SLIDING DOOR LOCK MECHANISM
Patent Information
- Application Number
- TR202400832
- Authority / Receiving Office
- TR · TR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-01-24
- Publication Date
- 2026-09-21
- Estimated Expiration
- 2044-01-24
Smart Images

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Abstract
Description
1 TARIFF SLIDING DOOR LOCK MECHANISM Technical Area The invention provides safety features for sliding doors, windows and similar structural components that open and close. It relates to a locking mechanism developed to perform locking functions. State of the Art A lock is a tool that people use to keep their homes and various belongings secure. Throughout history, locks have come in many varieties, depending on their uses and purposes. It was developed. It emerged as key people transitioned to settled life. Ancient In earlier periods, people closed their doors with animal hides, but over time they started using hard objects to close them. They felt the need, and thus the invention of the lock began. The first examples of locks were made of wood. It is known that the world's first interchangeable coded and uncoded key and lock was developed in 1857. It was made by James Sargent. The locks are designed for use in different areas. The types can vary. For example, door locks, car locks, cabinet locks, piggy bank locks, Examples include bicycle locks, phone locks, etc. Mortise lock systems are used to lock sliding doors, windows, and similar structural components. It is a mechanism designed to perform its functions. In the known state of the art. Mortise lock mechanisms generally have an outer casing made of sheet metal and perform locking functions. They are complex mechanisms consisting of cast metal parts, often operated with a single reed. When the structural component sliding inside or on the wall rests against the frame, the rotating latch on the door turns 25° It transmits the axial movement to the mechanism located inside the door, pushing the lock tongue towards the frame. It is also inside the sheet metal that is screwed into the slot that opens in the safe and corresponds to the lock tongue part. It passes through, separates into two, and secures itself to the casing. When the latch is rotated 90°, the tongue... The parts close towards each other and are pulled inwards, and the tongue on the frame strikes the metal plate. It is freed. Thus, the door can be slid again. These locks undergo 30 stages in their production process. It is known that screws, spot welding, clips, or welding are used in joining key components. Additionally... The fact that locking mechanisms are made of cast metal parts causes noise in the areas where they are used. This creates an undesirable situation for end users. 2 Therefore, minimizing the aforementioned disadvantages inherent in the known state of the art. a method for eliminating or removing something and the development of a system that operates according to that method is required. Brief Description of the Invention 5 One of the advantages of the invention is that it has the ability to open and close like a sliding door or window. The parts used in mortise locks for these systems are easier to install according to the known state of the art. The fact that it will be carried out in some way and that joining methods such as screws, welding, and spot welding will be used during assembly The need for these methods will be eliminated. In this way, 10 of the relevant assemblies will be completed. The advantages include preventing the difficulties caused by these factors, thus saving time and labor. Another advantage of the invention is the type and quantity of material used in the mechanism. The advantage is that production costs will be reduced. It will be smaller compared to existing mechanisms. And thanks to its lightweight design, storage space and transportation costs will be reduced. Additionally, the mechanism has 15 thanks to the fact that the mechanical parts used are preferably made of plastic and derivative materials. A locking mechanism with a silent locking function will be developed. However, the choice of materials... It is not limited to plastics and their derivatives. Another advantage of the invention is that the locking mechanism can operate on both sides, allowing the right side to... 20 And the problem of left-handed usage will be eliminated. Thanks to this feature, storage... Costs will be reduced. Also, the base used in the door or window handle that operates the lock will be lowered. The use of badges will be reduced, thus lowering the cost of door or window handles. will be provided. Explanation of the Figures Figure 1: A top-down perspective representation of the locking mechanism that is the subject of the invention. Figure 2: Side perspective representation of a cross-section of the locking mechanism that is the subject of the invention. It is the appearance. Figure 3: A top perspective representation of a cross-section of the locking mechanism that is the subject of the invention. It is the appearance. 3 Figure 4: A perspective representation of the exploded (disassembled) state of the locking mechanism that is the subject of the invention. It is the appearance. Figure 5: Another perspective of the exploded (disassembled) state of the locking mechanism, which is the subject of the invention. It is a representative view. Figure 6: Perspective representation of the locking mechanism of the invention with the locking tongue pushed outwards. 5 It is an appearance. Figure 7: The locking mechanism of the invention, with its locking tongue pushed outwards and separated into two parts. It is a perspective representation. Figure 8: The locking tongue of the locking mechanism, the subject of the invention, in its two-part form when rotated. It is a top-down perspective representation of the two sides. 10 Figure 9: The locking mechanism of the invention returns the locking tongue to its original retracted position. It is a perspective representation. Explanation of References in Figures 15 To better understand the invention, the corresponding numbers in the figures are given below: 100. Locking mechanism A. Locking Group 1. First body section 20 2. Second fuselage section 3. Locking mirror 4. Lock tongue 5. Bolt 6. Gear transmission 25 7. Separator 8. Spring catch pin 9. Spring 10. Separator arrow 11. Fixing slot 30 12. Separator arrow slide 13. Direction pin 14. Direction channel 15. Vertical rail 4 16. Vertical channel 17. Horizontal rail 18. Horizontal channel 19. Full teeth 20. Sliding tooth 5 21. Separator movement channel 22. Sequential screw holes 23. Body mounting tab 24. Body mounting tab slot 25. Shaft housing 10 26. Separator movement rail 27. Sliding track 28. Transfer slotted tooth 29. Tooth socket 30. Mirror mounting tab 15 31. Screw hole 32. Tongue socket 33. Transfer slot 34. Mirror mounting tab slot B. Language equivalent group 20 35. Assembly part 36. Language placement element D1: Horizontal Push Direction D2, D3: Vertical Push Direction 25 D4, D5: Vertical Pull Direction D6: Horizontal Pull Direction R1: Direction of Forward Rotation R2: Direction of Return 5 Detailed Description of the Invention Examples of arrangements are explained in more detail below, by referring to the accompanying descriptions. This is described. However, regulations can be formulated in different ways, and here These should not be interpreted as being limited to the regulations mentioned. Instead, these exemplary regulations, 5 This statement needs to be complete and its scope fully communicated to technical experts. has been provided. The terminology used in this specification is intended solely to describe a specific example arrangement. and is not intended to be restrictive. As used here, "one", "at least" and "preferably" 10 The aim is for the forms to include plural forms, unless the context explicitly states otherwise. The mortise lock mechanism (100), which is the subject of the invention, is shown in the representative image in Figure-1. Developed for use in sliding door, window, and sash structural components, it has at least one It consists of locking group (A) and tongue-and-groove group (B) parts. The aforementioned locking 15 group (A), at least one first body part (1), at least one second body part (2), at least one lock mirror (3), at least one lock tongue (4), at least one bolt (5), at least one gear transmission (6), at least one separator (7), at least one spring release pin (8), at least one spring (9), at least one separator arrow (10), at least one fastening socket (11), at least one separator arrow slide (12), at least one directional pin (13), at least one directional channel (14), at least one vertical rail (15), at least one vertical channel (16), at least one horizontal rail (17), at least one horizontal channel 20 (18), at least one complete tooth (19), at least one sliding tooth (20), at least one separating movement channel (21), at least one inline screw hole (22), at least one body mounting tab (23), at least one body mounting tab slot (24), at least one 8x8 spindle housing (25), at least one splitter movement rail (26), at least one slider movement rail (27), at least one transmission slotted tooth (28), at least one tooth socket (29), at least one mirror mounting tab (30), at least one screw hole (31), at least one tongue slot (32), at least one transmission slot (33), at least one mirror 25 Includes mounting tab slot (34). In the locking mechanism (100) which is the subject of the invention, the locking group (A), the locking chuck (3) and at least one The first body part (1) and the second body part are joined together with the help of the mirror mounting tab (30). (2) preferably consisting of two plastic or plastic derivative material parts The first fuselage part (1) and the second fuselage part (2) mentioned are connected to each other by at least one 30 It is secured with a body mounting tab (23). At least two lock tongues (4) with at least one vertical rail (15) in the vertical channels (16) of the slide (5) by passing the spring through the spring pins (8) and with the help of the lower and upper springs (9) which are installed between them, they are brought together. It is positioned to push. The full teeth (19) of the gear transmission (6) are at least one slide of the slide (5). 6 It is in contact with the tooth (20). Right and left separators (7), tooth transmission (6) inside the slide (5). It will hold and move back and forth with the help of horizontal rails (17) on its horizontal channel (18). The gear transmission (6) has all teeth (19) in the tooth sockets (29) of the separators (7) It sits. The separators (7) separator arrows (10), lock tongues (4) separator arrow slides (12) It is in contact with the entire system, the first part 5 of the gear transmission (6) and the separator rails (26). transmission slot (33) and separator movement channels located in the body (1) and the second part body (2) (21) works within. Also, the locking system consists of the first part body (1) and the second part In order for the body (2) to work consistently, the directional pins (13) located in the lock tongues (4) are the first It operates in the direction channels (14) in the part body (1) and in the second part body (2). Gear transmission (6) in the forward rotation direction (R1) 45° 10 as shown in the representative image in Figure-6. When rotated, the slider (5), the lock tongues (4) and the separators (7) attached to it, as a whole. It preferably pushes forward 8 mm in the horizontal thrust direction (D1). As a result, the locking tongues (4) lock. It comes out of the tongue socket (32) located in the mirror (3). The rotational movement is in the direction of forward rotation. When (R1) continues, the slotted teeth (28) of the gear transmission (6) come into contact with the teeth (20) of the slide. Because it did not, the slide (5) remains in place and still pushes the separators (7) forward. Therefore, separator 15 arrows (10) press against the separating arrow slides (12) of the locking tongues (4) Figure- As seen in Figure 7, D2 and D3 open in opposite directions in the vertical thrust directions. Gear transmission. (6) When the lock tongues (4) complete the 90° degree rotation movement, the separating arrow slides (12) The system is locked by fitting the separators (7) into their fixing slots (11). The gear transmission (6) reverses in the reverse direction (R2) as seen in Figure-8 20 When it starts, the transmission slotted teeth (28) pull the separators (7) D4 and D5 back in the vertical pulling direction. and removes the separator arrow slides (12) from the fixing slots (11) of the separators (7). The springs (9) With the push back, the interlocking tongues (4) kiss each other. With the rotational movement continuing in the reverse direction (R2) as shown in Figure-9, now The full teeth (19) of the gear transmission (6) engage and begin to act on the slide (5) the whole system 25 D6 preferably retracts 8 mm in the horizontal pull direction. Finally, the locking tabs (4) mirror mounting tabs It is drawn into its housing (34). The forward rotation direction (R1) and the reverse rotation direction in the locking mechanism. The rotation angles in the direction of rotation (R2) are preferably 45°, and there are no limitations regarding this. It is not available. In the locking mechanism (100), the tongue transfer group (B) must be compatible with the locking mirror (3) and have at least one 30 assembly part (35) and the lock tongue (4) to which the aforementioned assembly part (35) is connected It contains a tongue-shaped mounting element (36) of dimensions that can accommodate it. The aforementioned mounting part (35) It is fixed by locking together with screw-like fasteners and tongue-shaped fastening element (36). 7 It is connected to the areas (window sash, door, wall etc.) and together with the locking group (A). It enables the locking process to take place. Any feature described in this specification (including the attached claims, summary and illustrations) may not be reproduced unless expressly or explicitly stated otherwise. Unless otherwise specified, other alternative features that may have equivalent or similar purposes. Modifiable. That is, unless explicitly stated otherwise, each property is a set of 5 equivalent or similar properties. This is just one example. The above arrangements are intended only to describe the technical concept and characteristics of the present invention. The aim is and the purpose of the present invention is to enable people skilled in the field to understand the content of the present invention. the aim is to enable him to understand and apply the existing invention, and the scope of the existing invention is not limited to this. It is not. Equivalent changes or modifications made in accordance with the spirit of the invention do not constitute an invention. 10 It is intended to be included within the scope. Industrial Applicability of the Invention The invention provides safety features for sliding doors, windows and similar structural components that open and close. It is a locking mechanism developed to perform locking functions, and has been used in industry since 15 It is feasible. The invention is not limited to the above example applications; a person skilled in the field can easily invent it. It can reveal other different applications. These are the protections sought by the invention with respect to the claims. should be evaluated within this context.
Claims
8 REQUESTS 1. It is a locking mechanism, and its characteristic feature is that it has at least one primary body part (1), at least one second body part (2), at least one locking mirror (3), at least of detachable structure two locking tongues (4), at least one slider (5), at least one gear transmission (6), at least one separator (7), at least one spring guide pin (8), at least one spring (9), at least one separator arrow (10), at least one 5 fixing socket (11), at least one separator arrow slide (12), at least one directional pin (13), most at least one directional channel(14), at least one vertical rail(15), at least one vertical channel (16), at least one horizontal rail (17), at least one horizontal channel (18), at least one full tooth (19), at least one sliding tooth (20), at least one separator movement channel (21), at least one row of screw holes (22), at least one body mounting tab (23), at least one body mounting tab slot (24), at least one 8x8 10 spindle housing (25), at least one separator movement rail (26), at least one slider movement rail (27), at least one transmission slotted tooth (28), at least one tooth socket (29), at least one mirror mount claw (30), at least one screw hole (31), at least one tongue socket (32), at least one transmission The housing (33) must contain at least one mirror mounting tab housing (34).
2. According to Claim 1, it has a locking mechanism and its characteristic feature is; at least two locks. by passing at least one vertical rail (15) of the tongue (4) into the vertical channels (16) of the slide (5), With the help of the lower and upper springs (9) which are installed between the spring passing pins (8) It is positioned in such a way as to push. 20 3. According to Claim 1, the locking mechanism and its defining feature is the first body part. (1) and the second body part (2) preferably made of plastic derivative material It is the fact that. 30