CN220491062U - Security door - Google Patents

Security door Download PDF

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Publication number
CN220491062U
CN220491062U CN202322125624.3U CN202322125624U CN220491062U CN 220491062 U CN220491062 U CN 220491062U CN 202322125624 U CN202322125624 U CN 202322125624U CN 220491062 U CN220491062 U CN 220491062U
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China
Prior art keywords
plug
door
hole
host
assembly
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Active
Application number
CN202322125624.3U
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Chinese (zh)
Inventor
杨易铭
吴易阳
张炎
李示明
薛李安
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Zhejiang Huashi Zhijian Technology Co ltd
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Zhejiang Huashi Zhijian Technology Co ltd
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Priority to CN202322125624.3U priority Critical patent/CN220491062U/en
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Abstract

The utility model relates to a security inspection door which comprises a door plate, a host and a positioning assembly, wherein the door plate is provided with a first assembly hole, the host is provided with a second assembly hole, and the host can be mounted to the door plate through a fastener penetrating through the first assembly hole and the second assembly hole; the positioning component comprises a plug-in component arranged on the door plate and an insert component arranged on the host, the plug-in component comprises a plug-in part which is arranged at intervals with the door plate, the plug-in part and the door plate form an insertion space with an insertion port, and the insert component can be inserted into the insertion space from the insertion port so that the first assembly hole is aligned with the second assembly hole. Even there are multiunit first pilot hole and second pilot hole, also can be through the cooperation with plug-in components and grafting portion, conveniently align all first pilot hole and second pilot hole simultaneously to can also make door plant and host computer keep unchanged in the relative position of connection in-process, the operation process is simple and convenient, and can also improve the installation effectiveness of security inspection door.

Description

Security door
Technical Field
The utility model relates to the technical field of security inspection equipment, in particular to a security inspection door.
Background
The security inspection door is a detection device for detecting whether a person carries a metal object or not, and generally comprises a door plate and a host arranged at the top of the door plate. In the process of installing the security inspection door, firstly, a plurality of groups of assembly holes on the door plate and the host machine are required to be aligned, and then the door plate and the host machine are fixedly connected through fasteners such as bolts.
However, since the host machine needs to be mounted to the top of the door panel and the host machine has a heavy weight, alignment of the door panel and the host machine is difficult, operation by one person is difficult, and mounting efficiency is low.
Disclosure of Invention
In view of the above, it is desirable to provide a security gate that can improve the installation efficiency of the security gate.
The utility model provides a security gate, comprising: the door plate is provided with a first assembly hole; a main body provided with a second assembly hole, and the main body can be mounted to the door panel through a fastener passing through the first assembly hole and the second assembly hole; and the positioning assembly comprises a plug connector arranged on the door plate and an plug connector arranged on the host, wherein the plug connector comprises plug connector parts which are arranged at intervals with the door plate, the plug connector parts and the door plate form an insertion space with an insertion opening, and the plug connector can be inserted into the insertion space from the insertion opening so that the first assembly holes are aligned with the second assembly holes.
In the security inspection door, the insert on the host machine can be inserted into the insertion space formed by the insertion part and the door plate through the insertion opening, so that the first assembly holes on the door plate and the second assembly holes on the host machine are aligned, and the pre-positioning of the door plate and the host machine is realized, therefore, even if a plurality of groups of first assembly holes and second assembly holes exist, all the first assembly holes and the second assembly holes can be aligned at the same time through the cooperation of the insert and the insertion part, and the door plate and the host machine can be aligned conveniently; after the first assembly hole and the second assembly hole are aligned, the fastening piece passes through the first assembly hole and the second assembly hole, so that the door plate is fixedly connected with the host computer through the fastening piece, the relative positions of the door plate and the host computer in the connection process can be kept unchanged after the inserting part is inserted into the inserting space, the host computer is prevented from deviating relative to the door plate when the fastening piece is installed, the door plate and the host computer are convenient to assemble by a user, the operation process is simple and convenient, and the installation efficiency of the security inspection door can be improved.
In one embodiment, the insertion opening of the insertion space is directed upwards, and the length of the top edge of the plug is greater than the length of the bottom edge of the plug.
When the installation door is horizontally placed on the ground, the insertion opening faces the side surface, and the user can insert the insertion piece on the host machine into the insertion space from the side surface through the insertion opening. The size of the inserting opening is larger than that of the inserting end of the inserting piece, so that a user can conveniently insert the inserting piece from the side face, the inserting piece and the inserting opening can be conveniently aligned, and the operation is convenient.
In one embodiment, the plug further comprises a support portion connected to a bottom edge of the plug portion, the support portion extending from the bottom edge of the plug portion toward the door panel.
By the arrangement, the insert can be supported on the supporting part after being inserted into the insertion space, so that the stability of the host machine and the safety of the dismounting process can be improved. And the supporting part can also limit the insertion depth of the insert, so that the first assembly hole and the second assembly hole are prevented from being misplaced due to the fact that the insert is inserted too deeply.
In one embodiment, the plug further comprises a guide portion connected to the top edge of the plug portion, the guide portion extending obliquely upward from the top edge of the plug portion to a side remote from the door panel.
By the arrangement, even if the insert is not completely aligned with the insertion opening, the insert can be aligned with the insertion opening under the guidance of the guide part, so that the operation of a user can be facilitated, and the installation efficiency of the security inspection door is improved.
In one embodiment, the plug connector further includes two limiting portions disposed opposite to two sides of the plug connector, and the limiting portions extend from the sides of the plug connector to the door panel.
So set up, spacing portion can restrict the lateral position of plug connector in inserting the space, avoids the plug connector to take place the lateral movement and lead to first pilot hole and second pilot hole dislocation in inserting the space, perhaps lead to the host computer to follow the side direction and drop. And when the mounting door is flatly placed on the ground, the limiting part can also play a supporting role on the host machine, so that the stability of the host machine in the dismounting process is improved.
In one embodiment, the positioning assembly further comprises a first connecting plate arranged on the door plate and a second connecting plate arranged on the host, the plug connector is arranged on one side surface of the first connecting plate, which faces the second connecting plate, and the plug connector is arranged on the second connecting plate.
So set up, the area of contact between locating component and door plant and the host computer can be increased to first connecting plate and second connecting plate, improves the stability and the reliability of being connected between locating component and door plant and the host computer.
In one embodiment, the second connecting plate is provided with a avoidance hole for accommodating the plug connector, the upper edge of the avoidance hole is provided with the plug connector, and when the first connecting plate is attached to the second connecting plate, the plug connector can be inserted into the insertion space.
So set up, dodge the hole and make first connecting plate can laminate with the second connecting plate, improve the stability between door plant and the host computer, improve aesthetic measure to can also be convenient for the user counterpoint plug-in components and inserted hole, improve the installation effectiveness of security check door.
In one embodiment, the first connection board and the second connection board are respectively provided with a first routing hole and a second routing hole for penetrating a cable between the host and the door panel.
So set up, first wiring hole and second wiring hole can be convenient for the user to connect, avoid the circuit to expose, guarantee the aesthetic measure of security inspection door.
In one embodiment, the first connecting plate is provided with a first through hole corresponding to the first assembly hole, and the second connecting plate is provided with a second through hole corresponding to the second assembly hole.
So set up, when fixed door plant and host computer through the fastener, first through-hole and second through-hole can be passed to the fastener for first connecting plate and second connecting plate can realize multiple fixedly with door plant and host computer, improve stability and the reliability of being connected between door plant, first connecting plate, second connecting plate and the host computer.
In one embodiment, the number of the plug connectors is two, the two plug connectors are arranged at intervals along the height direction of the door panel, and the plug connectors are arranged in one-to-one correspondence.
So set up, two sets of inserts and plug connector cooperation can improve the stability and the reliability of host computer to improve the security of security inspection door in dismouting in-process, can also avoid increasing the overall dimension of security inspection door simultaneously.
Drawings
In order to more clearly illustrate the technical solutions of embodiments or conventional techniques of the present application, the drawings that are required to be used in the description of the embodiments or conventional techniques will be briefly described below, and it is apparent that the drawings in the following description are only some embodiments of the present application, and other drawings may be obtained according to these drawings without inventive effort for a person of ordinary skill in the art.
FIG. 1 is a schematic view of an exploded construction of a security gate according to an embodiment of the present utility model;
FIG. 2 is a schematic view of a part of the structure of FIG. 1 according to the present utility model;
FIG. 3 is a schematic view of a partial structure of a security gate in an assembled state;
FIG. 4 is a schematic diagram of a positioning assembly according to the present utility model in a side view;
FIG. 5 is a diagram illustrating an assembly process of a positioning assembly according to the present utility model;
FIG. 6 is a second view of the assembly process of the positioning assembly according to the present utility model;
fig. 7 is a third assembly process diagram of the positioning assembly provided by the present utility model.
Reference numerals: 1. a door panel; 11. a first fitting hole; 12. a wiring section; 2. a host; 21. a second fitting hole; 22. a wiring opening; 3. a positioning assembly; 31. a plug-in component; 311. an insertion port; 312. a plug-in part; 313. a support part; 314. a guide part; 315. a limit part; 32. an insert; 33. a first connection plate; 331. a first wiring hole; 332. a first through hole; 34. a second connecting plate; 341. avoidance holes; 342. a second wiring hole; 343. a second through hole; 4. a fastener.
Detailed Description
In order to make the above objects, features and advantages of the present application more comprehensible, embodiments accompanied with figures are described in detail below. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. This application is, however, susceptible of embodiment in many other forms than those described herein and similar modifications can be made by those skilled in the art without departing from the spirit of the application, and therefore the application is not to be limited to the specific embodiments disclosed below.
It will be understood that when an element is referred to as being "mounted" or "disposed" on another element, it can be directly on the other element or intervening elements may also be present. When a component is considered to be "connected" to another component, it can be directly connected to the other component or intervening components may also be present. The terms "vertical," "horizontal," "upper," "lower," "left," "right," and the like are used in the description of the present application for purposes of illustration only and do not represent the only embodiment.
Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In the description of the present application, the meaning of "plurality" is at least two, such as two, three, etc., unless explicitly defined otherwise.
In this application, unless expressly stated or limited otherwise, a first feature "up" or "down" a second feature may be a direct contact of the first feature with the second feature, or an indirect contact of the first feature with the second feature via an intervening medium. Moreover, a first feature being "above," "over" and "on" a second feature may be a first feature being directly above or obliquely above the second feature, or simply indicating that the first feature is higher in level than the second feature. The first feature being "under", "below" and "beneath" the second feature may be the first feature being directly under or obliquely under the second feature, or simply indicating that the first feature is less level than the second feature.
Unless defined otherwise, all technical and scientific terms used in the specification of this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the present application is for the purpose of describing particular embodiments only and is not intended to be limiting of the present application. The term "and/or" as used in the specification of this application includes any and all combinations of one or more of the associated listed items.
The security inspection door is a detection device for detecting whether a person carries a metal object or not, and generally comprises a door plate and a host arranged at the top of the door plate. In the process of installing the security inspection door, firstly, a plurality of groups of assembly holes on the door plate and the host machine are required to be aligned, and then the door plate and the host machine are fixedly connected through fasteners such as bolts. However, because the host needs to be mounted on top of the door panel and the host has a heavy weight, in the related art, the door panel and the host are usually laid on the ground, then the positions of the host and the door panel are adjusted, so that the host and a plurality of groups of assembly holes on the door panel are aligned, the host and the door panel are fixedly connected through fasteners such as bolts, and finally the security inspection door is erected. The multiunit pilot hole makes the counterpoint of door plant and host computer comparatively difficult, is difficult to alone operation to the installation effectiveness is lower.
In order to solve the above problems, as shown in fig. 1 to 7, the present utility model provides a security inspection door capable of facilitating alignment of a door panel and a host computer, thereby improving installation efficiency of the security inspection door.
As shown in fig. 1 to 3, specifically, the security door includes a door panel 1, a host 2, and a positioning component 3, wherein: the door panel 1 is provided with a first assembly hole 11, the host 2 is provided with a second assembly hole 21, and the host 2 can be mounted to the door panel 1 through the fastener 4 penetrating through the first assembly hole 11 and the second assembly hole 21; the positioning assembly 3 comprises a plug connector 31 arranged on the door plate 1 and an insert 32 arranged on the host 2, the plug connector 31 comprises a plug connector part 312 which is arranged at intervals with the door plate 1, the plug connector part 312 and the door plate 1 form an insertion space with an insertion port 311, and the insert 32 can be inserted into the insertion space from the insertion port 311 so that the first assembly hole 11 is aligned with the second assembly hole 21.
Wherein the alignment of the first fitting hole 11 with the second fitting hole 21 means that the axis of the first fitting hole 11 coincides with the axis of the second fitting hole 21, so that the fastener 4 can pass through both the first fitting hole 11 and the second fitting hole 21 at the same time.
In the security inspection door provided by the utility model, when the security inspection door is required to be installed, the security inspection door is firstly laid on the ground, then the insertion piece 32 on the host machine 2 is inserted into the insertion space formed by the insertion port 311 and the insertion part 312 and the door plate 1, so that the first assembly hole 11 on the door plate 1 and the second assembly hole 21 on the host machine 2 are aligned, the pre-positioning of the door plate 1 and the host machine 2 is realized, then the fastening piece 4 passes through the first assembly hole 11 and the second assembly hole 21, the door plate 1 and the host machine 2 are fixedly connected through the fastening piece 4, and finally the security inspection door is erected. In this way, even if there are a plurality of sets of the first assembly holes 11 and the second assembly holes 21, all the first assembly holes 11 and the second assembly holes 21 can be aligned at the same time by the cooperation of the insert 32 and the insertion portion 312 without repeated alignment, so that the door panel 1 and the host 2 can be aligned conveniently; and, after the grafting portion 312 inserts in the insertion space, can make door plant 1 and host computer 2 remain unchanged in the relative position of connection in-process, avoid host computer 2 to take place the skew relative to door plant 1 when installing fastener 4, be convenient for the user assemble door plant 1 and host computer 2, the operation process is simple and convenient to can also improve the installation effectiveness of security inspection door.
When the security door needs to be disassembled, the fastener 4 is firstly disassembled from the door plate 1 and the host 2, and then the insert 32 is withdrawn from the insertion hole 311 to be inserted into the space.
Each door plate 1 is provided with a plurality of first assembly holes 11 arranged at intervals, and the second assembly holes 21 are arranged in one-to-one correspondence with the first assembly holes 11, so as to ensure the stability and reliability of connection between the door plate 1 and the host 2. The fastener 4 may be a screw, a bolt, or the like, so long as the door panel 1 and the host 2 can be detachably fixed, and stability and reliability of the fixed connection between the door panel 1 and the host 2 are ensured, and the embodiment of the present utility model is not particularly limited herein.
As shown in fig. 1, the number of the door panels 1 is two, and the two door panels 1 are oppositely arranged at two sides of the host 2. The two door panels 1 enable the security inspection door to stand independently, and stability of the security inspection door is guaranteed. The coils are arranged in the door plates 1 on two sides, and electromagnetic induction can be generated after the electric conduction to sense whether a person passing through the security inspection door carries forbidden articles or not.
As shown in fig. 4 to 5, in the illustrated embodiment, the insertion opening 311 of the insertion space is directed upward, and the length of the top edge of the socket 31 is greater than the length of the bottom edge of the socket 31. Wherein, the insertion opening 311 is arranged above the upright state of the security inspection door, namely in the +x axis direction in the drawing, the top edge and the bottom edge of the plug 31 are arranged at intervals in parallel along the +x axis direction, and the top edge of the plug 31 is closer to the +x axis direction than the bottom edge of the plug 31. Since the security door needs to be attached to and detached from the ground surface, when the installation door is placed on the ground surface, the insertion port 311 faces the side surface, and the user can insert the insertion piece 32 on the host computer 2 from the side surface into the insertion space through the insertion port 311. Because the length of the top edge of the plug-in component 31 is greater than the length of the bottom edge of the plug-in component 31, the size of the insertion opening 311 is greater than the size of the insertion end of the insertion piece 32, so that a user can conveniently insert the insertion piece 32 from the side, and the alignment of the insertion piece 32 and the insertion opening 311 is convenient. Of course, in other embodiments, the insertion opening 311 of the insertion space may be downward or toward both sides, and the embodiment of the present utility model is not limited herein.
As shown in fig. 4, the plug connector 31 includes a support portion 313 connected to the bottom edge of the plug portion 312, and the support portion 313 extends from the bottom edge of the plug portion 312 toward the door panel 1. The insert 32 can be supported by the support portion 313 after being inserted into the insertion space, and thus the stability of the main unit 2 can be further improved. And the support portion 313 can also limit the insertion depth of the insert 32, avoiding the first and second fitting holes 11 and 21 from being misaligned due to the insert 32 being inserted too deeply.
As shown in fig. 3 to 4, the connector 31 further includes two limiting portions 315 disposed opposite to two sides of the connector 312, and the limiting portions 315 extend from the sides of the connector 312 toward the door panel 1. The limiting portion 315 can limit the lateral position of the plug connector 31 in the insertion space, so as to avoid the dislocation of the first assembly hole 11 and the second assembly hole 21 or the lateral drop of the host 2 caused by the large lateral movement of the plug connector 31 in the insertion space, thereby further ensuring the stability of the relative position between the host 2 and the door panel 1. Because need keep the security inspection door flat in ground and dismantle, when the installation door is kept flat in ground, two spacing portions 315 are located the upper and lower both sides of grafting portion 312 respectively, consequently, when door plant 1 is not fixed through fastener 4 with host computer 2, spacing portion 315 can also play the supporting role to host computer 2 to can improve the stability of host computer 2 in the dismouting in-process, avoid host computer 2 to take place the skew, even only alone also can accomplish the dismouting of security inspection door, can also guarantee the security of dismouting process simultaneously.
The spacing between the two limiting portions 315 may be equal to the size of the insert 32, and in this case, the machining accuracy between the insert 31 and the insert 32 is required to be high, and when the insert 32 is inserted into the insertion space, it is required to ensure that all of the first and second fitting holes 11 and 21 are aligned. Alternatively, the spacing between the two limiting portions 315 may be slightly larger than the size of the insert 32, and at this time, the insert 32 may be adjusted in a small amount in the lateral direction after being inserted into the insertion space, so that all of the first and second fitting holes 11 and 21 are completely aligned.
As shown in fig. 3 to 4, the plug 31 further includes a guide portion 314 connected to the top edge of the plug portion 312, and the guide portion 314 extends obliquely upward from the top edge of the plug portion 312 to a side away from the door panel 1. The guide portion 314 is spaced from the door panel 1 by a distance greater than the insertion portion 312 is spaced from the door panel 1, so that the insertion piece 32 and the insertion port 311 can be easily aligned. In addition, since the guide portion 314 extends obliquely upward from the top edge of the insertion portion 312 toward the side away from the door panel 1, even if the insertion piece 32 is not completely aligned with the insertion port 311, the insertion piece 32 can be aligned with the insertion port 311 under the guidance of the guide portion 314, so that the user operation can be further facilitated, and the installation efficiency of the security inspection door can be improved.
As shown in fig. 2 and 4, in one embodiment, the positioning assembly 3 further includes a first connection plate 33 disposed on the door panel 1 and a second connection plate 34 disposed on the host 2, the plug 31 is disposed on a side surface of the first connection plate 33 facing the second connection plate 34, and the insert 32 is disposed on the second connection plate 34. The contact area between the positioning component 3 and the door panel 1 and the host machine 2 can be increased by the first connecting plate 33 and the second connecting plate 34, and the stability and reliability of the connection between the positioning component 3 and the door panel 1 and the host machine 2 are improved. In addition, the first connecting plate 33 and the second connecting plate 34 can be directly installed on a common security inspection door, so that the application range is wide, and the security inspection door does not need to be redesigned and processed, thereby simplifying production and assembly steps and reducing the cost. And, compare in direct processing plug connector 31 and insert 32 on door plant 1 and host computer 2, plug connector 31 and insert 32 are connected to door plant 1 and host computer 2 respectively through first connecting plate 33 and second connecting plate 34 on can also improve the machining precision of locating component 3 to improve the connection precision between door plant 1 and the host computer 2, promote the security of security inspection door.
Wherein, plug connector 31 can be split type structure with first connecting plate 33 to can dismantle fixedly through structures such as screw, bolt, like this, when first connecting plate 33 and second connecting plate 34 appear processing error, can eliminate the error through adjusting plug connector 31 on first connecting plate 33's position, thereby can reduce manufacturing cost, improvement production efficiency. Of course, the plug 31 and the first connecting plate 33 may be integrally formed, as long as the stability and reliability of the connection between the plug 31 and the first connecting plate 33 can be ensured. Likewise, the insert 32 may be integrally formed with the second connecting plate 34, or may be formed as a separate structure and fixedly connected thereto by screws, bolts, or the like, which is not particularly limited in this embodiment of the present utility model.
As shown in fig. 2, the first connection plate 33 and the door panel 1 and the second connection plate 34 and the host 2 may be detachably fixed by a plurality of bolts, or may be fixedly connected by welding, so long as stability and reliability of connection between the first connection plate 33 and the door panel 1 and between the second connection plate 34 and the host 2 can be ensured, so as to ensure stability and reliability of connection between the door panel 1 and the host 2.
As shown in fig. 4, in the illustrated embodiment, the insertion portion 312, the supporting portion 313, the limiting portion 315, and the second connecting plate 34 enclose an insertion space, and the insertion portion 312 can be connected to the second connecting plate 34 through the supporting portion 313 and the limiting portion 315, that is, one ends of the supporting portion 313 and the limiting portion 315 away from the insertion portion 312 are connected to the second connecting plate 34. In another embodiment, the plugging portion 312 may be connected to the second connecting plate 34 only through one of the supporting portion 313 and the limiting portion 315, or may be connected to the second connecting plate 34 through another connecting structure, as long as the stability and reliability of the connection between the plug connector 31 and the second connecting plate 34 can be ensured. Of course, in other embodiments, the plug-in unit 31 and the plug-in unit 32 may be directly attached to the door panel 1 and the main unit 2 by screws, bolts, welding, or the like, and in this case, the plug-in unit 312, the supporting unit 313, the limiting unit 315, and the door panel 1 may enclose an insertion space.
As shown in fig. 2 to 3, in one embodiment, the second connection plate 34 is provided with a relief hole 341 for receiving the plug-in unit 31, and an insert 32 is formed at an upper edge of the relief hole 341, and the insert 32 can be inserted into the insertion space when the first connection plate 33 is attached to the second connection plate 34. During the installation, the avoidance hole 341 is aligned with the plug connector 31, then the host 2 is close to the door panel 1, the first connecting plate 33 is attached to the second connecting plate 34, the plug connector 31 is contained in the avoidance hole 341, the plug connector 32 is located above the insertion hole 311, and finally the plug connector 32 is inserted into the insertion space. The first connecting plate 33 and the second connecting plate 34 are attached to each other, so that stability between the door panel 1 and the host 2 can be further improved, the aesthetic degree is improved, and the insert 32 and the insertion opening 311 can be conveniently aligned by a user, so that the installation efficiency of the security inspection door is improved.
Since the insert 32 is further required to be inserted into the insertion space after being aligned with the insertion opening 311, the size of the relief hole 341 needs to be larger than the size of the insert 31, so that the insert 31 can be accommodated in the relief hole 341 before the insert 32 is inserted into the insertion space and after the insert 32 is inserted into the insertion space, and the interference between the insert 31 and the inner wall of the relief hole 341 is avoided.
In another embodiment, the second connecting plate 34 may not be provided with the relief hole 341, and in this case, the top edge of the insert 32 is connected to the second connecting plate 34 and extends obliquely downward to a side away from the second connecting plate 34, so that the bottom edge of the insert 32 can be inserted into the insertion space through the insertion hole 311.
As shown in fig. 1 to 2, the host 2 is provided with a wire opening 22 for threading a cable, the door panel 1 is provided with a wire connection portion 12 corresponding to the wire opening 22, and the cable in the host 2 can extend out of the host 2 through the wire opening 22 and be electrically connected with the wire connection portion 12 on the door panel 1, so that the host 2 is electrified and can realize data interaction with external equipment. The first connection plate 33 and the second connection plate 34 are respectively provided with a first routing hole 331 and a second routing hole 342 for threading a cable between the host 2 and the door panel 1. The cable in the host computer 2 can be connected with wiring portion 12 electricity through walking line opening 22, second wiring hole 342 and first wiring hole 331 in proper order, and first wiring hole 331 and second wiring hole 342 can be convenient for the user wiring, avoid the circuit to expose, guarantee the aesthetic measure of security inspection door.
As shown in fig. 2 to 3, the first connection plate 33 is provided with a first through hole 332 corresponding to the first fitting hole 11, and the second connection plate 34 is provided with a second through hole 343 corresponding to the second fitting hole 21. When the door plate 1 and the host computer 2 are fixed through the fastener 4, the fastener 4 can sequentially pass through the first assembly hole 11, the first through hole 332, the second through hole 343 and the second assembly hole 21, so that the first connecting plate 33 and the second connecting plate 34 can be multiple fixed with the door plate 1 and the host computer 2, and the stability and the reliability of connection among the door plate 1, the first connecting plate 33, the second connecting plate 34 and the host computer 2 are further improved.
As shown in fig. 2 to 3, in the illustrated embodiment, the number of the connectors 31 is two, and the two connectors 31 are arranged at intervals in the height direction of the door panel 1, that is, at intervals in the ±x axis direction, and the connectors 31 are arranged in one-to-one correspondence with the connectors 32. Because the host 2 has heavier weight, the two sets of inserts 32 are matched with the plug connector 31, so that the stability and the reliability of the host 2 can be improved when the door plate 1 and the host 2 are not fixed through the fastener 4, and the safety of the security inspection door in the dismounting process can be improved. Also, since the width dimension of the door panel 1 is limited, the two connectors 31 are arranged at intervals in the height direction of the door panel 1, and it is also possible to avoid increasing the overall dimension of the security door.
Of course, in other embodiments, the number of the connectors 31 may be one, three or more, and one connector 31 may correspond to a plurality of the connectors 32, so long as the stability and reliability of the host 2 can be ensured when the door panel 1 and the host 2 are not fixed by the fastener 4, which is not particularly limited herein.
As shown in fig. 5 to 7, the specific installation process of the security gate is as follows: firstly, the security door is horizontally placed on the ground, the avoidance holes 341 of the second connecting plate 34 on the host 2 are aligned with the plug-in connectors 31 of the first connecting plate 33 on the door plate 1, and the plug-in connectors 31 cannot interfere with the plug-in connectors 32; then, the host 2 is moved to the side close to the door plate 1, so that the second connecting plate 34 is attached to the first connecting plate 33, the plug connector 31 is accommodated in the avoidance hole 341, the plug connector 32 is aligned with the insertion port, and at this time, the plug connector 32 is positioned in the +X axis direction of the insertion port; then, the host 2 is moved downwards, namely, the host 2 is moved along the-X axis direction, so that the insert 32 can be inserted into the insertion space through the insertion opening 311, and at the moment, the first assembly holes 11 on the door plate 1 and the second assembly holes 21 on the host 2 are aligned; finally, the fastener 4 sequentially passes through the first assembly hole 11, the first through hole 332, the second through hole 343 and the second assembly hole 21 from the outer side of the door panel 1, so that the door panel 1 and the host 2 are fixedly connected through the fastener 4, and the security inspection door is erected.
The technical features of the above-described embodiments may be arbitrarily combined, and all possible combinations of the technical features in the above-described embodiments are not described for brevity of description, however, as long as there is no contradiction between the combinations of the technical features, they should be considered as the scope of the description.
The above examples only represent a few embodiments of the present application, which are described in more detail and are not to be construed as limiting the scope of the claims. It should be noted that it would be apparent to those skilled in the art that various modifications and improvements could be made without departing from the spirit of the present application, which would be within the scope of the present application. Accordingly, the scope of the present application is to be determined by the following claims.

Claims (10)

1. A security gate, comprising:
a door panel (1) provided with a first assembly hole (11);
a main body (2) provided with a second assembly hole (21), wherein the main body (2) can be mounted to the door plate (1) through a fastener (4) penetrating through the first assembly hole (11) and the second assembly hole (21); the method comprises the steps of,
positioning component (3), including set up in plug connector (31) of door plant (1) and set up in plug connector (32) of host computer (2), plug connector (31) include with door plant (1) interval arrangement's grafting portion (312), grafting portion (312) with door plant (1) form the insertion space that has inserted port (311), plug connector (32) can follow inserted port (311) insert in the insertion space, so that first pilot hole (11) with second pilot hole (21) align.
2. A security door according to claim 1, characterized in that the insertion opening (311) of the insertion space is directed upwards and the length of the top edge of the plug element (31) is greater than the length of the bottom edge of the plug element (31).
3. A security door according to claim 2, characterized in that the plug connector (31) further comprises a support portion (313) connected to the bottom edge of the plug portion (312), the support portion (313) extending from the bottom edge of the plug portion (312) towards the door panel (1).
4. A security door according to claim 2, characterized in that the plug connector (31) further comprises a guide part (314) connected to the top edge of the plug part (312), the guide part (314) extending obliquely upwards from the top edge of the plug part (312) to the side remote from the door panel (1).
5. A security door according to claim 2, wherein the plug connector (31) further comprises two limiting portions (315) arranged opposite to two sides of the plug portion (312), the limiting portions (315) extending from the sides of the plug portion (312) towards the door panel (1).
6. The security door according to claim 1, wherein the positioning assembly (3) further comprises a first connection plate (33) arranged on the door panel (1) and a second connection plate (34) arranged on the host (2), the plug connector (31) is arranged on a side surface of the first connection plate (33) facing the second connection plate (34), and the insert (32) is arranged on the second connection plate (34).
7. A security door according to claim 6, characterized in that the second connecting plate (34) is provided with a relief hole (341) for accommodating the plug-in element (31), the upper edge of the relief hole (341) is formed with the insert (32), and the insert (32) can be inserted into the insertion space when the first connecting plate (33) is attached to the second connecting plate (34).
8. The security door according to claim 6, characterized in that the first connection plate (33) and the second connection plate (34) are respectively provided with a first routing hole (331) and a second routing hole (342) for threading a cable between the host (2) and the door panel (1).
9. A security gate according to claim 6, characterized in that the first connection plate (33) is provided with a first through hole (332) corresponding to a first fitting hole (11), and the second connection plate (34) is provided with a second through hole (343) corresponding to the second fitting hole (21).
10. A security door according to any one of claims 1-9, characterized in that the number of plug connectors (31) is two, two plug connectors (31) are arranged at intervals along the height direction of the door panel (1), and the plug connectors (32) are arranged in a one-to-one correspondence with the plug connectors (31).
CN202322125624.3U 2023-08-08 2023-08-08 Security door Active CN220491062U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322125624.3U CN220491062U (en) 2023-08-08 2023-08-08 Security door

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322125624.3U CN220491062U (en) 2023-08-08 2023-08-08 Security door

Publications (1)

Publication Number Publication Date
CN220491062U true CN220491062U (en) 2024-02-13

Family

ID=89841851

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322125624.3U Active CN220491062U (en) 2023-08-08 2023-08-08 Security door

Country Status (1)

Country Link
CN (1) CN220491062U (en)

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