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  【塑料球】塑料空心球,塑胶球价格,塑料小球生产厂家POM塑料球(POM塑胶球)PA塑料球(尼龙塑料球)PP塑料球(塑料PP球)PMMA塑料球(PMMA塑胶球)PC塑料球(PC塑胶球)PVC塑料球(PVC塑胶球)PPA塑料球(PPA塑胶球)PSU塑料球(PSU塑胶球)玩具塑料球(儿童玩具球)饰品塑料球(饰品塑胶球)塑料空心球(空心塑胶球)生物降解塑料球(PLA塑料球)软胶塑料球(软胶塑胶球)PEEK塑料球(PEEK塑胶球)PTFE塑料球(特氟龙塑料球)TPX塑料球(TPX塑胶球)Pepper ball0.68 Pepperball塑料焊接技术解决方案塑料热板焊接技术塑料超声波焊接技术塑料激光焊接技术塑料摩擦焊接技术实心塑料球(实心塑胶球)POM实心塑料球(POM塑料球)PA实心塑料球(PA塑料球)实心PP塑料球(塑料PP球)PMMA实心塑料球(PMMA塑料球)PVC实心塑料球(PVC塑料球)PTFE实心塑料球(特氟龙塑料球)塑料小球,塑料小球厂家精密塑料球焊接技术解决方案塑料激光焊接实用技术塑料热板焊接实用技术塑料超声焊接实用技术塑料球行业新闻,塑胶球新闻塑料空心球(空心塑料球)PTFE空心塑料球(PTFE空心球)PC空心塑料球(PC空心球)POM空心塑料球(POM塑料球)TPX空心塑料球(TPX空心球)PP空心塑料球(塑料空心PP球)PA空心塑料球(PA空心球)塑料浮球(塑胶浮球)PE空心球塑料球规格,塑胶球规格游戏塑料球,游戏塑胶球塑料空心球规格,空心塑胶球规格塑胶球标准,塑料球标准塑料空心球标准,空心塑胶球标准塑料球规格尺寸,塑胶规格尺寸塑料球硬度测试方法,塑胶球测试空心塑料球密度测试方法塑胶球规格,塑料球规格橡胶球,硅胶球,橡胶球价格,硅胶球厂家橡胶球-硅胶球厂家硅胶球,食品级硅胶球硅胶洗衣球-硅胶球厂家橡胶洗衣球-硅胶球厂家空心硅胶球,空心橡胶球橡胶弹力球橡胶球规格,硅胶球规格橡胶密封圈塑料球阀电动塑料球阀(电动塑胶球阀)塑料浮球阀(塑胶浮球阀)塑料法兰球阀(塑胶法兰球阀)氟塑料球阀(氟塑胶球阀)塑料三通球阀(塑胶三通球阀)胡椒球,胡椒弹0.43英寸塑料彩弹0.68英寸塑料彩弹0.68英寸胡椒球Pepper ball0.68 pepper ball0.50 pepper ball taiwan0.43 peper ball japanBB弹
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Cause analysis of internal stress in plastic pepper ball products
 
 
 
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The internal stress of PC plastic pepper ball and plastic hollow pepper ball products is mainly caused by orientation stress and temperature stress, and sometimes it is related to the unreasonable mold design. Orientation stress plastic pepper ball and plastic hollow pepper ball injection products are prone to internal stress after orientation, resulting in a large number of excessive stress concentration. When injecting PC plastic hollow ball blank pepper ball, the melt cools rapidly, and the viscosity of plastic melt is high at low temperature, and the oriented plastic molecules can not be fully relaxed. The internal stress of plastic blank ball thus produced has an impact on the mechanical properties, size and precision stability of plastic pepper ball products. Therefore, the melt temperature has the greatest influence on the orientation stress in plastic injection molding. When the melt temperature is increased, the melt viscosity decreases, so the shear stress and orientation of plastic decrease. In addition, the relaxation degree of orientation stress is greater at high plastic melt temperature, but when the viscosity of plastic material decreases, the pressure transmitted by the screw of injection molding machine to the cavity of plastic hollow ball mold increases, which may increase the shear rate of the screw of injection molding machine and lead to the increase of orientation stress. When injection molding is south, the holding time is too long, and the orientation stress increases; Increasing the injection pressure of injection molding machine will also lead to the increase of orientation stress due to the increase of shear stress and shear rate. The size of plastic pepper ball, that is to say, the thickness of plastic blank pepper ball products also affects the internal stress, and the orientation stress decreases with the increase of the diameter and thickness of plastic pepper ball products. Because the large-size plastic pepper ball thick-walled products cool slowly, the melt cools and relaxes in the plastic pepper ball mold cavity for a long time, and the orientation molecules have enough time to return to the random state. If the mold temperature of plastic pepper ball is high and the melt cools slowly, the plastic blank ball can reduce the orientation stress.

Temperature Stress If the temperature difference between the melt temperature of plastic material and the mold temperature of plastic pepper ball is too large during injection molding, the plastic melt near the mold cavity wall will be cooled quickly, so the stress that is unevenly distributed in the volume of plastic pepper ball and plastic hollow pepper ball products will be generated. Due to the large specific heat capacity and low thermal conductivity of PC plastic pepper ball, the surface layer of plastic blank ball product cools much faster than the inner layer, and the solidified shell layer formed on the surface of plastic pepper ball product will hinder the free shrinkage of the inner part when it continues to cool, resulting in tensile stress in the plastic pepper ball product and compressive stress in the outer layer of plastic pepper ball product. The greater the stress caused by shrinkage of thermoplastic plastics, the lower the stress caused by compaction in the mold, that is, the shorter the holding time and the lower the holding pressure, which can greatly reduce the internal stress. The shape and size of plastic pepper ball products also have great influence on internal stress. The greater the ratio of surface area to volume of plastic pepper ball products, the faster the surface cooling, and the greater the orientation stress and temperature stress. The orientation stress mainly occurs in the thin surface layer of the product, so it can be considered that the orientation stress should increase with the increase of the ratio of surface to volume of the product. If the thickness of plastic ball products is uneven or plastic pepper ball products have metal inserts, it is easy to produce orientation stress, so the inserts and gates should be located at the thick wall of the products. From the above analysis, it can be seen that it is impossible to completely avoid internal stress due to the structural characteristics of plastic balls and the limitations of injection molding process conditions, and the internal stress can only be reduced as much as possible or distributed evenly in the product as much as possible.



 
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