CN119686599A - Upper slide bar applied to translational inner inverted window - Google Patents

Upper slide bar applied to translational inner inverted window Download PDF

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Publication number
CN119686599A
CN119686599A CN202510013425.4A CN202510013425A CN119686599A CN 119686599 A CN119686599 A CN 119686599A CN 202510013425 A CN202510013425 A CN 202510013425A CN 119686599 A CN119686599 A CN 119686599A
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China
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piece
groove
locking
translational
sliding
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CN202510013425.4A
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Chinese (zh)
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CN119686599B (en
Inventor
白宝鲲
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Guangdong Kinlong Hardware Products Co Ltd
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Guangdong Kinlong Hardware Products Co Ltd
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Priority to CN202510013425.4A priority Critical patent/CN119686599B/en
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Publication of CN119686599B publication Critical patent/CN119686599B/en
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Abstract

The invention relates to the technical field of translational internal inverted windows, in particular to an upper sliding rod applied to the translational internal inverted window, which is used for connecting a window frame and a movable sash, wherein the upper sliding rod comprises a connecting member, a transmission piece and a swing arm, an abutting block is arranged on the window frame, an error preventing piece and an elastic piece are arranged on the connecting member, the movement of the transmission piece is limited by the abutting block and the abutting or separating of the error preventing piece, the movement of a handle is further limited, the misoperation of the handle is avoided, a locking seat is further arranged on the window frame, a locking piece is arranged on the swing arm, a sinking groove and a locking groove on the locking seat are matched with the locking piece, the movable sash is positioned and locked, the use safety and stability are ensured, a linkage piece is arranged at one end of the transmission piece, a step groove is arranged on the linkage piece, a locking point is matched with the step groove, the use state of the movable sash can be switched, the side pressure effect is ensured, and the sealing performance and the sound insulation effect of the window sash are ensured.

Description

Upper slide bar applied to translational inner inverted window
Technical Field
The invention relates to the technical field of translational internal inverted windows, in particular to an upper sliding rod applied to a translational internal inverted window.
Background
The translational inner tilting window combines two opening functions of translational (horizontal sliding) and inner tilting (tilting into the room). It mainly comprises window frame, casement, hardware fittings etc. The upper slide bar is a very critical part in the translation of the inner inverted window, and is usually an elongated member made of metal (such as aluminum alloy). It is generally installed at the upper portion of the window frame to have a certain thickness and strength to support sliding and tilting movements of the window. The surface may be anodized or the like to improve corrosion resistance and aesthetic appearance.
The upper sliding rod on the market has single function, and can not flexibly realize the state switching among locking, translation and internal reverse micro ventilation of doors and windows.
Disclosure of Invention
Based on this, the invention aims to provide an upper sliding rod applied to a translational inner inverted window.
The invention adopts the following technical scheme:
The upper slide bar comprises a connecting component and a swing arm which are mutually hinged, wherein the connecting component is fixed on the movable sash, and one end of the swing arm, which is far away from the connecting component, is in sliding connection with the window frame;
The window frame is fixedly provided with an abutting block, the upper sliding rod comprises a transmission piece, an error prevention piece and an elastic piece, the transmission piece is connected with the connecting component in a sliding manner, one end of the transmission piece is connected with the control component, the control component drives the transmission piece to slide along the length direction of the connecting component, the transmission piece is provided with a clamping groove, the clamping groove comprises a first limiting section, a middle section and a second limiting section which are communicated with each other and are sequentially arranged along the length direction of the transmission piece, the error prevention piece is inserted into the clamping groove, the error prevention piece comprises an inserting part and a limiting part, the upper end of the elastic piece is connected with the lower end of the error prevention piece, the lower end of the elastic piece is connected with the connecting component, and the width of the middle section is smaller than that of the limiting part;
When the abutting block abuts against the error preventing piece, the error preventing piece extrudes the elastic piece to move downwards, the limiting part is separated from the clamping groove, so that the error preventing piece is free from interference with the middle section, and the transmission piece is free from limitation in sliding relative to the connecting member; when the abutting block is separated from the error preventing piece, the elastic piece drives the error preventing piece to move upwards, the limiting part enters the clamping groove, and the limiting part interferes with the middle section to limit the sliding of the transmission piece relative to the connecting component so as to limit the movement of the control component.
Preferably, one end of the transmission part, which is far away from the control assembly, is connected with a linkage part, a step groove is formed in the linkage part, a locking point is arranged below the swing arm, the step groove comprises a first step, a second step and a third step which are mutually communicated, the first step, the second step and the third step are parallel to the sliding direction of the transmission part, the first step, the second step and the third step are sequentially arranged from far to near, an opening communicated with the third step is formed in the side wall of the linkage part, and the locking point is matched with the step groove to switch the use state of the movable fan.
The window frame is characterized in that a locking seat is fixedly arranged on the window frame, a sinking groove is formed in one side, facing the connecting member, of the locking seat, a locking groove extending in the width direction of the locking seat is formed in the side wall of the sinking groove in a connecting mode, a locking piece is arranged on the upper end face of the swing arm, and when the locking piece is located in the locking groove, movement of the movable fan in the length direction of the locking seat is limited.
Preferably, the connecting member is provided with a vertically penetrating through hole, the error preventing piece is inserted in the through hole, and the upper end of the error preventing piece penetrates out of the connecting member.
Preferably, the guide surfaces respectively connected with the first limiting section and the second limiting section are arranged on two sides of the middle section.
Preferably, the connecting member is provided with a chute with an opening at the lower end, the transmission piece is slidably connected in the chute, and two ends of the transmission piece protrude out of the connecting member.
Preferably, the connecting member comprises a pressing block installed in the sliding groove, an assembling groove is formed in one side, facing the bottom of the sliding groove, of the pressing block, the bottom of the elastic piece is fixed to the bottom of the inner side of the assembling groove, and the transmission piece is connected between the pressing block and the bottom of the sliding groove in a sliding mode.
The pressing block is provided with a positioning hole in a penetrating mode, a positioning block is arranged at the bottom of the sliding groove in an extending mode and is inserted into the clamping groove, the positioning block is inserted into the positioning hole in an inserting mode, and after the transmission piece moves a certain distance relative to the connecting component, the positioning block abuts against the inner wall of the clamping groove to achieve the limiting effect on the transmission piece.
Preferably, the step groove further comprises a first chute and a second chute, one end of the first chute is communicated with the tail end of the first step, one end of the first chute is communicated with the head end of the second step, one end of the second chute is communicated with the tail end of the second step, and one end of the second chute is communicated with the head end of the third step.
Preferably, the locking groove is provided with a first abutting surface, the locking piece is provided with a second abutting surface, when the locking piece is positioned in the locking groove, the first abutting surface is attached to the second abutting surface, and when the swing arm floats out of the connecting component, the second abutting surface is parallel to the length direction of the transmission piece.
The beneficial effects of the invention are as follows:
1. The invention relates to an upper sliding rod applied to a translational internal inverted window, which comprises a connecting member connected with a movable fan, a swing arm connected with a window frame and a transmission piece, wherein the transmission piece is driven by a control assembly to move relative to the connecting member so as to switch the use state of the translational internal inverted window. The transmission part is provided with a clamping groove, the clamping groove comprises a first limiting section, a middle section and a second limiting section, the window frame is provided with an abutting block, the connecting member is provided with an error preventing part and an elastic part, and when the abutting block abuts against the error preventing part, the transmission part is limited in movement so as to limit the movement of the control assembly, and the purpose of avoiding misoperation of the control assembly is achieved through cooperation of the abutting block, the error preventing part and the elastic part.
2. The invention relates to an upper sliding rod applied to a translational inner inverted window, which comprises a connecting component connected with a movable fan, a swing arm connected with a window frame and a transmission part, wherein one side of the transmission part is connected with a linkage part, a step groove is formed in the linkage part, a locking point is correspondingly arranged on the swing arm, the transmission part and the linkage part are driven to move relative to the connecting component simultaneously through a control assembly, the locking point moves in the step groove along with the movement of the transmission part, and when the locking point moves to different positions of the step groove, the use state of the translational inner inverted window can be switched, so that the translational inner inverted window is flexible and effective in operation, and various use requirements of the translational inner inverted window are met.
3. The invention relates to an upper sliding rod applied to a translational inverted window, which comprises a connecting component connected with a movable fan, a swing arm connected with a window frame and a transmission part, wherein a locking seat is arranged on the window frame, a sinking groove and a locking groove are arranged on the locking seat, a locking part is arranged on the swing arm, and when the translational inverted window is inverted inwards, the locking part is matched with the locking groove to play a locking role, so that the translational motion in an inverted state is avoided, and the stability of the translational inverted window is ensured.
Drawings
FIG. 1 is a schematic view of a translating inner inverted window;
FIG. 2 is a schematic view of the structure of the upper slider applied to the sliding inner inverted window of the present invention;
FIG. 3 is a schematic view of another angle of the upper slider bar applied to a translating inner inverted window according to the present invention;
FIG. 4 is a schematic view of the abutting block in FIG. 1;
FIG. 5 is a schematic view of the locking seat of FIG. 1;
FIG. 6 is a schematic exploded view of the upper slide bar of FIG. 4;
FIG. 7 is a schematic exploded view of the upper slide bar of FIG. 5;
FIG. 8 is a schematic view of the structure of the connecting member of FIG. 6;
FIG. 9 is a schematic view of the linkage of FIG. 6;
FIG. 10a is a schematic view of a movable fan in a locked position and in a translated state;
FIG. 10b is a schematic view showing the upper slide bar in use in the locked position;
FIG. 11a is a schematic view of a movable fan in a non-locked position and in a translated state;
FIG. 11b is a schematic view of the upper slide bar in a non-locked position and in a translated state;
FIG. 12a is a schematic view of the movable fan in a locked position and in an inverted state;
FIG. 12b is a schematic view of the structure of the upper slide bar after being inverted;
FIG. 13 is a schematic view showing the state of use of the upper slide bar when the lock point is located at the first step;
FIG. 14 is a schematic view showing the use state of the upper slide bar when the lock point is located at the second step;
FIG. 15 is a schematic view showing the state of use of the upper slide bar when the lock point is located at the third step;
FIG. 16 is a schematic view showing the upper slide bar in use in a translated state;
FIG. 17 is a schematic view showing the upper slide bar in the inverted state and in the non-inverted state;
FIG. 18 is a schematic view showing the upper slide bar in the inverted state and in the inverted state.
Reference numerals in the drawings:
100-window frame, 11-abutting block, 111-inclined plane, 12-locking seat, 121-sinking groove, 122-locking groove and 123-first abutting surface;
200-moving fan, 21-control component, 211-handle, 212-corner device and 213-connecting rod;
300-upper slide bar, 31-connecting member, 311-through hole, 312-sinking part, 313-slide groove, 314-positioning block, 32-swing arm, 321-locking point, 322-locking piece, 323-second abutting surface, 33-hanging wheel, 34-driving piece, 341-clamping groove, 341 a-first limit section, 341 b-middle section, 341 c-second limit section, 342-guiding surface, 35-error preventing piece, 351-inserting part, 352-limit part, 36-elastic piece, 37-connecting piece, 370-step groove, 371-first step, 372-second step, 373-third step, 374-opening, 375-first slide groove, 376-second slide groove, 377-connecting post, 38-press block, 381-assembling groove and 382-positioning hole.
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.
In the description of the present invention, it should be noted that the azimuth or positional relationship indicated by the terms "vertical direction", "upper", "lower", "horizontal", etc. are based on the azimuth or positional relationship shown in the drawings, and are merely for convenience of describing the present invention and simplifying the description, and do not indicate or imply that the apparatus or element in question must have a specific azimuth, and are constructed and operated in a specific azimuth, and thus should not be construed as limiting the present invention. Furthermore, the terms "first," "second," "third," "fourth," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it should also be noted that, unless explicitly specified and limited otherwise, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, integrally connected, mechanically connected, electrically connected, directly connected, connected via an intermediary, or connected by communication between two elements. The specific meaning of the above terms in the present invention can be understood by those of ordinary skill in the art according to the specific circumstances.
As shown in fig. 1, 10a, 11a and 12a, the sliding window is a sliding inward-tilting window, and comprises a window frame 100, a movable sash 200 and an upper sliding rod 300. Referring to fig. 2-18, an upper slider 300 for a sliding window according to the present invention is used to connect a window frame 100 and a movable sash 200.
The movable fan 200 is provided with a control assembly 21, and in this embodiment, the control assembly 21 includes a handle 211, a corner device 212 and a connecting rod 213, wherein two ends of the connecting rod 213 are respectively connected with the handle 211 and the upper slide rod 300, the handle 211 is operated to rotate, and the upper slide rod 300 is driven to move under the transmission action of the connecting rod 213. Meanwhile, an abutting block 11 and a locking seat 12 are fixedly arranged on the inner side of the window frame 100, an inclined surface 111 is arranged on one side, facing the upper sliding rod 300, of the abutting block 11, a sinking groove 121 is arranged on one side, facing the upper sliding rod 300, of the locking seat 12, and a locking groove 122 extending along the width direction of the locking seat 12 is connected to the side wall of the sinking groove 121. Through the mutual cooperation of the upper slide bar 300, the control assembly 21, the abutting block 11 and the locking seat 12, three use states of locking, translation and internal inverted micro ventilation of the translation internal inverted window are flexibly realized.
The upper slide bar 300 comprises a connecting member 31 and a swing arm 32 which are hinged with each other, the connecting member 31 is fixed on the movable fan 200, one end of the swing arm 32, which is away from the connecting member 31, is connected with a hanging wheel 33, the hanging wheel 33 is in sliding connection with a track in the window frame 100, a locking point 321 is arranged on the lower end surface of the swing arm 32, and a locking piece 322 is arranged on the upper end surface of the swing arm.
The upper slide bar 300 further comprises a transmission piece 34, an error preventing piece 35 and an elastic piece 36, wherein the transmission piece 34 is in sliding connection with the connecting member 31, and one end of the transmission piece 34 is connected with the control assembly 21. The driving member 34 is provided with a clamping groove 341, the clamping groove 341 comprises a first limiting section 341a, a middle section 341b and a second limiting section 341c which are communicated with each other and are arranged along the length direction of the driving member 34, wherein the first limiting section 341a is positioned on one side close to the control assembly 21, the second limiting section 341c is positioned on one side far away from the control assembly 21, the widths of the first limiting section 341a and the second limiting section 341c are consistent, and the width of the middle section 341b is smaller than the widths of the first limiting section 341a and the second limiting section 341 c.
The error preventing member 35 is inserted into the clamping groove 341, and the error preventing member 35 includes an integrally formed insertion portion 351 and a limiting portion 352, wherein the width of the insertion portion 351 is smaller than the width of the middle section 341b, and the width of the limiting portion 352 is larger than the width of the middle section 341b, that is, the insertion portion 351 can pass through the middle section 341b, and the limiting portion 352 cannot pass through the middle section 341b.
The upper end of the elastic piece 36 is connected to the lower side of the error preventing piece 35, and the lower end of the elastic piece 36 is connected to the connecting member 31.
The end of the transmission piece 34 far away from the control assembly 21 is connected with a linkage piece 37, the linkage piece 37 is provided with a step groove 370, the step groove 370 comprises a first step 371, a second step 372 and a third step 373 which are mutually communicated, the first step 371, the second step 372 and the third step 373 are parallel to the sliding direction of the transmission piece 34, the first step 371, the second step 372 and the third step 373 are arranged from far to near along the X axis in fig. 1 and 9, and the side wall of the linkage piece 37 is provided with an opening 374 which is communicated with the third step 373.
In use, the movable sash 200 has a locked position and an unlocked position relative to the window frame 100. Meanwhile, the translational inner inverted window has a translational state, an inner inverted state and a side pressure state. When the translating inner inverted window is in a translated state, the movable sash 200 can translate horizontally with respect to the window frame 100. When the translating inside-out window is in the inside-out state, the bottom end of the movable sash 200 remains connected to the window frame 100, and the top end of the movable sash 200 can fly out toward the indoor side. When the sliding inner inverted window is in the side pressure state, the movable sash 200 and the window frame 100 are in the locking state, and meanwhile the sealing rubber strips of the movable sash 200 and the window frame 100 are mutually extruded, so that the sealing degree of the sliding inner inverted window is ensured.
In the above-described embodiment, in order to prevent erroneous operation of the handle 211, the error preventing member 35, the elastic member 36, the abutment block 11, and the transmission member 34 are provided to cooperate with each other, so that the rotation angle of the handle 211 can be restricted. When the movable fan 200 is at the locking position, the abutting block 11 on the window frame 100 abuts against the error preventing member 35 and compresses the elastic member 36, so that the limiting portion 352 is separated from the disengaging clamping groove 341, i.e. the inserting portion 351 enters the clamping groove 341, and the inserting portion 351 is smaller than the middle section 341b, i.e. the error preventing member 35 does not interfere with the clamping groove 341, at the moment, the sliding of the transmission member 34 relative to the connecting member 31 is not limited, and the handle 211 can be operated at will.
As shown in fig. 10a and 10b, the handle 211 is operated to 90 degrees at the locking position, so that the sliding window is in a sliding state, and when the handle 211 rotates, the connecting rod 213 drives the driving member 34 to move towards one side of the linkage member 37, so that the error preventing member 35 enters the first limiting section 341 a.
As shown in fig. 11a and 11b, after the movable fan 200 is pushed to translate to the non-locking position, the abutting block 11 is separated from the error preventing member 35, the elastic member 36 is reset to drive the error preventing member 35 to move upwards, that is, the limiting portion 352 enters the clamping groove 341, and the limiting portion 352 and the middle section 341b interfere with each other, so that the error preventing member 35 cannot pass through the middle section 341b and can only move in the first limiting section 341a, and at this time, the handle 211 can only operate within a range of 0 to 90 degrees. After the movable fan 200 is translated back to the locking position, the abutting block 11 abuts against the error preventing member 35, and the handle 211 is unlocked and can be operated at will.
When the handle 211 rotates, the connecting rod 213 drives the transmission piece 34 to move towards one side of the control component 21, so that the error preventing piece 35 enters the second limiting section 341 c. As shown in fig. 12a and 12b, after the movable fan 200 is turned inwards to one side of the room, the error preventing member 35 is separated from the abutting block 11, the elastic member 36 resets to drive the error preventing member 35 to move upwards, and the limiting portion 352 and the middle section 341b interfere with each other, so that the error preventing member 35 cannot pass through the middle section 341b, and the handle 211 cannot be operated at 180 degrees. Therefore, after the movable fan 200 is turned inwards, the rotation of the handle 211 is limited, and the misoperation of the handle 211 is prevented. After the movable window sash 200 is pushed into the window frame 100, the abutting block 11 abuts against the error preventing member 35, and the handle 211 is unlocked and can be operated arbitrarily.
In the above scheme, in order to realize that the translational inverted window is switched among the translational state, the inverted state and the lateral pressure state, the linkage piece 37 is provided with the step groove 370 comprising the first step 371, the second step 372 and the third step 373, the lock point 321 is arranged below the swing arm 32, and the translational inverted window is switched among three using states by matching the lock point 321 with the step groove 370.
When the handle 211 rotates, the driving element 34 can be driven to slide along the length direction of the connecting member 31. So that the locking point 321 moves within the stepped slot 370. As shown in fig. 13, when the locking point 321 is matched with the first step 371, the translational internal inverted window is in a side pressure state, and the linkage piece 37 drives the movable fan 200 to move towards the window frame 100, so that the sealing rubber strips of the movable fan 200 and the window frame 100 are mutually compressed, and the sealing effect and the sound insulation effect are improved. As shown in fig. 14, when the locking point 321 is matched with the second step 372, the translational internal inverted window is in a translational state, and the linkage piece 37 drives the movable sash 200 to be away from the window frame 100, so that a movement gap exists between the movable sash 200 and the window frame 100, and the movable sash 200 can translate relative to the window frame 100. As shown in fig. 15, when the locking point 321 is matched with the third step 373, the translational inner tilting window is in an inner tilting state, and because the third step 373 is laterally provided with the opening 374, when the locking point 321 moves to the third step 373, the locking point 321 can be separated from the linkage element 27 through the opening 374, that is, the swing arm 32 floats out relative to the connecting member 31, so that the movable fan 200 is tilted inwards, and the micro ventilation function is realized.
In the above-mentioned scheme, in order to ensure the stability when the movable fan 200 is inverted, the swing arm 32 is provided with the locking piece 322, and the window frame 100 is provided with the locking seat 12, and the locking piece 322 is matched with the locking seat 12 to realize the positioning function. The specific principle is that when the movable fan 200 translates to the locking position, as shown in fig. 16, the locking piece 322 on the swing arm 32 will enter the sinking groove 121 of the locking seat 12, then the handle 211 is rotated to 180 degrees, as shown in fig. 17, the driving piece 34 drives the linkage piece 37 to move, so that the locking point 321 floats out of the third step 373, and meanwhile, the swing arm 32 will incline for a certain angle, and then the locking piece 322 is driven to move to the connection position of the sinking groove 121 and the locking groove 122, so as to realize initial positioning. As shown in fig. 18, when the movable fan 200 is further driven to move toward the indoor side, the locking piece 322 completely enters the locking groove 122, and the movement of the movable fan 200 is restricted.
The following details the specific structure of the upper slider 300 of the present invention applied to the translating inner inverted window:
Referring to fig. 6-8, the connecting member 31 is provided with a vertically penetrating through hole 311, and the plugging portion 351 of the error preventing member 35 is plugged into the through hole 311 and the upper end of the error preventing member penetrates out of the connecting member 31 so as to be matched with the abutting block 11. Meanwhile, the connecting member 31 is provided with a sinking portion 312 corresponding to the shape of the abutting block 11, when the movable fan 200 is at the locking position, the abutting block 11 can be lapped in the sinking portion 312, and meanwhile, the error preventing piece 35 is driven to move downwards.
Specifically, the lower end surface of the connecting member 31 is provided with a chute 313 with an opening at the lower end, the transmission piece 34 is slidably connected in the chute 313, and two ends of the transmission piece protrude out of the connecting member 31, the connecting member 31 comprises a pressing block 38 arranged in the chute 313, the upper end surface of the pressing block 38 is provided with an assembling groove 381, the bottom of the elastic piece 36 is fixed at the bottom of the inner side of the assembling groove 381, and the transmission piece 34 is slidably connected between the pressing block 38 and the bottom of the chute 313. In addition, a positioning hole 382 is formed in the pressing block 38, a positioning block 314 is formed in the bottom of the sliding groove 313 in an extending manner, the positioning block 314 penetrates through the clamping groove 341 and is inserted into the positioning hole 382, and when the transmission piece 34 moves a certain distance relative to the connecting member 31, the positioning block 314 abuts against the inner wall of the clamping groove 341 to limit the transmission piece 34.
Referring to fig. 6, the connection parts of the middle section 341b and the first and second limiting sections 341a and 341c are respectively provided with a guiding surface 342, and the guiding surface 342 plays a guiding role on the error preventing member 35 to guide the error preventing member 35 to smoothly pass through the middle section 341b.
Referring to fig. 9, the step groove 370 further includes a first chute 375 and a second chute 376, wherein one end of the first chute 375 is connected to the tail end of the first step 371, one end of the first chute 375 is connected to the head end of the second step 372, one end of the second chute 376 is connected to the tail end of the second step 372, and one end of the second chute 376 is connected to the head end of the third step 373. When the control assembly 21 drives the driving member 34 and the linkage member 37 to move, the locking point 321 passes through the first chute 375 and the second chute 376 to drive the movable fan 200 to move away from or close to the window frame 100, so as to drive the translational inner tilting window to enter the lateral pressing state and the inner tilting state.
Referring to fig. 6 and 7, a vertically arranged connection post 377 is arranged at the bottom of the linkage piece 37, a connection hole 343 is arranged on the transmission piece 34, and when in assembly, the connection post 377 is inserted into the connection hole 343, so that the transmission piece 34 and the linkage piece 37 are connected, and synchronous movement of the transmission piece 34 and the linkage piece 37 is ensured.
Referring to fig. 6, 7, 15 and 17, a first abutting surface 123 is disposed in the locking groove 122, a second abutting surface 323 is disposed on the locking member 322, and when the locking member 322 completely enters the locking groove 122, the first abutting surface 123 and the second abutting surface 323 are attached to each other, so as to improve the stability of the fit between the locking member 322 and the locking groove 122. Meanwhile, when the movable fan 200 is tilted to the maximum extent, that is, when the opening angle of the swing arm 32 and the connecting member 31 is the maximum, the second abutment surface 323 is parallel to the length direction of the connecting member 31.
Compared with the prior art, the upper slide bar 300 applied to the translational internal inverted window is used for connecting the window frame 100 and the movable sash 200, the upper slide bar 300 comprises a connecting component 31, a transmission piece 34 and a swing arm 32, the transmission piece 34 is controlled by a handle 211 to flexibly realize locking, translational and internal inverted state switching of the movable sash 200, an abutting piece 11 is arranged on the window frame 100, an error preventing piece 35 and an elastic piece 36 are arranged on the connecting component 31, the movement of the transmission piece 34 is limited by abutting or separating the abutting piece 11 and the error preventing piece 35, the movement of the handle 211 is further limited, misoperation of the handle 211 is avoided, a locking seat 12 is further arranged on the window frame 100, a locking piece 322 is arranged on the swing arm 32, a sinking groove 121 and a locking groove 122 on the locking seat 12 are matched with the locking piece 322, the movable sash 200 is positioned and locked, use safety and stability are guaranteed, a step groove 371 is arranged on one end of the transmission piece 34, a locking point 321 is arranged on the swing arm 32, the step 371 is matched with the step groove 371, and the translational and internal inverted state switching performance of the movable sash 200 is guaranteed, and simultaneously, the acoustic insulation effect is guaranteed.
The foregoing description of the preferred embodiments of the invention has been presented only in a specific and detailed description, and is not to be construed as limiting the scope of the invention. It should be noted that modifications and improvements can be made by those skilled in the art without departing from the spirit of the invention, and the invention is intended to encompass such modifications and improvements.

Claims (10)

1. The upper slide bar comprises a connecting component and a swing arm which are mutually hinged, wherein the connecting component is fixed on the movable sash, and one end of the swing arm, which is far away from the connecting component, is in sliding connection with the window frame;
The anti-misoperation device is characterized in that an abutting block is fixedly arranged on a window frame, the upper sliding rod comprises a transmission piece, an anti-misoperation piece and an elastic piece, the transmission piece is connected with the connecting component in a sliding mode, one end of the transmission piece is connected with the control component, the control component drives the transmission piece to slide along the length direction of the connecting component, a clamping groove is formed in the transmission piece, the clamping groove comprises a first limiting section, a middle section and a second limiting section which are communicated with each other and are sequentially arranged along the length direction of the transmission piece, the anti-misoperation piece is inserted into the clamping groove, the anti-misoperation piece comprises an inserting part and a limiting part, the upper end of the elastic piece is connected to the lower end of the anti-misoperation piece, the lower end of the elastic piece is connected with the connecting component, and the width of the middle section is smaller than that of the limiting part;
When the abutting block abuts against the error preventing piece, the error preventing piece extrudes the elastic piece to move downwards, the limiting part is separated from the clamping groove, so that the error preventing piece is free from interference with the middle section, and the transmission piece is free from limitation in sliding relative to the connecting member; when the abutting block is separated from the error preventing piece, the elastic piece drives the error preventing piece to move upwards, the limiting part enters the clamping groove, and the limiting part interferes with the middle section to limit the sliding of the transmission piece relative to the connecting component so as to limit the movement of the control component.
2. The upper sliding rod applied to the translational inner inverted window according to claim 1, wherein one end, far away from the control assembly, of the transmission piece is connected with a linkage piece, a step groove is formed in the linkage piece, a locking point is arranged below the swing arm, the step groove comprises a first step, a second step and a third step which are communicated with each other, the first step, the second step and the third step are parallel to the sliding direction of the transmission piece, the first step, the second step and the third step are sequentially arranged from far to near, an opening communicated with the third step is formed in the side wall of the linkage piece, and the locking point is matched with the step groove to switch the using state of the movable fan.
3. The upper sliding rod applied to the translational internal inverted window according to claim 1, wherein a locking seat is fixedly arranged on the window frame, a sinking groove is formed in one side, facing the connecting member, of the locking seat, a locking groove extending in the width direction of the locking seat is formed in a connecting mode in the side wall of the sinking groove, a locking piece is arranged on the upper end face of the swing arm, and when the locking piece is located in the locking groove, movement of the movable fan in the length direction of the locking seat is limited.
4. The upper slide bar applied to the translational inner inverted window according to claim 1, wherein the connecting member is provided with a vertically penetrating through hole, the error preventing piece is inserted in the through hole, and the upper end of the error preventing piece penetrates out of the connecting member.
5. The upper slide bar applied to the translational inner inverted window according to claim 1, wherein two sides of the middle section are provided with guide surfaces respectively connected with the first limit section and the second limit section.
6. The upper slide bar for the translational internal inverted window according to claim 1, wherein the connecting member is provided with a chute with an opening at a lower end, the transmission member is slidably connected in the chute, and both ends of the transmission member protrude from the connecting member.
7. The upper slide bar applied to the translational internal inverted window according to claim 6, wherein the connecting member comprises a pressing block installed in the sliding groove, an assembling groove is formed in one side of the pressing block, facing the bottom of the sliding groove, of the pressing block, the bottom of the elastic piece is fixed to the bottom of the inner side of the assembling groove, and the transmission piece is connected between the pressing block and the bottom of the sliding groove in a sliding manner.
8. The upper sliding rod applied to the translational inner inverted window according to claim 1, wherein the pressing block is provided with a positioning hole in a penetrating mode, a positioning block is arranged at the bottom of the sliding groove in an extending mode and is inserted into the clamping groove, the positioning block is inserted into the positioning hole in an inserting mode, and when the transmission piece moves a certain distance relative to the connecting component, the positioning block abuts against the inner wall of the clamping groove to achieve the limiting effect on the transmission piece.
9. The upper slide bar applied to the translational inner inverted window according to claim 2, wherein the step groove further comprises a first chute and a second chute, one end of the first chute is communicated with the tail end of the first step, one end of the first chute is communicated with the head end of the second step, one end of the second chute is communicated with the tail end of the second step, and one end of the second chute is communicated with the head end of the third step.
10. The upper slide bar for the translational internal inverted window according to claim 2, wherein the locking groove is provided with a first abutting surface, the locking piece is provided with a second abutting surface, when the locking piece is positioned in the locking groove, the first abutting surface is abutted with the second abutting surface, and when the swing arm swings out of the connecting member, the second abutting surface is parallel to the length direction of the transmission piece.
CN202510013425.4A 2025-01-03 2025-01-03 Upper sliding rod used in tilt-and-turn windows Active CN119686599B (en)

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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN207406194U (en) * 2017-10-16 2018-05-25 龚均明 It is a kind of to lock fastener in for translating interior the interior of window
CN111411868A (en) * 2020-04-13 2020-07-14 庞老圈 Horizontal-moving and inward-falling window
CN112746797A (en) * 2021-02-07 2021-05-04 合生(山东)门窗系统有限公司 Door and window cantilever locking mechanism
CN214740840U (en) * 2021-02-07 2021-11-16 合生(山东)门窗系统有限公司 Door and window cantilever locking mechanism
CN115450536A (en) * 2022-10-17 2022-12-09 亚萨合莱国强(山东)五金科技有限公司 Sliding device for inverting translational window and inverting translational window
CN218862371U (en) * 2022-09-30 2023-04-14 广东坚朗五金制品股份有限公司 Hinge structure and internal opening and internal reversing window
CN221169261U (en) * 2023-10-11 2024-06-18 湖北固派金属制品有限公司 Multifunctional translational sliding window
CN222009926U (en) * 2024-02-02 2024-11-15 天津市稳展建筑装饰工程有限责任公司 Prevent maloperation translation interior window component

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN207406194U (en) * 2017-10-16 2018-05-25 龚均明 It is a kind of to lock fastener in for translating interior the interior of window
CN111411868A (en) * 2020-04-13 2020-07-14 庞老圈 Horizontal-moving and inward-falling window
CN112746797A (en) * 2021-02-07 2021-05-04 合生(山东)门窗系统有限公司 Door and window cantilever locking mechanism
CN214740840U (en) * 2021-02-07 2021-11-16 合生(山东)门窗系统有限公司 Door and window cantilever locking mechanism
CN218862371U (en) * 2022-09-30 2023-04-14 广东坚朗五金制品股份有限公司 Hinge structure and internal opening and internal reversing window
CN115450536A (en) * 2022-10-17 2022-12-09 亚萨合莱国强(山东)五金科技有限公司 Sliding device for inverting translational window and inverting translational window
CN221169261U (en) * 2023-10-11 2024-06-18 湖北固派金属制品有限公司 Multifunctional translational sliding window
CN222009926U (en) * 2024-02-02 2024-11-15 天津市稳展建筑装饰工程有限责任公司 Prevent maloperation translation interior window component

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