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GoodBo Mould Group is a professional mold manufacturer and service factory that integrates research and development, production, and sales. We are located in Shenzhen, Guangdong Province, only a few minutes away from Shenzhen Airport and Port. It has been engaged in the manufacturing industry since 1988.

The company currently has over 200 employees and produces around 400-600 sets of various plastic injection molds, including office appliances,medical instruments,home appliances,auto parts, annually. We define quality as the overall customer satisfaction and actively promote standardization of components and management. GoodBo Mould has global customers such as FAW-Volkswagen,Canon,KONKA,HP,Sony,Hyundai,Ford,Haier,HONDA,Nissan.



Product name small batch injection mold
Place of Origin China
Runner
Cold Runner. Hot Runner: Yudo
PortShenzhen
Colors Customized Colors
Condition
New
Design software
CAD/PROE/UG/3D/STEP/PDF/JPG
Packing Size(cm)

217*104*198

Specific consultation with us

Brand Name GoodBo Mould
Export region
Oceania,Europe,Africa
Export country
Oceania,Europe,Africa...etc
Mould life
300000 shots
Certification
ISO90001
Product Material
PUR(polyurethane),AS(acrylonitrile-styrene),TPE(thermoplastic)...etc.
Mould making technology
3D Modelling,Plastic flow/deform simulation...etc.
Application
White Goods,FMCG,Defence...etc.
After-sales Service
Always maintained
MOQ
Negotiable
Packaging Details
Packed in cartons
Supply Ability

2000-100000 Set/Sets per Month

(See specific model products)

Lead time (days)
20-40 (To be negotiated)
Mould BaseLKM,HASCO...
 Please noteThis table is for reference only, please consult us for specific information.

GoodBo Mould is one of the leading small batch injection mold manufacturers in China, and our mission is to provide customers with high-quality products and the highest quality service.

GoodBo Mould appoints a project manager to each individual project and client. The project manager is in charge of the entire project from start to finish providing direct communication for the client. All project management teams communicate in English.

To efficiently manage projects and achieve the required lead time, project manager is appointed to monitor the process of manufacture. Process charts are issued every week via e-mail include digital photographs of the work in progress, creating a real-time tooling progress assessment.

small batch injection mold---FAQs Guide
1.What technologies are used to produce higher quality small batch injection mold?
2.What is the significance of angle control in small batch injection mold?
3.What techniques are used to remove excess material from a small batch injection mold during the moulding process?
4.How does shrinkage of the material being moulded affect the finished product?
5.What materials are usually used to make small batch injection mold?
6.What other factors need to be taken into account when designing a small batch injection mold?
7.What are the most important features of a small batch injection mold?
8.What kind of coatings are used for small batch injection mold surfaces to reduce wear and tear?
9.Is the small batch injection mold designed for easy customization to meet specific product requirements?
10.Are there automated features integrated into the small batch injection mold to streamline the manufacturing process?
11.What are the advantages and disadvantages of using a 3D printed small batch injection mold?
12.What type of part ejection system does the small batch injection mold use, and how does it ensure smooth ejection without defects?
13.What type of cooling system is integrated into the small batch injection mold, and how efficiently does it dissipate heat?

1.What technologies are used to produce higher quality small batch injection mold?

We pay attention to employee development and benefits, and provide a good working environment in order to improve the efficiency of employees and improve the quality management of small batch injection mold products.
1. Computer Numerical Control (CNC) Machining: CNC machining is a process that uses computer-controlled machines to cut and shape materials into precise shapes and sizes. This technology is used to produce higher quality moulds with greater accuracy and repeatability.
2. 3D Printing: 3D printing is a process that uses a digital model to create a physical object. This technology is used to produce complex moulds with intricate details and shapes.
3. Laser Cutting: Laser cutting is a process that uses a laser beam to cut and shape materials into precise shapes and sizes. This technology is used to produce higher quality moulds with greater accuracy and repeatability.
4. Vacuum Forming: Vacuum forming is a process that uses a vacuum to form plastic sheets into desired shapes. This technology is used to produce higher quality moulds with greater accuracy and repeatability.
5. Injection Moulding: Injection moulding is a process that uses a heated plastic material to form a desired shape. This technology is used to produce higher quality moulds with greater accuracy and repeatability.

2.What is the significance of angle control in small batch injection mold?

We have advanced production equipment and technology to meet the needs of customers, and can provide customers with high quality, low priced small batch injection mold products.Angle control in moulds is important for ensuring that the finished product has the desired shape and dimensions. It is also important for controlling the flow of molten material during the injection moulding process. Angle control helps to ensure that the molten material is evenly distributed throughout the mould cavity, which helps to reduce the risk of defects in the finished product. Additionally, angle control helps to reduce the risk of warping and other deformities in the finished product.

3.What techniques are used to remove excess material from a small batch injection mold during the moulding process?

We maintain a stable growth through reasonable capital operations, focus on industry development trends and cutting -edge technologies, and focus on product quality and safety performance.
1. Trimming: This is the most common technique used to remove excess material from a mould. It involves using a sharp tool to cut away the excess material.
2. Sanding: This technique involves using sandpaper to sand down the excess material.
3. Grinding: This technique involves using a grinding wheel to grind away the excess material.
4. Drilling: This technique involves using a drill to drill away the excess material.
5. Blasting: This technique involves using a blasting material such as sand or glass beads to blast away the excess material.

What techniques are used to remove excess material from a small batch injection mold during the moulding process?

4.How does shrinkage of the material being moulded affect the finished product?

We have rich industry experience and professional knowledge, and have strong competitiveness in the market.Shrinkage of the material being moulded can affect the finished product in a variety of ways. If the material shrinks too much, it can cause warping, cracking, or other deformities in the finished product. It can also cause the product to be smaller than expected, or to have a different shape than intended. Additionally, shrinkage can cause the product to have a different surface finish than expected, or to have a different color than intended.

5.What materials are usually used to make small batch injection mold?

We have established long-term and stable partnerships with our suppliers, so we have great advantages in price and cost and quality assurance.Moulds are typically made from metal, plastic, rubber, silicone, or plaster.

6.What other factors need to be taken into account when designing a small batch injection mold?

We have a first -class management team, and we pay attention to teamwork to achieve common goals.
1. The type of material to be used for the mould: Different materials have different properties and require different mould designs.
2. The size and shape of the part to be produced: The mould must be designed to accommodate the size and shape of the part.
3. The number of cavities: The number of cavities in the mould will affect the design.
4. The type of injection moulding machine to be used: The mould must be designed to fit the injection moulding machine.
5. The type of cooling system to be used: The mould must be designed to accommodate the cooling system.
6. The type of ejection system to be used: The mould must be designed to accommodate the ejection system.
7. The type of surface finish to be achieved: The mould must be designed to achieve the desired surface finish.
8. The type of gate to be used: The mould must be designed to accommodate the gate.
9. The type of runner system to be used: The mould must be designed to accommodate the runner system.
10. The type of venting system to be used: The mould must be designed to accommodate the venting system.

What other factors need to be taken into account when designing a small batch injection mold?

7.What are the most important features of a small batch injection mold?

We continue to improve small batch injection mold products and processes to improve efficiency.
1. Durability: The mould should be able to withstand the high temperatures and pressures of the injection moulding process.
2. Precision: The mould should be able to produce parts with a high degree of accuracy and repeatability.
3. Surface Finish: The mould should be able to produce parts with a smooth, consistent surface finish.
4. Ease of Maintenance: The mould should be easy to maintain and repair.
5. Cost: The mould should be cost-effective to produce and maintain.

8.What kind of coatings are used for small batch injection mold surfaces to reduce wear and tear?

Our small batch injection mold products undergo strict quality control to ensure customer satisfaction.Common coatings used for mould surfaces to reduce wear and tear include hard chrome plating, electroless nickel plating, and diamond-like carbon (DLC) coatings. Hard chrome plating is a hard, wear-resistant coating that is applied to the mould surface to reduce friction and wear. Electroless nickel plating is a corrosion-resistant coating that is applied to the mould surface to reduce wear and tear. Diamond-like carbon (DLC) coatings are a type of hard, wear-resistant coating that is applied to the mould surface to reduce friction and wear.

9.Is the small batch injection mold designed for easy customization to meet specific product requirements?

We have the leading technology and innovation capabilities, and attach importance to employee training and development, and provide promotion opportunities.Yes, many molds are designed to be easily customized to meet specific product requirements. Depending on the complexity of the product, the mold may need to be modified or completely redesigned to meet the desired specifications.

Is the small batch injection mold designed for easy customization to meet specific product requirements?

10.Are there automated features integrated into the small batch injection mold to streamline the manufacturing process?

We adhere to the principle of quality first and have a complete production quality management system and quality inspection process.Yes, many molds are designed with automated features to streamline the manufacturing process. These features can include automated injection systems, automated ejection systems, automated temperature control systems, and automated molding cycles.

11.What are the advantages and disadvantages of using a 3D printed small batch injection mold?

We should enjoy a good reputation in the industry, and we can increase the added value of the products of cooperative customers through technological innovation.Advantages:
1. Cost-Effective: 3D printed moulds are much cheaper than traditional moulds, making them a great option for small businesses and startups.
2. Quick Turnaround: 3D printed moulds can be produced quickly, allowing for faster product development and prototyping.
3. Versatility: 3D printed moulds can be used to create complex shapes and designs that would be difficult to achieve with traditional moulds.
4. Customization: 3D printed moulds can be customized to fit specific needs, allowing for greater flexibility in product design.
Disadvantages:
1. Limited Durability: 3D printed moulds are not as durable as traditional moulds and may not be able to withstand the same level of wear and tear.
2. Limited Materials: 3D printed moulds are limited to the materials that can be used in the printing process, which may not be suitable for certain applications.
3. Limited Accuracy: 3D printed moulds may not be as accurate as traditional moulds, which can lead to imperfections in the finished product.
4. Limited Finishes: 3D printed moulds may not be able to achieve the same level of finish as traditional moulds, which can affect the overall quality of the product.

12.What type of part ejection system does the small batch injection mold use, and how does it ensure smooth ejection without defects?

We focus on providing high quality small batch injection mold products and services.The type of part ejection system used in a mold depends on the type of mold and the complexity of the part being molded. Generally, the most common type of part ejection system is a mechanical ejector system, which uses pins, blades, or other mechanical components to push the part out of the mold. This system ensures smooth ejection without defects by providing a consistent force to the part, which prevents it from sticking to the mold or becoming damaged during the ejection process. Additionally, the ejector system can be adjusted to provide the optimal amount of force for the part being molded.

What type of part ejection system does the small batch injection mold use, and how does it ensure smooth ejection without defects?

13.What type of cooling system is integrated into the small batch injection mold, and how efficiently does it dissipate heat?

I have a comprehensive after -sales service system, which can pay attention to market trends in time and adjust our strategy in a timely manner.The type of cooling system integrated into the mold depends on the specific mold design and the materials used. Generally, cooling systems are designed to dissipate heat as efficiently as possible, using a combination of water, air, and/or oil to cool the mold. The efficiency of the cooling system depends on the size and complexity of the mold, as well as the materials used.



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