Rotary door structure capable of switching switch modes
Technical Field
The present invention relates to revolving doors, and more particularly, to a revolving door structure capable of switching between a switching mode and a switching mode.
Background
The revolving door is used in various public places, such as hospitals, schools, office areas and the like, is used for temporarily building a revolving shutter door, prevents people from entering or is used for queuing and blocking and the like, has a wide application range, but the driven revolving door structure can only rotate circumferentially and cannot be switched into an up-down overturning mode according to requirements, so that the selectivity of a user according to the use requirements is reduced when the revolving door is used, and the practical range still cannot meet more use requirements.
Accordingly, further improvements are needed for existing turnstiles.
Disclosure of Invention
The invention aims to provide a revolving door structure capable of switching a switching mode, which can realize the actions of revolving and turning up a door body and can select one of the two action modes.
In order to achieve the above purpose, the present invention adopts the following scheme:
the utility model provides a revolving door structure of switchable mode, includes unable adjustment base and set up in rotation axis subassembly on the unable adjustment base, be provided with on the rotation axis subassembly and turn over a folding door structure, the rotation axis subassembly with be provided with the upset control mechanism between turning over a folding door structure, be provided with on the rotation axis subassembly and be used for the unblock the upset control mechanism turns over the action or the mode switching mechanism of rotation axis subassembly rotary action.
Further, the rotating shaft assembly comprises a rotating shaft seat arranged on the fixed base, and a rotating door rotating shaft is arranged in the rotating shaft seat.
Further, the upper turnover folding door structure comprises a door body connecting assembly fixedly arranged on the rotating shaft of the rotating door, two hinge holes are formed in the door body connecting assembly, turnover doors are hinged in the two hinge holes respectively, and a synchronous linkage mechanism is arranged between the two turnover doors.
Further, the door body connecting assembly comprises two semi-annular sleeves, the two semi-annular sleeves are sleeved on the rotating shaft of the rotating door, a locking screw mechanism is arranged between the two semi-annular sleeves for fixing, and one semi-annular sleeve is provided with a connecting panel.
Further, the two hinge holes are arranged on the connecting panel at intervals up and down, and the two turnover doors are arranged at intervals front and back.
Further, the synchronous linkage mechanism comprises a synchronous hinging part arranged on the roll-over door, and a synchronous connecting rod is hinged between the two synchronous hinging parts;
the distance between the two synchronous hinge parts is the same as the distance between the two hinge holes.
Further, the turnover control mechanism comprises a lifting annular sleeve sleeved on the rotating shaft of the rotating door, a first hinging seat is arranged on the lifting annular sleeve, a second hinging seat is arranged on one of the turnover doors, and a driving connecting rod is hinged between the first hinging seat and the second hinging seat.
Further, the mode switching mechanism comprises a plurality of positioning shaft holes arranged on the fixed base, the positioning shaft holes are uniformly distributed around the center circumference of the rotating door rotating shaft, a limiting outer ring sleeve is sleeved outside the rotating door rotating shaft, a positioning pin matched with the positioning shaft holes can be arranged at the bottom of the limiting outer ring sleeve, a rotating synchronous structure is arranged between the limiting outer ring sleeve and the rotating door rotating shaft, a limiting transverse hole is arranged on the limiting outer ring sleeve, and an elastic movable pin structure used for being matched with the limiting transverse hole to limit the limiting outer ring sleeve to move up and down is arranged on the rotating door rotating shaft.
Further, the rotation synchronization structure comprises a limiting straight groove arranged on the inner wall of the limiting outer ring sleeve, and a limiting strip is arranged on the outer wall of the limiting outer ring sleeve;
The limiting straight groove is clamped on the limiting strip, so that the limiting outer ring sleeve can synchronously rotate along with the rotating shaft of the revolving door, and can vertically lift relative to the rotating shaft of the revolving door.
Further, when the limiting outer ring sleeve moves upwards, the elastic movable pin structure is clamped in the limiting transverse hole to limit the descending movement of the limiting outer ring sleeve, and the positioning pin is separated from the positioning shaft hole, at the moment, the rotating shaft assembly can perform free rotation movement;
When the limiting outer ring sleeve moves downwards, the elastic movable pin structure is separated from the limiting transverse hole, the limiting outer ring sleeve moves downwards, the positioning pin is inserted into the corresponding positioning shaft hole, at the moment, the rotating shaft assembly cannot rotate freely, and the lifting annular sleeve can lift up and down, so that the upward turning action of the upward turning door folding structure is realized.
In summary, compared with the prior art, the invention has the following beneficial effects:
The invention solves the defects existing in the existing revolving door, has the advantages that the revolving door can realize circumferential rotation, can realize up-down overturning, folding and unfolding, and realize more environmental use, and is provided with the mode switching mechanism which can ensure that only one of the overturning actions or the rotating actions can be realized by opening or closing one of the modes, so that the revolving door is more reasonable in the use process, only one of the two modes can be unlocked, and the other mode is locked, so that the revolving door is easy to operate, simple in mode switching, simple in structure and convenient to use.
Drawings
FIG. 1 is a first state perspective view of the present invention;
FIG. 2 is a second state perspective view of the present invention;
FIG. 3 is a front view of a first state of the invention;
FIG. 4 is a front view of a second state of the invention;
FIG. 5 is one of the exploded views of the present invention;
FIG. 6 is a second exploded view of the present invention;
Fig. 7 is a schematic view of a limiting outer sleeve structure of the present invention.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1-7, the present invention provides a revolving door structure capable of switching a switching mode, including a fixed base 1 and a revolving shaft assembly 2 disposed on the fixed base 1, wherein an upper folding door structure 4 is disposed on the revolving shaft assembly 2, a turnover control mechanism 5 is disposed between the revolving shaft assembly 2 and the upper folding door structure 4, and a mode switching mechanism 3 for unlocking an upward turning action of the turnover control mechanism 5 or a revolving action of the revolving shaft assembly 2 is disposed on the revolving shaft assembly 2;
When in use, the rotation mode or the upturning mode of the door body is switched according to the requirement;
Unlocking one of the flip control mechanism 5 or the rotation shaft assembly 2 by controlling the mode switching mechanism 3;
the rotating shaft assembly 2 can control the upturned folding door structure 4 to open or close in a circumferential rotation manner;
the upper folding door structure 4 can control the door body to turn up and down to be opened or closed.
The rotating shaft assembly 2 of the present invention comprises a rotating shaft seat 201 arranged on the fixed base 1, and a rotating door rotating shaft 202 is installed in the rotating shaft seat 201.
The upper turnover door structure 4 of the present invention comprises a door body connecting assembly 401 fixedly arranged on the rotating door shaft 202, wherein two hinge holes 402 are arranged on the door body connecting assembly 401, turnover doors 403 are respectively hinged in the two hinge holes 402, and a synchronous linkage mechanism 404 is arranged between the two turnover doors 403.
The door body connecting assembly 401 comprises two semi-annular sleeves 4011, wherein the two semi-annular sleeves 4011 are sleeved on a rotating shaft 202 of the rotating door, a locking screw mechanism 4012 is arranged between the two semi-annular sleeves 4011 for fixing, and a connecting panel 4013 is arranged on one semi-annular sleeve 4011;
In the present invention, the two hinge holes 402 are vertically spaced on the connection panel 4013, and the two roll-over doors 403 are vertically spaced.
The synchronous linkage mechanism 404 of the invention comprises a synchronous hinge part 4041 arranged on the roll-over door 403, and a synchronous connecting rod 4042 is hinged between the two synchronous hinge parts 4041;
When one of the roll-over doors 403 rolls up and down around the corresponding hinge hole 402, the other roll-over door 403 is driven to roll over synchronously by the synchronous connecting rod 4042.
The two synchronous hinge portions 4041 are spaced apart from the two hinge holes 402 at the same distance.
The turnover control mechanism 5 of the present invention comprises a lifting annular sleeve 501 sleeved on the rotating shaft 202 of the rotating door, a first hinge seat 502 is provided on the lifting annular sleeve 501, a second hinge seat 503 is provided on one of the turnover doors 403, and a driving connecting rod 504 is hinged between the first hinge seat 502 and the second hinge seat 503.
The mode switching mechanism 3 of the present invention includes a plurality of positioning shaft holes 301 disposed on the fixed base 1, the plurality of positioning shaft holes 301 are uniformly distributed around the center circumference of the revolving door shaft 202, a limiting outer ring sleeve 302 is sleeved outside the revolving door shaft 202, a positioning pin 303 capable of being matched with the positioning shaft holes 301 is disposed at the bottom of the limiting outer ring sleeve 302, a rotation synchronization structure 304 is disposed between the limiting outer ring sleeve 302 and the revolving door shaft 202, a limiting transverse hole 305 is disposed on the limiting outer ring sleeve 302, and an elastic movable pin structure 306 for being matched with the limiting transverse hole 305 to limit the upward and downward movement of the limiting outer ring sleeve 302 is disposed on the revolving door shaft 202.
The rotation synchronization structure 304 of the present invention includes a limit straight groove 3041 disposed on an inner wall of the limit outer ring sleeve 302, and a limit bar 3042 is disposed on an outer wall of the limit outer ring sleeve 302;
the limiting straight groove 3041 is clamped on the limiting bar 3042, so that the limiting outer ring 302 can rotate synchronously along with the revolving door shaft 202 and can be lifted up and down relative to the revolving door shaft 202.
When the limiting outer ring sleeve 302 moves upwards, the elastic movable pin structure 306 is clamped in the limiting transverse hole 305 to limit the descending movement of the limiting outer ring sleeve 302, the positioning pin 303 is separated from the positioning shaft hole 301, at the moment, the rotating shaft assembly 2 can perform free rotation movement, and the lifting ring sleeve 501 cannot continuously descend under the limit of the limiting outer ring sleeve 302, so that the upward turning of the upward turning door folding structure 4 is limited;
When the limiting outer ring sleeve 302 moves downward, the elastic movable pin structure 306 is separated from the limiting transverse hole 305, the limiting outer ring sleeve 302 moves downward, so that the positioning pin 303 is inserted into the corresponding positioning shaft hole 301, at this time, the rotating shaft assembly 2 cannot rotate freely, and the lifting annular sleeve 501 can lift up and down, so that the upward turning action of the upward turning door structure 4 is realized.
While there has been shown and described what is at present considered to be the fundamental principles and the main features of the invention and the advantages thereof, it will be understood by those skilled in the art that the present invention is not limited to the foregoing embodiments, but is described in the foregoing description merely illustrates the principles of the invention, and various changes and modifications may be made therein without departing from the spirit and scope of the invention as hereinafter claimed. The scope of the invention is defined by the appended claims and equivalents thereof.