CN209139797U - Al alloys andMg alloys quantify the continuous rapid melting die cast device of embryo material - Google Patents

Al alloys andMg alloys quantify the continuous rapid melting die cast device of embryo material Download PDF

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Publication number
CN209139797U
CN209139797U CN201821949196.9U CN201821949196U CN209139797U CN 209139797 U CN209139797 U CN 209139797U CN 201821949196 U CN201821949196 U CN 201821949196U CN 209139797 U CN209139797 U CN 209139797U
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China
Prior art keywords
feeding
alloys
rack
embryo material
injection mechanism
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Withdrawn - After Issue
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CN201821949196.9U
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Chinese (zh)
Inventor
黄毅锋
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Jin Yahao Precision Metals Technology (shenzhen) Ltd By Share Ltd
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Jin Yahao Precision Metals Technology (shenzhen) Ltd By Share Ltd
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Abstract

The utility model discloses a kind of Al alloys andMg alloys to quantify the continuous rapid melting die cast device of embryo material, including rack, die casting, injection mechanism, quantitative feeding mechanism and quick melt mechanism.Die casting is arranged on the rack with injection mechanism.The first side of rack is arranged in quantitative feeding mechanism comprising vibrating disk, vibrating disk are docked by the first feeding passage with the second feeding passage, and the first end of the second feeding passage is equipped with pusher cylinder, and second end extends to the feeding inlet of injection mechanism.Second side of rack is arranged in quick melt mechanism comprising rotating electric machine and electric cabinet.Electric cabinet is arranged in the rotary shaft of rotating electric machine, which is provided with supporting plate, and the end of supporting plate is equipped with radio-frequency induction coil and crucible.When rotating electric machine drives rotary shaft rotation, while crucible being driven to dock with the second feeding passage or dock with the feeding inlet of injection mechanism.The utility model can realize the self-feeding of Al alloys andMg alloys embryo material, high production efficiency, and energy conservation and environmental protection.

Description

Al alloys andMg alloys quantify the continuous rapid melting die cast device of embryo material
Technical field
The utility model relates to the technical field that die cast metal shapes, in particular to a kind of Al alloys andMg alloys quantify embryo Expect continuous rapid melting die cast device.
Background technique
Al alloys andMg alloys material is to study at present due to having the advantages that light weight, specific strength are high, recoverable is strong The metal material of most commonly used casting forming.However existing some thin type die castings, it is existing such as aluminum alloy casing or frame Common die casting equipment be it is primary by every die casting, the alloy soup stock that just makes a scoop out of high-temperature smelting pot be sent into injection mechanism in, by Injection mechanism will carry out die casting in high temperature soup stock injection to mold, press casting procedure not energy-efficient and environmental protection, and die casting efficiency is slow.In addition, high Alloy soup stock needs are constantly kept the temperature in warm smelting furnace, consuming energy, once also, soup stock spluttering, it is easy to production development thing Therefore safety is low.
Utility model content
In view of the problems of the existing technology, the main purpose of the utility model is to provide a kind of Al alloys andMg alloys and quantifies embryo Expect continuous rapid melting die cast device, it is intended to improve die casting to the die casting efficiency of Al alloys andMg alloys embryo material, improve production Safety.
To achieve the above object, the utility model proposes Al alloys andMg alloys quantify the continuous rapid melting die cast of embryo material Device comprising: rack, die casting, injection mechanism, quantitative feeding mechanism and quick melt mechanism.
The die casting is arranged in the rack, and the feeding inlet of die casting is arranged in the injection mechanism, and solid Determine on the rack.
The first side of the rack is arranged in the quantitative feeding mechanism comprising vibrating disk, the first feeding passage, second Feeding passage and pusher cylinder.First feeding passage includes linear feeding portion and slope feeding portion, the linear feeding The exit side of vibrating disk is arranged in part, and the slope feeding portion is connect with the first end of second feeding passage.It is described to push away The first end of second feeding passage is arranged in material cylinder.The second end of second feeding passage is to the injection mechanism Extend above feeding inlet.
Second side of the rack is arranged in the quick melt mechanism comprising rotating electric machine and electric cabinet.The rotation Rotating motor is fixed in the rack, and output end is equipped with rotary shaft.The electric cabinet is arranged in the rotary shaft, sets thereon The end of the supporting plate that the second end of oriented second feeding passage extends, the supporting plate is equipped with radio-frequency induction coil for heating Circle, the radio-frequency induction coil is interior to be equipped with crucible, when the rotating electric machine driving rotary shaft rotates, while driving crucible and second Feeding passage is docked or is docked with the feeding inlet of injection mechanism.
In the preferred embodiment of the utility model, the quantitative feeding mechanism further includes preheating furnace and chute.It is described pre- The second end of second feeding passage is arranged in hot stove.The first end of the chute is connect with the discharge port of the preheating furnace, Its second end extends to the feeding inlet top of the injection mechanism.
In specific embodiment of the utility model, the preheating furnace is stainless steel tube continuous tunnel furnace.
In specific embodiment of the utility model, the chute is at right angles arranged, horizontal part and the preheating furnace pair It connects, vertical portion extends to the feeding inlet top of the injection mechanism.
Further, the horizontal component of the first end of the vertical portion of the chute and the chute is rotatablely connected, second end Above the feeding inlet of injection mechanism.
Further, the chute is externally provided with the heating for being kept the temperature to metallic aluminium, the magnesium alloy bar in chute Component.
The technical solution of the utility model is orderly fixed by Al alloys andMg alloys embryo material by using vibrating disk, the first feeding passage Be transported in the second feeding passage to marshalling, then by pusher cylinder by the embryo material of marshalling be sequentially sent in crucible into Row melt;And crucible can be rotated by rotating electric machine, so that the alloy soup stock of fusing is sent directly into injection mechanism, by Injection mechanism will carry out die casting in high temperature soup stock injection to die casting.The utility model can realize oneself of Al alloys andMg alloys embryo material Dynamic feeding, high production efficiency;Also, embryo material is sent using i.e. molten, and whole process protects soup stock without high-temperature smelting pot Temperature, effectively the saving energy, improve the safety of Al alloys andMg alloys Die Casting.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, the accompanying drawings in the following description is only It is some embodiments of the utility model, for those of ordinary skill in the art, in the premise not made the creative labor Under, the structure that can also be shown according to these attached drawings obtains other attached drawings.
Fig. 1 shows for the overall structure that the utility model Al alloys andMg alloys quantify the continuous rapid melting die cast device of embryo material It is intended to;
Fig. 2 is the structural schematic diagram of quantitative feeding mechanism and quick melt mechanism;
Fig. 3 is the structural schematic diagram of another embodiment of quantitative feeding mechanism;
The utility model aim is realized, the embodiments will be further described with reference to the accompanying drawings for functional characteristics and advantage.
Specific embodiment
The utility model proposes a kind of Al alloys andMg alloys to quantify the continuous rapid melting die cast device of embryo material.
Referring to Fig.1-2, Fig. 1 is that the utility model Al alloys andMg alloys quantify the continuous rapid melting die cast device of embryo material Overall structure diagram, Fig. 2 are the structural schematic diagram of quantitative feeding mechanism and quick melt mechanism.
As shown in Figs. 1-2, in the utility model embodiment, which quantifies the continuous rapid melting die casting of embryo material Molding machine includes: rack 100, die casting 200, injection mechanism 300, quantitative feeding mechanism 400 and quick melt mechanism 500。
Wherein, die casting 200 is arranged in rack 100, and the feeding inlet of die casting 200 is arranged in injection mechanism 300, And it is fixed in rack 100.
The first side of rack 100 is arranged in quantitative feeding mechanism 400 comprising vibrating disk 410, the first feeding passage 420, Second feeding passage 430 and pusher cylinder 440.First feeding passage 420 includes linear feeding portion and slope feeding portion, straight line The exit side of vibrating disk 410 is arranged in feed section, and slope feeding portion is connect with the first end of the second feeding passage 430.Pusher The first end of the second feeding passage 430 is arranged in cylinder 440.Second end the entering to injection mechanism 300 of second feeding passage 430 Extend above material mouth.
Second side of rack 100 is arranged in quick melt mechanism 500 comprising rotating electric machine 510 and electric cabinet 520.Rotation Rotating motor 510 is fixed in rack 100, and output end is equipped with rotary shaft 511.Electric cabinet 520 is arranged in rotary shaft 511, It is equipped with the supporting plate 521 extended to the second end of the second feeding passage 430, the end of supporting plate 521 is equipped with high frequency for heating Induction coil 522, radio-frequency induction coil 522 is interior to be equipped with crucible 523, when rotating electric machine 510 drives rotary shaft 511 to rotate, simultaneously Crucible 523 is driven to dock with the second feeding passage 430 or dock with the feeding inlet of injection mechanism 300.
When production, by vibrating disk 410 by after 600 marshalling of the good aluminium alloy of cutting of fixed quantity or magnesium alloy embryo material according to In secondary feeding the first feeding passage 420 and the second feeding passage 430.Meanwhile 520 band of electric cabinet is driven by rotating electric machine 510 Crucible 523 in dynamic radio-frequency induction coil 522 rotates, so that 523 mouthfuls of crucible are aligned with the second end of the second feeding passage 430; Then, it pushes the embryo material 600 in the second feeding passage 430 mobile by pusher cylinder 440, will be close to 523 mouthfuls of crucible of embryo material 600 It is pushed in crucible 523;Subsequently crucible 523 is driven to return just again by rotating electric machine 510, by the transformer in electric cabinet 520 Driving radio-frequency induction coil 522 heats the embryo material 600 in crucible 523, when solid embryo material 600 is fused into soup stock, rotation Rotating motor 510 drives crucible 523 to rotate again and docks with the feeding inlet of injection mechanism 300, and soup stock is sent into injection mechanism 300 It is interior, die casting will be carried out in high temperature soup stock injection to die casting 200 by injection mechanism 300.
The technical solution of the utility model is by using vibrating disk 410, the first feeding passage 420, the second feeding passage 430 And pusher cylinder 440 can realize the self-feeding of Al alloys andMg alloys embryo material 600, effectively improve the production effect of die casting 200 Rate;It may be implemented by the rotating electric machine 510, radio-frequency induction coil 522 and crucible 523 of quick melt mechanism 500 to embryo material 600 are melted and are sent, and whole process keeps the temperature soup stock without high-temperature smelting pot, effectively the saving energy, improve aluminium, magnesium The safety of alloy die cast production.
As shown in figure 3, the quantitative feeding mechanism 400 further includes preheating in the preferred embodiment of the utility model Furnace 450 and chute 460.The second end of the second feeding passage 430 is arranged in preheating furnace 450.The first end and preheating furnace of chute 460 450 discharge port connection, second end extend to the feeding inlet top of injection mechanism 300.Specifically, chute 460 is at right angles set It sets, horizontal part 461 is docked with preheating furnace 450, and vertical portion 462 extends to the feeding inlet top of injection mechanism 300.Preheating furnace 450 use stainless steel tube continuous tunnel furnace, and solid embryo material 600 can be processed into the semisolid embryo material 600 of solid-liquid admixture, from And the efficiency melted to embryo material 600 is improved, and improve the quality of soup stock.
Further, the first end of the vertical portion 462 of chute 460 and the horizontal part 461 of the chute 460 divide rotation connection, Its second end is located above the feeding inlet of injection mechanism 300.When needing for embryo material 600 to be sent into crucible 523, it is only necessary to which rotation is slipped The vertical portion 462 of slot 460, so that vertical portion 462 tilts down, to automatically fall into crucible 523.
Further, chute 460 is externally provided with adds for what is kept the temperature to metallic aluminium, the magnesium alloy bar in chute 460 Hot component (not shown).The heating component can be the heater strip being wrapped in outside chute 460 or be distributed in outside chute 460 plus Backing can also be the mechanism for heating of other forms.
The above is only the preferred embodiment of the present invention, and therefore it does not limit the scope of the patent of the utility model, Under all utility models in the utility model are conceived, equivalent structure made based on the specification and figures of the utility model Transformation, or directly/be used in other related technical areas indirectly and be included in the scope of patent protection of the utility model.

Claims (6)

1. a kind of Al alloys andMg alloys quantify the continuous rapid melting die cast device of embryo material, which is characterized in that including rack, die casting Mold, injection mechanism, quantitative feeding mechanism and quick melt mechanism;
The die casting is arranged in the rack, and the feeding inlet of die casting is arranged in the injection mechanism, and is fixed on In rack;
The first side of the rack is arranged in the quantitative feeding mechanism comprising vibrating disk, the first feeding passage, the second feeding Channel and pusher cylinder;First feeding passage includes linear feeding portion and slope feeding portion, the linear feeding part The exit side of vibrating disk is set, and the slope feeding portion is connect with the first end of second feeding passage;The pusher gas The first end of second feeding passage is arranged in cylinder;Pan feeding of the second end of second feeding passage to the injection mechanism Extend above mouthful;
Second side of the rack is arranged in the quick melt mechanism comprising rotating electric machine and electric cabinet;The electric rotating Machine is fixed in the rack, and output end is equipped with rotary shaft;The electric cabinet is arranged in the rotary shaft, which is provided with to The end of the supporting plate that the second end of second feeding passage extends, the supporting plate is equipped with radio-frequency induction coil for heating, It is equipped with crucible in the radio-frequency induction coil, when the rotating electric machine driving rotary shaft rotates, while crucible being driven to send with second The docking of material channel is docked with the feeding inlet of injection mechanism.
2. Al alloys andMg alloys as described in claim 1 quantify the continuous rapid melting die cast device of embryo material, which is characterized in that The quantitative feeding mechanism further includes preheating furnace and chute;The second end of second feeding passage is arranged in the preheating furnace; The first end of the chute is connect with the discharge port of the preheating furnace, and second end is prolonged to the feeding inlet top of the injection mechanism It stretches.
3. Al alloys andMg alloys as claimed in claim 2 quantify the continuous rapid melting die cast device of embryo material, which is characterized in that The preheating furnace is stainless steel tube continuous tunnel furnace.
4. Al alloys andMg alloys as claimed in claim 2 quantify the continuous rapid melting die cast device of embryo material, which is characterized in that The chute is at right angles arranged, and horizontal part is docked with the preheating furnace, and vertical portion is in the feeding inlet of the injection mechanism Fang Yanshen.
5. Al alloys andMg alloys as claimed in claim 4 quantify the continuous rapid melting die cast device of embryo material, which is characterized in that The first end of the vertical portion of the chute and the horizontal component of the chute are rotatablely connected, and second end is located at the injection mechanism Above feeding inlet.
6. the Al alloys andMg alloys as described in claim 2-5 any one quantify the continuous rapid melting die cast device of embryo material, It is characterized in that, the chute is externally provided with the heating component for being kept the temperature to metallic aluminium, the magnesium alloy bar in chute.
CN201821949196.9U 2018-11-22 2018-11-22 Al alloys andMg alloys quantify the continuous rapid melting die cast device of embryo material Withdrawn - After Issue CN209139797U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821949196.9U CN209139797U (en) 2018-11-22 2018-11-22 Al alloys andMg alloys quantify the continuous rapid melting die cast device of embryo material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821949196.9U CN209139797U (en) 2018-11-22 2018-11-22 Al alloys andMg alloys quantify the continuous rapid melting die cast device of embryo material

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109317641A (en) * 2018-11-22 2019-02-12 金雅豪精密金属科技(深圳)股份有限公司 Al alloys andMg alloys quantify the continuous rapid melting die cast device of embryo material

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109317641A (en) * 2018-11-22 2019-02-12 金雅豪精密金属科技(深圳)股份有限公司 Al alloys andMg alloys quantify the continuous rapid melting die cast device of embryo material
CN109317641B (en) * 2018-11-22 2024-01-16 金雅豪精密金属科技(深圳)股份有限公司 Continuous and rapid melting die casting forming device for aluminum and magnesium alloy quantitative blanks

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Granted publication date: 20190723

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