CN105382217B - Take the Aluminium ingot mould of pore-forming - Google Patents

Take the Aluminium ingot mould of pore-forming Download PDF

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Publication number
CN105382217B
CN105382217B CN201510827539.9A CN201510827539A CN105382217B CN 105382217 B CN105382217 B CN 105382217B CN 201510827539 A CN201510827539 A CN 201510827539A CN 105382217 B CN105382217 B CN 105382217B
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China
Prior art keywords
mold slots
crossbeam
module
aluminium ingot
along
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Expired - Fee Related
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CN201510827539.9A
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Chinese (zh)
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CN105382217A (en
Inventor
喻修培
罗昭渝
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Chongqing Yanmei S & T Co Ltd
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Chongqing Yanmei S & T Co Ltd
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Priority to CN201510827539.9A priority Critical patent/CN105382217B/en
Publication of CN105382217A publication Critical patent/CN105382217A/en
Application granted granted Critical
Publication of CN105382217B publication Critical patent/CN105382217B/en
Expired - Fee Related legal-status Critical Current
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Abstract

The invention discloses a kind of Aluminium ingot mould for taking pore-forming, it is characterized in that including mold slots and module, downward depression of the mold slots bottom provided with upper arrangement along its length, one lateral edges of mold slots are along its length provided with the skid assemblies alignd one by one with number of depressions identical and with depression, the slideway that skid assemblies are blocked by the two relative lower ends stretched along mold slots depth direction by limited block is constituted, stretch between the slideway of each skid assemblies provided with spill spin block, spill spin block the inner is provided with the axle coordinated with its two side slideway, spill spin block outer end is connected with crossbeam by upward contiguous block, crossbeam falls to normal price in mold slots along upper, crossbeam two ends are provided with and lean out edge and the impact end of contiguous block in mold slots, module is connected to below the crossbeam;Module of the present invention is placed in above mold slots by crossbeam, and corresponding hole can be formed above aluminium ingot by pouring module after aluminium alloy solution.

Description

Take the Aluminium ingot mould of pore-forming
Technical field
The present invention relates to the fin that a kind of aluminium alloy extruded section steel cutting makes, more particularly to a kind of pore-forming that takes Aluminium ingot mould.
Background technology
China is industrial power, and as economy is become stronger day by day, society is fast-developing, and all trades and professions new technologies and materials are continuous Ground emerges in large numbers, wherein one of aluminium alloy, and it has excellent mechanical performance and chemical property, is widely used in various fields, Demand is huge, substantial amounts of aluminium ingot raw material is needed in aluminium alloy production process, these aluminium ingots are after factory is molded toward contact Need to be transported to other factories and be processed further, be easy to handling to move during in order to transport, be typically all that aluminium ingot is intersected into layer stackup Pile piles up into pile, and then binding is loaded and unloaded with fork truck, and efficiency high is piled up neatly, when larger because vehicular motion road bumps are tilted, Aluminium ingot pile interlayer is easy to sliding and produces distortion inclination, in order to improve the stability of aluminium ingot pile, it is necessary to be processed on aluminium ingot Hole is put for positioning and stacked, but different from die casting aluminium ingot mould with open upper shed, it is impossible in the above Hole is formed, this still awaits technology solution.
The content of the invention
In order to solve the above problems, the invention provides a kind of Aluminium ingot mould for taking pore-forming.
The technical solution adopted by the present invention is:A kind of Aluminium ingot mould for taking pore-forming, it is characterised in that including mold slots and Module, downward depression of the mold slots bottom provided with upper arrangement along its length a, lateral edges of mold slots are provided with along its length With number of depressions identical and with the skid assemblies alignd one by one of being recessed, skid assemblies are by two phases being stretched along mold slots depth direction To the slideway that is blocked by limited block of lower end constitute, stretch between the slideway of each skid assemblies and be provided with spill spin block, spill spin block the inner is set There is the axle coordinated with its two side slideway, spill spin block outer end is connected with crossbeam by upward contiguous block, and crossbeam falls to normal price in mold slots On along upper, crossbeam two ends are provided with edge and the impact end of contiguous block in mold slots is leant out, and module is connected to below the crossbeam, module number It is identical with number of depressions and with depression align one by one, the projection for being stuck in mold slots both sides outer is arranged below in crossbeam, and crossbeam is remote Ring is connected with above contiguous block side.
Further, along the gap for being provided with spacing crossbeam in the mold slots.
Further, the mold slots two ends are connected to axle.
Further, the mold slots two ends are connected on axle, axle and are connected with rocking arm.
Further, institute's module and depression are revolving body.
Further, the module and depression longitudinal cross-section are trapezoidal.
Module of the present invention is placed in above mold slots by crossbeam, and pouring module after aluminium alloy solution can be square on aluminium ingot Into corresponding hole, positioning during for stacking, impact crossbeam two ends impact end can depart from module after metallic solution cooling Aluminium ingot, upward activity surplus can be provided for crossbeam by beaing crossbeam two ends impact end skid assemblies, conveniently stripped, after the module demoulding Crossbeam may be reversed to slideway side, be easy to aluminium ingot to depart from mold slots, be hung when the ring on crossbeam can be used for turning beam with instrument Connect, prevent from scalding one's hand, beat crossbeam two ends impact end can also produce vibration make aluminium ingot be easier to mold slots disengaging.
Brief description of the drawings
Fig. 1 is overall structure diagram of the embodiment of the present invention.
Fig. 2 implements decomposition texture schematic diagram for the present invention.
Reference:1 mold slots;2 modules;3 depressions;4 limited blocks;5 slideways;6 spill spin blocks;7 axles;8 contiguous blocks;9 crossbeams; 10th, 11 impact end;12 is raised;13 rings.
Embodiment
As shown in Figure 1, 2, the Aluminium ingot mould for taking pore-forming is provided with mold slots 1 and module 2, mold slots to the embodiment of the present invention Downward depression 3 of the bottom provided with upper arrangement along its length, the present embodiment depression is three, specifically can stack horizontal stroke according to aluminium ingot Vertical quantity determines that a lateral edges of mold slots are along its length provided with the cunning alignd one by one with number of depressions identical and with depression Road group, the structure of slideway 5 that each skid assemblies are blocked by the two relative lower ends stretched along mold slots depth direction by limited block 4 Into stretching into and spill spin block 6 be provided between the slideway of each skid assemblies, spill spin block the inner is provided with the axle 7 coordinated with its two side slideway, spill spin block Outer end is connected with crossbeam 9 by upward contiguous block 8, and crossbeam falls to normal price in mold slots along upper, and crossbeam two ends are provided with leaning out mould Edge and the impact end of contiguous block 10,11 on groove, module are connected to below the crossbeam, and the present embodiment is the formula connection that is fixed as one, and is implemented When can also split it is movable connection in order to change, module number it is identical with number of depressions and be recessed align one by one, crossbeam The projection 12 for being stuck in mold slots both sides outer is arranged below, makes module position more accurate for spacing, crossbeam is away from contiguous block one Ring 13 is connected with above side, is easy to switching action.
Module of the present invention is placed in above mold slots by crossbeam, and cast aluminium alloy solution rear mold block can be above aluminium ingot Corresponding hole is formed, positioning during for stacking, impact crossbeam two ends impact end can take off module after metallic solution cooling From aluminium ingot, upward activity surplus can be provided for crossbeam by beaing crossbeam two ends impact end skid assemblies, conveniently stripped, the module demoulding Rear cross beam may be reversed to slideway side, be easy to aluminium ingot and mold slots to depart from, when the ring on crossbeam can be used for turning beam and instrument Mounting, prevent from scalding one's hand, beat crossbeam two ends impact end can also produce vibration make aluminium ingot be easier to mold slots disengaging, output product fold Interlayer can be coordinated by the projection and depression of shaping during pile, made into and more stable after pile be difficult to be scattered.
, can be in mold slots along the gap for being provided with spacing crossbeam, more pinpoint module position during implementation;Can be in mold slots Two ends are connected to axle, for being connected with support, and rocking arm can be also connected with axle and is easy to upset;Module and depression can be back Swivel as shown in the Examples, or module and depression longitudinal cross-section it is trapezoidal, be prismatoid.
It is only present pre-ferred embodiments in summary, all equivalent modification done according to the application and prior art additions are equal It is considered as the technology of the present invention category.

Claims (4)

1. a kind of Aluminium ingot mould for taking pore-forming, it is characterised in that including mold slots and module, mold slots bottom is provided with along length side The downward depression arranged upwards, lateral edges of mold slots be provided with along its length with number of depressions identical and with depression one The skid assemblies of one alignment, the cunning that skid assemblies are blocked by the two relative lower ends stretched along mold slots depth direction by limited block Road is constituted, and is stretched between the slideway of each skid assemblies provided with spill spin block, spill spin block the inner is provided with the axle coordinated with its two side slideway, rotation Block outer end is connected with crossbeam by upward contiguous block, and crossbeam falls to normal price in mold slots along upper, and crossbeam two ends are provided with leaning out mould Edge and the impact end of contiguous block on groove, module are connected to below the crossbeam, and module number is identical with number of depressions and with being recessed one by one Alignment, crossbeam is arranged below the projection for being stuck in mold slots both sides outer, and crossbeam is away from being connected with ring on above contiguous block side; Along the gap for being provided with spacing crossbeam in the mold slots;The mold slots two ends are connected to axle.
2. the Aluminium ingot mould according to claim 1 for taking pore-forming, it is characterised in that the mold slots two ends are connected respectively Have and be connected with rocking arm on axle, axle.
3. the Aluminium ingot mould according to claim 1 for taking pore-forming, it is characterised in that the module and depression are revolution Body.
4. the Aluminium ingot mould according to claim 1 for taking pore-forming, it is characterised in that the module and depression longitudinal cross-section It is trapezoidal.
CN201510827539.9A 2015-11-25 2015-11-25 Take the Aluminium ingot mould of pore-forming Expired - Fee Related CN105382217B (en)

Priority Applications (1)

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CN201510827539.9A CN105382217B (en) 2015-11-25 2015-11-25 Take the Aluminium ingot mould of pore-forming

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Application Number Priority Date Filing Date Title
CN201510827539.9A CN105382217B (en) 2015-11-25 2015-11-25 Take the Aluminium ingot mould of pore-forming

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CN105382217A CN105382217A (en) 2016-03-09
CN105382217B true CN105382217B (en) 2017-10-13

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Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109434042B (en) * 2019-01-14 2020-12-04 江西万泰铝业有限公司 Aluminum ingot mold easy to demold

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB896523A (en) * 1959-10-13 1962-05-16 British Aluminium Co Ltd Improvements in or relating to ingots and like cast articles and method of stacking same
US3352648A (en) * 1965-01-29 1967-11-14 Kennecott Copper Curporation Self-palletizing, interlocking, copper ingot
CN2792653Y (en) * 2005-06-02 2006-07-05 三门峡三星铝业模具有限公司 Aluminium ingot mould
CN201030422Y (en) * 2007-04-17 2008-03-05 张华� Aluminum ingot casting mould
CN205270786U (en) * 2015-11-25 2016-06-01 重庆盛镁镁业有限公司 Take aluminium ingot mould of pore -forming

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB896523A (en) * 1959-10-13 1962-05-16 British Aluminium Co Ltd Improvements in or relating to ingots and like cast articles and method of stacking same
US3352648A (en) * 1965-01-29 1967-11-14 Kennecott Copper Curporation Self-palletizing, interlocking, copper ingot
CN2792653Y (en) * 2005-06-02 2006-07-05 三门峡三星铝业模具有限公司 Aluminium ingot mould
CN201030422Y (en) * 2007-04-17 2008-03-05 张华� Aluminum ingot casting mould
CN205270786U (en) * 2015-11-25 2016-06-01 重庆盛镁镁业有限公司 Take aluminium ingot mould of pore -forming

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Granted publication date: 20171013

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