CN114393802A - Safety monitoring device for full-electric injection molding machine - Google Patents

Safety monitoring device for full-electric injection molding machine Download PDF

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Publication number
CN114393802A
CN114393802A CN202210052981.9A CN202210052981A CN114393802A CN 114393802 A CN114393802 A CN 114393802A CN 202210052981 A CN202210052981 A CN 202210052981A CN 114393802 A CN114393802 A CN 114393802A
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China
Prior art keywords
plate
safety monitoring
monitoring device
face
connecting rod
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Granted
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CN202210052981.9A
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Chinese (zh)
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CN114393802B (en
Inventor
黄品亚
孔丹
潘金伟
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Jiangyin Xiaole Dynamo Electric Development Co ltd
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Jiangyin Xiaole Dynamo Electric Development Co ltd
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Publication of CN114393802A publication Critical patent/CN114393802A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C45/00Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
    • B29C45/17Component parts, details or accessories; Auxiliary operations
    • B29C45/84Safety devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C45/00Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
    • B29C45/17Component parts, details or accessories; Auxiliary operations
    • B29C45/76Measuring, controlling or regulating

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Mechanical Engineering (AREA)
  • Injection Moulding Of Plastics Or The Like (AREA)

Abstract

The invention discloses a safety monitoring device for a full-electric injection molding machine, and relates to the technical field of industrial production equipment. The safety monitoring device comprises a safety monitoring device body, wherein a protective shell is welded at the center of the bottom of the safety monitoring device body, grooves A are formed in two sides of the inner center of the protective shell, sliding grooves are formed in the inner walls of the front end and the rear end of each groove A, and clamping grooves are formed in the top and the bottom of the front end of one side of the inner part of an overhaul shell; a sealing component is arranged inside the groove A, a stabilizing component is arranged at the central position of the bottom of the protective shell, and a limiting component is arranged inside the channel; the inside of recess B is provided with the resilience subassembly. The sealing component is used for avoiding the damage of the connecting port and the manual error, the limiting component and the rebounding component are used for automatically ejecting the sealing cover, the manual operation is not needed, the structure is simple, the working efficiency is high, the external connector can be prevented from falling off through the stabilizing component, and the connecting stability is improved.

Description

Safety monitoring device for full-electric injection molding machine
Technical Field
The invention belongs to the technical field of industrial production equipment, and particularly relates to a safety monitoring device for a full-electric injection molding machine.
Background
Along with the development of science and technology and society, in production life and industry, in order to improve production efficiency and improve the quality of product, the form production manufacturing that generally can adopt the mould to mould plastics, and generally can cooperate with full-automatic injection molding machine when producing with the mould to process, with thermoplastic injection moulding, and in order to guarantee the normal use of full-electric injection molding machine and the safety problem when using, often can be equipped with safety monitoring device, carry out real-time safety monitoring to full-electric injection molding machine, avoid personnel's damage and equipment to damage.
Through the retrieval, publication number CN111121845A, application date 2019.12.05 discloses an automatic monitoring device for industrial production, including monitoring devices body and connector, the right side top of monitoring devices body articulates there is the closing cap, and the inside of closing cap articulates there is first hinge rod, the right side fixedly connected with pull rod of first hinge rod, and the bottom left side fixedly connected with kelly of pull rod, inside the inserting of bottom of kelly is equipped with first slider, the kelly is inserted and is established the inside of stopper, and the stopper is fixed in the inside of monitoring devices body, the inside of closing cap is fixed with the fixed block, the central point of closing cap puts the first slide of fixedly connected with of department, and the inside of first slide is inserted and is equipped with the second slider.
However, the following disadvantages still exist in the practical use:
1. when the monitoring device is used, the connecting port is protected through the protective shell and the flexible protective strip, the mode needs to be continuously pushed through manual operation, the steps are relatively complicated, errors exist in manual pushing, the situation that the flexible protective strip is not pushed possibly occurs, and the connecting port cannot be protected;
2. when the monitoring device is used, the sealing cover is closed through the clamping between the clamping rod and the limiting block, compared with the traditional mode, the mode is convenient and fast to operate, but the internal structure is complex and tedious, the implementation process is complex and tedious, and the monitoring device is not beneficial to installation after being opened;
3. the monitoring device only connects the connection port with the external joint in a leakage mode when in use, and the connection can be separated in the connection and use process, so that the use of the equipment is interrupted.
Therefore, the safety monitoring device for the all-electric injection molding machine cannot meet the requirements in practical use, so that an improved technology is urgently needed in the market to solve the problems.
Disclosure of Invention
The invention aims to provide a safety monitoring device for a full-electric injection molding machine, which can protect a connecting port inside by using a sealing assembly, avoid the damage of external hard objects to the connecting port, facilitate the use of workers, improve the working efficiency and prevent the problem of manual error.
In order to solve the technical problems, the invention is realized by the following technical scheme:
the invention relates to a safety monitoring device for a full-electric injection molding machine, which comprises a safety monitoring equipment body, wherein a protective shell is welded at the central position of the bottom of the safety monitoring equipment body, grooves A are respectively arranged at two sides of the inner center of the protective shell, sliding grooves are respectively arranged on the inner walls of the front end and the rear end of each groove A, an overhaul shell is welded at the central position of the end face of the rear end of the safety monitoring equipment body, clamping grooves are respectively arranged at the top and the bottom of the front end of one side in the overhaul shell, a channel is arranged at the front end of the inner wall of one side of each clamping groove, and a groove B is arranged at the central position of the end face of the front end of each clamping groove; a sealing assembly is arranged in the groove A and comprises a limiting plate A and a connecting rod A, and the connecting rod A is welded in the center of the end face of one side of the limiting plate A; a stabilizing assembly is arranged at the central position of the bottom of the protective shell and comprises a clamping plate A and a clamping plate B, and the clamping plate A and the clamping plate B are oppositely arranged; a limiting assembly is arranged inside the channel and comprises a handle and limiting plates B, and the limiting plates B are welded at two ends of the handle; the inside of recess B is provided with the subassembly that kick-backs, the subassembly that kick-backs includes limiting plate C and connecting rod C, limiting plate C's a side end face central point puts the welding and has connecting rod C, and recess A is for being 45 degrees angle settings in the inner wall slant along the protecting crust, and the spout is for being 45 degrees angle settings in the inner wall slant along recess A, and grip block A and grip block B's top all is connected with the bottom of protecting crust through the hinge, makes things convenient for the staff to rotate grip block A and grip block B, and grip block A and grip block B's shape size is all the same.
Further, the front end terminal surface of safety monitoring equipment body is provided with display screen and operating button, and operating button is located the display screen under, the bottom central point of safety monitoring equipment body puts and is provided with the connector, makes things convenient for the staff to control the safety monitoring equipment body through display screen and operating button, and the connector is connected with external joint, realizes data intercommunication.
Further, connecting rod A's the other end runs through the through-hole on the fixed plate A terminal surface and is connected with the guard plate, connecting rod A's outer wall outside cover is equipped with spring A, spring A is located between fixed plate A and the guard plate, connects limiting plate A and guard plate through connecting rod A, plays the effect of connecting, realizes synchronous motion, and the cross section of guard plate is triangle-shaped, and the area of multiplicable guard plate side avoids to connect and rebounds after inserting, can't take out the joint, utilizes the elastic property of spring A self to drive the guard plate and removes, realizes the automatic effect of popping out the guard plate, need not manual operation.
Further, the outer wall of fixed plate A is fixed on recess A's inner wall, both ends terminal surface central point puts all to weld the slider around the guard plate, the other end of slider is located the inside of spout, and the slider is located the inside of spout, consequently when the guard plate atress removed, under the effect of slider and spout for the guard plate is oblique ascending removal.
Further, the through wires hole has all been seted up to the bottom central point of grip block A and grip block B, both ends edge all is provided with the mounting groove around grip block A and grip block B's a side end face bottom, the internally mounted of mounting groove has magnet, and the aperture in through wires hole is greater than the diameter of external joint connecting wire, is less than the size of external joint, can block the external joint, and both grip block A and grip block B produce magnetism through magnet for both are closed for grip block A and grip block B.
Further, all the welding of a side end face rear end top and the bottom edge of overhauing the shell has the mounting panel, the inside rear end of overhauing the shell passes through the hinge and is connected with the closing cap, the cardboard has all been welded to the opposite side end face top and the bottom of closing cap, makes things convenient for the staff to install the safety monitoring equipment body through the mounting panel, and the closing cap can rotate under the effect of hinge, and the size of cardboard slightly is less than the size of draw-in groove, makes things convenient for the cardboard card to go into.
Further, limiting plate B's opposite side terminal surface has connecting rod B from last to even interval welding down, connecting rod B's the other end runs through the through-hole on the fixed plate B terminal surface and is connected with the connecting plate, connecting rod B's outer wall outside cover is equipped with spring B, connects limiting plate B and connecting plate through connecting rod B, plays the effect of connecting, realizes synchronous motion.
Further, spring B is located between fixed plate B and the connecting plate, the outer wall of fixed plate B is fixed on the inner wall of passageway, the other side terminal surface of connecting plate passes through the hinge and is connected with the baffle, drives the connecting plate through spring B self elasticity performance and removes, and then makes the baffle remove, and connecting plate and baffle pass through hinged joint, but both are provided with the locating part through the outside of hinged joint department, therefore the baffle can only rotate to the inboard, and unable outside is rotatory, can avoid the baffle to rotate to the outside and can't play spacing effect.
Further, connecting rod C's the other end runs through the through-hole on the fixed plate C terminal surface and is connected with the push pedal, connecting rod C's outer wall outside cover is equipped with spring C, spring C is located between fixed plate C and the push pedal, connects limiting plate C and push pedal through connecting rod C, plays the effect of connecting, realizes synchronous motion to the elasticity performance that utilizes spring C self drives the push pedal and removes.
The invention has the following beneficial effects:
1. by arranging the sealing assembly, when a worker uses the sealing assembly, the external connector is inserted into the protective shell and pushed inwards, so that the protective plate in the sealing assembly is stressed, the protective plate is stressed to move upwards, the sliding blocks at the front end and the rear end of the protective plate are positioned in the sliding grooves, and the sliding grooves are obliquely upwards arranged at an angle of 45 degrees along the inner wall of the groove A, so that the protective plate moves upwards and compresses the spring A under the action of the sliding blocks, the spring A can be contracted and the protective plate is pushed to be flush with the inner wall of the protective shell, the external connector can be connected with the connecting port, when the sealing assembly is not used, the external connector is pulled outwards, after the sealing assembly is pulled out, the spring A is stressed to rebound to push the protective plates at the two sides to the middle part and close the connecting port, the connecting port can be protected inside, the external hard objects can be prevented from damaging the connecting port, and the use of the worker is facilitated, save time improves work efficiency, has solved foretell monitoring devices and has protected the connector through protecting crust and flexible protective strip when using, and this kind of mode need constantly operate the promotion through the manual work, and the step is compared loaded down with trivial details to and the manual work promotes can the error, the condition that does not promote flexible protective strip can appear, leads to the problem that can't play the effect of protection to the connector.
2. According to the invention, by arranging the limiting component and the rebounding component, when a worker overhauls the safety monitoring equipment body, the handle in the limiting component is pulled, the handle is forced to move outwards to drive the limiting plates B on two sides to move, the limiting plates B move to enable the connecting plates to move inwards in the channel and compress the springs B under the connecting action of the connecting rods B, and the baffle moves through the hinges, so that the limiting effect of the baffle on the clamping plate on the sealing cover is eliminated, meanwhile, the springs C in the rebounding component are stressed to compress and rebound to eject the push plate, one end of the sealing cover is pushed out through elasticity, the other end of the sealing cover rotates under the action of the hinges, the sealing cover can be opened and overhauled, when the sealing cover is installed, one side of the sealing cover is pushed to rotate under the action of the hinges, the clamping plate of the sealing cover is pushed into the clamping groove, and the clamping plate applies force to the baffle in the pushing process, the baffle is rotatory under the effect of hinge, it is inboard to make the cardboard move to the baffle, and the baffle is at the push pedal in the removal in-process compression resilience subassembly, make the push pedal atress remove and compress spring C in to recess B, consequently, the closing cap is in the installation, spring C is in compression state all the time, after limiting displacement between baffle and cardboard disappears, utilize spring C's elasticity to pop out the closing cap automatically, this simple structure, make things convenient for the staff to use, make things convenient for the staff to install and dismantle the closing cap fast, improve work efficiency, it is closed to the closing cap through the block between kelly and the stopper when using to have solved foretell monitoring devices, and this kind of mode is compared in traditional mode operation comparatively convenient, but inner structure is complicated and fussy, the implementation is comparatively complicated, and be unfavorable for the problem of installation after opening.
3. According to the invention, by arranging the stabilizing component, when an external connector is connected with the connector by a worker, the clamping plate A and the clamping plate B on the two sides of the stabilizing component are turned downwards, so that the clamping plate A and the clamping plate B rotate under the action of the hinge, and the connecting wire of the external connector is clamped through the threading hole, and then the external connector can be wrapped inside the clamping plate A, the clamping plate B and the protective shell, so that the situation that the external connector falls off in the use process of equipment can be avoided, the connection stability of the external connector is improved, and the problem that the use of the equipment is interrupted due to the fact that the connector is only leaked to be connected with the external connector when the monitoring device is used is solved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a block diagram of the present invention;
FIG. 2 is a block diagram of the safety monitoring device body of the present invention;
FIG. 3 is a block diagram of a protective shell of the present invention;
FIG. 4 is a cross-sectional view of a protective shell of the present invention;
FIG. 5 is a block diagram of the seal assembly of the present invention;
FIG. 6 is a block diagram of a stabilizing assembly of the present invention;
FIG. 7 is a block diagram of the access shell of the present invention;
FIG. 8 is a block diagram of the closure of the present invention;
FIG. 9 is an internal structural view of the access shell of the present invention;
FIG. 10 is a block diagram of a stop assembly of the present invention;
figure 11 is a block diagram of a rebound assembly of the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
1. a safety monitoring device body; 101. a display screen; 102. an operation button; 103. a connecting port; 2. a protective shell; 201. a groove A; 202. a chute; 203. a seal assembly; 2031. a limiting plate A; 2032. fixing a plate A; 2033. a connecting rod A; 2034. a spring A; 2035. a protection plate; 2036. a slider; 3. a stabilizing assembly; 301. a clamping plate A; 3011. mounting grooves; 3012. a magnet; 302. a clamping plate B; 303. threading holes; 4. overhauling the shell; 401. mounting a plate; 402. sealing the cover; 4021. clamping a plate; 403. a card slot; 404. a channel; 405. a groove B; 406. a limiting component; 4061. a handle; 4062. a limiting plate B; 4063. a fixing plate B; 4064. a connecting rod B; 4065. a spring B; 4066. a connecting plate; 4067. a baffle plate; 407. a rebound assembly; 4071. a limiting plate C; 4072. a fixing plate C; 4073. a connecting rod C; 4074. a spring C; 4075. a push plate.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
Referring to fig. 1-11, the invention relates to a safety monitoring device for a full-electric injection molding machine, which comprises a safety monitoring device body 1, wherein a protective shell 2 is welded at the bottom center position of the safety monitoring device body 1, grooves a201 are respectively arranged at two sides of the inner center of the protective shell 2, sliding grooves 202 are respectively arranged on the inner walls of the front end and the rear end of each groove a201, an overhaul shell 4 is welded at the center position of the rear end face of the safety monitoring device body 1, clamping grooves 403 are respectively arranged at the top and the bottom of the front end of one side in the overhaul shell 4, a channel 404 is arranged at the front end of the inner wall of one side of each clamping groove 403, and a groove B405 is arranged at the center position of the front end face of each clamping groove 403; a sealing assembly 203 is arranged inside the groove A201, the sealing assembly 203 comprises a limiting plate A2031 and a connecting rod A2033, and the connecting rod A2033 is welded at the center of the end face of one side of the limiting plate A2031; a stabilizing component 3 is arranged at the bottom center position of the protective shell 2, the stabilizing component 3 comprises a clamping plate A301 and a clamping plate B302, and the clamping plate A301 and the clamping plate B302 are oppositely arranged; a limiting component 406 is arranged inside the channel 404, the limiting component 406 comprises a handle 4061 and limiting plates B4062, and the limiting plates B4062 are welded at two ends of the handle 4061; recess B405's inside is provided with subassembly 407 that kick-backs, subassembly 407 that kick-backs includes limiting plate C4071 and connecting rod C4073, limiting plate C4071's a side end face central point puts the welding and has connecting rod C4073, recess A201 is for being 45 degrees angle settings along the inner wall slant of protecting sheathing 2, spout 202 is for being 45 degrees angle settings along the inner wall slant of recess A201, grip block A301 and grip block B302's top all is connected with the bottom of protecting sheathing 2 through the hinge, make things convenient for the staff rotatory to grip block A301 and grip block B302, and grip block A301 and grip block B302's shape size is all the same.
As shown in fig. 1-2, a display screen 101 and an operation button 102 are arranged on a front end face of the safety monitoring device body 1, the operation button 102 is located right below the display screen 101, a connection port 103 is arranged at a central position of the bottom of the safety monitoring device body 1, the display screen 101 and the operation button 102 facilitate a worker to control the safety monitoring device body 1, and the connection port 103 is connected with an external connector to realize data intercommunication;
when the staff used the full-electric injection molding machine, with electric connection between full-electric injection molding machine and the safety monitoring equipment body 1, through using display screen 101 and operating button 102 control safety monitoring equipment body 1 on the operation safety monitoring equipment body 1 to utilize the electric connection between full-electric injection molding machine and the safety monitoring equipment body 1, reach the purpose of controlling the operation monitoring full-electric injection molding machine, guarantee the security of production work.
As shown in fig. 1, 3, 4, and 5, the other end of the connecting rod a2033 penetrates through a through hole on the end surface of the fixing plate a2032 to be connected to the protection plate 2035, the outer side of the outer wall of the connecting rod a2033 is sleeved with the spring a2034, the spring a2034 is located between the fixing plate a2032 and the protection plate 2035, the limiting plate a2031 and the protection plate 2035 are connected through the connecting rod a2033 to perform a connecting function and realize synchronous motion, the cross section of the protection plate 2035 is triangular, the area of the side edge of the protection plate 2035 can be increased, the joint can not be taken out after being inserted, the protection plate 2035 can not be taken out, the elastic performance of the spring a2034 can be used to drive the protection plate 2035 to move, the protection plate 2035 can be automatically popped out without manual operation, the outer wall of the fixing plate a2032 is fixed on the inner wall of the groove a201, sliders 2036 are welded at the center positions of the front and rear end surfaces of the protection plate 2035, the other end of the sliders 2036 is located inside of the chute 202, and the sliders 2036 is located inside the chute 202, therefore, when the protection plate 2035 is forced to move, the protection plate 2035 is moved obliquely upward by the slide block 2036 and the slide groove 202.
Wherein as shown in fig. 1, 6, threading hole 303 has all been seted up to the bottom central point of grip block A301 and grip block B302, both ends edge all is provided with mounting groove 3011 around grip block A301 and grip block B302's a side end face bottom, the internally mounted of mounting groove 3011 has magnet 3012, the aperture of threading hole 303 is greater than the diameter of external joint connecting wire, be less than the size that external joint blocked, grip block A301 and grip block B302 both produce magnetism through magnet 3012 and inhale, make grip block A301 and grip block B302 both closed.
Wherein as shown in fig. 1, 7, 8, all weld at one side terminal surface rear end top and the bottom edge of overhauing shell 4 has mounting panel 401, the inside one side rear end of overhauing shell 4 passes through the hinge and is connected with closing cap 402, the opposite side terminal surface top and the bottom of closing cap 402 all weld have cardboard 4021, make things convenient for the staff to install safety monitoring equipment body 1 through mounting panel 401, closing cap 402 can rotate under the effect of hinge, cardboard 4021's size slightly is less than the size of draw-in groove 403, make things convenient for cardboard 4021 card to go into.
As shown in fig. 7, 9, and 10, the other end face of the limiting plate B4062 is welded with connecting rods B4064 at intervals from top to bottom, the other end of the connecting rod B4064 penetrates through a through hole on the end face of the fixing plate B4063 and is connected with the connecting plate 4066, a spring B4065 is sleeved outside the outer wall of the connecting rod B4064, the limiting plate B4062 and the connecting plate 4066 are connected through the connecting rod B4064 to perform a connection function, so as to achieve synchronous motion, the spring B4065 is located between the fixing plate B4063 and the connecting plate 4066, the outer wall of the fixing plate B4063 is fixed on the inner wall of the channel 404, the other end face of the connecting plate 4066 is connected with the baffle 4067 through a hinge, the connecting plate 4066 is driven to move by the elastic property of the spring B4065, so that the baffle 4067 moves, the connecting plate 4066 and the baffle 4067 are connected through the hinge, but the limiting piece is disposed outside the hinge connection part, so that the baffle 4067 can only rotate inwards and cannot rotate outwards, the baffle 4067 can be prevented from rotating outwards and cannot play a limiting role.
Wherein as shown in fig. 10, 11, the other end of connecting rod C4073 runs through the through-hole on the fixed plate C4072 terminal surface and is connected with push pedal 4075, the outer wall outside cover of connecting rod C4073 is equipped with spring C4074, spring C4074 is located between fixed plate C4072 and push pedal 4075, connect limiting plate C4071 and push pedal 4075 through connecting rod C4073, play the effect of connecting, realize synchronous motion, and utilize the elastic property of spring C4074 self to drive push pedal 4075 and remove.
One specific application of this embodiment is: when the device is used, the power supply of the equipment is switched on, and the equipment is started; when the connector is used by a worker, the external connector is inserted into the protective shell 2 and pushed inwards, so that the protective plate 2035 in the sealing assembly 203 is stressed, the protective plate 2035 is stressed to move upwards, the sliding blocks 2036 at the front end and the rear end of the protective plate 2035 are positioned in the sliding grooves 202, and the sliding grooves 202 are obliquely and upwards arranged at an angle of 45 degrees along the inner wall of the groove A201, so that the protective plate 2035 moves obliquely and compresses the spring A2034 under the action of the sliding blocks 2036, the spring A2034 can be contracted, the protective plate 2035 is pushed to be flush with the inner wall of the protective shell 2, so that the external connector can be connected with the connector 103, when the connector is not used, the external connector is pulled outwards, after the connector is pulled out, the spring A2034 is stressed to rebound to push the protective plates 2035 at the two sides to the middle part and close, the connector 103 can be protected inside, the connector 103 is prevented from being damaged by external hard objects, and the connector is convenient for the worker to use, time is saved, work efficiency is improved, when a worker overhauls the safety monitoring device body 1, the handle 4061 in the limiting assembly 406 is pulled, the handle 4061 is stressed to move outwards to drive the limiting plates B4062 on two sides to move, the limiting plates B4062 move under the connecting action of the connecting rods B4064, the connecting plates 4066 move in the channel 404 and compress the springs B4065, and the baffle 4067 moves through the hinge, so that the limiting action of the baffle 4067 on the clamping plate 4021 on the sealing cover 402 disappears, meanwhile, the springs C4074 in the rebounding assembly 407 are stressed to compress and rebound the pushing plate 4075, so that one end of the sealing cover 402 is pushed out through elasticity, the other end of the sealing cover 402 rotates under the action of the hinge, so that the sealing cover 402 can be opened and overhauled, during installation, one side of the sealing cover 402 is pushed to rotate the other side of the sealing cover under the action of the hinge, and the clamping plate 4021 of the sealing cover 402 is pushed into the clamping groove 403, and in the pushing process, the clamping plate 4021 applies force to the baffle 4067, the baffle 4067 rotates under the action of the hinge, the clamping plate 4021 moves to the inner side of the baffle 4067, the baffle 4067 is pressed back to the push plate 4075 in the elastic component 407 in the moving process, the push plate 4075 is stressed to move in the groove B405 and compress the spring C4074, therefore, the spring C4074 is always in a compressed state in the installation process of the sealing cover 402, after the limiting effect between the baffle 4067 and the clamping plate 4021 disappears, the sealing cover 402 is automatically ejected out by the elastic force of the spring C4074, the structure is simple, the use of a worker is facilitated, the worker can conveniently and rapidly install and detach the sealing cover 402, the working efficiency is improved, after the worker connects the external connector with the external connector 103, the clamping plates A301 and the clamping plates B302 on two sides of the connecting port 3 are turned over downwards, the clamping plates A301 and the clamping plates B302 rotate under the action of the hinge, and the connecting line of the external connector is clamped through the threading hole 303, and then can wrap up the inside at grip block A301, grip block B302 and protecting crust 2 with the external joint to the condition that the external joint drops can be avoided equipment in the use and the stability of external joint connection is improved.
The above are only preferred embodiments of the present invention, and the present invention is not limited thereto, and any modification, equivalent replacement, and improvement made to the technical solutions described in the above embodiments, and to some of the technical features thereof, are included in the scope of the present invention.

Claims (9)

1. The utility model provides a safety monitoring device for full-electric injection molding machine, includes safety monitoring equipment body (1), its characterized in that: the safety monitoring device is characterized in that a protective shell (2) is welded at the center of the bottom of the safety monitoring device body (1), grooves A (201) are formed in two sides of the center of the interior of the protective shell (2), sliding grooves (202) are formed in the inner walls of the front end and the rear end of each groove A (201), an overhaul shell (4) is welded at the center of the end face of the rear end of the safety monitoring device body (1), clamping grooves (403) are formed in the top and the bottom of the front end of one side of the interior of the overhaul shell (4), a channel (404) is formed in the front end of the inner wall of one side of each clamping groove (403), and a groove B (405) is formed in the center of the end face of the front end of each clamping groove (403);
a sealing assembly (203) is arranged inside the groove A (201), the sealing assembly (203) comprises a limiting plate A (2031) and a connecting rod A (2033), and the connecting rod A (2033) is welded at the center of the end face of one side of the limiting plate A (2031);
a stabilizing assembly (3) is arranged at the center of the bottom of the protective shell (2), the stabilizing assembly (3) comprises a clamping plate A (301) and a clamping plate B (302), and the clamping plate A (301) and the clamping plate B (302) are arranged oppositely;
a limiting component (406) is arranged inside the channel (404), the limiting component (406) comprises a handle (4061) and a limiting plate B (4062), and the limiting plates B (4062) are welded at two ends of the handle (4061);
the inside of recess B (405) is provided with resilience subassembly (407), resilience subassembly (407) includes limiting plate C (4071) and connecting rod C (4073), the welding of one side end face central point of limiting plate C (4071) has connecting rod C (4073).
2. The safety monitoring device for the all-electric injection molding machine according to claim 1, wherein a display screen (101) and an operation button (102) are arranged on the front end face of the safety monitoring device body (1), the operation button (102) is located right below the display screen (101), and a connection port (103) is arranged at the bottom center of the safety monitoring device body (1).
3. The safety monitoring device for the all-electric injection molding machine according to claim 1, wherein the other end of the connecting rod a (2033) penetrates through a through hole on the end surface of the fixing plate a (2032) to be connected with a protection plate (2035), a spring a (2034) is sleeved outside the outer wall of the connecting rod a (2033), and the spring a (2034) is located between the fixing plate a (2032) and the protection plate (2035).
4. The safety monitoring device for the all-electric injection molding machine according to claim 3, wherein the outer wall of the fixing plate A (2032) is fixed on the inner wall of the groove A (201), the central positions of the front end surface and the rear end surface of the protection plate (2035) are welded with sliding blocks (2036), and the other ends of the sliding blocks (2036) are located inside the sliding grooves (202).
5. The safety monitoring device for the fully electric injection molding machine according to claim 1, wherein threading holes (303) are formed in the center positions of the bottoms of the clamping plate A (301) and the clamping plate B (302), mounting grooves (3011) are formed in the edges of the front end and the rear end of the bottom of one side end face of the clamping plate A (301) and the clamping plate B (302), and magnets (3012) are mounted in the mounting grooves (3011).
6. The safety monitoring device for the all-electric injection molding machine is characterized in that mounting plates (401) are welded at the top edge and the bottom edge of the rear end face of one side of the maintenance shell (4), the rear end face of the inside of the maintenance shell (4) is connected with a sealing cover (402) through a hinge, and clamping plates (4021) are welded at the top edge and the bottom edge of the other side of the sealing cover (402).
7. The safety monitoring device for the fully electric injection molding machine according to claim 1, wherein the other side end face of the limiting plate B (4062) is welded with connecting rods B (4064) at intervals from top to bottom, the other end of the connecting rod B (4064) penetrates through a through hole in the end face of the fixing plate B (4063) and is connected with the connecting plate (4066), and the outer side of the outer wall of the connecting rod B (4064) is sleeved with a spring B (4065).
8. The safety monitoring device for the all-electric injection molding machine according to claim 7, wherein the spring B (4065) is located between a fixing plate B (4063) and a connecting plate (4066), an outer wall of the fixing plate B (4063) is fixed to an inner wall of the channel (404), and the other side end face of the connecting plate (4066) is connected to the baffle plate (4067) by a hinge.
9. The safety monitoring device for the all-electric injection molding machine according to claim 1, wherein the other end of the connecting rod C (4073) penetrates through a through hole on the end face of the fixing plate C (4072) to be connected with the push plate (4075), a spring C (4074) is sleeved outside the outer wall of the connecting rod C (4073), and the spring C (4074) is located between the fixing plate C (4072) and the push plate (4075).
CN202210052981.9A 2022-01-18 2022-01-18 Safety monitoring device for full-electric injection molding machine Active CN114393802B (en)

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CN213878546U (en) * 2020-12-25 2021-08-03 江西省圣盈科技有限公司 Replaceable insulated data connecting wire
CN214208914U (en) * 2020-12-01 2021-09-17 青岛浩恩医药耗材有限公司 Easy-to-fold combined cover
CN215345353U (en) * 2021-05-19 2021-12-28 江阴小乐机电发展有限公司 Novel electric control panel protection device

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104600468A (en) * 2013-10-31 2015-05-06 武汉蜀泰科技有限公司 Novel safety protection power strip
CN207474803U (en) * 2017-12-08 2018-06-08 朱亚东 A kind of connector of the anti-short-circuit protection of network layout
CN209076701U (en) * 2018-08-02 2019-07-09 天津繁茂科技有限公司 A kind of antipollution pipettor gun head cartridge
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CN112476965A (en) * 2020-12-11 2021-03-12 芜湖蓝天工程塑胶股份有限公司 Protection device based on injection molding machine
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