Flashlight door equipment

文档序号:1955482 发布日期:2021-12-10 浏览:16次 中文

阅读说明:本技术 一种手电门设备 (Flashlight door equipment ) 是由 沙宣宝 俞奎 赵长金 吕林 毛开清 晏根 杜丰纪 赵国刚 张海峰 胡春来 于 2021-09-26 设计创作,主要内容包括:本发明公开一种手电门设备,包括外壳底座、按钮集成块、正转按钮和限位块,按钮集成块安装于外壳底座上,正转按钮滑动插接于按钮集成块内,限位块安装于外壳底座表面,且正转按钮的按钮推杆用于与限位块相抵接,正转按钮用于连接高速线圈。外壳底座用于保护手电门内部部件,手电门在使用前把高速线圈接到手电门的正转按钮上,同时采用限位块限制其他备用按钮行程,让高速触点处于不工作状态,即只启用低速触点控制高速线圈,不启用例如高速触点等其他触点,避免了高速触点因长期同步触发而造成的打火和疲劳损伤,如此将高低速按钮组先后分配使用将使手电门的使用寿命延长一倍,将极大的减少手电门更换采购成本,并提高了生产效率。(The invention discloses a flashlight door device which comprises a shell base, a button integrated block, a forward rotation button and a limiting block, wherein the button integrated block is arranged on the shell base, the forward rotation button is inserted into the button integrated block in a sliding mode, the limiting block is arranged on the surface of the shell base, a button push rod of the forward rotation button is used for being abutted against the limiting block, and the forward rotation button is used for being connected with a high-speed coil. The shell base is used for protecting internal components of the flashlight door, the flashlight door connects the high-speed coil to the forward rotation button of the flashlight door before use, and meanwhile, the limit block is adopted to limit the travel of other standby buttons, so that the high-speed contact is in an out-of-operation state, namely, only the low-speed contact is started to control the high-speed coil, other contacts such as the high-speed contact are not started, ignition and fatigue damage caused by long-term synchronous triggering of the high-speed contact are avoided, the service life of the flashlight door is prolonged by one time by successively distributing and using the high-speed and low-speed button groups, the purchase cost of the flashlight door is greatly reduced, and the production efficiency is improved.)

1. The utility model provides a flashlight door equipment, its characterized in that, includes shell base (1), button integrated package (2), corotation button (3) and stopper (4), button integrated package (2) install in on shell base (1), corotation button (3) slide peg graft in button integrated package (2), stopper (4) install in shell base (1) surface, just button push rod (5) of corotation button (3) be used for with stopper (4) looks butt, corotation button (3) are used for connecting high-speed coil.

2. The electric torch door device according to claim 1, wherein a reverse button (6) is further arranged in the button integrated block (2), and the position of the button push rod (5) of the reverse button (6) is further provided with the limit block (4).

3. Flashlight door device according to claim 2, characterized in that an elastic element (7) is mounted on the forward rotation button (3).

4. Flashlight door device according to claim 3, characterized in that the elastic element (7) is also mounted on the reversing button (6).

5. Flashlight door device according to claim 4, characterized in that the elastic element (7) is a return spring.

6. Flashlight door device according to claim 1, characterized in that the stop block (4) is a rubber mat.

Technical Field

The invention relates to the technical field of automobile manufacturing, in particular to a flashlight door device.

Background

The electric hoist is frequently used on various production lines of a company for carrying out part hoisting operation, the manual door is a manual controller for controlling the electric hoist, the service time of some electric hoists with good quality is relatively long, but according to the circuit structure analysis of most of the manual doors, the structure of the manual door determines that the low-speed contact is triggered firstly when the manual door is pressed, and then the high-speed contact can be triggered, namely the low-speed contact of the button is triggered once before the electric hoist runs at a high speed every time, the unnecessary frequent triggering inevitably accelerates the fatigue damage of the low-speed contact, shortens the service life of the manual door, and in most production requirements, the high-speed contact and the low-speed contact are not required to be triggered simultaneously; the existing processing method is to directly replace the hand electric door to achieve the purpose of uninterrupted production, but when a company does not have hand electric door spare parts, the production can only be stopped, so that serious delay is brought to the production of the company, the production efficiency is greatly reduced, in addition, the price of the hand electric door is high, and the production cost of the company can be greatly improved by replacing the hand electric door.

Therefore, how to solve the problems of the reduction of the production efficiency and the increase of the production cost caused by the breakdown of the flashlight door is a technical problem to be solved urgently by those skilled in the art.

Disclosure of Invention

The invention aims to provide a flashlight door device, which can prevent a low-speed contact and a high-speed contact from acting simultaneously by modifying the structure of the existing flashlight door, can fully utilize the high-speed contact and the low-speed contact of the flashlight door, prolongs the service life of the flashlight door, and solves the problems of reduced production efficiency and improved production cost caused by the failure of the flashlight door.

In order to solve the technical problems, the invention provides a flashlight door device which comprises a shell base, a button integrated block, a forward rotation button and a limiting block, wherein the button integrated block is installed on the shell base, the forward rotation button is inserted into the button integrated block in a sliding mode, the limiting block is installed on the surface of the shell base, a button push rod of the forward rotation button is used for abutting against the limiting block, and the forward rotation button is used for connecting a high-speed coil.

Preferably, a reverse button is further arranged in the button integration block, and the position corresponding to the button push rod of the reverse button is further provided with the limiting block.

Preferably, an elastic member is mounted on the forward rotation button.

Preferably, the elastic member is further mounted on the reverse button.

Preferably, the elastic member is a return spring.

Preferably, the limiting block is a rubber cushion block.

The invention provides a flashlight door device which comprises a shell base, a button integrated block, a forward rotation button and a limiting block, wherein the button integrated block is arranged on the shell base, the forward rotation button is inserted into the button integrated block in a sliding mode, the limiting block is arranged on the surface of the shell base, a button push rod of the forward rotation button is used for being abutted against the limiting block, and the forward rotation button is used for being connected with a high-speed coil. The shell base is used for protecting the internal components of the flashlight door when the flashlight door is used, the flashlight door firstly starts the low-speed contact in the primary stroke of the button before being used, the high-speed coil is connected to the forward rotation button of the flashlight door, meanwhile, the method of adding a limit block is adopted to limit the strokes of other standby buttons, the contact module of the high-speed part is in the non-working state at the early stage, namely, only the low-speed contact is started to control the high-speed coil, other contacts such as the high-speed contact and the like are not started, sparking and fatigue damage of the high-speed contact caused by long-term useless synchronous triggering are avoided, the circuit is transformed and called to the high-speed contact according to the method after the low-speed contact fails due to frequent use of the forward button in the future, so with high low-speed button group successively distributed use will make the life extension of flashlight door one time, will very big reduction flashlight door change purchasing cost to production efficiency has been improved.

Drawings

In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the provided drawings without creative efforts.

Fig. 1 is a schematic overall structure diagram of an embodiment of the present invention.

Wherein, in fig. 1:

the novel multifunctional button comprises a shell base-1, a button integrated block-2, a forward rotation button-3, a limiting block-4, a button push rod-5, a reverse rotation button-6 and an elastic piece-7.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

Referring to fig. 1, fig. 1 is a schematic overall structure diagram of an embodiment of the present invention.

In a specific embodiment provided by the invention, the flashlight door equipment mainly comprises a shell base 1, a button integrated block 2, a forward rotation button 3 and a limiting block 4, wherein the button integrated block 2 is installed on the shell base 1, the forward rotation button 3 is inserted into the button integrated block 2 in a sliding manner, the limiting block 4 is installed on the surface of the shell base 1, a button push rod 5 of the forward rotation button 3 is used for abutting against the limiting block 4, and the forward rotation button 3 is used for connecting a high-speed coil.

Wherein, shell base 1 is used for protecting the inside part of flashlight door, and button integrated package 2 is used for controlling the electric block action, and corotation button 3 is used for being connected with the contact of high-speed coil, and stopper 4 is used for restricting other reserve button strokes of flashlight door.

Specifically, in the practical application process, the shell base 1 is used for protecting internal components of the flashlight door when the flashlight door is used, the flashlight door firstly starts a low-speed contact in a primary stroke of a button before being used, a high-speed coil is connected to a forward rotation button 3 of the flashlight door, meanwhile, the stroke of other standby buttons is limited by a method of adding a limiting block 4, a high-speed part contact module is firstly in an out-of-work state in the early stage, namely only the low-speed contact is started to control the high-speed coil, other contacts such as the high-speed contact are not started, ignition and fatigue damage of the high-speed contact due to long-term useless synchronous triggering are avoided, the circuit is reformed and called the high-speed contact after the low-speed contact fails due to frequent use of the forward rotation button 3 in the later period, so that the service life of the flashlight door is prolonged by one time by successively distributing and using the high-low-speed button group, and the purchasing and replacing cost of the flashlight door is greatly reduced, and improves the production efficiency.

On the basis of the above embodiment, as a preferable option, a reverse button 6 is further disposed in the button integrated block 2, and a position corresponding to the button push rod 5 of the reverse button 6 is further provided with a limit block 4. The button push rod 5 of the reversing button 6 is provided with the limiting block 4, namely, the stroke of the button push rod 5 of the reversing button 6 is limited, the contact between the button push rod 5 and the contact below the reversing button 6 is avoided, the contact is protected, when the contact corresponding to the button in use is damaged, the contact below the reversing button 6 is started again, and meanwhile, the coil corresponding to the function is connected to the reversing button 6, so that the same function can be realized.

In addition to the above embodiments, it is preferable that the elastic member 7 is attached to the forward rotation button 3. The elastic piece 7 has a self-reset function, and can bounce the forward rotation button 3 when the forward rotation button 3 is not applicable, so as to achieve the purpose of resetting the forward rotation button 3.

In addition to the above embodiments, it is preferable that the elastic member 7 is further attached to the inversion button 6. Similarly, when the corresponding contact under the forward rotation button 3 fails, the contact under the reverse rotation button 6 needs to be activated, and the elastic member 7 serves to reset the reverse rotation button 6.

On the basis of the above embodiment, it is preferable that the elastic member 7 is a return spring. The reset spring has the advantages of strong reset capability and low price, and reduces the production cost on the premise of ensuring that the reset of the button can be realized.

On the basis of the above embodiments, it is preferable that the stopper 4 is a rubber pad. The rubber cushion block has insulating property, plays a role in limiting the stroke of the button push rod 5 corresponding to the standby button, and simultaneously plays an insulating role, so that the normal function of the flashlight door is ensured.

To sum up, the flashlight door equipment that this embodiment provided mainly includes shell base, button integrated package, corotation button and stopper, and the button integrated package is installed on shell base, and corotation button slides and pegs graft in the button integrated package, and the stopper is installed in shell base surface, and the button push rod of corotation button is used for with stopper looks butt, and the corotation button is used for connecting high-speed coil. The shell base is used for protecting the internal components of the flashlight door when the flashlight door is used, the flashlight door firstly starts the low-speed contact in the primary stroke of the button before being used, the high-speed coil is connected to the forward rotation button of the flashlight door, meanwhile, the method of adding a limit block is adopted to limit the strokes of other standby buttons, the contact module of the high-speed part is in the non-working state at the early stage, namely, only the low-speed contact is started to control the high-speed coil, other contacts such as the high-speed contact and the like are not started, sparking and fatigue damage of the high-speed contact caused by long-term useless synchronous triggering are avoided, the circuit is transformed and called to the high-speed contact according to the method after the low-speed contact fails due to frequent use of the forward button in the future, so with high low-speed button group successively distributed use will make the life extension of flashlight door one time, will very big reduction flashlight door change purchasing cost to production efficiency has been improved.

The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

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