U CN 211182650 U CN211182650 U CN 211182650U CN 202020224162 U CN202020224162 U CN 202020224162U CN 211182650 U CN211182650 U CN 211182650U
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shell
base
rotating shaft
conductive
socket
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CN202020224162.4U
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Chinese (zh)
Inventor
张华�
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Jinling Institute of Technology
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Jinling Institute of Technology
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Abstract

The utility model discloses a direction-adjustable socket, which comprises a base, a power line and at least two socket units; the socket unit comprises a shell, a telescopic rotating shaft, a plurality of conductive clamping pieces, a conductive ring and a limiting piece; the bottom end of the telescopic rotating shaft is fixed on a bottom plate in the base; the shell is sleeved at the upper end of the telescopic rotating shaft through the rotating shaft mounting groove and can rotate; the conducting ring is arranged on the bottom plate in the base; the upper shell plate of the shell is provided with a jack; the conductive clamping piece is fixed in the shell and below the corresponding jack, and when the plug insert is inserted into the socket unit from the jack, the conductive clamping piece clamps the corresponding plug insert; the outer ends of the conductive clamping pieces are all positioned on corresponding loop lines of the conductive rings, when the shell is placed in the base, the conductive clamping pieces are all in contact with the conductive rings to conduct electricity, and when the shell is pulled out upwards, the conductive clamping pieces are separated from the conductive rings; all the conducting rings are electrically connected with the power line. The utility model has the advantages of structure scientific and reasonable, the adjustable direction of socket.

Description

Row of inserting of adjustable direction
Technical Field
The utility model belongs to articles for daily use field relates to a row of inserting, especially relates to a row of inserting of adjustable direction.
Background
In life, due to the limitation of space and the number of wall sockets, the socket strip is widely used for expanding the number of sockets and flexibly changing the positions of the sockets. However, the directions of a plurality of sockets on the existing socket are all the same, and the plug which needs to be inserted may have the insertion requirement of multi-direction angle due to the position of the electric appliance, but the existing socket obviously cannot realize the purpose of insertion in any direction, so that some plugs cannot be inserted, or even if the plugs can be inserted only by force, the problems of wire winding and the like can be caused.
SUMMERY OF THE UTILITY MODEL
The utility model provides a row of inserting of adjustable direction to overcome prior art's defect.
In order to achieve the above object, the present invention provides a socket with adjustable direction, which comprises a base, a power line and at least two socket units; the base is a channel-shaped part with a bottom plate and side plates; the socket unit comprises a shell, a telescopic rotating shaft, a plurality of conductive clamping pieces, a conductive ring and a limiting piece; the shell is a cylinder with a downward opening; the telescopic rotating shaft is vertical to the base bottom plate, and the bottom end of the telescopic rotating shaft is fixed on the bottom plate in the base and can be telescopic; the center of the upper shell plate in the shell is provided with a rotating shaft mounting groove with a downward opening, and the shell is sleeved at the upper end of the telescopic rotating shaft through the rotating shaft mounting groove and can rotate around the telescopic rotating shaft; when the shell is placed in the base, the telescopic rotating shaft is compressed along with the shell, and when the shell is pulled out of the base upwards, the telescopic rotating shaft is extended along with the shell; the conducting ring is arranged on the bottom plate in the base and sleeved outside the telescopic rotating shaft; the upper shell plate of the shell is provided with a plurality of jacks which are vertically communicated, at least one of the at least two socket units is a double-jack socket unit, at least one of the at least two socket units is a three-jack socket unit, the shell of the double-jack socket unit is provided with two jacks, and the shell of the three-jack socket unit is provided with three jacks; the conductive clamping pieces are fixed in the shell, the number of the conductive clamping pieces is the same as that of the jacks, the conductive clamping pieces correspond to the jacks one by one, the conductive clamping pieces are fixed below the corresponding jacks, and when the plug blades are inserted into the socket unit from the jacks, the conductive clamping pieces clamp the corresponding plug blades; the outer ends of the conductive clamping pieces are all positioned on corresponding loop lines of the conductive ring, when the shell is placed in the base, the conductive clamping pieces of the groups are all in contact with the conductive ring to conduct electricity, and when the shell is pulled out of the base upwards, the conductive clamping pieces of the groups are separated from the conductive ring; one end of the power line extends into the base, the other end of the power line is provided with a power strip plug, and the conducting rings of all the socket units are electrically connected with the power line; the locating part is fixed on the bottom plate in the base and is located on the side face of the shell, the outer side face of the shell is provided with a plurality of limiting structures matched with the locating part, when the shell is arranged in the base, the locating part limits the fixed shell through the limiting structures, when the shell is pulled out of the base upwards, the limiting structures on the side face of the shell are separated from the locating part, and the shell can rotate.
Further, the utility model provides an adjustable direction's row of inserting can also have such characteristic: the limiting structure on the outer side surface of the shell is a plurality of vertical grooves which are uniformly distributed along the side surface of the shell; the limiting pieces are rod-shaped, and part or all of the limiting pieces can be embedded into the vertical grooves in the side face of the shell; the quantity of locating part is two, sets up respectively in the relative both sides of casing.
Further, the utility model provides an adjustable direction's row of inserting can also have such characteristic: wherein, the base also has a top plate; the top plate is provided with a plurality of unit holes which are equal to the number of the socket units and are in one-to-one correspondence, and the upper end of the shell of the socket unit is positioned in the corresponding unit hole and can be pulled out and rotated in the unit hole.
Further, the utility model provides an adjustable direction's row of inserting can also have such characteristic: wherein, the upper surface of casing has rodlike pull-up piece.
Further, the utility model provides an adjustable direction's row of inserting can also have such characteristic: when the socket unit is arranged in the base, the upper surface of the shell is flush with the upper surface of the base.
Further, the utility model provides an adjustable direction's row of inserting can also have such characteristic: wherein, the lower edge of the outer side surface of the shell is provided with a separation-preventing bulge, and the ring where the outer end of the separation-preventing bulge is positioned is larger than the unit hole; the sum of the height of the anti-separation bulge and the height of the limiting part is less than the height in the base.
Further, the utility model provides an adjustable direction's row of inserting can also have such characteristic: the anti-separation protrusions are two in number, are respectively located at opposite positions of the outer side face of the shell and are arranged between the two adjacent limiting structures.
Further, the utility model provides an adjustable direction's row of inserting can also have such characteristic: wherein, the height in the shell is less than the height of the telescopic rotating shaft.
The beneficial effects of the utility model reside in that: the utility model provides a row of inserting of adjustable direction through the socket unit that the back direction can be limited of a plurality of rotatablely of design and rotation in the base, realizes the purpose of arbitrary direction grafting electrical apparatus plug, satisfies the messenger's demand of the multi-direction grafting of many plugs. The utility model has the advantages of structure scientific and reasonable, the adjustable direction of socket and direction are controllable.
Drawings
FIG. 1 is a top view of a power strip;
FIG. 2 is a top view of the receptacle unit with the housing and conductive clip removed and its surrounding base (top plate removed);
fig. 3 is a front view of the receptacle unit and its surrounding base (with the top and front side panels removed).
Detailed Description
The following describes embodiments of the present invention with reference to the drawings.
As shown in fig. 1, the utility model provides a socket with adjustable direction, which comprises a base 1, a power line 2 and two socket units 3.
The base 1 is a channel with a bottom plate and side plates.
As shown in fig. 1 to 3, the socket unit 3 includes a housing 31, a telescopic shaft 32, a plurality of conductive clamping members, a conductive ring 33 and a limiting member 34.
The housing 31 is a cylinder with an opening facing downward.
The telescopic rotating shaft 32 is perpendicular to the base plate 1, and the bottom end of the telescopic rotating shaft is fixed on the base plate in the base 1 and can be telescopic.
The center of the upper shell plate in the shell 31 is provided with a rotating shaft mounting groove with a downward opening, and the shell 31 is sleeved at the upper end of the telescopic rotating shaft 32 through the rotating shaft mounting groove and can rotate around the telescopic rotating shaft 32.
When the shell 31 is arranged in the base 1, the telescopic rotating shaft 32 is compressed along with the shell; when the housing 31 is pulled out of the base 1, the telescopic shaft 32 is extended.
The conducting ring 33 is disposed on the bottom plate in the base 1 and is sleeved outside the telescopic rotating shaft 32.
The upper shell plate of the housing 31 has a plurality of insertion holes 311 penetrating up and down, the housing 31 of the dual jack unit has two insertion holes 311, and the housing 31 of the triple jack unit has three insertion holes 311.
The conductive clamping members are fixed in the housing 31 in the same number as the insertion holes 311 and correspond one to one. The conductive clamping members are fixed below the corresponding insertion holes 311, and clamp the corresponding plug blades when the plug blades are inserted into the receptacle unit 3 from the insertion holes 311.
The outer ends of the conductive clamping pieces are all positioned on corresponding loop lines of the conductive ring 33, and when the shell 31 is arranged in the base 1, namely the shell 31 is in a descending state, the groups of conductive clamping pieces are all in contact with the conductive ring 33 to conduct electricity; when the housing 31 is pulled out of the base 1, the conductive clamping members are separated from the conductive ring 33.
One end of the power cord 2 extends into the base 1, the other end is a socket plug, and the conducting rings 33 of all the socket units 3 are electrically connected with the power cord 2. The height of the housing 31 is less than the height of the telescopic shaft 32, and when the housing 31 is in a descending state, a gap exists between the bottom end of the housing 31 and the bottom plate of the base 1, so that the conductive ring 33 can be connected with the power cord 2.
The limiting member 34 is fixed on the bottom plate in the base 1 and located on the side of the housing 31. The outer side surface of the shell 31 is provided with a plurality of limiting structures matched with the limiting pieces 34. When the shell 31 is placed in the base 1, the limiting piece 34 limits and fixes the shell 31 through the limiting structure, and the shell 31 cannot rotate; when the housing 31 is pulled out of the base 1, the limit structure on the side surface of the housing 31 is separated from the limit member 34, and the housing 31 can rotate.
In the process of using the power strip, when the direction angle of a certain socket unit 3 needs to be adjusted, the shell 31 is lifted upwards to the limit result to be separated from the limit piece 34, the shell 31 is rotated to the required direction angle, then the shell 31 is pressed, the limit piece 34 interacts with another limit structure corresponding to the limit piece 34, the position of the shell 31 at the moment is fixed, meanwhile, the conductive clamping piece in the shell 31 is in contact with the conductive ring 33 for conducting, namely, is in conductive connection with the power line 2, and the power strip connection function is realized.
Specifically, the limiting structure on the outer side surface of the shell 31 is a plurality of vertical grooves 312 uniformly distributed along the side surface of the shell 31. The position-limiting member 34 is rod-shaped, and part or all of the position-limiting member 34 can be inserted into the vertical groove 312 on the side surface of the housing 31. The number of the stoppers 34 is two, and the stoppers are respectively disposed on two opposite sides of the housing 31. The greater the number of vertical grooves 312, the finer the direction in which the outlet unit 3 can be adjusted.
As shown in fig. 1, the base 1 further has a top plate. The top plate has two unit holes 11 in the same number as the number of the socket units 3 and in one-to-one correspondence. The upper end of the housing 31 of the receptacle unit 3 is located in the corresponding unit hole 11 and can be pulled out and rotated in the unit hole 11.
When the receptacle unit 3 is placed in the base 1, the upper surface of the housing 31 is flush with the upper surface of the base 1.
The upper surface of the housing 31 has a bar-shaped pulling piece 313 to facilitate the upward pulling out of the housing 31.
The lower edge of the outer side of the housing 31 has a separation-preventing protrusion 314, and the ring of the outer end of the separation-preventing protrusion 314 is larger than the unit hole 11, i.e. when the housing 31 is pulled upwards, the separation-preventing protrusion 314 can be clamped under the top plate of the base 1 to prevent the housing 31 from separating from the base 1.
The sum of the height of the separation-preventing protrusion 314 and the height of the stopper 34 is less than the height of the base 1, so that when the housing 31 is lifted to the uppermost position, the stopper structure on the outer side surface of the housing 31 can be separated from the stopper 34, thereby rotating the housing 31.
The number of the anti-separation protrusions 314 is two, and the two anti-separation protrusions are respectively located at opposite positions of the outer side surface of the shell 31 and arranged between two adjacent limiting structures.
In this embodiment, the dual-jack socket unit and the triple-jack socket unit can be a plurality of units, and can be arbitrarily set according to needs.

Claims (8)

1. The utility model provides a row of inserting of adjustable direction which characterized in that:
comprises a base, a power line and at least two socket units;
the base is a channel-shaped part with a bottom plate and side plates;
the socket unit comprises a shell, a telescopic rotating shaft, a plurality of conductive clamping pieces, a conductive ring and a limiting piece;
the shell is a cylinder with a downward opening;
the telescopic rotating shaft is perpendicular to the base bottom plate, and the bottom end of the telescopic rotating shaft is fixed on the bottom plate in the base and can be telescopic;
the center of the upper shell plate in the shell is provided with a rotating shaft mounting groove with a downward opening, and the shell is sleeved at the upper end of the telescopic rotating shaft through the rotating shaft mounting groove and can rotate around the telescopic rotating shaft;
when the shell is placed in the base, the telescopic rotating shaft is compressed along with the shell, and when the shell is pulled out of the base upwards, the telescopic rotating shaft is extended along with the shell;
the conducting ring is arranged on a bottom plate in the base and sleeved outside the telescopic rotating shaft;
the upper shell plate of the shell is provided with a plurality of jacks which are vertically communicated, at least one of the at least two socket units is a double-jack socket unit, at least one of the at least two socket units is a three-jack socket unit, the shell of the double-jack socket unit is provided with two jacks, and the shell of the three-jack socket unit is provided with three jacks;
the conductive clamping pieces are fixed in the shell, the number of the conductive clamping pieces is the same as that of the jacks, the conductive clamping pieces correspond to the jacks one by one, the conductive clamping pieces are fixed below the corresponding jacks, and when the plug blades are inserted into the socket unit from the jacks, the conductive clamping pieces clamp the corresponding plug blades;
the outer ends of the conductive clamping pieces are all positioned on corresponding loop lines of the conductive ring, when the shell is placed in the base, the conductive clamping pieces of the groups are all in contact with the conductive ring to conduct electricity, and when the shell is pulled out of the base upwards, the conductive clamping pieces of the groups are separated from the conductive ring;
one end of the power line extends into the base, the other end of the power line is provided with a power strip plug, and the conducting rings of all the socket units are electrically connected with the power line;
the locating part is fixed on the bottom plate in the base and located on the side face of the shell, the outer side face of the shell is provided with a plurality of limiting structures matched with the locating part, when the shell is arranged in the base, the locating part limits the fixed shell through the limiting structures, when the shell is pulled out of the base upwards, the limiting structures on the side face of the shell are separated from the locating part, and the shell can rotate.
2. The adjustable direction power strip of claim 1, wherein:
the limiting structure on the outer side surface of the shell is a plurality of vertical grooves which are uniformly distributed along the side surface of the shell;
the limiting pieces are rod-shaped, and part or all of the limiting pieces can be embedded into the vertical grooves in the side face of the shell;
the quantity of locating part is two, sets up respectively in the relative both sides of casing.
3. The adjustable direction power strip of claim 1, wherein:
wherein the base further has a top plate;
the top plate is provided with a plurality of unit holes, the number of the unit holes is equal to that of the socket units, the unit holes correspond to the socket units one by one, and the upper ends of the shells of the socket units are located in the corresponding unit holes and can be pulled out and rotated in the unit holes.
4. The adjustable direction power strip of claim 3, wherein:
wherein the upper surface of the housing has a bar-shaped pulling member.
5. The adjustable direction power strip of claim 3, wherein:
when the socket unit is arranged in the base, the upper surface of the shell is flush with the upper surface of the base.
6. The adjustable direction power strip of claim 3, wherein:
the lower edge of the outer side face of the shell is provided with a separation-preventing bulge, and a circular ring where the outer end of the separation-preventing bulge is located is larger than the unit hole;
the sum of the height of the anti-separation bulge and the height of the limiting piece is smaller than the height in the base.
7. The adjustable direction power strip of claim 6, wherein:
the anti-separation protrusions are two in number, are respectively located at opposite positions of the outer side face of the shell and are arranged between the two adjacent limiting structures.
8. The adjustable direction power strip of claim 1, wherein:
wherein, the height in the shell is less than the height of the telescopic rotating shaft.
CN202020224162.4U 2020-02-28 2020-02-28 Row of inserting of adjustable direction Active CN211182650U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020224162.4U CN211182650U (en) 2020-02-28 2020-02-28 Row of inserting of adjustable direction

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020224162.4U CN211182650U (en) 2020-02-28 2020-02-28 Row of inserting of adjustable direction

Publications (1)

Publication Number Publication Date
CN211182650U true CN211182650U (en) 2020-08-04

Family

ID=71807042

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020224162.4U Active CN211182650U (en) 2020-02-28 2020-02-28 Row of inserting of adjustable direction

Country Status (1)

Country Link
CN (1) CN211182650U (en)

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