2016年6月15日星期三

Furan resin sand molding coating selection



High quality casting coating should sand adhesion resistant ability, coating does not peel off, can obtain a smooth surface of casting. Thin type, core coating capable of forming a layer having the physical strength of the hard shell, can independently withstand high temperature impact, isolation and barrier function.

Furan resin sand molding characteristics, the casting thin sections use a water-based graphite coating, in casting thick parts, guiding parts of alcohol-based zircon powder coating.
Furan resin sand molding and pouring system for the application of refractory brick
Resin sand modeling has its advantages, but also has its weaknesses, namely the poor thermal stability, high strength, resistance to high temperature low flushing time is short, especially the gating system position, was a long time high temperature erosion is easy to fall off, causing the casting defects such as voids and sand.
The high temperature resistant material S.X as the basic material, with several refractoriness high powder ( powder quartz,zircon powder, high bauxite powder) as aggregate, L.X as binder, using chemical reaction from the hard, form a desired shape and size, with enough strength and rigidity of the gating system.

The gating system of high temperature resistant, can bear high temperature erosion, work up to a temperature of 1400DEG C, especially for major pieces of resin sand casting system; have sufficient strength and rigidity, in molding and core making process does not change the shape size, in operation is not easy to be damaged, do not need to be inserted nails, paint brush, simple operation; simplify the gating system design process, without the gate core, can save the outer core head and a core box; easy to control the internal dimension, inner surface smooth, do not hinder the rapid flow of after pouring molten iron; leave no residue, easy sand reclamation.

Furan resin sand molding production casting shape from simple to complex cylinder flange, castings from a few kilograms to more than 80tons of machine work, more than 130 tons of steel ingot mould, moulding method with samples of moulding, also has a core assembly molding. Furan resin sand molding production out of high precision casting size, outline clear,the inherent quality to meet the design requirements.

Because of the worldwide range of environmental crisis, the energy crisis and increasingly fierce competition in the market,forcing the foundry industry is constantly seeking to environmental protection and energy saving, high efficiency green casting. Furan resin sand properties make it applied widely more and more, has been worldwide accepted by most foundry enterprises.


鋳造の基本知識 (鋳造法, 砂型鋳造法, 生型鋳造法, Vプロセス, 遠心鋳造法, 石膏鋳造法, 耐熱シリコン型鋳造法, 精密鋳造法, 金型鋳造法, 連続鋳造法)

鋳造の基本知識

鋳造とは

自動車のタイヤホイール
鋳造というのはつくりたい製品の形をした型を使いながら、鉄や銅、アルミニウム合金などを溶かした液体を流し込んで金属製品をつくる技術です。そこで用いる型を鋳型(いがた)といい、その材質により金型?砂型?石膏型などさまざまな種類があります。鋳造は工具を使って削っていく切削(せっさく)などの工法に比べて複雑なものを、型を用いることで簡単につくることができます。古来では大仏や南部鉄瓶、現在だと自動車のタイヤホイール、シリンダーブロックエンジンなどが鋳造で製作されてきました。また、部品などの量産にも向いている技法です。

鋳造の種類について

鋳物製造の工法には多種ありますが、ここでは銑鉄鋳物をつくる際に使われる方法を紹介します。
 特徴メリット
フルモールド
鋳造法
発泡スチロールで製作した型を砂のなかに埋め込み、そこに溶湯(液体状の金属)を流し入れて鋳物をつくる工法。溶湯の熱によって、発泡スチロールが気化し、溶湯と置き換えられて鋳物ができる仕組み。
  • 鋳型の分割?合わせなどの作業工程がないため短期間での製作が可能。
  • 鋳型合わせがないためバリ(溶湯が流れ出てできる突出物)の発生がなく、仕上がりの加工が簡単。
  • 砂に混在物がないため、簡単な砂処理装置を使えるため低コストでできる。
生型鋳造法生土を使って模型をつくる工法。珪砂?粘土(ベントナイト)?水?離型剤などを混ぜていく。部品などの大量生産の工場で使われている。
  • 型から鋳物が簡単に取り出せる。
  • 低コストで製作でき有毒ガスが発生しない。
  • 砂を繰返し使うことができる。
Vプロセス水?粘結剤などの添加剤を含まない珪砂と薄いプラスチックフィルムでつくる工法。砂型内を真空状態にするだけで強度の高い鋳物ができます。
  • 型をつくる際に騒音?振動を抑えられる。
  • ガス発生が少なく、 環境面での害が緩和される。
  • 砂に混在物がないため、簡単砂処理装置で再利用が可能。
遠心鋳造法遠心力を利用して中子(なかご)なしで円筒状の鋳物を製造する方法。横型と縦型の2つの方式があり、長い管には横型、短い場合には縦型が用いられる。
  • 中子を使わずに鋳物が製作できる。
  • 木型を必要としないのでコストが抑えられる。
  • 砂型鋳造品に比べ、成分組織が緻密で均一になる。
  • ガスが抜けるため、砂型鋳造よりも鋳巣(内部にできる空洞)ができにくい。
砂型鋳造法金属を溶かして液体状(溶湯)にし、砂で作った型に流し込んで作る製造法。流し込むことによって製作するので、自由曲線の多い製品に向いています。砂型鋳造は、1個あたりの製品費用は高くなるものの、金型に比べて型費はかからないため、大量生産の製品よりも試作品や小ロット生産品に適しています。
  • 大きな鋳造物が成形できる。
  • 型作成のコストが金型に比べて安い。
  • 準備期間が短時間で済む。
  • 大量生産の製品には適さない
石膏鋳造法金型を使わない鋳造法の1つです。石膏で型を作り鋳造します。自由度の高い形状や優れた鋳肌の仕上がりになるのはもちろん、金型が不要なためコスト面も抑えられます。大量生産には不向きですが、試作品?単品から小ロットの製作が最適領域です。
  • 金型不要で精密鋳造を実現できる。
  • 小ロット製品の製作に最適である。
  • 短期間?短納期で鋳造品を製作できる。
  • 大量生産の製品には適さない。
耐熱シリコン型鋳造法ケイ素を元につくられた人工化合物であるシリコン型を作ってその中にマテリアル(原材料)を流し込むことによって製品を成型する方法です。主に低融点合金の鋳造に用いられます。また、シリコン型はコピー能力に優れているため、量産を目的とした特殊耐熱シリコンも開発されています。
  • 低融点合金の鋳造に適している。
  • 大量生産に優れている。
  • 耐熱性が高く、250度の熱にも耐えられる。
精密鋳造法精密鋳造とは鋳型として金型を使用せず、砂型鋳造法などの普通鋳造法よりも格段に高い寸法精度と美しい鋳肌の製品が作れる鋳造法です。代表的な工法はロストワックス法と言われるもので、ロウでつくった型にコーティングを施し、その後ロウを溶かすことによって鋳型を得ます。形状?材質が自由自在な加工方法です。
  • 完全な一体鋳型なため、複雑な形状でも高い寸法精度を確保できる。
  • 形状?材質を問わない自由な工法が可能である。
  • 複数部品の組立や溶接した製品の一体化ができるため、部品点数を削減でき、コストダウンを図れる。
金型鋳造法鋳鉄や耐熱合金鋼でつくられた鋳型で成型する方法です。砂型鋳造に比べて鋳造時の冷却速度が早く、鋳肌?寸法精度のいい緻密な鋳物製作が可能。自動車用のブレーキ部品、NC旋盤用高速回転シリンダーなど耐圧性、高強度が要求される製品にこの方式が多く用いられています。
  • 砂型鋳造に比べ冷却スピードが早く、緻密で機械的性質に優れた鋳物を製造できる。
  • 金型を用いるため、寸法精度がよい。
  • 金型の製作に費用がかかるため、小ロットの製品よりも大量生産品に向いている
連続鋳造法材料を溶かして連続的に鋳型に注ぎ、鋳型内で急速冷却して半製品を取り出す鋳造法です。鉄鋼の生産で主に利用され、「連鋳(れんちゅう)」と省略形でも呼ばれている。大量生産に向いており、生産性の向上とコスト削減が期待できる工法でもある。
  • 大量生産に向いている。
  • 生産性が高く、コスト削減が期待できる。
  • 試作品や小ロット製品には向かない。

Aluminium Casting Way- Sand Casting,Die Casting,Gravity Casting,High Pressure Die Casting gdfulian 发表于 2016-5-23 7:22:26 |

Aluminium Casting Techniques - Sand Casting and Die Casting Processes


Topics Covered

Background
Gravity Casting
High Pressure Die Casting
Low Pressure Die Casting
Vacuum Die Casting
Squeeze Casting or Squeeze Forming
Conclusions

Background

Aluminium casting processes are classified as Ingot casting or Mould casting. During the first process, primary or secondary aluminium is cast into rolling ingot (slab), extrusion ingot (billet) and wire bar ingot which are subsequently transformed in semi- and finished products.
The second process is used in the foundries for producing cast products. This is the oldest and simplest (in theory but not in practice) means of manufacturing shaped components.
This section describes exclusively Mould casting which can be divided into two main groups :
?         Sand casting
?         Die casting
Other techniques such as "lost foam" or "wax pattern" processes are also used but their economical importance is considerably lower than both listed techniques.

Sand Casting

In sand casting, re-usable, permanent patterns are used to make the sand moulds. The preparation and the bonding of this sand mould are the critical step and very often are the rate-controlling step of this process. Two main routes are used for bonding the sand moulds:
?         The "green sand" consists of mixtures of sand, clay and moisture.
?         The "dry sand" consists of sand and synthetic binders cured thermally or chemically.
The sand cores used for forming the inside shape of hollow parts of the casting are made using dry sand components.
This versatile technique is generally used for high-volume production. An example of half sand mould is given in Figure 1.
AZoM - Metals, ceramics, polymers and composites : Aluminium sand Casting Techniques

Figure 1. Half mould with cores and an example of a cast air intake for a turbocharger.
Normally, such moulds are filled by pouring the melted metal in the filling system. Mould designing is a particularly complex art and is based on the same principle as gravity die casting illustrated in Figure 4.
In the "low pressure" sand casting technique, the melted metal is forced to enter the mould by low pressure difference. This more complicated process allows the production of cast products with thinner wall thickness.

Die Casting

In this technique, the mould is generally not destroyed at each cast but is permanent, being made of a metal such as cast iron or steel. There are a number of die casting processes, as summarised in Figure 2. High pressure die casting is the most widely used, representing about 50% of all light alloy casting production. Low pressure die casting currently accounts for about 20% of production and its use is increasing. Gravity die casting accounts for the rest, with the exception of a small but growing contribution from the recently introduced vacuum die casting and squeeze casting process.
AZoM - Metals, ceramics, polymers and composites : Aluminium die Casting Techniques
Figure 2. Classifications of die casting processes.

Gravity Casting

A schematic view in Figure 3 shows the main parts constituting a classical mould for gravity die casting. Cores (inner parts of the mould) are generally made of bonded sand.
AZoM - Metals, ceramics, polymers and composites : Aluminium Gravity Die Casting Techniques
Figure 3. Schematic view of the components of a casting mould (gravity die casting).
Gravity die casting is suitable for mass production and for fully mechanised casting.

High Pressure Die Casting

In this process, the liquid metal is injected at high speed and high pressure into a metal mould. A schematic view of high pressure die casting is given in Figure 4.
AZoM - Metals, ceramics, polymers and composites : Aluminium high pressure dieCasting Techniques
Figure 4. Schematic view of a high pressure die casting machine.
This equipment consists of two vertical platens on which bolsters are located which hold the die halves. One platen is fixed and the other can move so that the die can be opened and closed. A measured amount of metal is poured into the shot sleeve and then introduced into the mould cavity using a hydraulically-driven piston. Once the metal has solidified, the die is opened and the casting removed.
In this process, special precautions must be taken to avoid too many gas inclusions which cause blistering during subsequent heat-treatment or welding of the casting product.
Both the machine and its dies are very expensive, and for this reason pressure die casting is economical only for high-volume production.

Low Pressure Die Casting

As schematised in Figure 5, the die is filled from a pressurised crucible below, and pressures of up to 0.7 bar are usual. Low-pressure die casting is especially suited to the production of components that are symmetric about an axis of rotation. Light automotive wheels are normally manufactured by this technique.
AZoM - Metals, ceramics, polymers and composites : Aluminium low pressure die Casting Techniques
Figure 5. Schematic view of a low pressure die casting machine.

Vacuum Die Casting

The principle is the same as low-pressure die casting. The pressure inside the die is decreased by a vacuum pump and the difference of pressure forces the liquid metal to enter the die. This transfer is less turbulent than by other casting techniques so that gas inclusions can be very limited. As a consequence, this new technique is specially aimed to components which can subsequently be heat-treated.

Squeeze Casting or Squeeze Forming

As shown in Figure 6, liquid metal is introduced into an open die, just as in a closed die forging process. The dies are then closed. During the final stages of closure, the liquid is displaced into the further parts of the die. No great fluidity requirements are demanded of the liquid, since the displacements are small. Thus forging alloys, which generally have poor fluidities which normally precludes the casting route, can be cast by this process.
AZoM - Metals, ceramics, polymers and composites : Aluminium squeeze Casting/squeeze forming Techniques
Figure 6. The squeeze casting principle.
This technique is especially suited for making fibre-reinforced castings from fibre cake preform. Squeeze casting forces liquid aluminium to infiltrate the preform. In comparison with non-reinforced aluminium alloy, aluminium alloy matrix composites manufactured by this technique can double the fatigue strength at 300°C. Hence, such reinforcements are commonly used at the edges of the piston head of a diesel engine where solicitations are particularly high.

Conclusions

Aluminium castings are very powerful and versatile techniques for manufacturing semi- or finished products with intricate shapes. Those techniques are continuously improved and developed to satisfy the user needs and to penetrate new markets.
Innovations are mainly oriented to the automobile sector which is the most important market for castings. This continual improvement and development will ensure that aluminium castings continue to play a vital role in this field.



Source: European Aluminium Association.

One photo tells you the difference of sand molding casting,Investment, Hot Forging, Loss Wax Casting Investment, Centrifugal Casting

Sand cast (like use following sand binder: No-bake furan resin, alkaline phenolic resin, cold box resin, hot box resin, bentonite)




Gravity Die Casting




Investment / Loss Wax Casting


Centrifugal Casting
Hot Forging


Low-Pressure Die Casting

Furan resin factory in China.

Furan resin factory in China. 

Following is a short introduction of one professional manufacturer of  foundry use molding materials, like no bake furan resin, alkaline phenolic resin, cold box resin, hot box resin, resin coated sand, casting coating, curing agent, catalyst, sand core binder. This company is the largest  supplier in South China. 



ZHUHAI DOUMEN FULIAN MOLDING MATERIALS INDUSTRY CO., LTD

Founded in 1993, Zhuhai Doumen Fulian Molding Materials Industries CO., LTD. is a well-known national enterprise specialized in foundry molding materials research, development and manufacture, and honored with National Advanced Technology Enterprise, Province Science and Technology Center. We are also obtaining the council membership certificate of China Foundry Association and Committee Member of National Technical Committee on Casting of Standardization Administration of China. We drafted and seted National Standards for “Foundry Use Alkaline Phenol Formaldehyde Resin ” “Foundry Use Self-hardening Furan Resin”, and were assigned as vice chairman unit of Guangdong Province Foundry Association.

Our factory is located in Zhuhai City, which is near Malaysia, with 35000 ㎡ total area. The company registered capital is RMB 50 million and the annual outputs are 50000 tons. It is one of the biggest foundry molding material manufacturers in China. Our production size, quality assurance, new product research and development ability and goodwill are ranked on the top in the nation.

The main products are self-hardening/no-bake furan resin, hot box furan resin, cold box resin, alkaline phenol-formaldehyde resin (alkaline phenolic resin), resin coated sand, phenolic resin for coated sand, curing agent and other flux for sand casting. All of our products has been well recognized by thousands foundry plants in China, like YUCHAI Motor, HONDA Automobile.
Factory





ZHUHAI DOUMEN FULIAN MOLDING MATERIALS INDUSTRY CO., LTD
Add: Xinqing 6Rd, Xinqing Ind. Zone, Doumen District, Zhuhai City, Guangdong
Province, China (519180)

Tel:   86-756-5550295
Fax:   86-756-5212666
Mob: 86-15113139527 (whatsapp)
Skype: rubin.liu1
E-mail: rubin@gdfulian.com
Web: www.gdfulian.com