THIN REFRAGMENTED SLIDING HANDLE MECHANISM FOR SLIDING DOORS AND WINDOWS
Patent Information
- Application Number
- TR202523018
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-12-30
- Publication Date
- 2026-09-21
Smart Images

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Abstract
Description
1 TARIFF FOR SLIDING DOORS AND WINDOWS THIN SLIMMED RECESSED SLIDING HANDLE MECHANISM The invention, particularly in slim-bodied metal door and window systems, also includes a recessed sliding handle. 5 the height of the recessed sliding handle casing that allows the mechanism to be used (thickness) is reduced while the inner recess of the recessed sliding handle casing (where the fingers grip) maintaining the ergonomic structure without reducing the depth of the push-pull pool and The spring is powered by being inserted into a spring channel opened in the center of the square shaft. Door / window recessed sliding handle mechanism that ensures balanced distribution 10 It is about. Today, the building industry uses different types of doors and windows for various purposes. They are used. One of these is sliding doors and windows. Sliding doors - windows systems, by saving space in the rotating opening of doors and windows, and by reducing wind resistance, 15 It is frequently preferred if there is sufficient mounting space, for purposes such as preventing collisions. It is the model that was chosen. In sliding door and window systems, these devices enable the door and window to open and close. Recessed sliding handle mechanisms that also function as push-pull handles (where the handle sits, 20 (Mechanisms by which it can be removed from the pool and rotated) are used. This recessed sliding arm These mechanisms are used in thick-bodied doors and windows; many are available on the market. There are different models. However, for thin-bodied doors and windows, a recessed sliding handle is preferred. It has no mechanism. This is because the body of the recessed sliding handle mechanism is thick. The problem is that it doesn't fit properly and therefore protrudes from the door or window surface. This is 25. due to insufficient distance between the inner locking mechanism and the door / window surface It originates from. 2 Another problem encountered with recessed sliding handle mechanisms on the market is the wind-up spring, square The problem is the imbalance in the force applied to the arm due to mounting it on the edge of the shaft. This imbalance eventually leads to a breakdown of the mechanism. The mechanism described in the invention has been developed to be compatible with commercially available doors and windows. It is designed so that it does not protrude from the door or window surface. The key points here are: This involves both reducing the height (thickness) of the recessed sliding handle casing and the recessed... the inner reservoir of the sliding handle housing (the push-pull reservoir where the fingers grip) The ergonomic design is maintained without reducing its depth. With its ergonomic structure... What is meant is that the appearance of the recessed sliding handle should be neat (10 from the push-pull pool). (not overflowing) and the push-pull pool where the fingers grip is sufficiently deep It is the fact that. In the mechanism described in the invention, the spring is inserted into a spring channel opened in the center of the square shaft. By positioning them correctly, a balanced force distribution is ensured. This allows the mechanism to function as described above. The potential for malfunctions has been reduced. The mechanism described in the invention makes it possible to utilize existing mechanisms on the market, in particular. Recessed sliding handle mechanisms are also used in slim-bodied metal door and window systems. It has been made available for use. 20 The system designed to enable the invention to achieve its purpose is described below, with reference to the attached figures. It has been explained. These shapes; Figure 1 - Views of the recessed sliding handle mechanism for the door from different angles. 25 A) Top view of the recessed sliding handle mechanism for the door. B) Bottom view of the recessed sliding handle mechanism for the door. C) BB sectional view of the recessed sliding handle mechanism for the door. D) BB sectional view of the recessed sliding handle mechanism for the door (handle movement) (View of their positions from different angles) 30 E) AA sectional view of the recessed sliding handle mechanism for the door. 3 Figure 2 - Exploded view of the recessed sliding handle mechanism for the door. Figure 3 - Views of the recessed sliding handle for the door from different angles. A) Bottom view of the recessed sliding handle for the door. B) AA cross-sectional view of a recessed sliding handle for a door. C) BB sectional view of the recessed sliding handle for the door 5 Figure 4 - Views of the recessed sliding door handle frame from different angles. A) Top view of the recessed sliding door handle casing. B) Bottom view of the recessed sliding door handle frame. C) BB section view of the recessed sliding handle frame for the door. D) AA sectional view of a recessed sliding door handle frame 10 Figure 5 - Views of the square shaft from different angles. A) Side view of the square shaft B) Front view of the square shaft C) Top view of the square shaft Figure 6 - View of the square shaft retaining ring from different angles 15 A) Top view of the retaining ring B) AA cross-sectional view of the retaining ring. Figure 7 - View of the notched pin from different angles. A) Side view of a notched pin B) Front view of the notched pin 20 Figure 8 - Front view of the wind-up spring. Figure 9 - Top view of the screw head storage plug. Figure 10 - Side view of the square shaft centering and bearing plug. Figure 11 - View of the arm friction plate from different angles. A) Bottom view of the arm friction plate 25 B) Side view of the arm friction plate C) Top view of the arm friction plate Figure 12 - Views of the recessed sliding handle mechanism for the window from different angles. A) Top view of the recessed sliding handle mechanism for the window. B) Bottom view of the recessed sliding handle mechanism for the window 30 C) DD section view of the recessed sliding handle mechanism for the window. 4 D) DD sectional view of the recessed sliding handle mechanism for the window (the handle) (The appearance of their positions from different angles in relation to their movement) E) CC sectional view of the recessed sliding handle mechanism for the window. Figure 13 - Exploded view of the recessed sliding handle mechanism for the window. Figure 14 - Views of the recessed sliding handle frame for the window from different angles. 5 A) Top view of the recessed sliding handle frame for the window. B) Bottom view of the recessed sliding handle frame for the window. C) DD section view of a recessed sliding handle frame for a window. Figure 15 - Views of the recessed sliding handle for the window from different angles. A) Top view of a recessed sliding handle for a window 10 B) Bottom view of the recessed sliding handle for the window. C) DD section view of a recessed sliding handle for a window. D) CC sectional view of the recessed sliding handle for the window. Figure 16 - Views of the square shaft from different angles. A) Side view of the square shaft 15 B) Front view of the square shaft C) Top view of the square shaft Figure 17 - Views of the square shaft retaining ring from different angles. A) Top view of the retaining ring B) Section view of the retaining ring AA 20 Figure 18 - View of the notched pin from different angles. A) Side view of a notched pin B) Front view of the notched pin Figure 19 - Front view of the wind-up spring. Figure 20 - Top view of the screw head storage plug 25 Figure 21 - Side view of the square shaft centering and bearing plug. Figure 22 - View of the arm friction plate from different angles. A) Bottom view of the arm friction plate B) Side view of the arm friction plate C) Top view of the arm friction plate 30 The parts in the diagram are individually numbered, and the parts corresponding to these numbers are... as explained below: 100 - Recessed sliding handle mechanism for doors 1) Recessed sliding handle frame a) Push-pull handlebar pool (arm rest pool) 5 b) Square shaft centering and bearing plug clearance c) Mounting screw clearance d) Screw head storage plug housing e) Plug housing ring 2) Recessed sliding handle 10 a) Ring seating area b) Square shaft seating space c) Spring end seating cavity d) Notched pin hole e) Friction plate seating clearance 15 3) Square shaft a) Spring mounting channel b) Notched pin hole 4) Snap ring 5) Square shaft centering and bearing plug 20 6) Wind-up spring 7) Notched pin 8) Arm friction plate a) Ring seating space 1 b) Ring seating area 2 25 9) Screw head cover 200 - Recessed sliding handle mechanism for windows 1) Recessed sliding handle frame a) Push-pull grab bar (arm rest bar) 30 b) Square shaft centering and bearing plug clearance 6 c) Mounting screw clearance d) Screw head storage plug housing e) Plug housing ring 2) Recessed sliding handle a) Ring seating space 5 b) Square shaft seating space c) Spring end seating cavity d) Notched pin hole e) Friction plate seating clearance 3) Square shaft 10 a) Spring mounting channel b) Notched pin hole 4) Snap ring 5) Square shaft centering and bearing plug 6) Wind-up spring 15 7) Notched pin 8) Arm friction plate a) Ring seating space 1 b) Ring seating space 2 9) Screw head retention plug 20 The invention is a recessed sliding handle mechanism; it has the same features for doors and windows. It has parts. Recessed sliding handle mechanism for window (200) recessed sliding handle frame (200-1) and flush sliding handle (200-2), flush sliding handle mechanism for door (100) Recessed sliding handle housing (100-1) and figures according to recessed sliding handle (100-2) 25 As you can see, it is shorter. Recessed sliding handle mechanism for the door (100) when desired in large windows can be used; similarly, a recessed sliding handle mechanism for the window (200) is also available. It can be used on small doors when desired. From this point of view, it is suitable for both large structures and 30-inch doors. flush sliding handle mechanism “flush sliding handle mechanism for door / window (100)”, 7 both small and recessed sliding handle mechanisms, "recessed for window / door" The sliding lever mechanism (200) can also be named; similarly, the lower parts In naming conventions, instead of the words "door" and "window," the terms "door / window" or "window / window" are used. The phrase "door" can be used. Different numbers and different designs can be used to better understand the two models. Detailed explanations have been provided using the names. 5 In the recessed sliding handle mechanism for the door (100), in the ring handle friction plate (100-8) The ring seat gap 1 (100-8-a) located there demonstrates functionality, i.e. the plug housing ring (100- 1-e), ring seat fits into space 1e (100-8-a); recessed sliding handle for window In the mechanism (200), the ring seating gap in the arm friction plate (200-8) is 2 (200-8-10 b) shows functionality, i.e., plug housing ring (200-1-e) ring seating space 2 (200-8-b) He sits down. Flush Sliding Handle Mechanism for Doors (100) The subject of the invention is a recessed sliding handle mechanism for a door (100); push-pull handle pool 15 (arm seating pool) (100-1-a), square shaft centering and bearing plug clearance (100-1-b), mounting screw recess (100-1-c), screw head retention plug recess (100-1-d), plug recess Recessed sliding handle housing with ring (100-1-e), ring seat opening (100-2-a), square shaft seat clearance (100-2-b), spring end seat clearance (100-2-c), notched pin hole (100-2-d) and flush sliding handle (100-2-e) with friction plate seating gap, 20 Square shaft (100-3) with spring mounting channel (100-3-a) and notched pin hole (100-3-b), with tab. Piston ring (100-4), square shaft centering and bearing plug (100-5), coil spring (100-6), notched pin (100-7), ring seat gap 1 (100-8-a) and ring seat gap 2 (100-8- b) It has a lever friction plate (100-8) and a screw head retention plug (100-9). The subject of the invention is the recessed sliding handle mechanism for the door (100), recessed sliding handle housing. (100-1) The height has been reduced by an average of 2-3 mm compared to those on the market. This height The main purpose of lowering the height limit is to allow recessed sliding handles in slim-bodied door systems. The aim is to ensure that the mechanism can be mounted without protruding from the surface. 8 Lowering the height of the recessed sliding handle housing (100-1), screw head concealment plug. base of the push-pull handle pool (arm seat pool) (100-1-a) of its housing (100-1-d) from the surface, up to the height of the screw head cover cap (100-9) (average 2-3 mm). This was achieved by moving the screw head retaining plug housing (100-1-d) upwards. For this purpose, the plug holder ring (100-1-e) is also included. Plug holder ring (100-1-e) 5 thanks to the screw head retention plug (100-9) into the screw head retention plug housing (100-1-d) It is secured. The presence of a plug housing ring (100-1-e) ensures the flush sliding handle housing. (100-1) its height will be on average 2-3 mm shorter than those on the market It has made it possible to produce it. However, the presence of a plug holder ring (100-1-e), the movable recessed sliding handle (100-2), the handle This prevents the seating pool (100-1-a) from sitting on the base surface. This is a technical problem. To solve this, the plug housing ring (100-1-e) on the underside of the recessed sliding handle (100-2) A ring seating area (100-2-a) is created in the section that aligns with the arm. A ring seating gap (100-8-a) is also formed in the friction plate (100-8). 15 In the mechanism described in the invention, the winding spring (100-6) opens into the middle of the square shaft (100-3). It is positioned inside the mounting channel (100-3-a). This allows it to be attached to the recessed sliding handle (100-2). The distribution of the applied force has been balanced. The screw head retention plug (100-9) is fitted into the screw head retention plug housing (100-1-d), This prevents the mounting screw from being visible from the outside. Furthermore, this screw head concealment system... The plug (100-9) facilitates cleaning of the mechanism; in other words, it hides the screw head. It prevents the plug housing (100-1-d) from becoming dirty. Recessed Sliding Handle Mechanism for Window (200) The subject of the invention is a recessed sliding handle mechanism for windows (200); push-pull handle pool (arm seating pool) (200-1-a), square shaft centering and bearing plug clearance (200-1-b), mounting screw clearance (200-1-c), screw head storage plug slot (200-1-d), plug Recessed sliding handle housing (200-1) with ring holder (200-1-e), ring seating clearance 30 (200-2-a), square shaft seat clearance (200-2-b), spring end seat clearance (200-2-c), notched 9 Flush-mounted sliding door with pinhole (200-2-d) and friction plate seating clearance (200-2-e). square shaft with arm (200-2), spring mounting channel (200-3-a) and notched pin hole (200-3-b) (200-3), retaining ring (200-4), square shaft centering and bearing plug (200-5), screw-type spring (200-6), notched pin (200-7), ring seat gap 1 (200-8-a) and ring seat gap Arm friction plate (200-8) and screw head storage plug (200-9) with 2 (200-8-b) 5 has. The subject of the invention is the recessed sliding handle mechanism for the window (200), recessed sliding handle The case (200-1) height has been reduced by an average of 2-3 mm compared to those on the market. This The main purpose of lowering the height is to allow for recessed sliding doors in slim-bodied window systems. The goal is to ensure that the arm mechanism can be mounted without protruding from the surface. Lowering the height of the recessed sliding handle housing (200-1), screw head concealment plug. base of the push-pull handle pool (arm seat pool) (200-1-a) of its housing (200-1-d) from the surface, up to the height of the screw head retaining cap (200-9) (average 2-3 mm) 15 This was achieved by moving the screw head retaining plug housing (200-1-d) upwards. For this purpose, a plug holder ring (200-1-e) is included. Plug holder ring (200-1-e) thanks to the screw head retention plug (200-9) into the screw head retention plug housing (200-1-d) It is secured. The presence of a plug housing ring (200-1-e) ensures the flush sliding handle housing. (200-1) its height will be 20 mm shorter than those on the market on average. It has made it possible to produce it. However, the presence of a plug holder ring (200-1-e), the movable recessed sliding handle (200-2), the handle This prevents the seating pool (200-1-a) from resting on the base surface. This is a technical problem. To solve this, the plug housing ring (200-1-e) on the underside of the recessed sliding handle (200-2) is 25 A ring seating space (200-2-a) is created in the section that aligns with the arm. A ring seating gap (200-8-b) is also created in the friction plate (200-8). In the mechanism described in the invention, the winding spring (200-6) opens into the middle of the square shaft (200-3). It is positioned inside the mounting channel (200-3-a). This allows the flush sliding handle (200-2) to be 30 inches. The distribution of the applied force has been balanced. The screw head retention plug (200-9) is fitted into the screw head retention plug housing (100-1-d), This prevents the mounting screw from being visible from the outside. Furthermore, this screw head concealment system... The plug (200-9) facilitates cleaning of the mechanism; in other words, it hides the screw head. It prevents the plug housing (200-1-d) from becoming dirty. 5 The system covered by this invention cannot be limited to what is described here and the model shown in the image. The invention may undergo design modifications regardless of the material and dimensions. The positions of the parts used can be changed, the number of parts used can be changed, Instead of the parts used, different parts with similar characteristics can be used, and optionally 10 The system can be used even without some of its parts. For example... - Number of plug holder rings (100-1-e) / plug holder rings (200-1-e) The number of screws required for assembly can be increased depending on the specific mechanism. 20 30
Claims
11 REQUESTS 1) The invention is a recessed sliding handle mechanism for doors / windows (100), the feature of which is; It is characterized by having the following: - To lower the height of the recessed sliding handle housing (100-1), screw 5 head storage plug housing (100-1-d) push-pull handle pool (arm seat) (pool) (100-1-a) from the base surface, height of the screw head storage plug (100-9) that allows it to be lifted up And screw head retaining plug (100-9) into screw head retaining plug housing (100-1-d) 10 that ensures it is fixed plug housing ring (100-1-e), - the plug housing ring (100-1-e) movable recessed sliding handle (100-2) handle seat ensuring that the pool (100-1-a) does not sit on the base surface, 15 ring seat gap (100-2-a) and arm friction plate located in the incoming section (100-8) located public seating space 1 (100-8-a). 2) According to Request 1, the recessed sliding handle mechanism for door / window is (100) and its feature is; To ensure that the distribution of the force applied to the recessed sliding handle (100-2) is balanced 20 spring that enables the winding spring (100-6) to be positioned in the middle of the square shaft (100-3) It is characterized by having a mounting channel (100-3-a). 3) Recessed sliding handle mechanism for door / window according to claim 1 or claim 2 (100) Its feature is; push-pull handlebar pool (arm rest pool) (100-1-a), square shaft 25 centering and bearing plug clearance (100-1-b), mounting screw clearance (100-1-c), screw Flush-mounted sliding handle housing (100-1-d) with head storage plug socket, square shaft seat gap (100-2-b), spring end seat gap (100-2-c), notched pin hole (100-2- d) and flush sliding handle (100-2) with friction plate seating space (100-2-e), Square shaft (100-3) with notched pin hole (100-3-b), retaining ring (100-4), square shaft 30 centering and bearing plug (100-5), coil spring (100-6), notched pin (100-7), 12 Arm friction plate (100-8) and screw head with ring seating gap 2 (100-8-b) It is characterized by having a storage plug (100-9). 4) The invention is a recessed sliding handle mechanism for windows / doors (200), the feature of which is; It is characterized by having the following: 5 - To lower the height of the recessed sliding handle housing (200-1), screw head storage plug housing (200-1-d) push-pull handle pool (arm seat) (pool) (200-1-a) from the base surface, height of the screw head storage plug (200-9) that allows it to be lifted up and 10 screw head retention plug (200-9) into the screw head retention plug housing (200-1-d) that ensures it is fixed plug housing ring (200-1-e), - the plug housing ring (200-1-e) movable recessed sliding handle (200-2) handle seat 15 to the line of the plug housing ring (200-1-e) on the underside of the recessed sliding handle (200-2) in the incoming section the ring seat gap (200-2-a) and the arm friction plate (200-8) located public seating space 2 (200-8-b). 5) Recessed sliding handle mechanism for window / door according to claim 4 (200) and its feature is; 20 To ensure that the distribution of the force applied to the recessed sliding handle (200-2) is balanced. spring that enables the winding spring (200-6) to be positioned in the middle of the square shaft (200-3) It is characterized by having a mounting channel (200-3-a). 6) Recessed sliding handle mechanism for window / door according to claim 4 or claim 5 (200) 25 Its features include: push-pull handlebar pool (armrest pool) (200-1-a), square shaft. centering and bearing plug clearance (200-1-b), mounting screw clearance (200-1-c), screw Flush-mounted sliding handle housing (200-1-d) with head storage plug socket, square shaft seat gap (200-2-b), spring end seat gap (200-2-c), notched pin hole (200-2- d) and flush sliding handle (200-2) with friction plate seating space (200-2-e), 30 Square shaft (200-3) with notched pin hole (200-3-b), retaining ring (200-4), square shaft 13 centering and bearing plug (200-5), coil spring (200-6), notched pin (200-7), Arm friction plate (200-8) and screw head with ring seating gap 1 (200-8-a) It is characterized by having a storage plug (200-9). 10 20 30