CN207273775U - A kind of injection mold side slide two-step ejector mechanism - Google Patents
A kind of injection mold side slide two-step ejector mechanism Download PDFInfo
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- CN207273775U CN207273775U CN201721192750.9U CN201721192750U CN207273775U CN 207273775 U CN207273775 U CN 207273775U CN 201721192750 U CN201721192750 U CN 201721192750U CN 207273775 U CN207273775 U CN 207273775U
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- machined
- quiet
- moving platen
- stent
- injection mold
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Abstract
The utility model discloses a kind of injection mold side slide two-step ejector mechanism, including workbench, No.1 stent is equipped with the right side of the worktable upper surface, the No.1 stent left surface is equipped with vertical chute, motor-driven carrier is equipped with the vertical chute, the motor-driven carrier left surface is equipped with the No.1 telescopic rod of telescopic end to the left, push plate is connected with the telescopic end of the No.1 telescopic rod, the quiet template of No.1 is equipped with above the No.1 stent left surface, No.1 groove is machined with left and right sides of the quiet template lower surface of No.1, compression spring is equipped with each No.1 groove, the quiet template lower surface of No.1 is equipped with No. two quiet templates.The beneficial effects of the utility model can be achieved on two stage mold unloading, injection molding body is separated with forming blocks, is separated with forming cavity, carries cooling vane, can fast cooling shaping, side motor-driven carrier up and down can drive No.1 telescopic rod that injection molding material is pushed away mould, automatic recycling.
Description
Technical field
Injection mold side slide two stage mold unloading field is the utility model is related to, particularly a kind of injection mold side slide two stage mold unloading
Mechanism.
Background technology
The demoulding refers to the sequence of operations for deviating from steel ingot out of ingot mould, but since injection molding body thin-walled depth chamber or shape are answered
Miscellaneous, once abjection is easily deformed rupture, and the secondary demoulding is used for scattered knockout press.
At present, in existing technology, in Application No. 201120557705.5, the patent of entitled multistage mould emptier
In, the separation one by one of each three-level stripper can be completed, so that achieve the purpose that the multistage demoulding, it is reliably excellent with having stable behavior
Point, but this mechanism structure is complicated, it has not been convenient to repair, and do not carry cooling system, it is impossible to rapid shaping is unidirectional more
The level demoulding, is not adhered the situation of opposite side in view of injection molding body, it is impossible to which automation is by the injection molding body after the demoulding from mould upper table
Release in face.
To solve the above-mentioned problems, the utility model is equipped with two-way stripper apparatus, and No. two quiet templates are in gravity
It is lower to be pushed away under injection molding body, depart from forming blocks, ejection stent separates injection molding body with forming cavity under the action of fixed push rod;It is electronic
Trolley drives No.1 telescopic rod to move up and down, and injection molding body can be pushed away mould by telescopic rod elongation, automatic to collect;It is simple in structure,
It is cost-effective, facilitate maintenance overhaul.Therefore, it is necessary to design a kind of injection mold side slide two-step ejector mechanism.
Utility model content
The purpose of this utility model is to solve the above-mentioned problems, to devise a kind of injection mold side slide two stage mold unloading machine
Structure.
Realize that above-mentioned purpose the technical solution of the utility model is, a kind of injection mold side slide two-step ejector mechanism, including
Workbench, the worktable upper surface right side are equipped with No.1 stent, and the No.1 stent left surface is equipped with vertical chute, described perpendicular
Motor-driven carrier is equipped with straight runner, the motor-driven carrier left surface is equipped with the No.1 telescopic rod of telescopic end to the left, and the No.1 is stretched
Push plate is connected with the telescopic end of contracting bar, the quiet template of No.1, the quiet template of No.1 are equipped with above the No.1 stent left surface
No.1 groove is machined with left and right sides of lower surface, compression spring, the quiet mould of No.1 are equipped with each No.1 groove
Plate lower surface is equipped with No. two quiet templates, and it is trapezoidal one number service that longitudinal section is machined with the center of No. two quiet template lower surfaces
Hole, the No.1 through hole is interior to be equipped with forming blocks, and each compression spring lower surface is connected with No. two quiet template upper surfaces,
Moving platen is equipped with below No. two quiet templates, the moving platen upper surface is machined with and the corresponding forming cavity of forming blocks, institute
State moving platen lower surface and be equipped with some No. two stents, some No. two stent lower surfaces are connected with No.1 baffle jointly, described
Moving platen lower surface is machined with a pair of No. two through holes, and a pair of No. two through holes are communicated with forming cavity, on the No.1 baffle
Surface and No. two baffles are equipped between some No. two stents, No. two baffle upper surfaces are equipped with and a pair of No. two through hole phases
Corresponding a pair of of ejection stent, the moving platen lower surface is machined with No. three through holes.
The worktable upper surface and No. two telescopic rods below No.1 baffle equipped with some telescopic ends upwards, it is some
The telescopic end of No. two telescopic rods is connected with No.1 baffle lower surface.
Cooling vane is equipped with the moving platen and on the outside of forming cavity, the moving platen front surface is machined with inlet air
Mouthful, the moving platen rear surface is machined with air outlet, and the air inlet, air outlet are communicated with cooling vane.
The quiet template upper surface of No.1 is machined with No.1 feed inlet, and the forming blocks lower surface is machined with No. two chargings
Mouthful, the No.1 feed inlet, No. two feed inlets communicate.
The worktable upper surface and fixed push rod is equipped with below No. three through holes, the right surface of workbench is equipped with city
Electrical interface, the workbench front surface are equipped with power switch.
A kind of injection mold side slide two-step ejector mechanism made using the technical solution of the utility model, it is possible to achieve two
The level demoulding, injection molding body is separated with forming blocks, is separated with forming cavity, carries cooling vane, can fast cooling shaping, side is electronic
Trolley up and down can drive No.1 telescopic rod that injection molding material is pushed away mould, automatic recycling.
Brief description of the drawings
Fig. 1 is a kind of structure diagram of injection mold side slide two-step ejector mechanism described in the utility model;
Fig. 2 be a kind of injection mold side slide two-step ejector mechanism described in the utility model demoulding state under front view;
Fig. 3 is a kind of left view of injection mold side slide two-step ejector mechanism described in the utility model;
In figure, 1, workbench;2nd, No.1 stent;3rd, vertical chute;4th, motor-driven carrier;5th, No.1 telescopic rod;6th, push plate;7、
The quiet template of No.1;8th, No.1 groove;9th, spring is compressed;10th, No. two quiet templates;11st, No.1 through hole;12nd, forming blocks;13rd, dynamic model
Plate;14th, forming cavity;15th, No. two stents;16th, No.1 baffle;17th, No. two through holes;18th, No. two baffles;19th, stent is ejected;20、
No. three through holes;21st, No. two telescopic rods;22nd, cooling vane;23rd, air inlet;24th, air outlet;25th, No.1 feed inlet;26th, No. two
Feed inlet;27th, fixed push rod;28th, commercial power interface;29th, power switch.
Embodiment
The utility model is specifically described below in conjunction with the accompanying drawings, as shown in Figs. 1-3, a kind of injection mold side slide two level
Mould emptier, including workbench 1,1 upper surface of the workbench right side are equipped with No.1 stent 2, and 2 left surface of No.1 stent is set
Have a vertical chute 3, be equipped with motor-driven carrier 4 in the vertical chute 3,4 left surface of motor-driven carrier equipped with telescopic end to the left
No.1 telescopic rod 5, push plate 6 is connected with the telescopic end of the No.1 telescopic rod 5, is equipped with above 2 left surface of No.1 stent
The quiet template 7 of No.1, quiet 7 lower surface of the template left and right sides of No.1 are machined with No.1 groove 8, each No.1 groove 8
Compression spring 9 is inside equipped with, quiet 7 lower surface of template of No.1 is equipped with No. two quiet templates 10, No. two quiet 10 following tables of template
It is trapezoidal No.1 through hole 11 that longitudinal section is machined with the center of face, and forming blocks 12 are equipped with the No.1 through hole 11, each described
9 lower surface of compression spring is connected with No. two quiet 10 upper surfaces of template, and No. two quiet lower sections of template 10 are equipped with moving platen 13,
13 upper surface of moving platen is machined with forming cavity 14 corresponding with forming blocks 12, and 13 lower surface of moving platen is equipped with some
No. two stents 15, some 15 lower surfaces of No. two stents are connected with No.1 baffle 16 jointly, and 13 lower surface of moving platen adds
Work has a pair of No. two through holes 17, and a pair of No. two through holes 17 are communicated with forming cavity 14,16 upper surface of No.1 baffle and
No. two baffles 18 are equipped between some No. two stents 15,18 upper surface of No. two baffles is equipped with and a pair of No. two through holes 17
Corresponding a pair of of ejection stent 19,13 lower surface of moving platen is machined with No. three through holes 20;1 upper surface of workbench and
No. two upward telescopic rods 21 of some telescopic ends are equipped with positioned at the lower section of No.1 baffle 16, some No. two telescopic rods 21 stretch
End is connected with 16 lower surface of No.1 baffle;Cooling vane 22, institute are equipped with the moving platen 13 and on the outside of forming cavity
To state 13 front surface of moving platen and be machined with air inlet 23,13 rear surface of moving platen is machined with air outlet 24, the air inlet 23,
Air outlet 24 is communicated with cooling vane 22;Quiet 7 upper surface of template of No.1 is machined with No.1 feed inlet 25, the forming blocks
12 lower surfaces are machined with No. two feed inlets 26, and described 25, No. two feed inlets 26 of No.1 feed inlet communicate;1 upper table of workbench
Face and fixed push rod 27 is equipped with positioned at the lower section of No. three through holes 20, the 1 right surface of workbench is equipped with commercial power interface 28, the work
1 front surface of platform is equipped with power switch 29.
The characteristics of the present embodiment, is, equipped with two-way stripper apparatus, No. two quiet templates 10 are under the effect of gravity by injection molding body
Under push away, depart from forming blocks 12, ejection stent 15 separates injection molding body with forming cavity 14 under the action of fixed push rod;Motor-driven carrier
4 drive No.1 telescopic rods 5 move up and down, and injection molding body can be pushed away forming cavity 14 by the elongation of No.1 telescopic rod 5, automatic to collect;Knot
Structure is simple, cost-effective, facilitates maintenance overhaul;It can realize two stage mold unloading, injection molding body is separated with forming blocks, is divided with forming cavity
From, carry cooling vane, can fast cooling shaping, side motor-driven carrier can it is up and down drive No.1 telescopic rod injection molding material is pushed away
From mould, automatic recycling.
In the present embodiment, adopted inside motor-driven carrier 4 using one piece of eight AT89S52 as control core power source
With integrated driving stepper motor special chip group, 28 output terminal of commercial power interface and HB104 controllers, motor-driven carrier 4, No.1
The input terminal of 5, No. two telescopic rods 21 of telescopic rod is connected by conducting wire, and controller output end stretches with motor-driven carrier 4, No.1
The input terminal of 5, No. two telescopic rods 21 of bar is connected by conducting wire, and 28 input terminal of commercial power interface powers on during work, in device
Idle place is placed with HB104 controllers, turns on the power switch 29, and some No. two telescopic rods 21 move up, and drives moving platen 13
Move up, cavity is formed between forming cavity 14 and forming blocks 12, melting injection molding material passes through 25, No. two feed inlets of No.1 feed inlet
26 enter forming cavity, and cold wind is passed through from air inlet 23, are flowed out by cooling vane 22 from air outlet 24, and moulding can be carried out
It is cooled and shaped, after shaping, some No. two telescopic rods 21 move down, and drive moving platen 13 to move down, No. two quiet templates 10 exist
It to whereabouts under gravity, will will be pushed away under injection molding body, and depart from forming blocks 12 and once demould;Fixed push rod 27 passes through No. three through holes 20
Promote No. two baffles 18 upward, No. two baffles 18 promote a pair of of ejection stent 19 upward, enter by corresponding No. two through holes 17
Forming cavity 14 ejects moulding upwards, the secondary demoulding;Motor-driven carrier 4 moves up in vertical chute 3, drives No.1 to stretch
No.1 telescopic rod 5 extends when bar 5 maintains an equal level with 13 upper surface of moving platen upwards, drives push plate 6 to be moved to the left moulding is driven
13 upper surface of template is released, and is dropped in the collecting box in left side;When moving platen 13 works up, No.1 telescopic rod 5 is shunk,
Motor-driven carrier 4 drives No.1 telescopic rod 5 to move down, and does not stop that moving platen 13 works.
Above-mentioned technical proposal only embodies the optimal technical scheme of technical solutions of the utility model, the technology of the art
Personnel embody some variations that some of which part may be made the principle of the utility model, belong to the utility model
Protection domain within.
Claims (5)
1. a kind of injection mold side slide two-step ejector mechanism, including workbench(1), it is characterised in that the workbench(1)Upper table
Right side of face is equipped with No.1 stent(2), the No.1 stent(2)Left surface is equipped with vertical chute(3), the vertical chute(3)It is interior
Equipped with motor-driven carrier(4), the motor-driven carrier(4)Left surface is equipped with the No.1 telescopic rod of telescopic end to the left(5), the No.1 stretches
Contracting bar(5)Telescopic end on be connected with push plate(6), the No.1 stent(2)The quiet template of No.1 is equipped with above left surface(7), institute
State the quiet template of No.1(7)No.1 groove is machined with left and right sides of lower surface(8), each No.1 groove(8)Inside it is equipped with
Compress spring(9), the quiet template of No.1(7)Lower surface is equipped with No. two quiet templates(10), No. two quiet templates(10)Following table
It is trapezoidal No.1 through hole that longitudinal section is machined with the center of face(11), the No.1 through hole(11)It is interior to be equipped with forming blocks(12), often
A compression spring(9)Lower surface with No. two quiet templates(10)Upper surface is connected, No. two quiet templates(10)Lower section
Equipped with moving platen(13), the moving platen(13)Upper surface is machined with and forming blocks(12)Corresponding forming cavity(14), it is described
Moving platen(13)Lower surface is equipped with some No. two stents(15), some No. two stents(15)Lower surface is connected with No.1 jointly
Baffle(16), the moving platen(13)Lower surface is machined with a pair of No. two through holes(17), a pair of No. two through holes(17)With
Forming cavity(14)Communicate, the No.1 baffle(16)Upper surface and it is located at some No. two stents(15)Between be equipped with No. two baffles
(18), No. two baffles(18)Upper surface is equipped with and a pair of No. two through holes(17)Corresponding a pair of of ejection stent(19), institute
State moving platen(13)Lower surface is machined with No. three through holes(20).
A kind of 2. injection mold side slide two-step ejector mechanism according to claim 1, it is characterised in that the workbench
(1)Upper surface and it is located at No.1 baffle(16)Lower section is equipped with No. two upward telescopic rods of some telescopic ends(21), some described two
Number telescopic rod(21)Telescopic end with No.1 baffle(16)Lower surface is connected.
A kind of 3. injection mold side slide two-step ejector mechanism according to claim 1, it is characterised in that the moving platen
(13)It is interior and be equipped with cooling vane on the outside of the forming cavity(22), the moving platen(13)Front surface is machined with air inlet(23),
The moving platen(13)Rear surface is machined with air outlet(24), the air inlet(23), air outlet(24)And cooling vane
(22)Communicate.
A kind of 4. injection mold side slide two-step ejector mechanism according to claim 1, it is characterised in that the quiet mould of No.1
Plate(7)Upper surface is machined with No.1 feed inlet(25), the forming blocks(12)Lower surface is machined with No. two feed inlets(26), it is described
No.1 feed inlet(25), No. two feed inlets(26)Communicate.
A kind of 5. injection mold side slide two-step ejector mechanism according to claim 1, it is characterised in that the workbench
(1)Upper surface and it is located at No. three through holes(20)Lower section is equipped with fixed push rod(27), the workbench(1)Right surface connects equipped with alternating current
Mouthful(28), the workbench(1)Front surface is equipped with power switch(29).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721192750.9U CN207273775U (en) | 2017-09-18 | 2017-09-18 | A kind of injection mold side slide two-step ejector mechanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721192750.9U CN207273775U (en) | 2017-09-18 | 2017-09-18 | A kind of injection mold side slide two-step ejector mechanism |
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Publication Number | Publication Date |
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CN207273775U true CN207273775U (en) | 2018-04-27 |
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CN201721192750.9U Expired - Fee Related CN207273775U (en) | 2017-09-18 | 2017-09-18 | A kind of injection mold side slide two-step ejector mechanism |
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CN (1) | CN207273775U (en) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109228187A (en) * | 2018-10-08 | 2019-01-18 | 滁州市协众家电配件有限公司 | A kind of high-precision refrigerator part injection mold |
CN113020469A (en) * | 2021-03-31 | 2021-06-25 | 常州博赢精密模具科技股份有限公司 | Secondary ejection structure die for automobile trunk cover |
CN113635528A (en) * | 2021-08-03 | 2021-11-12 | 宁国市扬子塑胶件厂 | Circulating water cooling efficient injection molding machine |
-
2017
- 2017-09-18 CN CN201721192750.9U patent/CN207273775U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109228187A (en) * | 2018-10-08 | 2019-01-18 | 滁州市协众家电配件有限公司 | A kind of high-precision refrigerator part injection mold |
CN113020469A (en) * | 2021-03-31 | 2021-06-25 | 常州博赢精密模具科技股份有限公司 | Secondary ejection structure die for automobile trunk cover |
CN113635528A (en) * | 2021-08-03 | 2021-11-12 | 宁国市扬子塑胶件厂 | Circulating water cooling efficient injection molding machine |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20180427 Termination date: 20180918 |