CN205894881U - Intelligence mortise lock locking device - Google Patents
Intelligence mortise lock locking device Download PDFInfo
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- CN205894881U CN205894881U CN201620758879.0U CN201620758879U CN205894881U CN 205894881 U CN205894881 U CN 205894881U CN 201620758879 U CN201620758879 U CN 201620758879U CN 205894881 U CN205894881 U CN 205894881U
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Abstract
本实用新型的提供一种智能插芯锁锁扣装置,包括一上壳、一下壳、一锁块、一封条;所述锁块可滑动的分别与上壳和下壳相连,通过锁块将上壳与下壳连接在一起,且上壳与下壳合在一起后留有供锁块滑动的余量空间;所述封条装配时将锁块的滑动的余量空间占用锁块无法滑动使上壳与下壳通过锁块锁定在一起;所述封条取下时释放出所述锁块的滑动余量空间从而锁块可以滑动取出使得上壳和下壳可以分离,结构坚固造型美观。
This utility model provides an intelligent mortise lock latching device, including an upper shell, a lower shell, a locking block, and a sealing strip. The locking block is slidably connected to both the upper and lower shells, connecting them together, with sufficient space for the locking block to slide after the upper and lower shells are joined. When the sealing strip is assembled, it occupies the sliding space of the locking block, preventing it from sliding and locking the upper and lower shells together. When the sealing strip is removed, it releases the sliding space of the locking block, allowing the locking block to slide out and the upper and lower shells to be separated. The structure is robust and aesthetically pleasing.
Description
技术领域technical field
本实用新型涉及一种防盗锁,尤其是一种智能防盗插芯锁。The utility model relates to an anti-theft lock, in particular to an intelligent anti-theft mortise lock.
背景技术Background technique
现有的插芯锁种类多样,其构造大多是由分别独立的锁体和锁杆构成。通常,人们是通过改进锁体的结构,使其防盗性能更好,这对锁体的构造要求非常高,一般是在锁体装配完毕后将锁体外壳铆死,从而保证锁的安全性。电子智能插芯锁需要内嵌电子模块,在生产过程中常常需要反复检测、维修,如果是锁体壳体被铆接在一起,那么检测、维修时必须破坏锁体壳体而造成浪费在经济价值上失去维修的意义。铆接的另一个缺点是铆接位置裸漏在外,影响造型美观。Existing mortise locks are of various types, and their structures are mostly composed of separate lock bodies and lock bars. Usually, people improve the structure of the lock body to make its anti-theft performance better, which requires very high requirements on the structure of the lock body. Generally, after the lock body is assembled, the lock body shell is riveted to ensure the safety of the lock. Electronic smart mortise locks need to be embedded with electronic modules. Repeated inspections and maintenance are often required during the production process. If the lock body shell is riveted together, the lock body shell must be destroyed during inspection and maintenance, resulting in a waste of economic value. It loses the meaning of maintenance. Another disadvantage of riveting is that the riveting position is exposed, which affects the appearance.
实用新型内容Utility model content
本实用新型的目的是为了克服上述现有技术的不足,提供一种无铆接、局部可拆卸的智能插芯锁锁扣装置,结构坚固造型美观。The purpose of this utility model is to overcome the shortcomings of the above-mentioned prior art, and provide a non-riveting, partially detachable intelligent mortise lock locking device, which has a firm structure and a beautiful appearance.
为了达到上述目的,本实用新型采用了以下技术方案:一种智能插芯锁锁扣装置,包括一上壳、一下壳、一锁块、一封条;所述锁块可滑动的分别与上壳和下壳相连,通过锁块将上壳与下壳连接在一起,且上壳与下壳合在一起后留有供锁块滑动的余量空间;所述封条装配时将锁块的滑动的余量空间占用锁块无法滑动使上壳与下壳通过锁块锁定在一起;所述封条取下时释放出所述锁块的滑动余量空间从而锁块可以滑动取出使得上壳和下壳可以分离。In order to achieve the above purpose, the utility model adopts the following technical solutions: an intelligent mortise lock locking device, including an upper shell, a lower shell, a lock block, and a strip; the lock block can slide with the upper shell respectively It is connected with the lower shell, and the upper shell and the lower shell are connected together through the lock block, and after the upper shell and the lower shell are combined together, there is a margin space for the lock block to slide; when the seal is assembled, the sliding of the lock block The remaining space occupies the locking block and cannot slide so that the upper shell and the lower shell are locked together by the locking block; when the seal is removed, the sliding margin space of the locking block is released so that the locking block can be slid out so that the upper shell and the lower shell can be separated.
进一步地,所述智能插芯锁锁扣装置还包括一内壳,内壳有平面或是弧面限位,装配在上壳与下壳之间,内壳在垂直于锁块滑动方向上对锁块限位。Further, the smart mortice lock locking device also includes an inner shell, which has a plane or arc surface limit, and is assembled between the upper shell and the lower shell, and the inner shell is perpendicular to the sliding direction of the lock block. Lock block limit.
进一步地,所述锁块分为第一锁块和第二锁块,所述滑动余量空间在第一锁块和第二锁块之间。Further, the lock block is divided into a first lock block and a second lock block, and the sliding allowance space is between the first lock block and the second lock block.
具体地,所述锁块与上壳连接形成第一连接结构,所述第一连接结构可以是设在锁块上的沿锁块滑动方向上的滑槽/滑块和对应设置在上壳上的滑块/滑槽。Specifically, the lock block is connected with the upper case to form a first connection structure, and the first connection structure may be a chute/slider arranged on the lock block along the sliding direction of the lock block and correspondingly arranged on the upper case slider/chute.
具体地,所述锁块与下壳的连接形成第二连接结构,所述第二连接结构可以是设在锁块上的沿锁块滑动方向上的滑槽/滑块和对应设置在下壳上的滑块/滑槽。Specifically, the connection between the lock block and the lower case forms a second connection structure, and the second connection structure may be a chute/slider arranged on the lock block along the sliding direction of the lock block and correspondingly arranged on the lower case slider/chute.
具体地,所述上壳和下壳中分别有第一卡勾槽、第二卡勾槽,锁块上有卡勾,所述卡勾分别与上壳和下壳上的第一卡勾槽和第二卡勾槽相配合,卡勾和卡槽的配合可以使锁块上下方向位移受限,也可以使锁块在垂直于滑轨的方向上位移受限位,仅保留左右方向的滑动。Specifically, the upper case and the lower case respectively have a first hook groove and a second hook groove, and there are hooks on the lock block, and the hooks are connected with the first hook grooves on the upper case and the lower case respectively. Cooperating with the second hook groove, the cooperation of the hook and the groove can limit the displacement of the lock block in the up and down direction, and can also limit the displacement of the lock block in the direction perpendicular to the slide rail, leaving only the sliding in the left and right directions .
具体地,所述上壳上有第一凹槽,所述下壳上有第二凹槽,所述第一凹槽与第二凹槽形成容纳封条的空间。Specifically, the upper case has a first groove, the lower case has a second groove, and the first groove and the second groove form a space for accommodating the seal.
具体地,所述封条与所述上壳和下壳的连接方式可以是粘合连接。Specifically, the sealing strip may be connected with the upper shell and the lower shell by bonding.
进一步地,所述封条与所述锁块连接可以是卡合连接,所述智能插芯锁锁扣装置还包括一弹性装置,弹性装置装配在所述上壳或者下壳内与所述锁扣相抵并压迫所述锁块与封条卡合连接。Further, the connection between the sealing strip and the locking block may be a snap connection, and the locking device of the smart mortice lock also includes an elastic device, which is assembled in the upper shell or the lower shell and is connected with the locking lock. Resisting and pressing the locking block and the sealing strip to engage and connect.
具体地,所述上壳或者下壳上有第三凹槽,所述弹性部件可形变的嵌入所述第三凹槽并与锁扣相抵;所述封条上留有缺口,所述锁块上有卡位筋,所述弹性部件压迫锁块使所述卡位筋卡入所述缺口内。Specifically, there is a third groove on the upper shell or the lower shell, and the elastic member is deformably embedded in the third groove and abuts against the buckle; there is a gap on the seal, and the lock block There is a locking rib, and the elastic part presses the locking block to make the locking rib snap into the notch.
进一步地,所述智能插芯锁锁扣装置还包括一内壳,内壳有平面或是弧面限位,装配在上壳与下壳之间,内壳在垂直于锁块滑动方向上对锁块限位。Further, the smart mortice lock locking device also includes an inner shell, which has a plane or arc surface limit, and is assembled between the upper shell and the lower shell, and the inner shell is perpendicular to the sliding direction of the lock block. Lock block limit.
与现有技术相比,本实用新型具有的优点是:智能锁体使用这种结构方便组装后的检验,等锁具检验合格后最后装上封条,这样的话不会造成工厂报废;本结构比用螺丝固定牢固,美观,比铆接固定更具不可拆卸,同时不会出现铆压时的报废,减少铆压后对外观和内部元器件的损伤;方便锁具的外观造型,减小锁具的体积。可以广泛适用于玻璃门锁,自行车以及摩托车等防盗。Compared with the prior art, the utility model has the advantages that: the intelligent lock body uses this structure to facilitate the inspection after assembly, and finally install the seal after the lock has passed the inspection, so that the factory will not be scrapped; Screw fixing is firm and beautiful, and it is more non-removable than riveting. At the same time, it will not be scrapped during riveting, reducing damage to the appearance and internal components after riveting; it is convenient for the appearance of the lock and reduces the volume of the lock. Can be widely used in glass door locks, anti-theft of bicycles and motorcycles.
附图说明Description of drawings
图1 为本实用新型实施例1爆炸图。Figure 1 is an exploded view of Embodiment 1 of the present utility model.
图2 为本实用新型封条对锁扣的限位剖面示意图。Fig. 2 is a schematic cross-sectional view of the limit of the seal to the buckle of the utility model.
图3 为本实用新型实施例1的剖面图和局部放大图。Fig. 3 is a sectional view and a partially enlarged view of Embodiment 1 of the present utility model.
图4 为本实用新型实施例2的剖面局部放大示意图。Fig. 4 is a partially enlarged schematic diagram of a section of Embodiment 2 of the present utility model.
图5 为本实用新型实施例3的爆炸示意图。Fig. 5 is a schematic explosion diagram of Embodiment 3 of the present utility model.
图例:上壳1、第一滑槽11、第一卡勾槽12、下壳2、第二滑槽21、第二卡勾槽22、第一锁块3、第二档边31、第三档边32、第四档边33、第一卡勾34、第二卡勾35、第一卡位筋36、第二锁块4、第五档边41、第六档边42、第七档边43、第三卡勾44、第四卡勾45、第二卡位筋46、封条5、第一缺口51、第二缺口52、内壳6、第一档边61、余量空间7、空间8、第一弹簧9、第二弹簧10。Legend: upper shell 1, first chute 11, first hook groove 12, lower shell 2, second chute 21, second hook groove 22, first lock block 3, second side 31, third Side 32, side 4 33, hook 34, hook 35, rib 36, locking block 4, side 5 41, side 6 42, side 7 Side 43, third hook 44, fourth hook 45, second rib 46, seal 5, first notch 51, second notch 52, inner shell 6, first side 61, margin space 7, Space 8, first spring 9, second spring 10.
具体实施方式detailed description
下面结合附图和具体实施例对本实用新型作进一步详细的说明。Below in conjunction with accompanying drawing and specific embodiment the utility model is described in further detail.
实施例1Example 1
如图1、图2、图3所示,一种智能插芯锁锁扣装置,包括上壳1、下壳2、将上壳1与下壳2锁定在一起的第一锁块3、第二锁块4、封条5、置于上壳1与下壳2之间的内壳6;上壳1上有第一滑槽11,下壳2上有第二滑槽21,内壳6上有第一档边61,第一滑槽11、第二滑槽21、第一档边61三者形成一个让第一锁块3和第二锁块4滑动的空间8。如图3所示:第一锁块3上有第二档边31、第三档边32,第二档边31和第一滑槽11的边缘相抵、第三档边32和第二滑槽21的边缘相抵形成上下方向的限位结构;第一锁块3上有第四档边33,第四档边33与第一档边61相抵使锁块在垂直锁块滑动的方向上位移受限,仅保留左右方向的滑动。As shown in Figure 1, Figure 2 and Figure 3, an intelligent mortise lock locking device includes an upper shell 1, a lower shell 2, a first lock block 3 for locking the upper shell 1 and the lower shell 2 together, a second Two lock blocks 4, seals 5, and an inner shell 6 placed between the upper shell 1 and the lower shell 2; the upper shell 1 has a first chute 11, the lower shell 2 has a second chute 21, and the inner shell 6 There is a first retaining edge 61 , the first chute 11 , the second chute 21 , and the first retaining edge 61 form a space 8 for sliding the first locking block 3 and the second locking block 4 . As shown in Figure 3: the first lock block 3 has a second gear edge 31 and a third gear edge 32, the second gear edge 31 and the edge of the first chute 11 are offset, the third gear edge 32 and the second chute The edges of 21 are offset to form a limit structure in the up and down direction; there is a fourth side 33 on the first lock block 3, and the fourth side 33 is offset against the first side 61 to make the displacement of the lock block in the vertical sliding direction of the lock block. limit, only left-right sliding is reserved.
同理第二锁块4上有第五档边41、第六档边42、第七档边43,所述第五档边41和第一滑槽11的边缘相抵、第六档边42和第二滑槽21的边缘相抵形成上下方向的限位结构,第七档边43与第一档边61相抵使锁块在垂直锁块滑动的方向上位移受限,仅保留左右方向的滑动。Similarly, the second locking block 4 has a fifth gear edge 41, a sixth gear edge 42, and a seventh gear edge 43. The edges of the second chute 21 abut against each other to form a limit structure in the up and down direction, and the abutment between the seventh side 43 and the first side 61 restricts the displacement of the locking block in the direction vertical to the sliding direction of the locking block, leaving only the sliding in the left and right directions.
如图2所示:当第一锁块3向上移动到顶、第二锁块4向下移动到底时候,上壳1与下壳2被卡扣在一起且留有供第一锁块3和第二锁块4滑动的余量空间7,此时将封条5装入余量空间7,第一锁块3和第二锁块4将不能移动,此时将封条5用粘贴或者焊接的方式固定,由此将上壳1和下壳2装配在一起,如果需要拆卸上壳1与下壳2只需要将封条5破坏即可,其余零件可以照常使用,达到发明目的。As shown in Figure 2: when the first lock piece 3 moves up to the top and the second lock piece 4 moves down to the bottom, the upper shell 1 and the lower shell 2 are snapped together and there is a space for the first lock piece 3 and the second lock piece. The margin space 7 where the second lock block 4 slides, now put the seal 5 into the margin space 7, the first lock block 3 and the second lock block 4 will not be able to move, at this time the seal 5 is fixed by pasting or welding , thus the upper shell 1 and the lower shell 2 are assembled together, if the upper shell 1 and the lower shell 2 need to be disassembled, only the seal 5 needs to be destroyed, and the remaining parts can be used as usual to achieve the purpose of the invention.
实施例2Example 2
图2和图4所示,一种智能插芯锁锁扣装置,包括上壳1、下壳2、将上壳1与下壳2锁定在一起的第一锁块3、第二锁块4、封条5;所述上壳1和下壳2中分别有第一卡勾槽12、第二卡勾槽22,第一锁块3上有第一卡勾34、第二卡勾35,所述第一卡勾34与第一卡勾槽12配合互相限位,第二卡勾35与第二卡勾槽22配合互相限位;所述第二锁块4上有第三卡勾44、第四卡勾45,所述第三卡勾44与第一卡勾槽12配合互相限位,第四卡勾45与第二卡勾槽22配合互相限位;卡勾和卡勾槽的配合可以使第一锁块3和第二锁块4在上下方向位移受限,也可以使锁块在垂直于滑轨的方向上位移受限位,仅保留左右方向的滑动。As shown in Figures 2 and 4, an intelligent mortice lock locking device includes an upper shell 1, a lower shell 2, a first lock block 3 and a second lock block 4 for locking the upper shell 1 and the lower shell 2 together , seal 5; the upper shell 1 and the lower shell 2 respectively have a first hook groove 12, a second hook groove 22, a first hook 34, a second hook 35 on the first lock block 3, so The first hook 34 cooperates with the first hook groove 12 to limit each other, and the second hook 35 cooperates with the second hook groove 22 to limit each other; the second lock block 4 has a third hook 44, The fourth hook 45, the third hook 44 cooperates with the first hook groove 12 to limit each other, and the fourth hook 45 cooperates with the second hook groove 22 to limit each other; the cooperation between the hook and the hook groove The displacement of the first lock block 3 and the second lock block 4 in the vertical direction can be limited, and the displacement of the lock block in the direction perpendicular to the slide rail can also be limited, leaving only the sliding in the left and right directions.
如图2所示:当第一锁块3向上移动到顶、第二锁块4向下移动到底时候,上壳1与下壳2被卡扣在一起且留有供第一锁块3和第二锁块4滑动的余量空间7,此时将封条5装入余量空间7,第一锁块3和第二锁块4将不能移动,此时将封条5用粘贴或者焊接的方式固定,由此将上壳1和下壳2装配在一起,如果需要拆卸上壳1与下壳2只需要将封条5破坏即可,其余零件可以照常使用,达到发明目的。As shown in Figure 2: when the first lock piece 3 moves up to the top and the second lock piece 4 moves down to the bottom, the upper shell 1 and the lower shell 2 are snapped together and there is a space for the first lock piece 3 and the second lock piece. The margin space 7 where the second lock block 4 slides, now put the seal 5 into the margin space 7, the first lock block 3 and the second lock block 4 will not be able to move, at this time the seal 5 is fixed by pasting or welding , thus the upper shell 1 and the lower shell 2 are assembled together, if the upper shell 1 and the lower shell 2 need to be disassembled, only the seal 5 needs to be destroyed, and the remaining parts can be used as usual to achieve the purpose of the invention.
实施例3Example 3
如图3,图5所示,一种智能插芯锁锁扣装置,包括上壳1、下壳2、将上壳1与下壳2锁定在一起的第一锁块3、第二锁块4、封条5、置于上壳1与下壳2之间的内壳6;上壳1上有第一滑槽11,下壳2上有第二滑槽21,内壳6上有第一档边61,第一滑槽11、第二滑槽21、第一档边61三者形成一个让第一锁块3和第二锁块4左右滑动的空间8;装置还包括置于空间8内部与第一锁块3相抵的第一弹簧9、置于空间8内部与第二锁块4相抵的第二弹簧10;封条5与第一锁块3相连处设有第一缺口51,封条5与第二锁块4相连接处设有第二缺口52,所述第一锁块3上有第一卡位筋36与第一缺口51相嵌合,所述第二锁块4上有第二卡位筋46与第二缺口52相嵌合。第一锁块3上有第二档边31、第三档边32,第二档边31和第一滑槽11的边缘相抵、第三档边32和第二滑槽21的边缘相抵形成上下方向的限位结构;第一锁块3上有第四档边33,第四档边33与第一档边61相抵使锁块在垂直锁块滑动的方向上位移受限,仅保留左右方向的滑动。As shown in Figure 3 and Figure 5, an intelligent mortice lock locking device includes an upper shell 1, a lower shell 2, a first lock block 3 and a second lock block for locking the upper shell 1 and the lower shell 2 together 4. Seal 5. The inner shell 6 placed between the upper shell 1 and the lower shell 2; the upper shell 1 has a first chute 11, the lower shell 2 has a second chute 21, and the inner shell 6 has a first chute. The rib 61, the first chute 11, the second chute 21, and the first rib 61 form a space 8 for the first lock block 3 and the second lock block 4 to slide left and right; the device also includes a space 8 The first spring 9 inside is against the first lock block 3, and the second spring 10 placed inside the space 8 against the second lock block 4; the seal 5 is provided with a first gap 51 where the first lock block 3 is connected, and the seal 5 There is a second notch 52 at the connection with the second lock block 4, the first locking rib 36 on the first lock block 3 fits with the first notch 51, and the second lock block 4 has a The second locking rib 46 fits into the second notch 52 . On the first lock block 3, there are a second gear edge 31 and a third gear edge 32, the second gear edge 31 and the edge of the first chute 11 abut against each other, and the third gear edge 32 and the edge of the second chute 21 abut against each other to form an up and down The limit structure of the direction; the first lock block 3 has a fourth side 33, and the fourth side 33 is offset against the first side 61 so that the displacement of the lock block is limited in the vertical sliding direction of the lock block, and only the left and right directions are reserved. slide.
同理图3所示第二锁块4上有第五档边41、第六档边42、第七档边43,所述第五档边41和第一滑槽11的边缘相抵、第六档边42和第二滑槽21的边缘相抵形成上下方向的限位结构,第七档边43与第一档边61相抵使锁块在垂直锁块滑动的方向上位移受限,仅保留左右方向的滑动。Similarly, the second locking block 4 shown in Fig. 3 has a fifth gear edge 41, a sixth gear edge 42, and a seventh gear edge 43, and the fifth gear edge 41 and the edge of the first sliding groove 11 are offset, and the sixth gear edge The edge of the rib 42 and the edge of the second slide groove 21 abut against each other to form a limit structure in the up and down direction, and the abutment of the seventh rib 43 and the first edge 61 limits the displacement of the lock block in the direction vertical to the sliding direction of the lock block, leaving only the left and right sides. direction of the slide.
如图2所示:当第一锁块3向上移动到顶、第二锁块4向下移动到底时候,第一弹簧9与第二弹簧10均被压缩产生形变应力,上壳1与下壳2被卡扣在一起且留有供第一锁块3和第二锁块4滑动的余量空间7,此时将封条5装入余量空间7,第一弹簧9的形变应力压迫第一锁块3,第二弹簧10的形变应力压迫第二锁块4,使第一锁块3和第二锁块4同时向中间移动,第一卡位筋36与第一缺口51相嵌合,第二卡位筋46与第二缺口52相嵌合,封条5被锁死将不能移动,由此将上壳1和下壳2装配在一起,如果需要拆卸上壳1与下壳2只需要将封条5破坏即可,其余零件可以照常使用,达到发明目的。As shown in Figure 2: when the first lock block 3 moves up to the top and the second lock block 4 moves down to the bottom, both the first spring 9 and the second spring 10 are compressed to generate deformation stress, and the upper shell 1 and the lower shell 2 are snapped together and leave a margin space 7 for the first lock block 3 and the second lock block 4 to slide. At this time, the seal 5 is put into the margin space 7, and the deformation stress of the first spring 9 compresses the first lock. Block 3, the deformation stress of the second spring 10 presses the second locking block 4, so that the first locking block 3 and the second locking block 4 move to the middle at the same time, the first locking rib 36 fits with the first notch 51, and the second The two locking ribs 46 fit into the second notch 52, and the seal 5 is locked and cannot be moved, so that the upper shell 1 and the lower shell 2 are assembled together, and if the upper shell 1 and the lower shell 2 need to be disassembled, only the upper shell 1 and the lower shell 2 need to be removed Seal 5 is destroyed, and all the other parts can be used as usual to achieve the purpose of the invention.
上述实施实例并非是对本实用新型的限制,有关技术领域的普通技术人员,在不脱离本实用新型的精神和范围的情况下,还可以做出各种变化和变型,因此所有等同的技术方案也应属于本实用新型的范畴,本实用新型的专利保护范围应由各权利要求限定。The above implementation examples are not limitations of the present utility model, and those of ordinary skill in the relevant technical fields can also make various changes and modifications without departing from the spirit and scope of the present utility model, so all equivalent technical solutions are also It should belong to the category of the utility model, and the patent protection scope of the utility model should be defined by each claim.
Claims (10)
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