A manufacture team since 1993 from east China

A commitment to technological innovation and consciousness for quality

Xingyamould is a pioneering firm since 1993 that seamlessly merges creativity and functionality to satisfy your particular demand about product design and production capacity .

A passion for creating products

Our comprehensive suite of professional services caters to a diverse clientele, ranging from customized mould to volume production.

Our Mould Types

Injection mold; Plastic mold ;Aluminum die casting mold; stamping mold; rubber mold.

Our Customized Products

Stainless steel product; Fiberglass products; Polyethylene gas hot melt pipe fitting; Electronic equipment; School supplies; Zinc/Aluminium alloy die casting; bulletproof wall;.

Our Complete Mature Products

Ultrasonic Flowmeter; Meter Case; Outdoor Constant Temperature And Humidity Box; Bioreagent Pressure Filter; LCD or small-pitch LED display.

Product display

From small stampings to complete equipment, our team takes it all seriously.

Injection-molded Item

Instrument Case

  • Professional cartographic engineers and process engineers give solutions.
  • High precision CNC equipment improves mold quality and saves customer waiting time.
  • After verifying the quality of mold output sample, mass production.

Customized Equipment

Smart Thermostat Box

  • The size is up to the demands of customers which is customized.
  • The dependability can satisfy particular environment conditions. The different conditions would decide the kinds of materials. For instance, this box is not only used in outside but also indoor, besides, it has a function of windproof and rainproof.
  • The intelligent interconnection would be come true by smart phone. In your phone, you can change your necessary parameters including temperature, humidity, the way to operation, etc.

Die Casting

Auto parts

  • Professional cartographic engineers and process engineers give solutions.
  • High precision CNC equipment improves mold quality and saves customer waiting time.
  • After verifying the quality of mold output sample, mass production.

Fiberglass Products

fan cover

  • Raw material preparation: This step involves matching and preparing the required raw materials to ensure that the quality meets the production requirements.
  • Kiln melting: The raw material is melted into a homogeneous glass liquid in a high-temperature kiln, usually at a temperature of more than 1000°C.
  • Drawing molding: Liquid glass is stretched into thin glass fibers by special drawing equipment, such as platinum leakage plates.
  • Wetting agent coating: The coating process is to make the fiber have better bonding properties and processing properties, usually on the fiber surface coated with a layer of wetting agent.
  • Drying degradation: The coated fiber needs to be dried to remove excess wetting agent and stabilize its properties.
  • Product production: The final stage is the production of products, according to different application needs, the fiber for winding, cutting, felting and other different forms of processing.

Sheet Metal Parts

Aluminum alloy first aid kit

  • Design drawings: First of all, you need to design and draw a sheet metal part drawing, which usually includes three views to accurately express the structural characteristics of sheet metal parts.
  • Drawing a development diagram: For a part with a complex structure, it is necessary to draw a development diagram, which is to expand it into a flat part for subsequent processing.
  • Blanking: blanking is the first step of sheet metal processing, the common blanking methods are shearing machine blanking, punching machine blanking, CNC blanking and laser blanking. CNC punching machine is suitable for plate processing within a certain thickness range, such as cold-rolled plate and hot-rolled plate ≤3mm, aluminum plate ≤4mm, stainless steel ≤2mm. It is necessary to pay attention to the minimum size requirements of punching during the blanking process.
  • Bending: The plate material is bent according to the design requirements to form the required three-dimensional shape.
  • Stretching: The stretching process changes the shape of the material so that it meets the requirements of the product design.
  • Welding: The various parts are welded together to ensure the stability and integrity of the structure.
  • Spraying: The surface treatment of sheet metal parts, such as spraying or painting, to improve the corrosion resistance and beauty of the product.
  • Assembly: Assembling all the parts into the final product.

“XingYa Mold has been supplying instrument cases for us for more than ten years, under the long-term quality assurance, we have also developed a variety of instrument cases and obtained a number of Chinese patents during the cooperation based on our application scenarios and improve product competitiveness, which has brought us more market share.”

Hank Ma

CEO, Dao Sheng

Long-term Partner

University research units

Enterprise and public institutions

Production Equipment Display

From CNC machining to rapid prototyping.

Machining Center

AMGA three-axis machining center

  • Agma three-axis machining center occupies an important position in industrial production with its advantages of simple programming, high efficiency, high precision, strong adaptability, good dynamic performance, strict quality control and low cost. For applications that do not require complex spatial surface machining, three-axis machining centers are a cost-effective option.

CNC Lathe

  • These advantages of CNC lathes make it an indispensable equipment in modern manufacturing, especially in precision machinery, aerospace, automotive manufacturing and other fields play an important role.

CNC Bending Machine

  • CNC bending machines, through their high degree of automation and precise control, provide high efficiency and high quality production solutions for the metal working industry. In the selection of CNC bending machine, it is necessary to take into account the production needs, the technical level of the operator and the convenience of maintenance to ensure the optimal performance of the equipment.

Fiberglass Products

  • Raw material preparation: This step involves matching and preparing the required raw materials to ensure that the quality meets the production requirements.
  • Kiln melting: The raw material is melted into a homogeneous glass liquid in a high-temperature kiln, usually at a temperature of more than 1000°C.
  • Drawing molding: Liquid glass is stretched into thin glass fibers by special drawing equipment, such as platinum leakage plates.
  • Wetting agent coating: The coating process is to make the fiber have better bonding properties and processing properties, usually on the fiber surface coated with a layer of wetting agent.
  • Drying degradation: The coated fiber needs to be dried to remove excess wetting agent and stabilize its properties.
  • Product production: The final stage is the production of products, according to different application needs, the fiber for winding, cutting, felting and other different forms of processing.

Die-casting Machine

  • Die casting machine is an indispensable equipment in modern manufacturing industry, and it plays an important role in many industries such as automotive, aviation, electronics, and construction with its efficient, accurate and diversified characteristics.

3D Resin Printer

  • High precision and detail performance: Photosensitive resin 3D printers are capable of producing extremely fine models, even to the micron level of accuracy. This high-precision detail representation ability makes 3D resin printers have great potential for applications in areas requiring precision detail, such as jewelry design, medical devices and micro-part manufacturing.
  • High surface quality: The surface of the 3D resin printed model is smooth and delicate, usually without secondary processing, which not only saves a lot of post-processing time and cost, but also improves the beauty of the product. This is very advantageous for the production of product models with high appearance requirements.
  • Complex structures can be printed: Compared with traditional manufacturing methods, 3D resin printers can create more complex structures, such as suspended, transitional, thin-walled and other shapes. It provides designers with more creative space, making some designs that are difficult to achieve with traditional methods possible.
  • Fast printing speed: The printing speed of 3D resin printers is faster, which means that large printing tasks can be completed in a short time, improving production efficiency.
  • Wide range of available materials: Although there are not many types of photosensitive resins, they have been able to cover all the basic application areas and needs, and the variety of materials is still increasing. Different combinations of photosensitive resins can be used to produce finished products with special functions, such as adding dyes, visual effects and functional supplements.

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