Multifunctional translation sliding window

By setting a hinge assembly between the sliding parts of the sliding doors and windows, the inverted function is achieved while maintaining a balance between sealing and unsealing sliding, solving the problem of single functions in the prior art and enhancing the comprehensive performance of sliding doors and windows.

CN120384691APending Publication Date: 2025-07-29HUBEI GUPAI METAL PRODUCTS CO LTD
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Patent Information

Application Number
CN202311319905.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-10-11
Publication Date
2025-07-29

AI Technical Summary

Technical Problem

While realizing the inverted function, existing sliding doors and windows cannot take into account the functions of locking tight sealing and sliding after unsealing. Additional sliding components are required, which are single in functionality.

Method used

By providing a hinge assembly between the first guide assembly of the first sliding part and the first sliding part, separation and closing of the first sliding part and the first sliding part are realized, and the sliding part of the second sliding part performs inverted action on the support shaft to ensure balance of inverted inverted.

Benefits of technology

It realizes the balance between sealing and unsealing during the inverting process of sliding doors and windows, enhances the comprehensiveness of functions, and meets the needs of locking tightly sealing and sliding after unsealing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a multifunctional translation sliding window which comprises a handle part, a moving part connected with the handle part, a first sliding part and a second sliding part, wherein the first sliding part and the second sliding part are arranged on the two sides of the moving part respectively and connected. According to the multifunctional translation sliding window, the hinge assembly is arranged between the first guide assembly and the first sliding assembly of the first sliding part, and on the premise that the sliding function of the first sliding assembly is not affected by the hinge assembly and the transmission of the first guide assembly to the first sliding assembly is not affected, the inward tilting function is added; the first guide assembly and the first sliding assembly on the first sliding part are separated and closed through the hinge assembly, and the sliding door and window is inwards inverted from the upper half part.
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Description

Technical Field

[0001] The present invention relates to the technical field of sliding doors and windows, and particularly to a multifunctional sliding and tilting window. Background Art

[0002] Sliding doors and windows are a common type of doors and windows, also known as sliding doors. Sliding doors and windows usually consist of a movable glass or door panel and a fixed frame. This design not only saves space but also is convenient and practical, and is commonly used for indoor and outdoor doors and windows, such as balcony doors, patio doors, wardrobe doors, etc.

[0003] The prior art with the publication number of CN203462892U discloses a double swing arm opening and closing mechanism, which is provided with a group of inward tilting upper arm components and upper arm components. The head ends thereof are respectively fixed in the outer frame sliding groove through U-shaped groove parts, and the tail ends thereof are respectively connected and fixed to the moving sash mounting groove through inward tilting connecting rods, connecting rods, and windproof connecting rods, and are in interlocking cooperation with the swing positioning parts mounted on the outer frame to realize the inward tilting, opening, and closing and locking functions of the inward tilting sliding doors and windows. The overall transmission mechanism is simple, has high transmission accuracy, and small manufacturing errors. The moving sash does not swing back and forth during operation, greatly improving the transmission stability.

[0004] Although the above prior art can realize the inward tilting of the sliding doors and windows, however, the above structural components are poor in comprehensiveness and cannot be comprehensively used in combination with the two preconditions of the locking, tight sealing, and sliding after unlocking of the sliding doors and windows themselves. That is, the prior art can only rely on this structure to realize the inward tilting of the sliding doors and windows, and a sliding component needs to be additionally provided to realize the locking, tight sealing, and sliding after unlocking of the sliding doors and windows, and the functionality is single.

[0005] Based on the above, the present application proposes a multifunctional sliding and tilting window that combines the sliding, sealing, and inward tilting functions of sliding doors and windows. Summary of the Invention

[0006] The present invention proposes a multifunctional sliding and tilting window, which solves the problems mentioned in the above background art.

[0007] The technical solution of the present invention is realized as follows:

[0008] A multifunctional sliding and tilting window includes a handle part, a moving part connected to the handle part, and a first sliding part and a second sliding part respectively arranged on both sides of the moving part and connected thereto;

[0009] The first sliding part includes a first guiding component connected to the moving part, a hinge component sliding on the first guiding component, and a first sliding component hinged to the hinge component;

[0010] The first guide assembly includes a first guide bar, a first guide block is provided on one side of the first guide bar; the hinge assembly includes a transmission bar, a first guide opening is opened in the transmission bar; the first guide block is adapted to the first guide opening and slides along the first guide opening;

[0011] One side of the transmission bar corresponding to the first guide mouth is raised, and the other side is flat, and the raised part and the flat part are arranged obliquely; the first guide mouth is arranged in a wedge shape corresponding to the raised part and the inclined part, and is arranged in a straight line corresponding to the flat part; the height of the first guide block is lower than the height of the raised part of the first guide mouth.

[0012] Furthermore, the hinge assembly further includes a sliding bar and a limiting bar with one side hinged to the sliding bar; the other side of the limiting bar is hinged to the transmission bar.

[0013] Furthermore, a sliding shaft is provided on one side of the transmission bar, a sliding opening is provided on one side of the sliding bar, and the sliding shaft is adapted to the sliding opening and slides or rotates along the sliding opening.

[0014] Furthermore, guide shafts are respectively provided at both ends of the sliding bar, and guide openings slidably connected to the guide shafts are provided on both sides of the first guide bar.

[0015] Furthermore, the first sliding assembly includes a bearing seat on the other side of the sliding bar, a groove bar rotatably connected to the bearing seat, and a translation wheel and a plurality of side wheels arranged in the groove bar.

[0016] Furthermore, the second sliding portion includes a second guide assembly, a limiting assembly sliding on the second guide assembly, and a second sliding assembly sliding on the limiting assembly.

[0017] Furthermore, the second guide assembly includes a second guide bar, on which a second guide block is provided; the limiting assembly includes a groove-shaped limiting bar, in the middle of which a straight hole is provided; the second guide block passes through the straight hole and slides therewith;

[0018] The second sliding assembly includes a side shift bar, one side of which slides in the groove-shaped limit bar; an oblique hole is opened in the side shift bar, and the second guide block extends into the oblique hole and slides therewith.

[0019] Furthermore, the second sliding assembly further comprises a sliding box and a support shaft arranged on the other side of the side shift bar, wherein a groove block and a plurality of groove wheels are provided in the sliding box, and the groove block and the groove wheels slide on the support shaft.

[0020] Furthermore, the moving part is symmetrically arranged in two parts, and the moving part includes a soft strip connected to the second guide strip or the first guide strip at one end, a connecting strip connected to the other side of the soft strip at one side, and a moving strip installed on the other side of the connecting strip at one side.

[0021] Further, the handle part includes a reciprocating rack with one side fixed to the other side of the moving bar, a gear transmission box that is in meshing transmission with the other side of the reciprocating rack, a grooved protective strip sleeved outside the reciprocating rack and sliding therewith, and a handle extending to the inside of the gear transmission box.

[0022] Beneficial effects brought by the technical solution provided in this application:

[0023] For this multifunctional sliding and pushing window, by arranging a hinge assembly between the first guiding assembly and the first sliding assembly of the first sliding part, on the premise of not affecting the sliding function of the first sliding assembly and not affecting the transmission of the first guiding assembly to the first sliding assembly, an inward-inclined function is added, enabling the first guiding assembly and the first sliding assembly on the first sliding part to be separated and closed through the hinge assembly, and the sliding and pushing window is inward-inclined from the upper half part; while the lower half part of the sliding and pushing window makes a circular motion of inward-inclined movement on the support shaft through the second sliding assembly of the second sliding part, ensuring the balance of the inward-inclined movement. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0025] Figure 1 It is a front view schematic diagram of the multifunctional sliding and pushing window of the present invention;

[0026] Figure 2 It is a partial schematic diagram of the first sliding part of the present invention;

[0027] Figure 3 It is a partial exploded schematic diagram of the first sliding part of the present invention;

[0028] Figure 4 It is a partial schematic diagram of the second sliding part of the present invention;

[0029] Figure 5 It is a partial exploded schematic diagram of the second sliding part of the present invention;

[0030] Figure 6 It is a rear view schematic diagram of the multifunctional sliding and pushing window of the present invention;

[0031] Figure 7 It is a diagram of the inward-inclined open state of the multifunctional sliding and pushing window of the present invention on the door and window profile;

[0032] Figure 8 It is a diagram of the inward-inclined closed state of the multifunctional sliding and pushing window of the present invention on the door and window profile;

[0033] Figure 9 This is the diagram of the inwards - tilted closed state of the multi - functional sliding and pushing window of the present invention applied to a window;

[0034] Figure 10 This is the diagram of the inwards - tilted open state of the multi - functional sliding and pushing window of the present invention applied to a window.

[0035] In the figure:

[0036] 100 First sliding part, 110 First guiding component, 111 First guiding bar, 112 Guiding opening, 113 First driving block; 120 Hinge component, 121 Transmission bar, 121a First guiding opening, 121b Sliding shaft, 122 Sliding bar, 122a Sliding opening, 122b Guiding shaft, 123 Limiting bar; 130 First sliding component, 131 Groove - shaped bar, 132 Side - moving wheel, 133 Translating wheel, 134 Bearing seat;

[0037] 200 Handle part, 210 Reciprocating rack, 220 Groove - shaped protection bar, 230 Gear transmission box, 240 Handle;

[0038] 300 Moving part, 310 Moving bar, 320 Connecting bar, 330 Flexible bar;

[0039] 400 Second sliding part, 410 Second guiding component, 411 Second guiding bar, 412 Second driving block, 420 Limiting component, 421 Groove - shaped limiting bar, 421a Fixed shaft, 421b Side - moving hole, 422 Linear hole, 430 Second sliding component, 431 Sliding box, 431a Side - moving cylinder, 431b Side - moving shaft, 432 Groove - shaped block, 433 Groove - shaped wheel, 434 Side - moving bar, 434a Oblique hole, 440 Support shaft. Detailed implementation mode

[0040] Next, the technical solutions of the present invention will be clearly and completely described in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.

[0041] Referring to Figures 1-10 , a multi - functional sliding and pushing window includes a handle part 200, a moving part 300 connected to the handle part 200, and a first sliding part 100 and a second sliding part 400 respectively arranged on both sides of the moving part 300 and connected thereto;

[0042] The handle part 200 serves as the main component for transmitting the main movement of the sliding mechanism of the sliding window and door. Inside it, the retracting and extending movement is transmitted to the movement parts 300 on the upper and lower sides through the principle of gear and rack meshing. The movement parts 300 then transmit the retracting and extending movement to the first sliding part 100 and the second sliding part 400 respectively. Through the cooperation of the internal structures of the first sliding part 100 and the second sliding part 400, the first sliding part 100 and the second sliding part 400 can be in a state of being locked and sealed with the door and window profiles or freely sliding after the seal is released.

[0043] However, in order to avoid air circulation being blocked due to the locked seal in rainy weather, in this embodiment, on the premise of ensuring that the locking seal and unsealing sliding of the first sliding part 100 and the second sliding part 400 with the door and window profiles are not affected, by improving the internal structure, the sliding door and window is made to have the function of inward tilting. Specifically, the first sliding part 100 includes a first guiding component 110 connected to the movement part 300, a hinge component 120 sliding on the first guiding component 110, and a first sliding component 130 hinged to the hinge component 120;

[0044] The original first sliding part 100 without the inward tilting function only has the first guiding component 110 and the first sliding component 130. By setting a guiding piece at the bottom of the first sliding component 130 and opening a wedge-shaped opening structure on the first guiding component 110, with the sliding of the first guiding component 110, the guiding piece of the first sliding component 130 cooperates with the wedge-shaped opening structure to shift laterally under the limiting condition of the door and window profiles, and then move closer to one side to achieve the tight seal of the door and window profiles.

[0045] Since this structure can only achieve two states of sealing and unsealing, in order to better realize the function of inward tilting, in this embodiment, a hinge component 120 is arranged between the first guiding component 110 and the first sliding component 130. By using the hinge component 120 to be respectively hinged to the first guiding component 110 and the first sliding component 130, the two can produce postures of separation and closure. In addition, in order not to affect the original sealing function and the function of unsealing and sliding, by improving the internal structure of the hinge component 120, the details are as follows:

[0046] In some embodiments, the first guiding component 110 includes a first guiding bar 111, and a first guiding block 113 is arranged on one side of the first guiding bar 111; the hinge component 120 includes a transmission bar 121, and a first guiding opening 121a is opened in the transmission bar 121; the first guiding block 113 is adapted to the first guiding opening 121a and slides along it;

[0047] In the above technical solution, the first guide block 113 provided on the first guide bar 111 of the first guide assembly 110 is slidably matched with the first guide opening 121a of the transmission bar 121 on the hinge assembly 120, so as to realize the lateral movement function of the first sliding assembly 130. Because the first sliding assembly 130 is connected to the first guide assembly 110 through the hinge assembly 120, when the first guide block 113 is pulled by the first guide bar 111, it will also produce displacement movement. In addition, the first guide opening 121a is wedge-shaped, so the first guide block 113 causes the transmission bar 121 to move laterally along the wedge-shaped first guide opening 121a, and causes the first sliding assembly 130 to synchronize the lateral movement under the internal limit conditions of the door and window profile.

[0048] In some embodiments, one side of the transmission bar 121 corresponding to the first guide opening 121a is raised, and the other side is flat, and the raised portion and the flat portion are arranged obliquely; in the first guide opening 121a, one side of the flat portion is arranged in a wedge shape to the inclined portion, and the other side of the flat portion is arranged in a straight line; the height of the first guide block 113 is lower than the height of the raised portion of the first guide opening 121a.

[0049] In the above technical solution, the purpose of setting the transmission bar 121 to be tilted and flat is to ensure that the first guide block 113 can achieve lateral movement along the movement of the first guide opening 121a, and to ensure that it can be separated from the first guide opening 121a without being limited to the transmission bar 121, so that the transmission bar 121 can tilt and pull the first guide assembly 110 and the first sliding assembly 130 to form a hinged movement and then complete the reverse opening. The specific implementation is: when the first guide block 113 is located at the end position of the flat position in the first guide opening 121a, the transmission bar 121 is limited by the first guide block 113 and cannot move laterally. At this time, the transmission bar 121 and the first sliding component 130 at its top are tightly sealed on one side inside the door and window profile; when the first guide block 113 slides along the first guide opening 121a to the end of the wedge, that is, the starting end of the inclined part, the transmission bar 121 is moved laterally by the wedge movement, and the first sliding component 130 at the top of the transmission bar 121 is released from the sealed state and can slide freely in the door and window profile; when the first guide block 113 slides along the first guide opening 121a to the end of the wedge, that is, the starting end of the inclined part, the transmission bar 121 is moved laterally by the wedge movement, and the first sliding component 130 at the top of the transmission bar 121 is released from the sealed state and can slide freely in the door and window profile; The movable mouth 121a slides to the raised position. Since the height of the first guide block 113 is lower than the height of the raised position of the first guide mouth 121a, the transmission bar 121 can be restricted without being constrained by the first guide block 113. Then, under the condition that the transmission bar 121 is not restricted, it can realize hinged motion with the first guide component 110 and the first sliding component 130 respectively. By pulling the first guide component 110 inward and causing the two ends of the transmission bar 121 to rotate with the first guide component 110 and the first sliding component 130 respectively, the transmission bar 121 is pulled apart and tilted, thereby realizing separation between the first guide component 110 and the first sliding component 130.

[0050] In some embodiments, the hinge assembly 120 further includes a sliding bar 122 and a limiting bar 123 hinged to one side of the sliding bar 122; the other side of the limiting bar 123 is hinged to the transmission bar 121. One side of the transmission bar 121 is provided with a sliding shaft 121b, and one side of the sliding bar 122 is provided with a sliding opening 122a, and the sliding shaft 121b is adapted to the sliding opening 122a and slides or rotates along it.

[0051] Due to the hinged relationship among the transmission bar 121, the sliding bar 122 and the limiting bar 123, when the transmission bar 121 is tilted, its tilt angle can be restricted. When the transmission bar 121 is in an inclined state, a triangle is formed among the transmission bar 121, the sliding bar 122 and the limiting bar 123, preventing the inward tilt angle from being too large. And by fitting the sliding shaft 121b to the sliding opening 122a and sliding or rotating along it, during the hinged rotation of the transmission bar 121 on the sliding bar 122, the transmission bar 121 can slide along the sliding opening 122a to compensate for the gap required to form a triangle; when the triangle needs to be closed, the sliding opening 122a can be utilized to achieve the juxtaposition of the transmission bar 121 and the limiting bar 123.

[0052] In some embodiments, both ends of the sliding bar 122 are each provided with a guiding shaft 122b, and guiding openings 112 for sliding connection with the guiding shafts 122b are provided on both sides of the first guiding bar 111.

[0053] Through the sliding arrangement of the guiding shafts 122b and the guiding openings 112, it can be ensured that the displacement movement of the first guiding bar 111 does not directly drive the sliding bar 122 to move synchronously. Furthermore, the transmission bar 121 will not generate displacement synchronously with the pulling of the first guiding bar 111, and thus the first sliding assembly 130 will not be affected.

[0054] In some embodiments, the first sliding assembly 130 includes a bearing seat 134 provided on the other side of the sliding bar 122, a grooved bar 131 rotatably connected to the bearing seat 134, and a translation wheel 133 and a plurality of side shift wheels 132 provided in the grooved bar 131.

[0055] By providing the bearing seat 134, the grooved bar 131 of the first sliding assembly 130 can satisfy the hinged movement with the transmission bar 121, and the translation wheel 133 and the side shift wheels 132 provided inside it can displace along the inside of the door and window profiles.

[0056] In some embodiments, the second sliding part 400 includes a second guiding assembly 410, a limiting assembly 420 sliding on the second guiding assembly 410, and a second sliding assembly 430 sliding on the limiting assembly 420.

[0057] The first sliding component 130 is mainly used for guiding the movement at the inner top of the door and window profiles, while the second sliding part 400 is mainly used for guiding the movement at the inner bottom of the door and window profiles. In order for the second sliding part 400 to also meet the functions of side movement sealing and unsealing sliding, by using the second guiding component 410 as the pulling part and the second sliding component 430 as the passive part, and using the limiting component 420 as the limiting part for the side movement of the second sliding component 430, the second sliding component 430 can achieve side movement in the second sliding component 430.

[0058] Specifically, the second guiding component 410 includes a second guiding bar 411, and a second guiding block 412 is arranged on the second guiding bar 411; the limiting component 420 includes a grooved limiting bar 421, and a linear hole 422 is opened in the middle of the grooved limiting bar 421; the second guiding block 412 penetrates through the linear hole 422 and slides with it.

[0059] The second sliding component 430 includes a side movement bar 434, and one side of the side movement bar 434 slides in the grooved limiting bar 421; an inclined hole 434a is opened in the side movement bar 434, and the second guiding block 412 extends into the inclined hole 434a and slides with it.

[0060] In the above technical solution, the grooved limiting bar 421 of the limiting component 420 is disclosed, which is installed in the door and window profiles during actual use. It can only cooperate with the second sliding component 430 to slide in the door and window profiles and cannot move sidewise. Because the grooved limiting bar 421 only has a sliding relationship with the second guiding block 412 on the second guiding bar 411 through the linear hole 422 and there is no other connection relationship. When the second guiding block 412 on the second guiding bar 411 slides along the linear hole 422, the grooved limiting bar 421 will not be displaced synchronously with the pulling of the second guiding bar 411. Only the second guiding block 412 slides along the linear hole 422, and the side movement bar 434 moves sidewise in the grooved limiting bar 421 by cooperating with the movement of the second guiding block 412 through the inclined hole 434a.

[0061] In some embodiments, the second sliding component 430 further includes a sliding box 431 and a support shaft 440 arranged on the other side of the side movement bar 434. One side of the sliding box 431 away from the grooved limiting bar 421 is open. A grooved block 432 and a plurality of grooved wheels 433 are arranged on the open side of the sliding box 431, and the grooved block 432 and the grooved wheels 433 slide on the support shaft 440.

[0062] Since the sliding box 431 is arranged on the side shifting bar 434, the side shifting movement of the side shifting bar 434 can cause the sliding box 431 to shift synchronously, enabling it to shift within the door and window profiles, thereby changing from a closely attached state to a released state. Then, the groove-shaped block 432 and the groove-shaped wheel 433 in the sliding box 431 can slide on the support shaft 440 without being restricted by the close attachment.

[0063] In some embodiments, side shifting cylinders 431a penetrate through both sides of the sliding box 431, and fixed shafts 421a are arranged on both inner sides of the groove-shaped limiting strip 421. The side shifting cylinders 431a are sleeved on the fixed shafts 421a and slide therewith.

[0064] The arrangement of the side shifting cylinders 431a sleeved on the fixed shafts 421a can limit the sliding box 431 within the groove-shaped limiting strip 421, and the side shifting movement of the sliding box 431 can be used to limit the position of the sliding box 431 itself by the sliding of the side shifting cylinders 431a on the fixed shafts 421a, avoiding the phenomenon that the sliding box 431 is also shifted in the middle due to only the middle shifting of the side shifting bar 434, resulting in skewing on both sides.

[0065] In the above embodiments, in order to ensure that the side shifting bar 434 can shift over a relatively large distance, the diagonal hole 434a needs to increase its diagonal length. Since the side width of the side shifting bar 434 is limited, protrusions are provided on both sides of the middle of the side shifting bar 434, and notches are also opened on both sides of the middle of the groove-shaped limiting strip 421, so that the protruding parts of the side shifting bar 434 can fit into the notches of the groove-shaped limiting strip 421 to ensure the effective side shifting of the side shifting bar 434.

[0066] In some embodiments, side shifting holes 421b are opened on both sides of the groove-shaped limiting strip 421, and side shifting shafts 431b penetrating through the side shifting bar 434 are arranged on both sides of the sliding box 431. The side shifting shafts 431b extend into the side shifting holes 421b and slide therewith.

[0067] The arrangement of the side shifting shafts 431b connects the sliding box 431 and the side shifting holes 421b as a whole. In addition, the side shifting holes 421b also extend to slide with the side shifting holes 421b in the groove-shaped limiting strip 421. The side shifting movement of the sliding box 431 can be further limited by the sliding of the side shifting holes 421b on the side shifting holes 421b, ensuring the side shifting stability of the sliding box 431.

[0068] In some embodiments, two symmetrically arranged moving parts 300 are provided. The moving part 300 includes a flexible strip 330 with one end connected to the second guiding strip 411 or the first guiding strip 111, a connecting strip 320 with one side connected to the other side of the flexible strip 330, and a moving strip 310 with one side mounted on the other side of the connecting strip 320.

[0069] The moving part 300 serves as a transmission member for the pulling motion of the first sliding part 100 and the second sliding part 400. Two symmetrically arranged moving parts 300 can respectively pull or push the first guiding component 110 and the second guiding component 410 on the first sliding part 100 and the second sliding part 400. The flexible strip 330 on the moving part 300 is a structure restricted at the corner of the door and window profile. Its flexible setting can meet the motion deformation at the corner. The connecting strip 320 and the moving strip 310 are arranged on the vertical side of the door and window profile and can slide in the door and window profile. They also serve as transmission members for the pulling of the flexible strip 330.

[0070] In some embodiments, the handle part 200 includes a reciprocating rack 210 fixed to the other side of the moving strip 310 on one side, a gear transmission box 230 meshing with the other side of the reciprocating rack 210 through transmission, a groove-shaped protection strip 220 sleeved outside the reciprocating rack 210 and sliding with it, and a handle 240 with one end extending into the gear transmission box 230.

[0071] The meshing of the reciprocating rack 210 in the handle part 200 and the gear transmission box 230 is prior art (not shown in the figure). After rotating the gear in the gear transmission box 230 through the handle 240, the meshing motion between the gear and the reciprocating rack 210 can drive the reciprocating rack 210 to slide in the groove-shaped protection strip 220. The reciprocating racks 210 on both sides can respectively apply relative motion or separating motion to the moving strip 310. The moving strip 310 respectively transmits to the second guiding strip 411 or the first guiding strip 111 through the connecting strip 320 and the flexible strip 330 to realize the pulling and pushing of the second guiding strip 411 or the first guiding strip 111.

[0072] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A multi-functional sliding window, comprising a handle part (200), a moving part (300) connected to the handle part (200), and a first sliding part (100) and a second sliding part (400) respectively arranged on both sides of the moving part (300) and connected thereto; characterized in that: The first sliding part (100) includes a first guiding component (110) connected to the moving part (300), a hinge component (120) sliding on the first guiding component (110), and a first sliding component (130) hinged to the hinge component (120); The first guiding component (110) includes a first guiding bar (111), and a first guiding block (113) is arranged on one side of the first guiding bar (111); the hinge component (120) includes a transmission bar (121), and a first guiding opening (121a) is formed in the transmission bar (121); the first guiding block (113) is adapted to the first guiding opening (121a) and slides along it; One side of the transmission bar (121) corresponding to the first guiding opening (121a) is upturned, and the other side is lying flat, and an oblique setting is formed between the upturned part and the lying flat part; the first guiding opening (121a) is wedge-shaped corresponding to the upturned part and the inclined part, and is straight corresponding to the lying flat part; the height of the first guiding block (113) is lower than the height of the upturned part of the first guiding opening (121a).

2. The multifunctional sliding window according to claim 1, wherein The hinge component (120) further includes a sliding bar (122) and a limiting bar (123) hinged on one side of the sliding bar (122); the other side of the limiting bar (123) is hinged to the transmission bar (121).

3. The multifunctional horizontal sliding window according to claim 2, wherein A sliding shaft (121b) is arranged on one side of the transmission bar (121), a sliding opening (122a) is arranged on one side of the sliding bar (122), and the sliding shaft (121b) is adapted to the sliding opening (122a) and slides or rotates along it.

4. The multi-functional sliding window according to claim 2, characterized in that, Guide shafts (122b) are arranged at both ends of the sliding bar (122), and guiding openings (112) slidably connected to the guide shafts (122b) are arranged on both sides in the first guiding bar (111).

5. The multi-functional sliding window according to claim 1, wherein The first sliding component (130) includes a bearing seat (134) arranged on the other side of the sliding bar (122), a grooved bar (131) rotatably connected to the bearing seat (134), and a translation wheel (133) and a plurality of side shift wheels (132) arranged in the grooved bar (131).

6. The multifunctional sliding window according to claim 1, characterized in that, The second sliding part (400) includes a second guiding component (410), a limiting component (420) sliding on the second guiding component (410), and a second sliding component (430) sliding on the limiting component (420).

7. The multifunctional horizontal sliding window according to claim 6, wherein, The second guiding component (410) includes a second guiding bar (411), and a second guiding block (412) is arranged on the second guiding bar (411); the limiting component (420) includes a grooved limiting bar (421), and a straight hole (422) is formed in the middle of the grooved limiting bar (421); the second guiding block (412) penetrates through the straight hole (422) and slides with it; The second sliding assembly (430) includes a side shifting bar (434), one side of the side shifting bar (434) slides in the groove-shaped limiting bar (421); an inclined hole (434a) is formed in the side shifting bar (434), and the second guiding block (412) extends into the inclined hole (434a) and slides with it.

8. The multifunctional sliding window according to claim 7, characterized in that, The second sliding assembly (430) further includes a sliding box (431) and a support shaft (440) arranged on the other side of the side shifting bar (434). A groove-shaped block (432) and a plurality of groove-shaped wheels (433) are provided in the sliding box (431), and the groove-shaped block (432) and the groove-shaped wheels (433) slide on the support shaft (440).

9. The multi-functional sliding window according to claim 1, characterized in that, The moving parts (300) are symmetrically arranged in two. The moving part (300) includes a flexible strip (330) with one end connected to the second guiding strip (411) or the first guiding strip (111), a connecting strip (320) with one side connected to the other side of the flexible strip (330), and a moving strip (310) with one side mounted on the other side of the connecting strip (320).

10. The multi-functional horizontal sliding window according to claim 9, characterized in that, The handle part (200) includes a reciprocating rack (210) with one side fixed to the other side of the moving strip (310), a gear transmission box (230) in meshing transmission with the other side of the reciprocating rack (210), a groove-shaped protection strip (220) sleeved outside the reciprocating rack (210) and sliding with it, and a handle (240) with one end extending into the gear transmission box (230).

Citation Information

Patent Citations

  • Dual-swing arm opening / closing mechanism

    CN203462892U