1. Field of the Invention
The present invention relates to a lock, and more particularly to a compound lock that integrates two different lock assemblies in a housing and can be unlocked with a key or by dialing a combination.
2. Description of the Prior Arts
The combination lock is a simple lock, is commonly used, is locked or unlocked by turning wheels and obviates the risk of losing a key. People use combinations in many things like ATMs (automated teller machines), safes, personal computers, encryption of files or access to a specific network. However, a single combination for all applications is a significant security risk, in that someone identifying one combination will be able to access all other applications that use the same combination.
People usually set different combinations in different things for safety, but remembering the correct combination is more difficult. When a person forgets a digital combination that was set in a device like an ATM or a computer, he can inquire or reset a combination. However, when the combination of a mechanical combination lock is forgotten, the only way to remove the lock usually requires breaking the lock. Therefore, people must remember every single combination of all mechanical combination locks to successfully unlock them. It is really inconvenient.
To overcome the shortcomings, the present invention provides a compound lock to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide a compound lock that can be unlocked with a key even though the combination to the lock is forgotten to prevent having to break the lock.
The compound lock in accordance with the present invention comprises a common housing, a latch assembly, a supplementary lock and a combination lock. The common housing has a cap that is selectively rotatable. The latch assembly is rotatably attached to and protrudes from the common housing. The supplementary lock is mounted in the common housing and engages and selectively rotates the latch assembly. The combination lock connects the cap to the latch assembly so the latch assembly can be rotated. Thus, people may unlock the compound lock using either the combination lock or the supplementary lock with a key when the combination is forgotten without breaking the compound lock.
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 common housing comprises an outer housing (40), an inner housing (10, 10′) and a cap (70).
With further reference to
The front edge (41) is formed on the front of the outer housing (40).
The cover (42) is formed on the rear of the outer housing (40).
The extension tube (43) is formed coaxially on and protrudes longitudinally from the cover (42), is mounted in the mounting hole (BB) of the article and has an outer surface, an end surface, an optional thread and an optional positive stop (431). The thread is formed on the outer surface. The mounting nut (CC) screws onto the thread of the extension tube (43) to hold the extension tube (43) securely in the mounting hole (BB) of the front panel (AA) of the article.
The positive stop (431) is an arc and is formed concentrically on and protrudes longitudinally from the end surface.
The central hole (44) is formed through the extension tube (43) and the cover (42) and may be a threaded hole.
The at least one notch (46) is formed in the inner surface of the outer housing (40) at the front edge (41).
The identification holes (45) are formed through the cover (42) around the extension tube (43).
The through hole (47) is formed through the sidewall of the outer housing (40) near the front edge (41).
With further reference to
The supplementary lock hole (11, 11′) is formed coaxially through, the inner housing (10, 10′) and may be implemented as a mounting hole (11) or a mounting tube (11′). The mounting tube (11′) has a wall and two notches (111′). The wall protrudes from the front surface of the inner housing (10′) around the mounting tube (11′). The notches (11′) are formed on the wall opposite to each other.
The at least one combination assembly recess (12) is formed on the front surface of the inner housing (10, 10′), and each combination assembly recess (12) may be implemented two wheel chambers (121) and a panel recess (120). The wheel chambers (121) are formed opposite to each other on the front surface of the inner housing (10, 10′) and connect to each other, and each wheel chamber (121) has a transverse recess (122) and a longitudinal recess (123). The transverse recess (122) of the wheel chamber (121) is parallel to the other transverse recess (122) of the wheel chamber (121). The longitudinal recess (123) connects to the other longitudinal recess (123) of the wheel chamber (121), is perpendicular to the transverse recess (122) and has an optional identification hole (124). The identification hole (124) is formed through the inner housing (10, 10′) and aligns with an identification hole (45) in the outer housing (40). The panel recess (120) is formed on the front surface of the inner housing (10, 10′) beside the transverse recesses (122).
The positioning holes (13) are formed on the front surface of the inner housing (10, 10′).
The fastening holes (15) are formed in the rear surface of the inner housing (10, 10′) around the supplementary lock hole (11, 11′) and may be a threaded hole.
The edge protrudes from the front surface of the inner housing (10).
The recess (14) is formed in the rear surface of the inner housing (10, 10′) coaxially with the supplementary lock hole (11, 11′).
The through hole (16) is formed through the edge of the inner housing (10, 10′) near the at least one combination assembly recess (12) and corresponds to and aligns with the through hole (47) of the outer housing (40).
The combination yoke recess (17) is formed in the front surface near the edge of the inner housing (10, 10′) and connects to the at least one combination assembly recess (12).
The cap (70) is mounted around the outer housing (40), is fastened to the inner housing (10, 10′), has an open rear end (71), a closed front end (72) and a sidewall (73) and may have a fastening bracket (74), multiple rotation posts (75) and a through hole (76).
The closed front end (72) has an inner surface, at least one wheel hole (721) and a supplementary lock hole (722). The wheel holes (721) are formed through the closed front end (72) and correspond respectively to the transverse recesses (122) of the inner housing (10, 10′). The supplementary lock hole (722) corresponds to the supplementary lock hole (11, 11′) of the inner housing (10, 10′).
The sidewall (73) may be fluted to allow the cap (70) to be firmly gripped.
The fastening bracket (74) is formed coaxially on and protrudes longitudinally from the inner surface of the closed front end (72), is mounted through the mounting hole (11) of the inner housing (10) and has a distal end. The distal end is attached securely to the recess (14) of the inner housing (10).
The rotation posts (75) are formed on and protrude longitudinally from the inner surface of the closed front end (72), are mounted securely in the positioning holes (13) of the inner housing (10, 10′) and rotate the inner housing (10, 10′).
The through hole (76) is formed through the sidewall (73) of the cap (70) and corresponds to and aligns with the through holes (47, 16) of the outer housing (40) and the inner housing (10, 10′).
The latch assembly (50) is connected to the common housing, has a core bracket (54), an optional mounting collar (55), multiple optional collar fasteners (56), a latch (52) and an optional latch fastener (53) and may have a limit (51).
The core bracket (54) is cylindrical, is connected to the rear surface of the inner housing (10, 10′), has a front end and a rear end and may have a slot (541), a mounting hole (544), a flange (542) and a keyed protrusion (543).
The slot (541) is formed axially on the front end of the core bracket (54) and communicates with the supplementary lock hole (11, 11′) of the inner housing (10, 10′).
The flange (542) is formed around and protrudes out from the front end of the core bracket (54) and is mounted in the recess (14) of the inner housing (10, 10′).
The keyed protrusion (543) protrudes axially from the rear end of the core bracket (54).
The mounting hole (544) is formed axially in the rear end of the core bracket (54) through the keyed protrusion (543) and may be a threaded hole.
The mounting collar (55) is mounted rotatably around the core bracket (54), fastens to the rear surface of the inner housing (10, 10′) to hold the flange (542) of the core bracket (54) between the mounting collar (55) and the rear surface of the inner housing (10, 10′), has a mounting hole (551) and multiple optional through holes (552) and may have multiple identification holes (553).
The mounting hole (551) is formed through the mounting collar (55) and is mounted around the core bracket (54).
The through holes (552) are formed through the mounting collar (55).
The identification holes (553) are formed through the mounting collar (55) and align with the identification holes (45, 124) of the outer housing (40) and the inner housing (10, 10′).
The collar fasteners (56) are mounted respectively through the through holes (552) and fasten to the fastening holes (15) of the inner housing (10, 10′) to prevent the core bracket (54), the inner housing (10, 10′) and the mounting collar (55) from separating, and to allow the core bracket (54) to rotate relative to the inner housing (10, 10′) and the mounting collar (55).
The limit (51) is mounted around the keyed protrusion (543), abuts the rear end of the core bracket (54), slidably abuts the end surface of the extension tube (43) and has an edge, a keyed hole (511) and a protrusion (512). The keyed hole (511) corresponds to the keyed protrusion (543) of the core bracket (54) and keeps the limit (51) from rotating relative to the core bracket (54). The protrusion (512) is formed on and protrudes out from the edge of the limit (51) and selectively abuts the positive stop (431) of the outer housing (40) to keep the latch assembly (50) from rotating excessively.
The latch (52) is connected to the rear end of the core bracket (54), is securely mounted around the keyed protrusion (543) of the core-bracket (54) and has a proximal end and an optional keyed hole (521). The proximal end is connected to the rear end of the core bracket (54). The keyed hole (521) is formed through the latch (52) near the proximal end, corresponds to and is mounted securely around the keyed protrusion (543) of the core bracket (54) and keeps the latch (52) from rotating relative to the core bracket (54).
The latch fastener-(53) is mounted through the keyed holes-(521, 511) of the latch (52) and the limit (51) and screws into the mounting hole (544) of the keyed protrusion (543) of the core bracket (54) to hold the limit (51) and the latch (52) securely on the core bracket (54).
With further reference to
The pin lock assembly (80) is mounted securely in the mounting hole (11) of the inner housing (10) and is operated with a cylindrical key.
The disc lock assembly (80′) is mounted securely in the mounting tube (11′) of the inner housing (10′) and is operated with a flat key.
The drive shaft (81) is formed on and protrudes coaxially from the rear surface of the supplementary lock (80, 80′) and engages the slot (541) of the core bracket (54).
The key mount (82, 82′) is formed coaxially on the front surface of the supplementary lock (80, 80′) and is exposed through the supplementary lock hole (722) in the closed front end (72) of the cap (70). The key mount (82) is mounted in the fastening bracket (74) of the cap (70).
The combination lock (60) is mounted in the inner housing (10, 10′), selectively connects to the outer housing (40) or disconnects from the outer housing (40) and has at least one combination assembly (61) and may be implemented with a latch panel (62) and a combination yoke (63).
The at least one combination assembly (61) is rotatably mounted respectively in the at least one combination assembly recess (12) of the front surface of the inner housing (10, 10′), protrudes respectively through the wheel hole (721) in the closed front end (72) of the cap (70) and has at least one unique combination number and at least one combination notch (611). The combination notch (611) corresponds to the unique combination number.
With further reference to
The locking protrusion (621) is formed on and protrudes from the top of the latch panel (62) and corresponds to and is mounted selectively in the notch (46) in the inner surface of the outer housing (40) when the combination lock (60) is locked.
The at least one wheel hole (622) is formed through the latch panel (62), corresponds respectively to the transverse recess (122) of the inner housing (10, 10) and is mounted respectively around the at least one combination assembly (61). Each wheel hole (622) has a top edge.
The disconnect protrusions (623) are formed respectively on and protrudes down from the top edge of the at least one wheel hole (622) and corresponds respectively to and drop into the combination notches (611) of the at least one combination assembly-(61) when all the unique combination numbers are aligned to disconnect the locking protrusion (621) from the notch (46) in the outer housing (40).
The central hole (624) is formed through the latch panel (62), corresponds to the supplementary lock hole (11, 11′) of the inner housing (10, 10′) and connects to the wheel holes (622) of the latch panel (62).
The elongated mounting hole (625) is formed through the latch panel (62), aligns with the positioning hole (13) of the inner housing (10, 10′) and is mounted slidably by the rotation post (75) of the cap (70).
The combination yoke (63) is mounted in the combination yoke recess (17) of the inner housing (10, 10′), is used to set unique combination numbers respectively on the combination assemblies (61) and can be moved upward when the unique combination numbers are dialed in.
The compound lock as described has the following advantages. When the front panel (AA) of the article is closed, people may turn the cap (70) to rotate the inner housing (10, 10′), relative to the outer housing (40) until the locking protrusion (621) of the latch panel (62) corresponds the at least one notch (46) of the outer housing (40) and to lock the latch (52). Thus, the locking protrusion (621) of the latch panel (62) engages the at least one notch (46) of the outer housing (40) and the at least one combination notch (611) of the combination assembly (61) does not correspond to the disconnect protrusion (623) of the latch panel (62). The latch panel (62) is immovable. Therefore, the protrusion (621) of the latch panel (62) keeps engaging the at least one notch (46) of the outer housing (40), and the inner housing (10, 10′) is securely mounted in the outer housing (40). The compound lock is locked. However, the supplementary lock (80, 80′) can be operated with a key even when the combination lock (60) is locked to rotate the latch (52) and unlock the compound lock.
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.