A push-pull door lock structure

By using a push-pull door lock structure, the handle drives the push and pull sleeves in the push-pull assembly. The interaction between the push block and the pull block causes the latch to change direction and open the door lock, solving the problem of inconvenience of rotating door opening and providing a convenient, quiet and safe way to open the door.

CN119083827BActive Publication Date: 2025-11-18GUANGDONG MINGMEN LOCKS IND
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Patent Information

Application Number
CN202411182187.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-01-20
Publication Date
2025-11-18
Estimated Expiration
2039-01-20

AI Technical Summary

Technical Problem

The existing rotating door opening method is inconvenient to use, especially when carrying heavy objects with both hands.

Method used

Design a push-pull door lock structure. The handle drives the front and rear levers to move the push and pull sleeves. The push and pull blocks in the push-pull assembly interact to change the direction of the latch to open the door. The square latch is then moved into the locking groove by a pusher to lock the door.

Benefits of technology

It enables convenient door lock opening via push-pull mechanism, suitable for various occasions, improving operational convenience and safety, with smooth transmission and quiet operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a push-pull door lock structure, which comprises a handle, a front seat, a rear seat and a lock body, the lock body comprises a latch assembly, a push-pull assembly and a locking assembly, the latch assembly comprises a latch, the front seat is provided with a front lever, the rear seat is provided with a rear lever, the push-pull assembly comprises a pull sliding sleeve, a push sliding sleeve, a pull block and a push block, the locking assembly comprises a square tongue, a square tongue locking groove and a pusher, an external force is applied to the handle, the handle drives the front lever to drive the push sliding sleeve, the push sliding sleeve drives the push block to move, the handle also drives the rear lever to drive the pull sliding sleeve, the pull sliding sleeve drives the pull block to move, and the push block and the pull block make the latch rotate reversely to realize door opening; after the door is closed, the square tongue is pushed into the square tongue locking groove by the pusher to realize the locking of the square tongue. The application can solve the inconvenience of the existing rotary door opening mode.
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Description

[0001] This invention is a divisional application of Chinese patent application filed on January 20, 2019, with application number 201910050793.0 and title "A Push-Pull Door Lock Structure". Technical Field

[0002] This invention relates to the field of door lock structure technology, and in particular to a door lock structure for a push-pull type door. Background Technology

[0003] Currently, most common household interior door locks use rotary handles. When the lock is not engaged, the handle needs to be turned to open the door, whether inside or outside. This method of opening the door does not quite conform to people's habits, as people are more accustomed to opening and closing doors by pushing or pulling handles. Especially in some special situations, such as when carrying heavy objects, using a rotary handle is very inconvenient. Summary of the Invention

[0004] In view of the above problems, the purpose of this invention is to provide a push-pull door lock structure to solve the problem of inconvenience of the existing rotary door opening method.

[0005] This invention provides a push-pull door lock structure, comprising: a handle and front seat disposed on one side of the door leaf, another handle and rear seat disposed on the other side of the door leaf, and a lock body disposed inside the door leaf. The lock body includes a latch assembly, a push-pull assembly, and a locking assembly. The latch assembly includes a latch bolt, wherein...

[0006] The front seat is provided with a front lever, one end of which is connected to a handle located on one side of the door leaf, and the other end is movably connected to the push-pull assembly;

[0007] A rear lever is provided through the rear seat. One end of the rear lever is connected to a handle located on the other side of the door leaf, and the other end is movably connected to the push-pull assembly.

[0008] The push-pull assembly includes: a pull sleeve, a push sleeve embedded in the pull sleeve, a pull block, and a push block; a push plate is provided at the rear end of the push sleeve, a pull plate is provided at the rear end of the pull sleeve, a protruding push plate is provided at the upper end of the push block, a first rotating shaft is provided in the middle of the push block, and a first transmission surface is provided on the side of the push block; a protruding pull plate is provided at the upper end of the pull block, a second rotating shaft is provided in the middle of the pull block, a second transmission surface is provided on one side of the second rotating shaft, and a slanted tongue block is provided on the other side of the second rotating shaft; the upper end of the push plate contacts the push plate, and the upper end of the pull plate contacts the pull sleeve; the first transmission surface contacts the second transmission surface; the locking assembly includes a square tongue, a square tongue locking groove, and a latch, wherein...

[0009] When the door is opened by pushing the handle, the front lever or the rear lever moves the push-sliding sleeve to slide to the left. The push-sliding plate drives the push-pull plate to push the push-pull block to rotate counterclockwise around the first rotating shaft. The first transmission surface drives the second transmission surface to drive the pull-pull block to rotate clockwise around the second rotating shaft. The latch block disengages from the protrusion on the latch and no longer jams the latch. The latch changes direction to open the door.

[0010] When the door is opened by pulling the handle, the front lever or the rear lever moves the sliding plate, causing the sliding sleeve to move to the right. The sliding sleeve drives the pulling plate to drive the pulling block to rotate clockwise around the second pivot. The latch block disengages from the protrusion on the latch and no longer jams the latch. The latch changes direction to open the door.

[0011] After the door is closed, the square tongue is moved into the locking groove by the pusher, thereby locking the square tongue.

[0012] Furthermore, in a preferred embodiment, the locking assembly further includes a square tongue plate and a peach-returning spring disposed on one side of the peach, wherein,

[0013] The square tongue locking groove is disposed on the square tongue plate, and the peach return spring provides a reset force for the peach.

[0014] Furthermore, in a preferred embodiment, the push-pull assembly further includes a sliding sleeve return spring and a toggle block return spring, wherein,

[0015] The sliding sleeve return spring is disposed at the front end of the push sliding sleeve and the pull sliding sleeve, and the push sliding sleeve and the pull sliding sleeve are reset by the sliding sleeve return spring.

[0016] Furthermore, in a preferred embodiment, the push-pull assembly further includes a toggle return spring, wherein,

[0017] The push block return spring is installed above the pull block, and the oblique tongue locking block is secured to the oblique tongue by the push block return spring.

[0018] In addition, a preferred embodiment is that the lock body further includes an outer liner plate and a bottom assembly, with the first pivot and the second pivot fixed on the bottom assembly.

[0019] Furthermore, in a preferred embodiment, the lock body further includes a cover, within which a slot and a sliding groove are provided; wherein,

[0020] The oblique tongue assembly further includes a fixed seat disposed in the slot, a sliding rack that limits movement within the slide groove, a pinion meshing with the sliding rack, and an oblique tongue return spring; wherein,

[0021] A push rod is provided at one end of the sliding rack, a locking protrusion is provided in the middle of the sliding rack, and a rack is provided at the other end of the sliding rack;

[0022] The oblique tongue return spring is disposed between the fixed base and the top rod, providing a return force for the oblique tongue to return;

[0023] The push rod passes through the side wall of the fixed seat and abuts against the oblique tongue, and the rack meshes with the pinion.

[0024] As can be seen from the above technical solution, the push-pull door lock structure provided by the present invention uses a handle to drive the front lever to move the push-slide sleeve, which in turn drives the push-pull block to move. A rear lever also drives the pull-slide sleeve, which in turn drives the pull-pull block to move. The interaction between the push-pull block and the pull-pull block causes the latch to rotate in a different direction, thus opening the door. A lever is used to move the square latch into the square latch locking groove, thus locking the square latch. This solves the problem of the inconvenience of existing rotary door opening methods.

[0025] To achieve the foregoing and related objectives, one or more aspects of the invention include the features that will be described in detail below. The following description and accompanying drawings illustrate certain exemplary aspects of the invention. However, these aspects indicate only a few of the various ways in which the principles of the invention can be used. Furthermore, the invention is intended to encompass all such aspects and their equivalents. Attached Figure Description

[0026] Other objects and results of the invention will become more apparent and readily understood with reference to the following description taken in conjunction with the accompanying drawings. In the drawings:

[0027] Figure 1 This is a three-dimensional schematic diagram of a push-pull door lock structure according to Embodiment 1 of the present invention;

[0028] Figure 2This is a partially exploded view of the push-pull door lock structure according to Embodiment 1 of the present invention;

[0029] Figure 3 This is a schematic diagram of the lock body portion according to Embodiment 1 of the present invention;

[0030] Figure 4 This is a schematic diagram of the oblique tongue structure according to an embodiment of the present invention;

[0031] Figure 5 This is a schematic diagram of the pull block structure according to an embodiment of the present invention;

[0032] Figure 6 This is a schematic diagram of the lock body portion according to Embodiment 2 of the present invention.

[0033] The reference numerals in the figures include:

[0034] 1. Holding hands;

[0035] 2. Front seat; 21. Front lever;

[0036] 3. Rear seat; 31. Rear lever;

[0037] 4. Lock body; 41. Lock body outer liner; 411. Slanted tongue hole; 412. Square tongue hole; 42. Box cover; 421. Slot; 422. Slide groove.

[0038] 44. Box bottom assembly; 441. Box bottom; 442. Lock body lining plate; 443. Plunger.

[0039] 45. Slanted tongue assembly; 451. Slanted tongue; 452. Sliding rack; 4521. Push rod; 4522. Locking protrusion; 453. Pinion; 454. Fixing base; 455. Slanted tongue return spring.

[0040] 46. ​​Push-pull assembly; 461. Push sleeve; 4611. Push slide; 462. Pull sleeve; 4621. Pull slide; 463. Push block; 4631. Push slide; 4632. First rotating shaft; 4633. First transmission surface; 464. Pull block; 4641. Pull slide; 4642. Second rotating shaft; 4643. Second transmission surface; 4644. Slanted tongue block; 465. Sleeve return spring; 466. Block return spring;

[0041] 47. Locking component; 471. Square tongue; 472. Square tongue plate; 4721. Square tongue locking groove; 473. Peach.

[0042] In all the accompanying drawings, the same reference numerals indicate similar or corresponding features or functions. Detailed Implementation

[0043] In the following description, numerous specific details are set forth for illustrative purposes and to provide a thorough understanding of one or more embodiments. However, it will be apparent that these embodiments may also be implemented without these specific details. In other instances, well-known structures and devices are shown in block diagram form for ease of description of one or more embodiments.

[0044] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0045] The specific embodiments of the present invention will now be described in detail with reference to the accompanying drawings.

[0046] like Figures 1 to 3As shown, the push-pull door lock structure provided by the present invention includes a handle 1 and a front seat 2 located on one side of the door leaf, another handle 1 and a rear seat 3 located on the other side of the door leaf, and a lock body 4 located inside the door leaf. The lock body 4 includes a latch assembly 45, a push-pull assembly 46, and a locking assembly 47. The latch assembly 45 includes a latch 451. A front lever 21 is provided through the front seat 2. One end of the front lever 21 is connected to the handle 1 located on one side of the door leaf, and the other end is movably connected to the push-pull assembly 46. A rear lever 31 is provided through the rear seat 3. One end of the rear lever 31 is connected to the handle 1 located on the other side of the door leaf, and the other end is movably connected to the push-pull assembly 46; the push-pull assembly 46 includes: a pull sleeve 462, a push sleeve 461 embedded in the pull sleeve 462, a pull block 464, and a push block 463; a push plate 46111 is provided at the rear end of the push sleeve 461, a pull plate 4621 is provided at the rear end of the pull sleeve 462, a protruding push plate 4631 is provided at the upper end of the push block 463, and a first rotating shaft 4632 is provided in the middle of the push block 463. The push block 463 has a first transmission surface 4633 on its side; the pull block 464 has a protruding pull piece 4641 at its upper end; the pull block 464 has a second rotating shaft 4642 in its middle; the second rotating shaft 4642 has a second transmission surface 4643 on one side and a slanted tongue block 4644 on the other side; the upper end of the push piece 4631 contacts the push slide 46111, and the upper end of the pull piece 4641 contacts the pull sleeve 462; the first transmission surface 4633... It contacts the second transmission surface 4643; the locking assembly 47 includes: a square tongue 471, a square tongue locking groove 4721 and a lever 473, wherein, when an external force is applied to the handle 1, the handle 1 drives the front lever 21 to move the push-sliding sleeve 461, the push-sliding sleeve 461 drives the push-pull block 463 to move, and the handle 1 drives the rear lever 31 to move the pull-sliding sleeve 462, the pull-sliding sleeve 462 drives the pull-pull block 464 to move, and the push-pull block 463 and the pull-pull block 464 cause the oblique tongue 451 to rotate in reverse, thereby opening the door.That is, when the door is opened by pushing the handle 1, the front lever 21 or the rear lever 31 moves the push-slide sleeve 461 to the left. The push-slide plate 46111 drives the push-pull plate 4631 to push the push-pull block 463 to rotate counterclockwise around the first rotating shaft 4632. The first transmission surface 4633 drives the second transmission surface 4643, driving the pull block 464 to rotate clockwise around the second rotating shaft 4642. The oblique latch block 4644 disengages from the protrusion on the oblique latch 451 and no longer... The latch 451 is engaged, and its reversal allows the door to open. When the door is opened by pulling the handle 1, the front lever 21 or the rear lever 31 moves the sliding plate 4621, causing the sliding sleeve 462 to move to the right. The sliding sleeve 462 then drives the pulling plate 4641 to rotate the pulling block 464 clockwise around the second pivot 4642. The latch engaging block 4644 disengages from the protrusion on the latch 451, no longer engaging the latch 451, and the latch 451 reverses its reversal to open the door. After the door is closed, the latch 471 is engaged in the latch locking groove 4721 by the lever 473, thus locking the latch 471.

[0047] Specifically, the push-pull door lock structure includes a handle 1, a front seat 2, a rear seat 3, and a lock body 4. The front seat 2 includes a front lever 21, and the rear seat 3 includes a rear lever 31; the lock body 4 includes an outer liner plate 41, a cover 42, a bottom assembly 44, a latch bolt assembly 45, a push-pull assembly 46, and a locking assembly 47. The cover 42 has a slot 421 and a slide groove 422 inside; the bottom assembly 44 of the lock body is welded to the bottom 441 and the inner liner plate 442 of the lock body; the outer liner plate 41 has a latch bolt hole 411 and a square latch bolt hole 412, and several studs 443 are fixed at corresponding positions on the bottom 441.

[0048] like Figures 3 to 6 As shown, the inclined tongue assembly 45 includes an inclined tongue 451, a sliding rack 452, a pinion 453, a fixed seat 454, and an inclined tongue return spring 455. The inclined tongue 451 has a protrusion 4511; the fixed seat 454 is placed inside the box bottom 441 and secured with the slot 421 of the box cover 42; one end of the sliding rack 452 extends out with a push rod 4521, and a locking protrusion 4522 is provided in the middle of the sliding rack 452; the end of the push rod 4521 passes through the side wall of the fixed seat 454 and abuts against the rear of the inclined tongue 451; the rack on the sliding rack 452 meshes with the pinion 453, and the sliding rack 452 can slide along the slide groove 422; the inclined tongue return spring 455 is engaged between the fixed seat 454 and the push rod 4521.

[0049] The push-pull assembly 46 includes a push-sliding sleeve 461, a pull-sliding sleeve 462, a push-pull block 463, a pull-pull block 464, a sleeve return spring 465, and a block return spring 466. The push-sliding sleeve 461 has a push-sliding piece 46111 at its rear end, and the pull-sliding sleeve 462 has a pull-sliding piece 4621 at its rear end. The push-sliding sleeve 461 is embedded within the pull-sliding sleeve 462. The sleeve return spring 465 is located at the front ends of both the push-sliding sleeve 461 and the pull-sliding sleeve 462, allowing both the push-sliding sleeve 461 and the pull-sliding sleeve 462 to be reset. The push-pull block 463 has a push-pull piece 4631 protruding from its upper end, a first rotating shaft 4632 in its middle, and a first transmission surface 4633 on its side. The pull-pull block 464 has a pull-pull piece 466 protruding from its upper end. 641, a second rotating shaft 4642 is provided in the middle, a second transmission surface 4643 is provided on one side of the second rotating shaft 4642 and a slanted tongue block 4644 is provided on the other side; the upper end of the push-pull plate 4631 is in contact with the push slide plate 4611, and the upper end of the pull-pull plate 4641 is in contact with the pull slide sleeve 462; the first rotating shaft 4632 and the second rotating shaft 4642 are fixed on the stud 443 of the bottom of the box 441, the first transmission surface 4633 is in contact with the second transmission surface 4643, the slanted tongue block 4644 is locked on the protrusion 4511 at the rear of the slanted tongue 551, and the push block return spring 466 is installed above the pull block 464 to keep the slanted tongue block 4644 locked on the slanted tongue 451.

[0050] The first embodiment of the present invention provides a technical solution in which the latch assembly 45 is disposed in the middle of the lock body 4 and the push-pull assembly 46 is disposed in the upper part of the lock body 4 (e.g., Figure 3 (As shown). The second embodiment provides a technical solution in which the latch assembly 45 is disposed on the upper part of the lock body 4 and the push-pull assembly 46 is disposed in the middle part of the lock body 4 (as shown). Figure 6 (As shown).

[0051] like Figure 6 As shown, the locking component 47 of the present invention includes a square tongue 471, a square tongue plate 472, a pusher 473, and a pusher return spring 475. The square tongue plate 472 is provided with a square tongue locking groove 4721, which cooperates with the pusher 473 to lock the square tongue 471. The pusher return spring 475 is disposed on one side of the pusher 473, and the pusher return spring 475 provides a reset force for the pusher 473.

[0052] During the use of this invention, when people open the door by pushing the handle 1, the lever 21 (or 31) on the handle 1 moves the push-slide sleeve 461 to slide to the left. The push-slide piece 46111 drives the push-pull piece 4631 to push the push-pull block 463 to rotate counterclockwise around the first rotating shaft 4632. The first transmission surface 4633 drives the second transmission surface 4643, driving the pull-pull block 464 to rotate clockwise around the second rotating shaft 4642. At this time, the oblique tongue block 4644 disengages from the protrusion 4511 on the oblique tongue 451 and no longer jams the oblique tongue 451. The oblique tongue 451 changes direction to open the door.

[0053] When people open the door by pulling handle 1, the lever 21 (or 31) on handle 1 moves the sliding plate 4621, causing the sliding sleeve 462 to move to the right. The sliding sleeve 462 drives the pulling plate 4641 to drive the pulling block 464 to rotate clockwise around the second pivot 4642. At this time, the latch block 4644 disengages from the protrusion 4511 on the latch 451 and no longer jams the latch 451. The latch 451 changes direction to open the door.

[0054] The present invention mainly uses the push and pull handle 1 to move the push slide sleeve 461 or pull slide sleeve 462 by the lever 21 (or 31) on the front seat 2 and the rear seat 3, thereby driving the push block 463 and the pull block 464 to move. This causes the oblique tongue block 4644 at one end of the pull block 464 to no longer block the protrusion 4511 of the oblique tongue 451. The oblique tongue 451 changes direction to open the door. The square tongue 471 in the locking assembly 47 can lock the lock body 4.

[0055] The tongue assembly 45 of this invention employs a transmission method involving the meshing of a sliding rack 452 and a pinion 453, achieving excellent noise reduction and smooth transmission. The sliding door opening process of this invention is extremely convenient and quick, suitable for various occasions and a wide range of people. It offers extremely high safety and will not experience quality problems even after prolonged use, demonstrating stable performance.

[0056] The push-pull door lock structure according to the present invention has been described above by way of example with reference to the accompanying drawings. However, those skilled in the art should understand that various modifications can be made to the push-pull door lock structure proposed by the present invention without departing from the scope of the invention. Therefore, the scope of protection of the present invention should be determined by the contents of the appended claims.

Claims

1. A push-pull door lock structure, comprising: The door panel includes a handle and front seat on one side, another handle and rear seat on the other side, and a lock body inside the door panel. The lock body includes a latch assembly, a push-pull assembly, and a locking assembly. The latch assembly includes a latch bolt. The front seat is provided with a front lever, one end of which is connected to a handle located on one side of the door leaf, and the other end is movably connected to the push-pull assembly; A rear lever is provided through the rear seat, one end of which is connected to a handle located on the other side of the door leaf, and the other end is movably connected to the push-pull assembly; characterized in that, The push-pull assembly includes: a pull sleeve, a push sleeve embedded in the pull sleeve, a pull block, and a push block; a push plate is provided at the rear end of the push sleeve, a pull plate is provided at the rear end of the pull sleeve, a protruding push plate is provided at the upper end of the push block, a first rotating shaft is provided in the middle of the push block, and a first transmission surface is provided on the side of the push block; a protruding pull plate is provided at the upper end of the pull block, a second rotating shaft is provided in the middle of the pull block, a second transmission surface is provided on one side of the second rotating shaft, and a slanted tongue block is provided on the other side of the second rotating shaft; the upper end of the push plate contacts the push plate, and the upper end of the pull plate contacts the pull sleeve; the first transmission surface contacts the second transmission surface; the locking assembly includes a square tongue, a square tongue locking groove, and a latch; wherein, When the door is opened by pushing the handle, the front lever or the rear lever moves the push-sliding sleeve to slide to the left. The push-sliding plate drives the push-pull plate to push the push-pull block to rotate counterclockwise around the first rotating shaft. The first transmission surface drives the second transmission surface to drive the pull-pull block to rotate clockwise around the second rotating shaft. The latch block disengages from the protrusion on the latch and no longer jams the latch. The latch changes direction to open the door. When the door is opened by pulling the handle, the front lever or the rear lever moves the sliding plate, causing the sliding sleeve to move to the right. The sliding sleeve drives the pulling plate to drive the pulling block to rotate clockwise around the second pivot. The latch block disengages from the protrusion on the latch and no longer jams the latch. The latch changes direction to open the door. After the door is closed, the square tongue is moved into the locking groove by the pusher, thereby locking the square tongue.

2. The push-pull door lock structure as described in claim 1, characterized in that, The locking assembly also includes a square tongue plate and a peach return spring disposed on one side of the peach, wherein... The square tongue locking groove is disposed on the square tongue plate, and the peach return spring provides a reset force for the peach.

3. The push-pull door lock structure as described in claim 1, characterized in that, The push-pull assembly also includes a sliding sleeve return spring and a toggle block return spring, wherein... The sliding sleeve return spring is disposed at the front end of the push sliding sleeve and the pull sliding sleeve, and the push sliding sleeve and the pull sliding sleeve are reset by the sliding sleeve return spring.

4. The push-pull door lock structure as described in claim 1, characterized in that, The push-pull assembly also includes a toggle return spring, wherein... The push block return spring is installed above the pull block, and the oblique tongue locking block is secured to the oblique tongue by the push block return spring.

5. The push-pull door lock structure as described in claim 1, characterized in that, The lock body also includes an outer liner plate and a bottom assembly, with the first and second rotating shafts fixed to the bottom assembly.

6. The push-pull door lock structure as described in claim 1, characterized in that, The lock body also includes a cover, within which a slot and a sliding groove are provided; wherein... The oblique tongue assembly further includes a fixed seat disposed in the slot, a sliding rack that limits movement within the slide groove, a pinion meshing with the sliding rack, and an oblique tongue return spring; wherein, A push rod is provided at one end of the sliding rack, a locking protrusion is provided in the middle of the sliding rack, and a rack is provided at the other end of the sliding rack; The oblique tongue return spring is disposed between the fixed base and the top rod, providing a return force for the oblique tongue to return; The push rod passes through the side wall of the fixed seat and abuts against the oblique tongue, and the rack meshes with the pinion.

Citation Information

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