1. Field of the Invention
The present invention relates to a doorknob with a lock, especially to a doorknob with a lock that does not lock the inside handle.
2. Description of the Prior Art
Generally speaking, doorknobs are usually locked and unlocked with keys from outside of rooms. When people are inside rooms, different kinds of conventional doorknobs lock and unlock in different ways. When people are inside a room, one conventional doorknob is locked or unlocked by rotating a control knob. Therefore when the doorknob is locked, a user inside the room has to rotate the control knob and turn the doorknob to open the door. However, a small child may not know how or be unable to unlock the door in an emergency by rotating the control knob and cannot get out of the room. The child not being able to leave the room quickly could be disastrous.
To overcome the shortcomings, the present invention provides a doorknob with a lock that does not lock the inside handle of a doorknob to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide a doorknob with a lock that is easy to open when inside a room.
The doorknob with a lock in accordance with the present invention comprises a bolt assembly, a lock activating assembly, an outer doorknob assembly and an inner doorknob assembly. The bolt assembly is mounted in a door and has a bolt head and a rotatable plug. The lock activating assembly has a base, a head, an outer clutch plate and an inner clutch plate. The base and the head respectively have an annular longitudinal protrusion, and the base is covered in the annular longitudinal protrusion on the head. Each annular longitudinal protrusion has two opposite gaps. The outer and inner clutch plates respectively have two ends and a longitudinal and transverse hole. The ends of the clutch plates engage the gaps in the base and selectively engage the gaps in the head to lock and unlock the door.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The bolt assembly (40) is mounted in the door and has a bolt (41), a bolt head (43), a rotatable plug (44) and multiple optional fastening holes (42). The bolt (41) is mounted in the door and has a distal end and a proximal end. The bolt head (43) is formed on the distal end of the bolt (41) and protrudes out of the door. The rotatable plug (44) is circular, has a non-circular through hole and is mounted rotatably through the bolt (41) near the proximal end of the bolt (41). The fastening holes (42) are formed around the rotatable plug (44).
The housing (30) has an inner surface, an outer surface, an edge, a through hole (31) and two ears (32). The inner surface is attached to the outer surface of the door. The through hole (31) is formed through the housing (30) and aligns with the non-circular through hole in the rotatable plug (44). The ears (32) are formed on the outer surface and the edge of the housing (30), are opposite to each other and respectively have a fastening hole (33). The fastening holes (33) are formed through the ears (32) and respectively correspond to the fastening holes (42) in the bolt assembly (40).
The lock activating assembly (20) has a lock activator, a base (21), an outer clutch plate (24) and an inner clutch plate (25).
The lock activator has a locking tube (26), a head (27) and an optional spring (34). The locking tube (26) is non-circular, corresponds to and is mounted through the non-circular through hole in the rotatable plug (44) and has a proximal end, a distal end and a central through hole. The head (27) is formed on the proximal end of the locking tube (26) and has an outer surface, an edge, a through hole (281) and an annular longitudinal protrusion (29). The through hole (281) is formed through the head (27) and corresponds to the central through hole in the locking tube (26). The annular longitudinal protrusion (29) is formed on the edge and the outer surface of the head (27), forms an open cavity (28) and has two opposite gaps (291). The spring (34) is mounted around the locking tube (26) and is compressed by the head (27) and the housing (30).
The base (21) corresponds to the open cavity (28) in the head (27) and has an outer surface, an inner surface, an edge, a non-circular neck (211), a through hole (231) and an annular longitudinal protrusion (22). The non-circular neck (211) is hollow and is formed concentrically on the outer surface of the base (21). The through hole (231) is formed through the base (21) and corresponds to the non-circular neck (211). The annular longitudinal protrusion (22) is formed on the inner surface and the edge of the base (21), forms an open cavity (23) and has two opposite gaps (221). The gaps (221) in the annular longitudinal protrusion (22) of the base (21) correspond to the gaps (291) in the annular longitudinal protrusion (29) of the head (27).
The outer and inner clutch plates (24, 25) are mounted in the open cavity (23) of the base (21), and each clutch plate (24, 25) has a long protruding end (not numbered), a short end, a longitudinal slot (241, 251) and a transverse slot (242, 252). The ends of each clutch plate (24, 25) are mounted slidably in the gaps (221) in the annular longitudinal protrusion (22) on the base (21) and the long protruding ends selectively slide into the gaps (291) in the annular longitudinal protrusions (29) on the head (27). A longitudinal slot (241, 251) and a transverse slot (242, 252) are formed in each clutch plate (24, 25) and communicate with each other. The longitudinal slot (241) in the outer clutch plate (24) aligns with the longitudinal slot (251) in the inner clutch plate (25) when the long protruding ends of the clutch plates (24, 25) slide into the gaps (291) in the annular longitudinal protrusions (29) on the head (27). The transverse slot (242) in the outer clutch plate (24) aligns with the transverse slot (252) in the inner clutch plate (25) when the long protruding ends of the clutch plates (24, 25) are retracted into the gaps (221) in the annular longitudinal protrusions (22) on the base (21).
The outer doorknob assembly (10) is attached to the outer surface of the door and has a cover (101), a handle (11), a shaft (12), an optional spring (17), a driving board (13), multiple sockets (15) and a locking bar (14). The cover (101) has an inner surface and an outer surface. The inner surface of the cover (101) is attached to the outer surface of the door. The handle (11) is mounted on the outer surface of the cover (101) and has a lock cylinder (18) inside. The shaft (12) is hollow, is mounted on the inner surface of the cover (101), connects to the lock cylinder in the handle (11) and has an inner surface. The spring (17) is mounted around the shaft (12). The driving board (13) is attached to the inner surface of the shaft (12) and has a non-circular hole (131). The non-circular hole (131) corresponds to the non-circular neck (211) on the base (21). The multiple sockets (15) are formed on the inner surface of the cover (101) near the shaft (12) and respectively have an optional coaxial threaded hole (151). The locking bar (14) is flat and has a middle section, a proximal end and a distal end. The proximal and distal ends and the middle section have flat longitudinal surfaces. The flat longitudinal surfaces of the proximal and distal ends are perpendicular to flat longitudinal surfaces of the middle section. The proximal end of the locking bar (14) is mounted in the non-circular hole (131) in the driving board (13) and connects to the lock cylinder (18). The distal end of the locking bar (14) passes sequentially through the non-circular neck (211) on the base (21), the through hole (231) in the base (21), the transverse holes (242, 252) in the outer and inner clutch plates (24, 25), the through hole (281) in the head (27), the locking tube (26), the through hole (31) in the housing (30) and the rotatable plug (44).
The inner doorknob assembly (50) is attached to the inner surface of the door and has a faceplate (57), a cover (501), multiple screws (58), a handle (51), a control knob (56), a shaft (52), an optional spring (54) and a driving board (53). The faceplate (57) is attached to the inner surface of the door (40) and has a central hole (571), multiple optional through holes (572) and multiple thread holes (573). The central hole (571) is formed through the faceplate (57) and corresponds to the rotatable plug (44). The through holes (572) are formed around the central hole (571) and correspond to the fastening holes (42) in the bolt assembly (40). The thread holes (573) are formed around the central hole (571). The cover (501) has an inner surface, an outer surface and multiple fastening holes (501a). The outer surface of the cover (501) is attached to the inner surface of the door and covers the faceplate (57). The fastening holes (501a) are formed through the cover (501) and correspond to the thread holes (573) in the faceplate (57). The screws (58) pass respectively through the fastening holes (501a) in the cover (501) and the thread holes (573) in the faceplate (57) to fasten the cover (501) on the faceplate (57). The handle (51) is mounted on the inner surface of the cover (501) and has a lock cylinder (59) inside. The lock cylinder (59) connects to the distal end of the locking bar (14). The control knob (56) is mounted on the handle (51) and connects to the lock cylinder in the handle (51). The shaft (52) is hollow, is mounted on the outer surface of the cover (501), connects to the lock cylinder in the handle (51) and has an outer surface. The spring (54) is mounted around the shaft (52). The driving board (53) is attached to the outer surface of the shaft (52) and has a non-circular hole (55). The non-circular hole (55) corresponds to the locking tube (26), and the distal end of the locking bar (14) engages the non-circular hole (55).
Each fastener (16) has a threaded end (161) and an open end. The threaded ends (161) pass respectively through the corresponding fastening holes (33) in the ears (32) and screw respectively into the coaxial threaded holes (151) in the sockets (15). The open end has an inner thread (162) and passes through the corresponding fastening hole (42) in the bolt assembly (40) and the through hole (572) in the faceplate (57). A screw (19) extending through a through hole (572) in the faceplate (57) engages the inner thread (162) of each fastener (16).
With further reference to
With further reference to
However, rotating the handle (51) of the inner doorknob assembly (50) will rotate the locking tube (26) and open the door. When the handle (51) is rotated, the non-circular hole (55) will rotate the locking tube (26), and the locking tube (26) will rotate the rotatable plug (44). Then the bolt head (43) is retracted into the door, and the door can be opened.
Therefore, the doorknob can be locked by a proper key from outside the door (40) or by turning the control button (56) inside the door. The door can be opened by unlocking the doorknob with the proper key inserted to unlock the lock cylinder (18) and the handle (11) turned from outside the door (40) or by turning the control knob (56) to unlock the lock cylinder (59) and turning the doorknob or simply by turning the handle (51) of the inner doorknob assembly (50). When an emergency is occurs, a child can open the door easily by simply turning the handle (51).
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
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