• Graphite Crucible Black System 1
Graphite Crucible Black

Graphite Crucible Black

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Loading Port:
China Main Port
Payment Terms:
TT or LC
Min Order Qty:
1 Set pc
Supply Capability:
5000 Sets per Month pc/month

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Detailed Product Description

graphite crucible is featured by fast heat conduction,long service life and low cost and the product finds good application

1.Garphite crucible can withstand the high temperature, an has good resistance to chemical erosions and thermal shock.

2.Graphite crucible is ideal for the melting of gold,silver,aluminum,copper and other metals and is also used as a tool for smelting jewelry.

Q:Can a graphite crucible be used for bronze casting?
Certainly, bronze casting can utilize a graphite crucible. The utilization of graphite crucibles is widespread in metal casting procedures due to their remarkable thermal conductivity, high melting point, and resistance to thermal shock. In contrast to graphite, bronze, an amalgamation of copper and tin, generally possesses a lower melting point, making it a fitting material for casting within a graphite crucible. Moreover, graphite crucibles provide commendable chemical stability, a pivotal factor when operating with molten metals. Nevertheless, it is imperative to underscore the significance of adequately seasoning and preheating the crucible to avoid any potential reactions between the molten bronze and the graphite crucible.
Q:Is it possible to customize the shape or design of a graphite crucible?
Certainly, the shape or design of a graphite crucible can be personalized. Graphite, being a highly adaptable material, can be molded and formed into various shapes. Industries like metallurgy, foundries, and laboratories often utilize graphite crucibles for the purpose of melting and casting metals. Manufacturers employ specialized techniques such as CNC machining or graphite molding to customize the shape or design of graphite crucibles. CNC machining involves the use of computer-controlled machines to precisely shape the graphite material according to the desired form. This method facilitates the creation of intricate and accurate designs. On the other hand, graphite molding is a process where graphite powder is compressed into a specific shape using a mold. This technique is commonly employed for simpler and more standardized crucible shapes. Customization of graphite crucibles may involve modifications in dimensions, addition of handles or spouts, or the creation of unique designs to cater to specific applications. This customization process ensures that the crucible is tailored to meet the user's specific requirements, thereby ensuring optimal performance and efficiency. It is important to note that customizing the shape or design of a graphite crucible may result in additional costs and lead times. This is because the customization process requires specialized equipment and expertise. Hence, it is crucial to engage in communication with the manufacturer or supplier to discuss customization options, feasibility, and associated costs.
Q:How is a graphite crucible disposed of at the end of its life?
A graphite crucible can be disposed of in an environmentally responsible way when it reaches the end of its life. Due to the non-toxic nature of graphite, it is possible to recycle or reuse the crucible instead of sending it to a landfill. There are multiple options available for disposing of a graphite crucible: 1. Recycling: Specialized recycling facilities can handle the recycling of graphite crucibles. These facilities typically melt down the graphite and purify it for use in manufacturing new graphite products. This not only conserves natural resources but also reduces the need for extracting new graphite. 2. Reuse: If the crucible is still in good condition, it can be reused for its original purpose or repurposed for other applications. Many industries, such as metallurgy, ceramics, and jewelry making, can benefit from utilizing second-hand graphite crucibles. This not only saves money but also reduces waste. 3. Donation: Another option is to donate the graphite crucible to educational institutions or research facilities. These organizations often require such equipment for experiments and studies. By donating, you extend the life of the crucible and contribute to scientific advancements. 4. Local regulations: It is important to comply with local regulations regarding the disposal of graphite crucibles. Certain areas may have specific rules for disposing of industrial equipment. It is advisable to consult local waste management authorities or recycling centers to ensure compliance with regulations. Regardless of the chosen disposal method, it is crucial to handle the graphite crucible safely. Before disposal, clean any residue or contaminants from the crucible and follow any specific instructions provided by the manufacturer. Responsible disposal of graphite crucibles helps minimize environmental impact and contributes to a more sustainable future.
Q:Are there any safety precautions to take when using a graphite crucible?
Yes, there are several safety precautions to take when using a graphite crucible. Firstly, it is important to handle the crucible with care and avoid dropping it or hitting it against hard surfaces. Graphite crucibles are relatively fragile and can crack or break easily if mishandled, which can lead to injury or damage to equipment. Secondly, graphite crucibles should be stored in a dry and clean area to prevent any contamination or chemical reactions. Moisture or impurities can cause the crucible to degrade or react with the materials being heated, compromising its integrity and potentially causing accidents or failures. Additionally, it is crucial to use appropriate personal protective equipment (PPE) when working with a graphite crucible. This includes wearing heat-resistant gloves, goggles, and a lab coat or protective clothing to shield against heat and potential splashes or spills. When heating or cooling the crucible, it is recommended to do so gradually to avoid thermal shock. Rapid temperature changes can cause the crucible to crack or break, resulting in possible injury or damage. Furthermore, it is essential to be mindful of the materials being used in the crucible. Some substances may produce toxic fumes or hazardous reactions when heated in a graphite crucible, so proper ventilation and knowledge of the materials' properties are crucial. Finally, after use, it is important to allow the crucible to cool down completely before handling or storing it. Attempting to handle a hot crucible can lead to severe burns or injuries. By following these safety precautions, the risk of accidents, injuries, or damage when using a graphite crucible can be significantly reduced, ensuring a safe and effective working environment.
Q:Can graphite crucibles be used for electrode production?
Indeed, electrode production can utilize graphite crucibles. Graphite, being endowed with a high melting point, commendable electrical conductivity, and chemical stability, proves to be an exceptional substance for electrode fabrication. Industries like metallurgy, foundries, and electrical engineering often employ graphite crucibles when creating diverse kinds of electrodes. These crucibles possess the capability to endure extreme temperatures, thereby creating a steadfast atmosphere for electrode production. Moreover, graphite crucibles possess the advantage of easy customization and shaping to cater to specific electrode necessities, rendering them a favored option in numerous applications.
Q:Can graphite crucibles be used for eutectic growth?
Graphite crucibles possess the ability to facilitate eutectic growth. Eutectic growth entails the solidification of a specific mixture of metals or elements known as a eutectic alloy. Graphite crucibles are frequently employed in high-temperature circumstances due to their exceptional thermal conductivity and resistance to chemical reactions. These attributes render them suitable for containing and heating eutectic alloys to the necessary temperature for regulated solidification. Furthermore, graphite crucibles exhibit remarkable thermal stability, enabling them to endure the thermal fluctuations inherent in the eutectic growth process. Consequently, graphite crucibles represent a favored option for conducting eutectic growth experiments or fulfilling the requirements of industrial applications that demand controlled solidification of eutectic alloys.
Q:Does the smelting of nonferrous metals, graphite crucible and cast iron crucible which is easy to use?
I can't decide which is good. I just want to talk about the smelting methods of some nonferrous alloys(1) cast aluminium alloy ZL101, cast iron crucible;(2) casting brass, H62, graphite crucible;(3) cast magnesium alloy ZM5, steel plate welding crucible(4) casting tin bronze, 5-5-5, fused magnesia, medium frequency furnace smelting
Q:Will the friction powder of the graphite sliding bearings rust?
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Q:How do you determine the appropriate crucible stirring mechanism for a specific application?
To determine the appropriate crucible stirring mechanism for a specific application, one must consider factors such as the type of material being stirred, the desired level of agitation, the temperature and pressure conditions, as well as the size and shape of the crucible. Additionally, factors like the available power source and budget constraints should be taken into account. Conducting a thorough analysis of these parameters will help in selecting the most suitable stirring mechanism, whether it be magnetic stirrers, mechanical stirrers, or other specialized systems.
Q:How do you determine the appropriate crucible stirring rod for a specific application?
To determine the appropriate crucible stirring rod for a specific application, one must consider several factors. Firstly, the type of material being stirred is important. Different materials may require specific types of stirring rods, such as those made of certain metals or alloys to prevent contamination or reactivity. Secondly, the size and shape of the crucible should be taken into account. The stirring rod should be long enough to reach the bottom of the crucible and have a suitable diameter for effective stirring. Additionally, the temperature and conditions of the application should be considered. High temperatures may require a stirring rod made of heat-resistant materials. Finally, any specific requirements or recommendations from the manufacturer or scientific literature should be followed to ensure the appropriate crucible stirring rod is chosen for the specific application.
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1. Manufacturer Overview

Location Inner Mongolia,China (Mainland)
Year Established 2006
Annual Output Value US$2.5 Million - US$5 Million
Main Markets 7.14% North America
7.14% South America
7.14% Eastern Europe
7.14% Southeast Asia
7.14% Africa
7.14% Oceania
7.14% Mid East
7.14% Eastern Asia
7.14% Western Europe
7.14% Central America
7.14% Northern Europe
7.14% Southern Europe
7.14% South Asia
7.14% Domestic Market
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2. Manufacturer Certificates

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3. Manufacturer Capability

a)Trade Capacity  
Nearest Port Xingang,Tianjin
Export Percentage 31% - 40%
No.of Employees in Trade Department 21-50 People
Language Spoken: English, Chinese
b)Factory Information  
Factory Size: 1,000-3,000 square meters
No. of Production Lines 7
Contract Manufacturing 1,000-3,000 square meters
Product Price Range Low and/or Average

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