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CPVC Reducing Socket Pipe Fitting Mould

    CPVC Reducing Socket Pipe Fitting Mould

    CPVC Reducing Socket Pipe Fitting MouldMould name: CPVC Reducing Socket Pipe Fitting MouldCavity:  2 cavitiesMould size:110x75Mould steel:Germany2316 china2316 or4cr13 for the cavity and coreGate :direct gatemould structure:Angle  pinHardness of core/cavity: HRC 40-45°degree after vaccum heat treatment Injection moulding machine: 250T Following is the main information for your reference.1、 Requirements of CPVC material characteristics for demolding systemBefore designing a demolding system, it is necessary to understand the unique properties of CPVC (especially soft CPVC):...
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CPVC Reducing Socket Pipe Fitting Mould


Mould name: CPVC Reducing Socket Pipe Fitting Mould

Cavity:  2 cavities

Mould size:110x75

Mould steel:Germany2316 china2316 or4cr13 for the cavity and core

Gate :direct gate

mould structure:Angle  pin

Hardness of core/cavity: HRC 40-45°degree after vaccum heat treatment

 

Injection moulding machine: 250T

 

Following is the main information for your reference.

1、 Requirements of CPVC material characteristics for demolding system

Before designing a demolding system, it is necessary to understand the unique properties of CPVC (especially soft CPVC):

Poor thermal stability: prone to decomposition at high temperatures, releasing corrosive gases (HCl), therefore requiring short flow channels, fast cooling, and avoiding retention.

Elasticity and viscosity: Soft CPVC has certain elasticity and viscosity, which may cause the product to be tightly wrapped around the core, resulting in high demolding resistance.

Wide range of hardness: from hard CPVC (such as water pipes) to soft CPVC (such as hoses and sealing strips), their shrinkage rate and demolding behavior are different.

May not use release agents: To avoid contamination and affect subsequent processing (such as printing and bonding), it is usually preferred to achieve smooth release through mold design rather than relying on release agents.

Therefore, the demolding system of CPVC molds must operate reliably, have sufficient force, and avoid excessive local stress that may cause product deformation or tearing.

2、 The core components of the demolding system

A typical CPVC muold demolding system mainly consists of the following parts:

1. Top out mechanism

This is the part that provides demolding power.

Top rod (top pin): The most commonly used component. Usually installed on the top needle plate and pushed by the top rod of the injection molding machine.

Push out stroke: It is necessary to ensure that the product can be completely pushed out of the core and have an appropriate safety margin.

2. Top out components

The part that directly contacts the product and pushes it away from the mould.

Dome needle: the most universal, easy to manufacture, and convenient to replace. Suitable for most flat or slightly curved areas.

Flat top needle: used for demolding deep and narrow reinforcement ribs (bone positions), which can provide a larger contact area and prevent top penetration or whitening.

Sleeve top pin (driver's pin): used for demolding around core screws or cylindrical structures. It consists of an outer cylinder and an inner needle, with the outer cylinder ejecting the product and the inner needle supporting the core.

Top block: For large, deep cavity or thin-walled products, using a top block can provide a large and flat top force surface, avoiding local stress concentration and top whitening of the product. This is very common in CPVC molds.

Air cap (air valve): Use compressed air to assist in demolding. Especially suitable for:

Products with deep cavities and high demolding resistance.

Soft CPVC products, due to their elasticity, can be expanded and separated from the core by air pressure.

As the primary demolding action, break the vacuum adsorption between the product and the core. 


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