Single three-lock hole electric control lock

文档序号:150463 发布日期:2021-10-26 浏览:26次 中文

阅读说明:本技术 单体三锁孔电控锁 (Single three-lock hole electric control lock ) 是由 不公告发明人 于 2020-04-23 设计创作,主要内容包括:本发明公开了一种单体三锁孔电控锁,锁壳壁三面各开有一个锁孔槽,锁壳内有三对呈品字形分布的轴杆,每对轴杆上装有一副锁舌、锁钩及扭力弹簧,每个锁舌的开口对向一个锁孔槽;三对轴杆之间有一电磁铁,其衔铁端头为双面扁平凹槽,连接两个锁钩,并通过其中一个锁钩柄与第三个锁钩相连;插入锁扣顶动锁舌旋转滑入锁钩,锁钩钩住锁舌,完成锁合;开锁时,为电磁铁通电,电磁铁吸动衔铁拉动相连的两个锁钩,锁钩绕轴杆旋转张开锁钩,并同时带动第三个锁钩绕轴杆旋转,张开锁钩;锁舌释放,在扭力弹簧的作用下复位,并弹出锁扣,完成开锁;本单体三锁孔电控锁采用一个电磁铁控制三个锁舌,体积小,重量轻,耗电少,动作一致性得到保证。(The invention discloses a single-body three-lock-hole electric control lock.A lock hole groove is respectively formed on three surfaces of the wall of a lock shell, three pairs of shaft levers which are distributed in a delta shape are arranged in the lock shell, each pair of shaft levers is provided with a pair of lock tongue, a lock hook and a torsion spring, and the opening of each lock tongue is opposite to one lock hole groove; an electromagnet is arranged between the three pairs of shaft rods, the armature end of the electromagnet is a double-sided flat groove, is connected with the two lock hooks, and is connected with the third lock hook through one lock hook handle; the lock catch is inserted to push the lock tongue to rotate and slide into the lock hook, and the lock hook hooks the lock tongue to complete locking; when the lock is unlocked, the electromagnet is electrified, the electromagnet attracts the armature to pull the two connected lock hooks, the lock hooks rotate around the shaft rod to open the lock hooks, and meanwhile, the third lock hook is driven to rotate around the shaft rod to open the lock hook; the lock tongue is released, resets under the action of the torsion spring, and pops up the lock catch to complete unlocking; the single three-lockhole electric control lock adopts one electromagnet to control three lock tongues, and has the advantages of small volume, light weight, low power consumption and ensured action consistency.)

1. A single three-lock-hole electric control lock comprises a lock shell (1), a lock cover (16), three lock tongues (21, 23 and 25), three lock hooks (22, 24 and 26) and an electromagnet (3).

2. The single-body three-lock-hole electric control lock as claimed in claim 1, wherein: the single three-lockhole electric control lock is opened by controlling the lockset through a single electromagnet (3).

3. The single-body three-lock-hole electric control lock as claimed in claim 1, wherein: the single three-lock-hole electric control lock is provided with three pairs of lock tongues (21, 23 and 25) and lock hooks (22, 24 and 26); the second lock hook (24) is provided with a long arm connecting rod connected with the electromagnet armature outside the lock hook.

4. The single-body three-lock-hole electric control lock as claimed in claim 1, wherein: the first locking hook (22) and the second locking hook (24) are directly opened by the electromagnet, and the third locking hook (26) is opened by pressing down the handle end of the second locking hook (24).

Technical Field

The invention relates to a lockset, in particular to an electric control lockset.

Background

The existing electric control locks are single-lock holes, only one lock catch can be locked/unlocked, and in the application of simultaneously controlling a plurality of lock catches, a plurality of electric control locks are used to achieve the purpose of simultaneously controlling a plurality of lock catches. This takes up more space, consumes more power, and is not suitable for certain applications where there are limitations on volume and weight, and battery power, such as animal muzzle control.

Disclosure of Invention

In order to overcome the defects in the prior art, the invention provides the single three-lock-hole electric control lock which adopts one electromagnet to control three groups of lock cylinders and can lock and unlock three lock catches simultaneously.

The technical scheme adopted by the invention for solving the technical problems is as follows: a single three-lock-hole electric control lock comprises a lock shell, a lock cover, an electromagnet, a lock tongue, a lock hook and a torsion spring, wherein a shaft rod used for fixing the lock tongue and the lock hook is arranged in the lock shell, lock hole grooves are formed in the wall of the lock shell and the lock cover, a manual unlocking hole is formed in the wall of the lock shell, the lock tongue corresponds to the lock hole grooves in the wall of the lock shell, and the electromagnet controls the lock hook through a link mechanism.

In the single three-lock-hole electric control lock, the electromagnet is a non-through type push-pull electromagnet, and a double-faced flat groove is formed in the end part, close to the armature, of the electromagnet and used for pulling the lock hook.

The single three-lockhole electric control lock comprises three pairs of lock tongues and lock hooks, wherein the three lock tongues are U-shaped open lock tongues with shaft holes, and the shaft holes are positioned at the bottom of the U-shaped lock tongues; the hook ends of the three lock hooks are all platforms with bevel edges at the front edges, and the middle parts of the three lock hooks are provided with shaft holes; the second lock hook is provided with a long arm connecting rod outside the lock hook and connected with an armature of the electromagnet; the lock tongue, the lock hook and the torsion spring are respectively sleeved on a shaft lever in the lock shell; the lock tongue and the lock hook can rotate around the shaft lever. The end of the long arm connecting rod of the second lock hook and the handle end of the first lock hook are connected with the armature of the electromagnet, and the handle end of the second lock hook and the handle end of the third lock hook are arranged in parallel and oppositely.

Optionally, the electromagnet can also adopt a titanium wire, and the first locking hook and the second locking hook are pulled by utilizing the characteristic that the titanium wire is heated to shrink, so that the unlocking purpose is achieved.

The single-body three-lock-hole electric control lock has the advantages that the single-body three-lock-hole electric control lock can realize that one lock simultaneously locks and unlocks three lock catches, has small volume, light weight and low power consumption, and can meet the application that the size, the weight and the power consumption have higher requirements, such as the quick detachment of an animal muzzle and the like.

Description of the drawings:

the invention is further illustrated with reference to the following figures and examples.

FIG. 1 is a schematic view of the present invention;

FIG. 2 is a schematic view of the internal structure of the lock case;

FIG. 3 is a schematic diagram illustrating a locking state according to the present invention;

FIG. 4 is a view of a double-sided flat groove configuration of the armature tip;

FIG. 5 is a schematic diagram of the locking state of the present invention;

FIG. 6 is a schematic view of the unlocked state of the present invention;

wherein, the corresponding relation between the mark and the part name in the figures 1 to 6 is as follows: 1 lock shell, 11 first lock hole groove, 12 second lock hole groove, 13 third lock hole groove, 141 first shaft rod, 142 second shaft rod, 143 third shaft rod, 144 fourth shaft rod, 145 fifth shaft rod, 146 sixth shaft rod, 15 manual unlocking hole, 16 lock cover, 21 first lock tongue, 22 first lock hook, 221 first lock hook handle, 23 second lock tongue, 24 second lock hook, 241 second lock hook long arm connecting rod handle, 25 third lock tongue, 26 third lock hook, 3 electromagnet, 31 reset spring, 32 armature, 41 first torsion spring, 42 second torsion spring, 43 third torsion spring, 44 fourth torsion spring, 45 fifth torsion spring, 45 sixth torsion spring.

Detailed Description

The single three-hole electric control lock comprises a lock shell 1, a lock cover 16, locking tongues 21, 23 and 25, locking hooks 22, 24 and 26, torsion springs 41 to 46 and an electromagnet 3, wherein a shaft rod 141 and 146 for fixing the locking tongues 21, 23 and 25 and the locking hooks 22, 24 and 26 are arranged in the lock shell 1, the first locking tongue 21 and the first torsion spring 41 are sleeved on the first shaft rod 141, a U-shaped opening of the first locking tongue 21 faces the first locking hole groove 11, and the first locking hook 22 and the second torsion spring 42 are sleeved on the second shaft rod 142; the second bolt 23 and the third torsion spring 43 are sleeved on the third shaft 143, the U-shaped opening of the second bolt 23 faces the second keyhole slot 12, and the second latch hook 24 and the fourth torsion spring 44 are sleeved on the fourth shaft 144; the third bolt 25 and the fifth torsion spring 45 are sleeved on the fifth shaft rod 145, the U-shaped opening of the third bolt 25 faces the third keyhole slot 13, and the third latch hook 26 and the sixth torsion spring 46 are sleeved on the sixth shaft rod 146; the handle end 221 of the first latch hook 22 and the long arm connecting rod 241 of the second latch hook 24 are overlapped in the double-sided flat groove at the end of the armature 32 of the electromagnet 3, as shown in fig. 4; the shank ends of the second and third latch hooks 24 and 26 are disposed in side-by-side facing relationship.

The single three-hole electric control lock is not electrified normally, and the armature 32 of the electromagnet 3 is in a release state under the action of the return spring 31; the first bolt 21, the second bolt 23, the third bolt 25, the first lock hook 22, the second lock hook 24, and the third lock hook 26 are kept in a released state under the action of the first torsion spring 41 to the sixth torsion spring 46, and the single triple-lock-hole electric control lock is in a state to be locked, as shown in fig. 3;

during locking, a lock catch is respectively inserted into the lock hole grooves 11-13 and enters the U-shaped grooves of the first lock tongue 21, the second lock tongue 23 and the third lock tongue 25, the first lock tongue 21, the second lock tongue 23 and the third lock tongue 25 are pushed to rotate, the oblique edges of the front edges of the first lock hook 22, the second lock hook 24 and the third lock hook 26 are pushed, the first lock hook 22, the second lock hook 24 and the third lock hook 26 are enabled to rotate around the shaft rods 142, 144 and 146, and the first lock tongue 21, the second lock tongue 23 and the third lock tongue 25 respectively enter the hook end platforms of the first lock hook 22, the second lock hook 24 and the third lock hook 26; after the first locking tongue 21, the second locking tongue 23 and the third locking tongue 25 respectively enter the hook end platforms of the first locking hook 22, the second locking hook 24 and the third locking hook 26, the first locking hook 22, the second locking hook 24 and the third locking hook 26 respectively rotate under the action of the second torsion spring 42, the fourth torsion spring 44 and the sixth torsion spring 46 to lock the first locking tongue 21, the second locking tongue 23 and the third locking tongue 25, and the locking is completed, as shown in fig. 5.

When the lock is unlocked, the electromagnet 3 is powered on to generate magnetic attraction force to attract the armature 32, the armature 32 pulls the hook handle 221 of the first lock hook 22 and the long arm connecting rod 241 of the second lock hook 24, the first lock hook 22 and the second lock hook 24 respectively rotate around the shaft rods 142 and 144 under the driving of the armature 32, the hook ends of the first lock hook 22 and the second lock hook 24 are opened, and the lock on the first lock bolt 21 and the second lock bolt 23 is released; the first bolt 21 and the second bolt 23 reversely rotate under the action of the first torsion spring 41 and the third torsion spring 43 to eject the latch to return to the original state; while the second lock hook 24 rotates around the shaft rod 144, the handle end of the second lock hook 24 presses down the handle end of the third lock hook 26, the third lock hook 26 rotates around the shaft rod 146, the hook end of the third lock hook 26 is opened, the locking of the third lock tongue 25 is released, and the third lock tongue 25 reversely rotates to eject the lock catch under the action of the fifth torsion spring 45, so as to return to the original state; the electromagnet 3 is powered off, the armature 32 is restored to the release state under the action of the return spring 31, the first latch hook 22, the second latch hook 24 and the third latch hook 26 are restored to the original state under the action of the second torsion spring 42, the fourth torsion spring 44 and the sixth torsion spring 46, respectively, and the single three-hole electric control lock completes unlocking and is restored to the to-be-locked state, as shown in fig. 6.

After the invention is locked, under the condition of no power supply, the rod-shaped object is extended into the manual unlocking hole 15 to push the armature 32, so as to simulate the attraction state of the electromagnet 3 and manually complete unlocking.

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