CN218670096U - Instrument pressurizer - Google Patents

Instrument pressurizer Download PDF

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Publication number
CN218670096U
CN218670096U CN202222591642.6U CN202222591642U CN218670096U CN 218670096 U CN218670096 U CN 218670096U CN 202222591642 U CN202222591642 U CN 202222591642U CN 218670096 U CN218670096 U CN 218670096U
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China
Prior art keywords
plate
instrument
fixed
upside
bottom plate
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CN202222591642.6U
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Chinese (zh)
Inventor
刘云翔
李衔生
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Nanjing Dashi Electronic Technology Co ltd
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Nanjing Dashi Electronic Technology Co ltd
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Priority to CN202222591642.6U priority Critical patent/CN218670096U/en
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Abstract

The utility model discloses an instrument pressurizer. The device includes the bottom plate, the both sides fixedly connected with backup pad of bottom plate, the upside of backup pad is fixed with the roof, the middle part upside of bottom plate is equipped with the lower mould, the upside of roof is fixed with down the part, the lower extreme that pushes down the part passes the roof setting from top to bottom, the lower extreme that pushes down the part is fixed with the mould, the upside of lower mould is equipped with the instrument standing groove, the downside of going up the mould is equipped with and is used for carrying out the pressure muscle of exerting pressure all around to the glass of instrument. The utility model can apply pressure to the whole annular surface of the foam plastic frame, so that the annular surface of the foam plastic frame is uniformly stressed for a circle, the pressure maintaining time is the same, and the pressure maintaining effect of each instrument is consistent and perfect; an operator only needs to simply install the instrument and press the starting button, pressure maintaining can be completed quickly and standardly, and the operation is very simple and easy; the requirement on the operation skill of workers is very low, and operators can work on duty only by simple training.

Description

Instrument pressurizer
Technical Field
The utility model relates to an instrument pressurizer technical field, concretely relates to instrument pressurizer.
Background
Glass and the inferior valve of instrument are pasted together with bubble celloidin frame, and bubble celloidin frame two-sided all has viscidity, is similar with the double faced adhesive tape, glues the inferior valve with bubble celloidin frame earlier when pasting, pastes glass again on bubble celloidin frame, will carry out manual pressurize to glass at last, otherwise, glass can glue not firmly, leads to the instrument to intake easily, can drop even. Traditionally, the thumb is used to press the glass evenly along the upper end face of the outer edge for a circle, which has the following disadvantages: 1. manual pressing is carried out, only small partial surfaces can be pressed at each moment, the whole annular surface of the foam plastic frame is not pressed together, the pressing speed and the force in one circle are not uniform, the pressing deformation degree of the annular surface in one circle of the foam plastic frame is not uniform, some outer glass partial surfaces are not adhered, and the product is enabled to enter water; 2. the thumb of an operator is easy to ache and fatigue when the operator presses the finger manually for a long time; 3. the manual pressing has high requirements on the operation skills of workers, and operators have to be trained strictly to work on duty.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an instrument pressurizer to the not enough of prior art existence.
In order to realize the above object, the utility model provides an instrument pressurizer, comprising a base plate, the both sides fixedly connected with backup pad of bottom plate, the upside of backup pad is fixed with the roof, the middle part upside of bottom plate is equipped with the lower mould, the upside of roof is fixed with the push down part, the lower extreme of push down part passes the roof setting from top to bottom, the lower extreme of push down part is fixed with the mould, the upside of lower mould is equipped with the instrument standing groove, the downside of going up the mould is equipped with and is used for carrying out the pressure muscle of exerting pressure all around to the glass of instrument.
Furthermore, a base is fixed on the lower side of the lower die and connected with the bottom plate.
Further, the base includes the last bedplate of being connected with lower mould bolted connection, the bedplate of being connected down with the bottom plate and a plurality of support columns of fixing between last bedplate and bedplate down, the lower mould corresponds with last bedplate and is equipped with a plurality of first locating holes, be equipped with first locating pin in the first locating hole.
Further, the upside fixedly connected with clamp plate of last mould, the upside of clamp plate is fixed with a plurality of first guide bars, the roof is equipped with the first hole of dodging with first guide bar corresponding position, and its upper side is fixed with a plurality of first uide bushings, first guide bar sliding connection is inboard at first uide bushing.
Furthermore, the upper die is connected with the pressing plate through bolts, a second positioning hole is formed in the position, corresponding to the pressing plate, of the upper die, and a second positioning pin is arranged in the second positioning hole.
Furthermore, the lower seat plate is connected with the bottom plate in a sliding mode, a mounting plate is fixed between the top plate and the bottom plate, a pushing component is fixed on the rear side of the mounting plate, and the front end of the pushing component penetrates through the mounting plate to be fixedly connected with the base.
Further, the rear side of base is fixed with a plurality of second guide bars, the mounting panel is equipped with the second with second guide bar corresponding position and dodges the hole, the mounting panel rear side is fixed with the second uide bushing, second guide bar sliding connection is inboard at the second uide bushing.
Further, the pressing component and the pushing component are both air cylinders.
Has the advantages that: 1. the utility model discloses a set up lower mould and upper mould, the instrument can be stable places in the instrument standing groove on the lower mould, and upper mould accessible cylinder control removes and to glass applys pressure, and through set up the clamping bar in the downside of upper mould, can exert pressure to bubble celloidin frame whole toroidal surface together, make bubble celloidin frame a week toroidal surface atress even, the dwell time is the same, makes each instrument pressurize effect unanimous, perfect;
2. an operator only needs to simply install the instrument and press the starting button, pressure maintaining can be completed quickly and standardly, and the operation is very simple and easy;
3. the requirement on the operation skill of workers is very low, and operators can work on duty only by simple training.
Drawings
Fig. 1 is a schematic front side structural diagram of an instrument pressurizer according to an embodiment of the present invention;
fig. 2 is a schematic rear side structural view of the instrument pressurizer according to the embodiment of the present invention;
fig. 3 is a schematic view of a partial cross-sectional structure of an instrument pressurizer according to an embodiment of the present invention;
FIG. 4 is a schematic view of a portion of the area A in FIG. 3;
fig. 5 is a schematic diagram of the exploded structure of fig. 3.
Detailed Description
The present invention will be further clarified by the following embodiments with reference to the attached drawings, which are implemented on the premise of the technical solution of the present invention, and it should be understood that these embodiments are only used for illustrating the present invention and are not used for limiting the scope of the present invention.
As shown in fig. 1 to 5, the embodiment of the present invention provides an instrument pressurizer, which includes a bottom plate 1, a supporting plate 2 fixedly connected to two sides of the bottom plate 1, and the supporting plate 2 can also be replaced by a plurality of supporting columns. The upper side of the supporting plate 2 is fixed with a top plate 3, the upper side of the middle of the bottom plate 1 is provided with a lower die 4, the upper side of the top plate 3 is fixed with a pressing component 5, the pressing component 5 preferably adopts a cylinder, the lower end of the pressing component 5 penetrates through the top plate 3 from top to bottom, the lower end of the pressing component 5 is fixed with an upper die 6, the upper side of the lower die 4 is provided with a meter placing groove 41, and after the meter 7 is placed into the meter placing groove 41, the meter placing groove 41 can limit the lower shell 71 of the meter 7. The lower side of the upper die 6 is provided with a pressing rib 8, the pressing rib 8 is matched with the shape and the size of the glass 72 of the instrument 7, and when the upper die 6 is controlled by the pressing component 5 to move to the upper side of the lower die 4, the pressing rib 8 presses the upper side of the periphery of the glass 72, so that the periphery of the glass is pressed.
In order to install the lower die 4, a base 9 is fixed on the lower side of the lower die 4, and the base 9 is connected with the bottom plate 1. The base 9 preferably includes an upper seat plate 91, a plurality of support columns 92 and a lower seat plate 93, the lower mold 4 is preferably bolted to the upper seat plate 91, the plurality of support columns 92 are fixed between the upper seat plate 91 and the lower seat plate 93, and the lower seat plate 93 is connected to the upper side of the base plate 1. In order to accurately fix the lower mold 4 to the upper seat plate 91, a plurality of first positioning holes 94 are provided in the upper seat plate 91 corresponding to the lower mold 4, preferably two first positioning holes 94 are provided, and a first positioning pin 95 is provided in each first positioning hole 94. During assembly, the two first positioning pins 95 are inserted into the first positioning holes 94 to be aligned, and then are screwed down by bolts.
The upper side of the upper die 6 is fixedly connected with a pressing plate 10, the upper side of the pressing plate 10 is fixed with a plurality of first guide rods 11, first avoidance holes are formed in the positions, corresponding to the first guide rods 11, of the top plate 3, a plurality of first guide sleeves 12 are fixed on the upper side of the top plate 3, and the first guide rods 11 are connected to the inner sides of the first guide sleeves 12 in a sliding mode. The number of the first guide rods 11 is preferably 4, which ensures stable up and down movement of the upper mold 6 under the control of the pressing member 5. The upper die 6 and the pressure plate 10 are preferably connected by bolts, in order to facilitate accurate fixation of the upper die 6 and the pressure plate 10, a plurality of second positioning holes 13 are provided at positions of the upper die 6 corresponding to the pressure plate 10, the number of the second positioning holes 13 is also preferably two, and second positioning pins 14 are provided in the second positioning holes 13. During assembly, the two second positioning pins 14 are inserted into the second positioning holes 13 and then screwed down by bolts.
In order to facilitate putting into the instrument 7 of just pasting glass 72 and taking out the instrument 7 after the pressurize operation, the utility model discloses lower seat 93 and bottom plate 1 sliding connection are fixed with mounting panel 15 between roof 3 and bottom plate 1, and the rear side of mounting panel 15 is fixed with pushing component 16, and pushing component 16 also preferably adopts the cylinder, and pushing component 16's front end passes mounting panel 15 and base 9 fixed connection. In order to improve stability, a plurality of second guide rods 17 are fixed on the rear side of the base 9, preferably two second guide rods 17 are arranged on two sides of the pushing component 16, second avoiding holes are formed in positions of the mounting plate 15 corresponding to the second guide rods 17, a second guide sleeve 18 is fixed on the rear side of the mounting plate 15, and the second guide rods 17 are connected to the inner side of the second guide sleeve 18 in a sliding mode. For more stable sliding, a guide mechanism such as a slide rail slider may be provided between the lower seat plate 93 and the base plate 1.
When the glass pushing device is used, when the pushing component 16 is in a pushing state, the instrument 7 which is just adhered to the glass 72 on the foam rubber frame 73 on the lower shell 71 is placed into the instrument placing groove 41, then the pushing component 16 is controlled to be retracted, the lower die 4 is positioned right below the upper die 6, then the pushing component 5 is controlled to be pushed downwards, after the pressing rib 8 of the upper die 6 is contacted with the glass 72, a certain pressure is applied to the upper side of the periphery of the glass 72, then the glass 72 is kept for a period of time, the pushing stroke can be set according to needs, the purpose that the glass 72 and the lower shell 71 cannot be damaged is achieved, the glass 72 can be effectively pressed on the foam rubber frame 73 can be guaranteed, and the pushing time can be set according to needs.
The above description is only a preferred embodiment of the present invention, and it should be noted that other parts not specifically described belong to the prior art or the common general knowledge to those skilled in the art. Without departing from the principle of the present invention, several improvements and decorations can be made, and these improvements and decorations should also be regarded as the protection scope of the present invention.

Claims (8)

1. The utility model provides an instrument pressurizer, a serial communication port, comprising a base plate, the both sides fixedly connected with backup pad of bottom plate, the upside of backup pad is fixed with the roof, the middle part upside of bottom plate is equipped with the lower mould, the upside of roof is fixed with down the part, the lower extreme of pushing down the part passes the roof setting from top to bottom, the lower extreme of pushing down the part is fixed with last mould, the upside of lower mould is equipped with the instrument standing groove, the downside of going up the mould is equipped with the pressure muscle that is used for exerting pressure all around to the glass of instrument.
2. The instrument pressure maintaining device of claim 1, wherein a base is fixed to a lower side of the lower mold, and the base is connected to the bottom plate.
3. The instrument pressure maintaining device of claim 2, wherein the base comprises an upper seat plate bolted to the lower mold, a lower seat plate connected to the bottom plate, and a plurality of support pillars fixed between the upper seat plate and the lower seat plate, the lower mold and the upper seat plate are provided with a plurality of first positioning holes, and the first positioning holes are provided with first positioning pins.
4. The instrument pressure maintaining device according to claim 1, wherein a pressing plate is fixedly connected to an upper side of the upper mold, a plurality of first guide rods are fixed to an upper side of the pressing plate, first avoiding holes are formed in positions of the top plate corresponding to the first guide rods, a plurality of first guide sleeves are fixed to an upper side of the top plate, and the first guide rods are slidably connected to inner sides of the first guide sleeves.
5. The instrument pressure maintaining device of claim 1, wherein the upper mold is bolted to the pressure plate, and a second positioning hole is formed in a position corresponding to the pressure plate, and a second positioning pin is disposed in the second positioning hole.
6. The instrument pressure maintaining device of claim 3, wherein the lower seat plate is slidably connected to the bottom plate, a mounting plate is fixed between the top plate and the bottom plate, a pushing member is fixed to a rear side of the mounting plate, and a front end of the pushing member passes through the mounting plate and is fixedly connected to the base.
7. The instrument pressure maintaining device of claim 6, wherein a plurality of second guide rods are fixed to the rear side of the base, second avoiding holes are formed in the mounting plate at positions corresponding to the second guide rods, a second guide sleeve is fixed to the rear side of the mounting plate, and the second guide rods are slidably connected to the inner side of the second guide sleeve.
8. The instrument pressure maintaining device of claim 1, wherein the pressing member and the pushing member are both air cylinders.
CN202222591642.6U 2022-09-29 2022-09-29 Instrument pressurizer Active CN218670096U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222591642.6U CN218670096U (en) 2022-09-29 2022-09-29 Instrument pressurizer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222591642.6U CN218670096U (en) 2022-09-29 2022-09-29 Instrument pressurizer

Publications (1)

Publication Number Publication Date
CN218670096U true CN218670096U (en) 2023-03-21

Family

ID=85559941

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222591642.6U Active CN218670096U (en) 2022-09-29 2022-09-29 Instrument pressurizer

Country Status (1)

Country Link
CN (1) CN218670096U (en)

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