CN101966560B - Bottom casting system of strip sectional inner runners - Google Patents
Bottom casting system of strip sectional inner runners Download PDFInfo
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- CN101966560B CN101966560B CN2010102850943A CN201010285094A CN101966560B CN 101966560 B CN101966560 B CN 101966560B CN 2010102850943 A CN2010102850943 A CN 2010102850943A CN 201010285094 A CN201010285094 A CN 201010285094A CN 101966560 B CN101966560 B CN 101966560B
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Abstract
The invention discloses a bottom casting system of strip sectional inner runners, and belongs to the technical field of casting. The conventional casting system causes high sand-iron ratio, shrinkage cavity and shrinkage porosity defects and casting scraps by using a ceramic pipe as an inner runner. The system comprises a straight runner, a transverse runner, at least two inner runners and a die cavity which are communicated, wherein the transverse runner and the inner runners are positioned below the die cavity; and the inner runners are vertical and communicated with the transverse runner from the bottom of the die cavity. The system is characterized in that: the inner runners have strip cross sections formed by casting sand. The inner runners have strip sections so that the section area of the inner runners can be enlarged and the casting speed of large castings is ensured; the inner runners are made of casting sand, so the production cost can be reduced, breaking and cracking are not caused during use, and casting scraps are avoided; and the cross sections of the inner runners have high length-width ratio and few contact heat sections, so shrinkage cavity and shrinkage porosity defects at the contact part are avoided.
Description
Technical field
The invention belongs to casting technology field, specifically is the bottom gating of belt section ingate.
Background technology
In foundry engieering, molten metal is injected passage of needs in the die cavity, be referred to as running gate system usually.Running gate system generally is made up of sprue, cross gate, ingate.Heavy castings often adopt bottom gating, are about to molten metal and inject die cavity from the bottom of die cavity, and it is steady that this running gate system is filled type, is difficult for producing turbulent flow and splash phenomena.The method of offering of the ingate of bottom gating earthenware commonly used in actual production is introduced die cavity as ingate with molten metal.The cross section of earthenware is annular, has following shortcoming during use: the 1. limited size of ingate sectional area, the heavy castings more than the 10T in order to guarantee poring rate, are needed to use the earthenware of a greater number, and it is bigger to take up space, and causes placer iron than high; 2. earthenware increases production cost on the one hand as ingate, can cause because of the porcelain tube quality problems on the other hand crushing and cracking phenomenon in use to occur, can cause foundry goods to scrap when serious; 3. the position that on foundry goods, contacts with porcelain tube is prone to cause shrinkage cavity, shrinkage defect.
Summary of the invention
The technical problem that the present invention will solve and the technical assignment of proposition be overcome existing running gate system use placer iron that porcelain tube causes as ingate than high, be prone to the shortcoming that causes shrinkage cavity and shrinkage defect and foundry goods to scrap, a kind of bottom gating of belt section ingate is provided.
For solving the technical problem that the present invention proposes; The technical scheme that the bottom gating of belt section ingate of the present invention adopts is: it comprises sprue, the cross gate of connection, at least two ingates, die cavity; Described cross gate, ingate are positioned at the below of said die cavity; Described ingate is vertical and is communicated with described cross gate from the bottom of said die cavity, it is characterized in that described ingate forms ribbon-like cross section by molding sand; Described cross gate is circular, and described ingate is evenly arranged along cross gate; The centre of said cross gate is provided with and is positioned at diametric first connected channel of cross gate; Lead to second connected channel from the middle part of this first connected channel; This second connected channel connects the lower end of said sprue, and the two ends of said first connected channel are communicated with cross gate; The lower end of said ingate is communicated with described cross gate through connectedness.
As the optimization technique measure, the length-width ratio of said ingate cross section is 3-12:1.
As the optimization technique measure, it is big that the width of said ingate cross section becomes from bottom to top gradually, and the length of said ingate cross section diminishes from bottom to top gradually.
The present invention is designed to belt section with ingate, can increase the ingate sectional area, be beneficial to the poring rate that guarantees heavy castings, and placer iron is than low; This ingate is formed by molding sand, can reduce production costs, and in use crushing and cracking phenomenon can not occur, avoids foundry goods to scrap; The length of this ingate cross section and wide large percentage, the contact thermal center is less, avoids the contact site to cause shrinkage cavity, shrinkage defect, and ingate quantity can be less during use, and is simple to operate.
Description of drawings
Fig. 1 is a facade cross-sectional schematic of the present invention.
Fig. 2 is that A-A among Fig. 1 is to cutaway view.
Label declaration among the figure: 1-sprue, 2-cross gate, 3-ingate, 4-die cavity, 5-first connected channel, 6-second connected channel, 7-connectedness, the length of L-cross section, the width of D-cross section.
The specific embodiment
The present invention is further specified through a preferred embodiment below in conjunction with Figure of description.
The bottom gating of belt section ingate of the present invention; Like Fig. 1, shown in 2; It comprises the sprue 1, cross gate 2 of connection, at least two ingates 3, die cavity 4; Cross gate 2, ingate 3 are positioned at the below of die cavity 4, and ingate 3 is vertical and is communicated with cross gate 2 from the bottom of die cavity 4, and ingate 3 forms ribbon-like cross section by molding sand.Described ribbon-like cross section is meant the width D of the length L of cross section greater than cross section; Especially the length-width ratio of ingate cross section (being the ratio of width D of length L and the cross section of cross section) is 3:1 to 12:1; During practical implementation; This cross section can be the part of annular as shown in Figure 2, also can be rectangular.Further; In order to make molten metal can inject die cavity uniformly, cross gate 2 is circular, and ingate 3 is evenly arranged along cross gate 2; Especially the centre of cross gate 2 is provided with and is positioned at cross gate 2 diametric first connected channels 5; Lead to second connected channel 6 from the middle part of this first connected channel 5, this second connected channel 6 connects the lower end of sprue 1, and the two ends of first connected channel 5 are communicated with cross gate 2.For easy to operate and manufacturing casting mold, the lower end of ingate 3 is communicated with cross gate 2 through connectedness 7.In order to guarantee that molten metal hangs down flow velocity, big flow injects die cavity, it is big that the width D of ingate cross section becomes from bottom to top gradually, and the length L of said ingate cross section diminishes from bottom to top gradually.
During cast, molten metal gets into die cavity through sprue, second connected channel, first connected channel, cross gate, connectedness, ingate, forms foundry goods behind the crystallisation by cooling.Owing to adopted the ingate of belt section, increased the ingate sectional area, be beneficial to the poring rate that guarantees heavy castings, and placer iron is than low; This ingate is formed by molding sand, can reduce production costs, and in use crushing and cracking phenomenon can not occur, avoids foundry goods to scrap; The length of this ingate cross section and wide large percentage, the contact thermal center is less, avoids the contact site to cause shrinkage cavity, shrinkage defect, and ingate quantity can be less during use, and is simple to operate.
Claims (3)
1. the bottom gating of belt section ingate; The sprue (1), cross gate (2), at least two ingates (3), the die cavity (4) that comprise connection; Described cross gate (2), ingate (3) are positioned at the below of said die cavity (4); Described ingate (3) is vertical and is communicated with described cross gate (2) from the bottom of said die cavity (4), it is characterized in that described ingate (3) forms ribbon-like cross section by molding sand; Described cross gate (2) is circular, and described ingate (3) is evenly arranged along cross gate (2); The centre of said cross gate (2) is provided with and is positioned at diametric first connected channel of cross gate (2) (5); Lead to second connected channel (6) from the middle part of this first connected channel (5); This second connected channel (6) connects the lower end of said sprue (1), and the two ends of said first connected channel (5) are communicated with cross gate (2); The lower end of said ingate (3) is communicated with described cross gate (2) through connectedness (7).
2. the bottom gating of belt section ingate according to claim 1 is characterized in that the length-width ratio of said ingate (3) cross section is 3:1-12:1.
3. the bottom gating of belt section ingate according to claim 1 and 2; The width (D) that it is characterized in that said ingate (3) cross section becomes big from bottom to top gradually, and the length (L) of said ingate (3) cross section diminishes from bottom to top gradually.
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CN2010102850943A CN101966560B (en) | 2010-09-15 | 2010-09-15 | Bottom casting system of strip sectional inner runners |
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CN2010102850943A CN101966560B (en) | 2010-09-15 | 2010-09-15 | Bottom casting system of strip sectional inner runners |
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CN101966560B true CN101966560B (en) | 2012-07-18 |
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Families Citing this family (5)
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CN104289675A (en) * | 2013-07-16 | 2015-01-21 | 天津航天机电设备研究所 | Bridge type multipoint synchronous pouring and casting mechanism for large castings |
CN103586415A (en) * | 2013-11-07 | 2014-02-19 | 中国南方航空工业(集团)有限公司 | Pouring system |
CN104014742A (en) * | 2014-05-09 | 2014-09-03 | 大连理工大学 | Casting process and casting mould of large propeller hub body |
CN106216607B (en) * | 2016-09-26 | 2018-03-13 | 贵州开磷机电装备工程有限责任公司 | A kind of casting bottom pouring system |
CN107803467B (en) * | 2017-10-31 | 2019-02-22 | 共享铸钢有限公司 | A kind of running gate system of large size valve casing class steel-casting |
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CN201815628U (en) * | 2010-09-15 | 2011-05-04 | 浙江佳力风能技术有限公司 | Bottom gating system with ingates in strip-shaped cross sections |
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JPS57130738A (en) * | 1981-02-04 | 1982-08-13 | Toyota Motor Corp | Casting plan for differential case |
JP5567331B2 (en) * | 2006-04-19 | 2014-08-06 | ホーメット コーポレーション | Continuous mold filling method, mold assembly and casting |
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US4693292A (en) * | 1984-06-02 | 1987-09-15 | Cosworth Research And Development Limited | Casting of metal articles |
CN2159839Y (en) * | 1992-08-21 | 1994-03-30 | 林赐安 | Casting mould head for stainless steel golf ball head |
CN1765545A (en) * | 2004-10-29 | 2006-05-03 | 中国科学院金属研究所 | The preparation method of wrought magnesium alloy large piece blank |
JP2009214166A (en) * | 2008-03-12 | 2009-09-24 | Honda Motor Co Ltd | Multi-cavity mold |
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