海克斯波聚合材料(佛山)

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海克斯波聚合材料(佛山)

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Lifolit 软质PVC复合物

产品价格:面议

票据: 增票

货物所在地: 佛山

交货方式: 款到发货

交货日期: 期货

生产厂家: 海克斯波   

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海克斯波聚合材料(佛山)

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  • 联系卖家:廖招林
  • 销售主体:生产工厂

产品分类共9个产品

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高品质,定制配方软质PVC复合物
    Lifolit是高品质的软质聚氯乙烯(PVC)复合物,可以根据您的要求定制配方。自1965年以来,我们一直在开发PVC复合物,继续设计新的解决方案,以满足当前和新兴市场的需求。
Lifolit关键属性

  • 硬度范围从邵氏A 45到98
  • 不含重金属和多环芳烃
  • 食品接触材料
  • 无邻苯二甲酸酯增塑剂
  • 所有复合物都不含DEHP
  • 符合欧洲EN 71 /3玩具标准
  • 良好的抗紫外线和耐候性
  • 高透、半透、本色或有色复合物材料
  • 发泡后规格密度低至0.45g/cm3
  • 防静电和导电材料
  • 聚合物混合物
  • 易于通过注塑和挤塑加工

典型应用

  • 玩具
  • 鞋类
  • 上光型材
  • 建筑垫片
  • 软管
  • 把手与握把


不含邻苯二甲酸酯和塑化剂的材料

    为了解决消费者关注的在聚氯乙烯复合物生产过程中使用增塑剂带来的潜在健康和环境风险,我们开发了Lifolit系列,当中包含了一些非邻苯二甲酸酯替代物。

    这样有助于客户密切监管邻苯二甲酸酯的使用。尤其是在玩具和儿童护理市场,非邻苯二甲酸酯复合物已成为欧盟2005/84/EC等指令如的行业标准。

我们与多家原料及增塑剂生产商合作,提供最佳的性价比,同时始终保持符合不同等级的邻苯二甲酸酯的使用。这包括不含塑化剂的聚氯乙烯 ,以及低挥发性有机复合物材料(VOCs)。


发泡PVC

    我们已经开发了发泡Lifolit聚氯乙烯材料,应用于鞋类及鞋底。发泡密度是0.65g/cm3。挤出加工密度低至0.45g/cm3。我们也提供无化学发泡剂的材料,可以在195℃高温下进行加工,泡孔结构良好。


抗静电、导电及阻燃材料

    Lifolit系列包括抗静电和导电聚氯乙烯材料。材料中设计了消散电荷,因为电磁干扰或静电堆积可能会导致干扰。我们还提供其符合RoHS规定的阻燃聚氯乙烯复合物。


PVC混合物

    通过混合丁腈橡胶(NBR)或其它聚合物,例如热塑性聚氨酯,我们已经制造了具有弹性的聚氯乙烯复合物。聚氯乙烯混合物也让我们改进了耐磨性和耐化学性等特性。


INTRODUCTION

    Lifolit are a family of high-quality, soft polyvinyl chloride (PVC) compounds, custom formulated to your requirements.

    PVC is a building block of our daily lives, its versatility and performance benefits make it an ideal choice for a wide variety of applications in the construction, consumer, industrial, toy and automotive markets.

    We’ve been developing PVC compounds since 1965 and continue to engineer new solutions to address current and emerging market demands. As concerns grew over the use of certain plasticizers in PVC compounds, we have developed non phthalate, DEHP free and low VOC compounds.

    Our aim is to provide the best material solution for every application; our experts work hand-in-hand with you to develop customised solutions that help your business to grow. Please use this guide as an introduction to the Lifolit range and contact us to discuss your specific requirements.


KEY PROPERTIES

• Hardness range from 40 Shore A to 60 Shore D

• Free of heavy metals and PAHs

• Food contact grades

• Non phthalate plasticizer

• All compounds are DEHP free

• Good UV resistance and weatherproofing

• Crystal clear, translucent, natural or colour compounded grades

• Foamed grades up to a density of 0.45g/cm3

• Antistatic and conductive grades available

• Polymer blends

• Easy to process via injection moulding and extrusion


TYPICAL APPLICATIONS
• Footwear

• Toys

• Glazing profiles

• Construction gaskets

• Hoses

• Handles & Grips



TOY FIGURES

    These toy figurines are incredibly life-like, lovingly created and beautifully designed products. The manufacturer puts their responsibility to parents and children at the heart of their philosophy and only works with the highest quality materials and suppliers.

    We have been a supply partner for a number of years. Our Lifolit PVC compounds are an ideal choice for toy and childcare products, they conform to relevant industry standards and regulations such as EN 71/3. We also select the raw materials we use carefully, implementing strict quality control processes. The raw materials we use comply with EU directive No. 10/2011.

    Lifolit PVC compounds are low odour, with low migration levels for improved lacquer adhesion. Varnishing is also possible. The compounds are also easy to process, with fast cycle times resulting in low energy costs during manufacturing.


NON PHTHALATE & DEHP FREE GRADES
    To address consumer concerns over the potential health and environmental risks of certain plasticizers used in the manufacture of PVC compounds, we have developed the Lifolit range to include several non phthalate alternatives.
    This helps our customers to comply with tightening regulations governing the use of phthalates. Particularly in the toy and childcare market, where non phthalate compounds have become the industry standard in response to directives such as EU 2005/84/EC.
    We work with a number of raw materials and plasticizers to give the best performance / cost ratio while always keeping in compliance with the different levels of phthalate use. This includes DEHP free PVC as well as grades that are considered low in Volatile Organic Compounds (VOCs).

SPECIALISED LIFOLIT GRADES

FOAMED PVC

    For footwear and shoe sole applications we have developed several grades of foamed Lifolit PVC. They are foamed up to a density of 0.65g/cm3. With extrusion processing densities up to 0.45g/cm3. We also offer grades with no chemical blowing agents which can be processed at temperatures up to 195°C. They also have a very fine cell structure.

PVC BLENDS

    By blending nitrile rubber (NBR) or other polymers, such as TPU, we have created PVC compounds with very elastic properties. Our PVC blends also allow us to modify very specific properties such as abrasion and chemical resistance.
ANTISTATIC, CONDUCTIVES & FLAME RETARDANT GRADES

    The Lifolit range includes antistatic and conductive PVC grades. Designed to dissipate electrical charges where EMI or static build-up could cause interference. We also offer flame retardant PVC compounds which comply with RoHS regulations.


LIFOLIT TYPICAL GRADES


PROCESSING

    Lifolit PVC compounds are easy to process via injection moulding, extrusion, blow moulding and deep drawing.
    We have engineered flexible PVC compounds with very high flowability, ideal for injection moulding, as well as highly viscous grades for extrusion.
    Lifolit PVC compounds result in fast cycling times, meaning low energy costs during manufacture of the final application. Recycling of finished products is also possible.


· INJECTION MOULDING GUIDELINES

MOULD: Stainless steel with a minimum chromium content of 13% (preferably 16%) is recommended for mould building. If the application allows, highly polished or chrome plated mould and runner surface is beneficial for steel protection.

INJECTION SPEED: Slow to medium

BACK PRESSURE: Low The Injection and holding pressures are determined by filling properties, mould design and part size.

COMPRESSION RATIO: 2:1 to 2.5 : 1

L/D RATIO:≥ 20 D

BARREL CAPACITY: 1.5 to 2 times the shot capacity

GATING:Due to the thermal and shear sensitivity of all PVC compounds, liberal gating is recommended. If possible, use full round runners.


·INJECTION MOULDING GUIDELINES

DRYING: Predrying is normally not necessary

COLOURING: Only use pigments. Due to the risk of colour bleeding, migration or leaching, dyes should not be used

PURGING: PVC compounds are thermal and shear sensitive and care must be taken to avoid excessive heating or delays during the moulding process. Do not allow the PVC to sit idle in the screw for more than 10  - 15 minutes. Turn off heat. During stoppage, the machine should be purged withpolyethylene (PE) until all the PVC compound is removed. Then purge the remainder of the PE and turn off the heat.

TYPICAL SHRINKAGE VALUES: See table, exact values should be determined by independent testing.


·INJECTION MOULDING RECOMMENDED TEMPERATURES

MELT TEMPERATURE: The melt temperature should not exceed 200°C. PVC is heat sensitive, decomposition could occur.

MOULD TEMPERATURES: 30  - 60 °C



·EXTRUSION GUIDELINES

SCREW DESIGN: Standard 3 zone screws with a length of (L/D ratio) 20 - 24 D and compression ratio of 2:1 to 2.5:1 are recommended. Highly polished or plated, streamlined dies are recommded for PVC.
DRYING: Predrying is normally not necessary
COLOURING: Only use pigments. Due to the risk of colour bleeding, migration or leaching, dyes should not be used
PURGING: PVC compounds are thermal and shear sensitive materials. We recommend that you do not leave the material in the screw for more than 15 minutes at an elevated temperature. However, if this is unavoidable, allow the extruder to run at a slow speed so that the material is kept moving. During stoppage, open the head and clean the adapter, tooling and all other parts immediately. Then reduce the temperatures and allow the machine to empty.


·EXTRUSION RECOMMENDED TEMPERATURES

MELT TEMPERATURE: The melt temperature should not exceed 200°C. PVC is heat sensitive and decomposition could occur. Normally, the standard temperature profiles used are low to high from feed to die. Running a reverse temperature profile is also possible.




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