Continuous albizzia rotating shaft device suitable for door and window of pseudo-classic building

By designing a joint rotating shaft device with shaking stems, body, assembly cavity and positioning module in the doors and windows of antique buildings, the problem of doors and windows being unable to hover for a long time is solved, and stable hovering and convenient operation are achieved in multiple angles.

CN223089116UActive Publication Date: 2025-07-11MEMORIAL HALL OF THE FIRST NAT CONGRESS OF THE COMMUNIST PARTY OF CHINA +2
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Patent Information

Application Number
CN202422050345.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-23
Publication Date
2025-07-11
Estimated Expiration
2034-08-23

AI Technical Summary

Technical Problem

The connecting shaft device for doors and windows of existing antique buildings has a single function, and it is impossible to keep the doors and windows hover at a specific angle for a long time, so additional equipment assistance is required.

Method used

A joint rotary shaft device including a shaking stem, a shaking body, an assembly cavity, a driving member and a positioning module is designed. Multi-angle hovering is achieved through the drive parts and a positioning module in the assembly cavity. Combined with the buffer mechanism, the elastic potential energy is stored when the positioning groove is not aligned, and the shaking stem is automatically locked.

Benefits of technology

It realizes stable hovering of doors and windows of antique buildings at multiple angles, simplifies the operation process, and improves functional diversity and ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of ancient building door and window opening accessories, in particular to a continuous albizzia rotating shaft device suitable for an ancient building door and window, which comprises a pair of rocking bars, a pair of albizzia bodies, an assembly cavity, a driving piece and a pair of positioning modules, the pair of rocking bars is fixedly arranged on an external load, the pair of rocking bars are respectively positioned at the top and the bottom of the load, and the positions of the pair of rocking bars correspond to each other; the pair of albizia bodies is fixedly arranged on the outer side of the load, and the pair of albizia bodies is rotationally connected with the pair of rocking stems respectively; the assembly cavity is arranged in the load; the driving piece is rotationally arranged in the assembling cavity, and the two ends of the driving piece correspond to the positions of the pair of rocking bars correspondingly; and the pair of positioning modules are arranged on the load and the pair of rocking bars, the pair of positioning modules are respectively connected with the driving piece, and the pair of positioning modules are respectively connected with the pair of albizzia julibrissin bodies and are used for positioning the pair of rocking bars. The utility model overcomes the defect of single function in the prior art, and has the characteristic of convenience in operation and control.
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Description

Technical Field

[0001] The utility model relates to the technical field of opening accessories for ancient building doors and windows, and particularly relates to a connecting column rotating shaft device applicable to doors and windows of imitation ancient buildings. Background Art

[0002] In recent years, with the rapid development of the tourism industry, the imitation ancient building groups in China have been growing day by day. For imitation ancient buildings, most of their doors and windows are assembled on the door frames or window frames of imitation ancient buildings through connecting column rotating shaft mechanisms to achieve the function of flipping and opening / closing the doors and windows.

[0003] In the prior art, the Chinese utility model patent with the authorization announcement number of CN205823046U proposes a general gate connecting column, which includes a lower column and an upper column located thereon. The top end of a rocking bar is sleeved with a first inner sleeve, and a first outer sleeve is vertically installed and fixed on the bottom surface of the upper column. The top end of the rocking bar sleeved with the first inner sleeve is placed in the first outer sleeve; the bottom end of the rocking bar is sleeved with a second inner sleeve, and a second outer sleeve is vertically installed and fixed on the upper end surface of the lower column. The bottom end of the rocking bar sleeved with the second inner sleeve is placed in the second outer sleeve; the lower part of the second inner sleeve has a convex semi-circular structure, the upper part of the second outer sleeve has a concave semi-circular structure, the outer diameter of the second inner sleeve is smaller than the inner diameter of the second outer sleeve, and the semi-circle radius of the convex semi-circular structure of the second inner sleeve is smaller than the semi-circle radius of the concave semi-circular structure of the second outer sleeve.

[0004] For imitation ancient buildings, in addition to the function of flipping and opening / closing, during daily living, the doors and windows of the building also need to be kept in the open state or closed state for a relatively long period of time. However, for the above-mentioned general gate connecting column, it only plays a role of rotational connection. To fix the flipping angle of the doors and windows, additional devices need to be used for assistance, so that the doors and windows of the building can hover at a certain angle for a relatively long period of time, which has the defect of single function. Content of the Utility Model

[0005] In view of the technical problem of single function existing in the prior art, the embodiment of the utility model provides a connecting column rotating shaft device applicable to doors and windows of imitation ancient buildings, which includes: a pair of rocking bars, a pair of column bodies, an assembly cavity, a driving member and a pair of positioning modules;

[0006] A pair of rocking bars are fixedly arranged on an external load. One of the rocking bars is located at the top of the load, and the other rocking bar is located at the bottom of the load. The positions of the pair of rocking bars correspond to each other;

[0007] A pair of column bodies are fixedly arranged on the outer side of the load, and the pair of column bodies are respectively rotationally connected with the pair of rocking bars;

[0008] The assembly cavity is arranged inside the load;

[0009] The driving member is rotatably arranged inside the assembly cavity, and two ends of the driving member correspond to the positions of a pair of rocking stems respectively;

[0010] A pair of positioning modules are arranged on the load and the pair of rocking stems, the pair of positioning modules are respectively connected to the driving members, and the pair of positioning modules are respectively connected to the pair of pillars for positioning the pair of rocking stems.

[0011] Furthermore, the positioning module comprises: an adapter slot, an assembly hole, a telescopic rod, a connecting component and a positioning component;

[0012] The transfer groove is provided on the pillar body, one of the rocking stems is inserted into the inner cavity of the transfer groove, and the rocking stem is rotatably connected with the transfer groove;

[0013] The assembly hole is formed on the end surface of one end of the rocking stem, and the assembly hole sequentially penetrates the rocking stem and the outer wall of the load and is connected with the assembly cavity, and the inner cavity of the assembly hole is in the shape of a prism;

[0014] The telescopic rod is movably arranged in the inner cavity of the assembly hole, and the radial cross-sectional shape of the telescopic rod matches that of the assembly hole;

[0015] The connecting component is arranged on the telescopic rod, and the connecting component is connected to the driving member;

[0016] The positioning component is arranged on the telescopic rod, and the positioning component is connected with one of the pillar bodies for positioning the rocking stem.

[0017] Further, the connection assembly includes: a first thread and a second thread;

[0018] The driving member is a tubular member, and the tail end of the telescopic rod passes through one end port of the driving member and is inserted into the inner cavity of the driving member;

[0019] The first thread is arranged on the circumferential inner wall of the driving member, and the first thread is located at one end of the driving member, and is used to drive the telescopic rod to extend and retract along the axial direction of the driving member;

[0020] The second thread is formed on the circumferential side wall of the telescopic rod, is located at the rear end of the telescopic rod, and is engaged with the first thread to drive the telescopic rod to extend and retract along the axial direction of the driving member.

[0021] Further, the positioning assembly includes: a first positioning slot and a first insertion rod;

[0022] The first positioning groove is formed on the bottom wall of the inner cavity of the adapter groove, the first positioning groove matches the position of the assembly hole, and the first positioning groove matches the radial cross-sectional shape of the assembly hole;

[0023] The first plug rod is fixedly arranged at the head end of the telescopic rod, and is located in the inner cavity of the assembly hole. The first plug rod matches the radial cross-sectional shape of the assembly hole. When the positioning assembly positions the rocking stem, the head end of the first plug rod is plugged into the first positioning groove.

[0024] Furthermore, the positioning assembly includes: a second positioning slot, a second insertion rod and a buffer mechanism;

[0025] The second positioning groove is formed on the bottom wall of the inner cavity of the adapter groove, the second positioning groove matches the position of the assembly hole, and the second positioning groove matches the radial cross-sectional shape of the assembly hole;

[0026] The buffer mechanism is arranged at the head end of the telescopic rod;

[0027] The second plug rod is movably arranged in the inner cavity of the assembly hole, the tail end of the second plug rod is connected to the buffer mechanism, the second plug rod matches the radial cross-sectional shape of the assembly hole, and when the positioning component positions the shaking stem, the head end of the second plug rod is plugged into the second positioning groove.

[0028] Furthermore, the buffer mechanism comprises: a buffer chamber, a slider, a connecting rod and an elastic member;

[0029] The buffer cavity is arranged inside the telescopic rod, the buffer cavity is located at the head end of the telescopic rod, and the buffer cavity is exposed to the end surface of the head end of the telescopic rod;

[0030] The slider is movably arranged inside the buffer cavity, and the slider is slidably connected with the inner wall of the buffer cavity along the axial direction of the telescopic rod;

[0031] One end of the connecting rod is fixedly connected to the slider, and the other end of the connecting rod is fixedly connected to the second plug rod, so as to drive the plug rod to move;

[0032] The elastic member is arranged inside the buffer cavity, one end of the elastic member is connected to the slider, the other end of the elastic member is connected to the inner wall of the buffer cavity, and the elastic member is located between the slider and the assembly cavity for elastically supporting the slider.

[0033] Furthermore, it also includes: a driving module, which is arranged on the load and connected to the driving member to control the rotation of the driving member.

[0034] Furthermore, the driving module includes: a receiving hole, a plurality of jacks and plug-ins;

[0035] The driving member is a tubular member;

[0036] The receiving hole is formed on the outer wall of the load, and the receiving hole penetrates the outer wall of the load and communicates with the assembly cavity;

[0037] A plurality of jacks are provided on the circumferential side wall of the driving member, any jack penetrates the outer wall of the driving member and communicates with the inner cavity of the driving member, and any jack matches the position of the receiving hole, so as to drive the driving member to rotate;

[0038] The plug-in unit is movably connected with one of the accommodating holes and is used to drive the driving member to rotate.

[0039] Further, the plug-in includes: a plugging part and a holding part;

[0040] The shape of the holding part matches the inner cavity shape of the accommodating hole;

[0041] The plugging part is fixedly connected to the holding part, and the head end of the plugging part is movably plugged into one of the jacks. After the plugging part is completely inserted into one of the jacks, the holding part is located in the inner cavity of the accommodating hole.

[0042] Further, the tail end of the plugging part is fixedly connected to the middle section of the holding part. The plugging part and the holding part are combined to form a "one" shaped rigid member, and the holding part and the plugging part are integrally formed.

[0043] The connecting column rotating shaft device suitable for antique building doors and windows according to the embodiment of the present invention has the following beneficial effects:

[0044] 1. By adding an assembly cavity, a driving part and a positioning module, the present invention enables the load to hover at multiple angles, solving the defect of single function in the prior art.

[0045] 2. In the second embodiment of the present invention, a buffer mechanism is arranged between the second plug rod and the telescopic rod, so that when the second positioning groove is not aligned with the assembly hole, the kinetic energy for driving the second plug rod to extend is converted into elastic potential energy and stored on the elastic member, and when the second positioning groove is aligned with the assembly hole, the second plug rod is timely driven to extend and inserted into the second positioning groove, thereby locking the rocker. It is not necessary for the user to keep applying power to the driving part when the second positioning groove is not aligned with the assembly hole, which is convenient for the user to operate the device.

[0046] It should be understood that both the foregoing general description and the following detailed description are exemplary and intended to provide further explanation of the claimed technology. BRIEF DESCRIPTION OF THE DRAWINGS

[0047] Figure 1 is an assembly schematic diagram according to an embodiment of the present invention;

[0048] Figure 2 is an assembly schematic diagram of the assembly hole, the assembly cavity and the accommodating hole according to an embodiment of the present invention (the load is perspectivized);

[0049] Figure 3 is an internal structure schematic diagram according to an embodiment of the present invention;

[0050] Figure 4 is a structural decomposition schematic diagram according to an embodiment of the present invention;

[0051] Figure 5 is Figure 3 a partial enlarged schematic diagram of area A in

[0052] Figure 6 for Figure 4 A partial enlarged schematic diagram of the middle B area;

[0053] Figure 7 for Figure 3 A partial enlarged schematic diagram of the middle C area;

[0054] Figure 8 for Figure 4 A partial enlarged schematic diagram of the D area in the middle;

[0055] Figure 9 for Figure 4 A partial enlarged schematic diagram of the middle E area;

[0056] Figure 10 for Figure 1 A partial enlarged schematic diagram of the middle F area;

[0057] Figure 11 It is a schematic diagram of the structural decomposition of a driving module according to an embodiment of the utility model.

[0058] Description of the accompanying drawings:

[0059] Load, 2-rocking stem, 3-shaft body, 4-assembly cavity, 5-driving member, 61-adaptation groove, 62-assembly hole, 63-telescopic rod, 641-first thread, 642-second thread, 651-second positioning groove, 652-second plug rod, 6531-slider, 6532-connecting rod, 6533-elastic member, 6534-buffer cavity, 71-accommodating hole, 72-plug hole, 73-plug-in unit, 731-plug-in portion, 732-gripping portion. DETAILED DESCRIPTION

[0060] The preferred embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings to further illustrate the present invention.

[0061] The above and other technical contents, features and effects of the present invention will be clearly presented in the following detailed description of the embodiments with reference to the accompanying drawings. The directional terms mentioned in the following embodiments, such as up, down, left, right, front or back, etc., are only the directions of the reference drawings. Therefore, the directional terms used are used to illustrate and not to limit the present invention. In addition, in all embodiments, the same reference numerals represent the same elements.

[0062] First, combine Figures 1 to 11 The invention describes a connecting shaft device suitable for doors and windows of antique buildings according to an embodiment of the utility model, which is used for assembling doors and windows of antique buildings and has a wide range of application scenarios.

[0063] like Figures 1 to 6As shown in the figure, the connecting column rotating shaft device applicable to the doors and windows of antique buildings in the embodiment of the utility model comprises: a pair of rockers 2, a pair of column bodies 3, an assembly cavity 4, a driving member 5 and a pair of positioning modules.

[0064] Further, as Figures 1 to 6 shown, a pair of rockers 2 are fixedly arranged on an external load 1, one of the rockers 2 is located on the top of the load 1, the other rocker 2 is located at the bottom of the load 1, and the positions of the pair of rockers 2 correspond to each other. Among them, the load 1 includes but is not limited to the door or window of an antique building; a pair of column bodies 3 are fixedly arranged on the outer side of the load 1, and the pair of column bodies 3 are respectively rotatably connected with the pair of rockers 2; the assembly cavity 4 is arranged inside the load 1; the driving member 5 is rotatably arranged inside the assembly cavity 4, and the two ends of the driving member 5 respectively correspond to the positions of the pair of rockers 2; a pair of positioning modules are arranged on the load 1 and the pair of rockers 2, the pair of positioning modules are respectively connected with the driving member 5, and the pair of positioning modules are respectively connected with the pair of column bodies 3 for positioning the pair of rockers 2.

[0065] Further, as Figures 1 to 9 shown, the positioning module comprises: a transfer groove 61, an assembly hole 62, a telescopic rod 63, a connecting component and a positioning component; the transfer groove 61 is opened on the column body 3, and one of the rockers 2 is inserted into the inner cavity of the transfer groove 61, and the rocker 2 is rotatably connected with the transfer groove 61. Preferably, a bearing is arranged between the rocker 2 and the transfer groove 61 so that the rocker 2 is rotatably connected with the transfer groove 61; the assembly hole 62 is opened on the end face of one end of the rocker 2, the assembly hole 62 sequentially penetrates through the outer wall of the rocker 2 and the load 1 and communicates with the assembly cavity 4, and the inner cavity shape of the assembly hole 62 is a prism; the telescopic rod 63 is movably arranged in the inner cavity of the assembly hole 62, and the telescopic rod 63 matches the radial cross-sectional shape of the assembly hole 62; the connecting component is arranged on the telescopic rod 63, and the connecting component is connected with the driving member 5; the positioning component is arranged on the telescopic rod 63, and the positioning component is connected with one of the column bodies 3 for positioning the rocker 2.

[0066] Further, as Figures 3 to 6 shown, the connecting component comprises: a first thread 641 and a second thread 642; the driving member 5 is a tubular member, and the tail end of the telescopic rod 63 passes through one end port of the driving member 5 and is inserted into the inner cavity of the driving member 5; the first thread 641 is arranged on the circumferential inner wall of the driving member 5, and the first thread 641 is located at one end of the driving member 5 for driving the telescopic rod 63 to axially expand and contract along the driving member 5; the second thread 642 is opened on the circumferential side wall of the telescopic rod 63, the second thread 642 is located at the tail end of the telescopic rod 63, and the second thread 642 meshes with the first thread 641 for driving the telescopic rod 63 to axially expand and contract along the driving member 5.

[0067] Furthermore, the positioning assembly includes: a first positioning groove (not shown in the figure) and a first plug rod (not shown in the figure); the first positioning groove is opened on the bottom wall of the inner cavity of the adapter groove 61, the first positioning groove matches the position of the assembly hole 62, and the first positioning groove matches the radial cross-sectional shape of the assembly hole 62; the first plug rod is fixedly arranged at the head end of the telescopic rod 63, the first plug rod is located in the inner cavity of the assembly hole 62, the first plug rod matches the radial cross-sectional shape of the assembly hole 62, and when the positioning assembly positions the rocker stem 2, the head end of the first plug rod is plugged into the first positioning groove.

[0068] Further, if Figure 3 , 4 As shown in , 7 to 9, the positioning assembly includes: a second positioning groove 651, a second plug rod 652 and a buffer mechanism; the second positioning groove 651 is opened on the bottom wall of the inner cavity of the adapter groove 61, the second positioning groove 651 matches the position of the assembly hole 62, and the second positioning groove 651 matches the radial cross-sectional shape of the assembly hole 62; the buffer mechanism is arranged at the head end of the telescopic rod 63; the second plug rod 652 is movably arranged in the inner cavity of the assembly hole 62, the tail end of the second plug rod 652 is connected to the buffer mechanism, and the second plug rod 652 matches the radial cross-sectional shape of the assembly hole 62, and when the positioning assembly positions the shaking stem 2, the head end of the second plug rod 652 is plugged into the second positioning groove 651.

[0069] Further, if Figure 3 , 4 As shown in , 7 to 9, the buffer mechanism includes: a buffer cavity 6534, a slider 6531, a connecting rod 6532 and an elastic member 6533; the buffer cavity 6534 is arranged inside the telescopic rod 63, the buffer cavity 6534 is located at the head end of the telescopic rod 63, and the buffer cavity 6534 is exposed to the end surface of the head end of the telescopic rod 63; the slider 6531 is movably arranged inside the buffer cavity 6534, and the slider 6531 is slidably connected to the inner wall of the buffer cavity 6534 along the axial direction of the telescopic rod 63; one end of the connecting rod 6532 is fixedly connected to the slider 6531, and the other end of the connecting rod 6532 is fixedly connected to the second plug rod 652, which is used to drive the plug rod to move; the elastic member 6533 is arranged inside the buffer cavity 6534, one end of the elastic member 6533 is connected to the slider 6531, and the other end of the elastic member 6533 is connected to the inner wall of the buffer cavity 6534, and the elastic member 6533 is located between the slider 6531 and the assembly cavity 4, which is used to elastically support the slider 6531.

[0070] Further, if Figure 1 , 2 As shown in , 4, 6, 10 and 11, the device further comprises: a driving module, the driving module is arranged on the load 1, the driving module is connected to the driving member 5, and is used to control the rotation of the driving member 5.

[0071] Further, if Figure 1 ,2 As shown in Figures 4, 6, 10 and 11, the driving module includes: a receiving hole 71, a plurality of jacks 72 and a plug-in 73; the driving member 5 is a tubular member; the receiving hole 71 is provided on the outer wall of the load 1, and the receiving hole 71 passes through the outer wall of the load 1 and is connected with the assembly cavity 4; a plurality of jacks 72 are provided on the circumferential side wall of the driving member 5, any one of the jacks 72 passes through the outer wall of the driving member 5 and is connected with the inner cavity of the driving member 5, and any one of the jacks 72 matches the position of the receiving hole 71, so as to drive the driving member 5 to rotate; the plug-in 73 is movably connected with one of the receiving holes 71, so as to drive the driving member 5 to rotate.

[0072] Further, if Figure 11 As shown, the plug-in 73 includes: an inserting portion 731 and a holding portion 732; the holding portion 732 matches the inner cavity shape of the accommodating hole 71; the inserting portion 731 and the holding portion 732 are fixedly connected, and the head end of the inserting portion 731 is movably inserted into one of the inserting holes 72. When the inserting portion 731 is fully inserted into one of the inserting holes 72, the holding portion 732 is located in the inner cavity of the accommodating hole 71, and the holding portion 732 does not protrude from the outer surface of the load 1.

[0073] Further, if Figure 11 As shown, the tail end of the plug-in portion 731 is fixedly connected to the middle section of the holding portion 732, and the plug-in portion 731 and the holding portion 732 are combined to form a "个"-shaped rigid member, and the holding portion 732 and the plug-in portion 731 are integrally formed. The device designs the plug-in 73 to be an "个"-shaped rigid member, so that when the user holds the holding portion 732 of the plug-in 73, the user places the index finger between the holding portion 732 and the plug-in portion 731, and places the middle finger between the holding portion 732 and the plug-in portion 731, and the plug-in portion 731 is located between the index finger and the middle finger of the user, thereby facilitating the user to grasp the holding portion 732 of the plug-in 73.

[0074] The working principle of this device is as follows:

[0075] When the positioning module is in the free mode, the second insertion rod 652 or the first insertion rod is completely in the inner cavity of the assembly hole 62, and the rotation connection between the pair of rocker stems 2 and the pair of pillar bodies 3 can rotate freely.

[0076] When the user switches the positioning module from the free mode to the locking mode, the user flips the load 1 by a certain angle with one hand to keep the load 1 still, and then the user holds the gripping portion 732 of the plug-in 73 to pull it out of the accommodating hole 71, and keeps the head end of the plug-in portion 731 of the plug-in 73 plugged into one of the plug holes 72, and then controls the plug-in 73 to drive the driving member 5 to rotate. According to the above process, the plug-in 73 is plugged into multiple plug holes 72 in turn, thereby driving the driving member 5 to rotate by a certain angle. During the rotation of the driving member 5, the threaded assembly relationship between the first thread 641 and the second thread 642 is used to drive the telescopic rod 63 to extend a certain length.

[0077] In the embodiment of the utility model, as the telescopic rod 63 is extended, the telescopic rod 63 drives the first insertion rod to extend out of the end of the assembly hole 62, and the head end of the first insertion rod is plugged into the first positioning groove, thereby preventing the swing stem 2 from rotating, and finally achieving the purpose of locking the load 1 at the current hovering angle.

[0078] In another embodiment of the present invention, as the telescopic rod 63 is extended, the telescopic rod 63 drives the first plug rod to extend out of the end of the assembly hole 62. When the end of the assembly hole 62 is not aligned with the second positioning groove 651, the second plug rod 652 is blocked by the pillar body 3 in the inner cavity of the assembly hole 62, so that the elastic member 6533 is compressed. At this time, the user drives the load 1 to slightly flip a certain angle to align the second positioning groove 651 with the assembly hole 62. The elastic member 6533 drives the slider 6531 and the connecting rod 6532 to extend a certain length, thereby driving the second plug rod 652 to extend out of the assembly hole 62. At this time, the head end of the second plug rod 652 is plugged into the second positioning groove 651, thereby preventing the rocker 2 from rotating, and finally achieving the purpose of locking the load 1 at the current hovering angle.

[0079] Above, refer to Figures 1 to 11 The invention describes a connecting shaft device suitable for antique building doors and windows according to an embodiment of the utility model, which has the following beneficial effects:

[0080] 1. The utility model adds an assembly cavity, a driving member and a positioning module, so that the load can maintain a hovering state at multiple angles, thereby solving the defect of single function in the prior art.

[0081] 2. The second embodiment of the utility model provides a buffer mechanism between the second insertion rod and the telescopic rod, so that when the second positioning groove is not aligned with the assembly hole, the kinetic energy of driving the second insertion rod to extend is converted into elastic potential energy and stored on the elastic member, and the second insertion rod is promptly driven to extend and inserted into the second positioning groove when the second positioning groove is aligned with the assembly hole, thereby locking the rocker stem. There is no need for the user to keep applying power to the driving member when the second positioning groove is not aligned with the assembly hole, so that the user can operate the device easily.

[0082] It should be noted that in this specification, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising..." does not exclude the presence of additional identical elements in the process, method, article or device comprising the said element.

[0083] Although the content of the present utility model has been described in detail through the above preferred embodiments, it should be recognized that the above description should not be considered as a limitation of the present utility model. After those skilled in the art have read the above content, various modifications and alternatives to the present utility model will be obvious. Therefore, the protection scope of the present utility model should be defined by the appended claims.

Claims

1. A connecting column rotating shaft device applicable to doors and windows of antique buildings, characterized in that Comprising: a pair of rocker stems, a pair of columnar bodies, an assembly cavity, a driving member and a pair of positioning modules; The pair of rocker stems are fixedly arranged on an external load, one of the rocker stems is located on the top of the load, the other rocker stem is located on the bottom of the load, and the positions of the pair of rocker stems correspond to each other; The pair of columnar bodies are fixedly arranged on the outer side of the load, and the pair of columnar bodies are respectively rotatably connected to the pair of rocker stems; The assembly cavity is arranged inside the load; The driving member is rotatably arranged inside the assembly cavity, and the two ends of the driving member respectively correspond to the positions of the pair of rocker stems; The pair of positioning modules are arranged on the load and the pair of rocker stems, the pair of positioning modules are respectively connected to the driving member, and the pair of positioning modules are respectively connected to a pair of columnar bodies, and are used for positioning the pair of rocker stems.

2. The connecting column rotating shaft device applicable to the doors and windows of antique-style buildings as described in claim 1, characterized in that, The positioning module comprises: a transfer groove, an assembly hole, a telescopic rod, a connection component and a positioning component; The transfer groove is opened on the columnar body, and one of the rocker stems is inserted into the inner cavity of the transfer groove, and the rocker stem is rotatably connected to the transfer groove; The assembly hole is opened on the end face of one end of the rocker stem, the assembly hole sequentially penetrates through the rocker stem and the outer wall of the load and communicates with the assembly cavity, and the inner cavity shape of the assembly hole is a prism; The telescopic rod is movably arranged in the inner cavity of the assembly hole, and the telescopic rod matches the radial cross-sectional shape of the assembly hole; The connection component is arranged on the telescopic rod, and the connection component is connected to the driving member; The positioning component is arranged on the telescopic rod, and the positioning component is connected to one of the columnar bodies, and is used for positioning the rocker stem.

3. The connecting column rotating shaft device applicable to the doors and windows of antique buildings as described in claim 2, characterized in that, The connection component comprises: a first thread and a second thread; The driving member is a tubular member, and the tail end of the telescopic rod passes through one end port of the driving member and is inserted into the inner cavity of the driving member; The first thread is arranged on the circumferential inner wall of the driving member, and the first thread is located at one end of the driving member, and is used for driving the telescopic rod to axially expand and contract along the driving member; The second thread is opened on the circumferential side wall of the telescopic rod, the second thread is located at the tail end of the telescopic rod, and the second thread meshes with the first thread, and is used for driving the telescopic rod to axially expand and contract along the driving member.

4. The connecting column rotating shaft device applicable to the doors and windows of antique buildings as described in claim 2, characterized in that, The positioning component comprises: a first positioning groove and a first insertion rod; The first positioning groove is opened on the inner cavity bottom wall of the transfer groove, the first positioning groove matches the position of the assembly hole, and the first positioning groove matches the radial cross-sectional shape of the assembly hole; The first insertion rod is fixedly arranged at the head end of the telescopic rod, the first insertion rod is located in the inner cavity of the assembly hole, the first insertion rod matches the radial cross-sectional shape of the assembly hole, and when the positioning component positions the rocker stem, the head end of the first insertion rod is inserted into the first positioning groove.

5. The connecting column rotating shaft device applicable to the doors and windows of antique buildings as described in claim 2, characterized in that, The positioning component comprises: a second positioning groove, a second insertion rod and a buffer mechanism; The second positioning groove is provided on the bottom wall of the inner cavity of the adapter groove, the second positioning groove matches the position of the assembly hole, and the second positioning groove matches the radial cross-sectional shape of the assembly hole; The buffer mechanism is arranged at the head end of the telescopic rod; The second plug rod is movably arranged in the inner cavity of the assembly hole, the tail end of the second plug rod is connected to the buffer mechanism, the second plug rod matches the radial cross-sectional shape of the assembly hole, and when the positioning assembly positions the shaking stem, the head end of the second plug rod is plugged into the second positioning groove.

6. The connecting column rotating shaft device applicable to the doors and windows of antique buildings as described in claim 5, characterized in that, The buffer mechanism comprises: a buffer cavity, a slider, a connecting rod and an elastic member; The buffer cavity is arranged inside the telescopic rod, the buffer cavity is located at the head end of the telescopic rod, and the buffer cavity is exposed to the end surface of the head end of the telescopic rod; The slider is movably arranged inside the buffer cavity, and the slider is slidably connected to the inner wall of the buffer cavity along the axial direction of the telescopic rod; One end of the connecting rod is fixedly connected to the slider, and the other end of the connecting rod is fixedly connected to the second insertion rod, so as to drive the insertion rod to move; The elastic member is arranged inside the buffer cavity, one end of the elastic member is connected to the slider, the other end of the elastic member is connected to the inner wall of the buffer cavity, and the elastic member is located between the slider and the assembly cavity for elastically supporting the slider.

7. The connecting column rotating shaft device applicable to the doors and windows of antique-style buildings as described in claim 1, characterized in that, It also includes a driving module, which is arranged on the load object and connected to the driving member to control the rotation of the driving member.

8. The connecting column rotating shaft device applicable to the doors and windows of antique buildings as described in claim 7, characterized in that, The driving module comprises: a receiving hole, a plurality of jacks and a plug-in; The driving member is a tubular member; The accommodating hole is formed on the outer wall of the load, and the accommodating hole penetrates the outer wall of the load and communicates with the assembly cavity; The plurality of jacks are provided on the circumferential side wall of the driving member, any one of the jacks penetrates the outer wall of the driving member and communicates with the inner cavity of the driving member, and any one of the jacks matches the position of the accommodating hole, so as to drive the driving member to rotate; The plug-in unit is movably connected to one of the accommodating holes and is used to drive the driving member to rotate.

9. The connecting column rotating shaft device applicable to the doors and windows of antique buildings as described in claim 8, characterized in that, The plug-in comprises: an inserting portion and a holding portion; The gripping portion matches the inner cavity shape of the accommodating hole; The plug-in portion is fixedly connected to the holding portion, and the head end of the plug-in portion is movably plugged into one of the plug holes. When the plug-in portion is fully inserted into one of the plug holes, the holding portion is located in the inner cavity of the accommodating hole.

10. The connecting column rotating shaft device applicable to the doors and windows of antique buildings as described in claim 9, characterized in that, The tail end of the plug-in portion is fixedly connected to the middle section of the gripping portion, the plug-in portion and the gripping portion are combined to form a ""-shaped rigid member, and the gripping portion and the plug-in portion are integrally formed.

Citation Information

Patent Citations

  • General's every principal columns of a hall

    CN205823046U