POWERx 高功率X射线检测系统D165短程双路垂直光束
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POWERx 高功率X射线检测系统D165短程双路垂直光束

使用 Thermo Scientific™ POWERx 高功率 X 射线检查系统优化检测概率和灵敏度。
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货号 POWERXD165
价格(CNY)
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采用先进的 X 射线生成、检测和图像分析技术以确保质量。Thermo Scientific™ POWERx 高功率 X 射线检查系统为大型、高密度产品或高速生产提供高功率 X 射线传送机和侧射检测,并为玻璃检测中的食品和药用玻璃提供专利的双路光束、双检测器系统。配有 X 射线高功率电源 (900W),带冷却功能,以实现更长使用寿命,该产品是大型箱包检测的理想选择,并配有一套可对多重玻璃进行高效检测的专利双路光束系统(90 度方向)。 

POWERx高功率X射线检测系统的特点:

  • 适用于扁平包装的垂直光束(C型)和适用于瓶罐的水平光束(S型和D型)

  • 适用于多重玻璃检测的专利双路光束/检测器

  • 通过最先进的X射线设计与图像分析软件,对检测灵敏度及概率进行优化

  • 针对杂质模拟、药物法规合规性以及质量测量的选配软件模块

  • 标准远程访问功能,允许经认证的Thermo Scientific技术人员随时连接到您的POWERx并在任何时段对其性能进行优化
     

软件选项

  • 虚拟杂质模拟:通过模拟存储图像中的杂质检测,帮助优化检测概率
  • 检重秤量功能(仅限C型):通过 X 射线密度与重量的相关性进行质量估算    

硬件选项

  • 可定制的辐射屏蔽罩和传送带(S和D型)

  • 产品对齐导轨(C型)

  • 剔除装置和箱体、声音警报与信标

  • 金属和玻璃检测球

  • UL或CSA安全认证

  • 辐射测量仪

  • 备件套件     

*不符合国际R51标准

规格
内置抑制系统标准剔除信号速率为每分钟2500个容器(CPM);通过外部硬件可实现更快的速率
认证/合规通过了辐射安全认证,辐射量 <0.5 µSv/h(不包括输入/输出隧道);符合 FDA CFR21 第 1020.40 部分的要求
制药型号,符合 CFR 21 第 11 部分的要求;可提供 IQ/OQ/PQ 认证
传送机可达高度916 至 1110 mm(36.0 至 43.7 in.)
检测器分辨率0.4 mm
外箱材料AISI 304不锈钢,苏格兰亮漆
人机界面高对比度15英寸彩色LCD触控屏
检查率≤100 m/分钟(≤328 ft/分钟)
界面语言英语、法语、意大利语、德语、葡萄牙语、西班牙语、波兰语
机器冷却外部冷水机组(X射线管)和热交换器(机柜)
工作温度5°C 至 35°C(41°F 至 95°F);20-80%,非冷凝
输出文件格式:.mdb, .txt, .tif, .jpg, .bmp;USB和网络接口
产品类型POWERx D165 Short Dual Vertical-Beam System
灵敏度金属(铁、非铁和不锈钢)和玻璃的检测灵敏度:典型的灵敏度范围为1mm至2mm(0.04英寸至0.08英寸)直径的金属,以及2mm至4mm(0.08英寸至0.16英寸)直径的玻璃,具体取决于产品的密度、质地和包装。在某些产品中,可

检测到直径为0.5mm(0.02英寸)的金属和1.0mm(0.04英寸)的玻璃。其他杂质(石头、骨头、塑料等)的检测灵敏度:需要进行应用程序测试;结果通常在2mm至5mm(0.08英寸至0.20英寸)之间
重量(公制)1200 kg, 1200 kg
X 射线射束方向双向
X 射线电源2 x ≤90 kV 和 2 x ≤10 mA
可用检测算法色度阈值、形状分析、光度检测;或需额外费用的
特定应用检测程序
IP 防护等级IP65(不包括冷却装置)
包装类型包装产品包括玻璃罐、瓶、金属罐、长方形包装
Unit SizeEach

常见问题解答 (FAQ)

Is X-ray inspection of pet foods safe?

X-ray inspection of packaged and bulk food products is proven to be extremely safe. There is no documented evidence of adverse health effects of X-rays on equipment operators, the food products that travel through the equipment, and ultimately, the pet consuming those products.

What is the best inspection technology for wet pet food?

Since wet or moist pet foods have a high product effect, X-ray inspection is the best technology to detect contaminants such as metal, glass, stone, and other dense foreign objects.

What is the best inspection technology for dry/kibble pet food?

Metal detection works very well with dry/kibble pet food and treats that do not have a product effect that wet or moist pet foods do. Metal detection equipment provides reliable, cost-effective protection from even the smallest metal contaminants found in pet food production anywhere in a process. If the packaging material contains metal, X-ray inspection would be the right choice. In addition, if there are other contaminant concerns such as stone, high density plastic or glass, X-ray inspection systems will detect these contaminants as well.

Where are the best places on the pet food production line to utilize inspection equipment?

There are several points in the pet food production process that benefit from food safety inspection (metal detectors, X-ray inspection) and checkweighing technology. Here are some examples:

- Incoming ingredients. Large pet food producers may require that their vendors meet specific HACCP objectives and provide proof of inspection. Even with those methodologies in place, some will also inspect incoming ingredients. Typical incoming inspection consists of drop through and bulk flow metal detectors.

- After mixing/rendering. Processing equipment such as an industrial blender or mixer will age over time and potentially introduce small particles or shavings of metal into the product being processed. It is important to position inspection equipment after this process equipment to catch any contaminants as early in production as possible, so it doesn't affect final product quality as well as damage equipment further downstream. The inspection equipment type will depend on the product type and whether its formulation creates a “product effect”. Wet or moist pet food products are more suited toward X-ray equipment, while metal detectors perform well with dry or kibble type pet food products.

- After filling/packing. The recommended inspection equipment type is dependent on the packaging material or combination of materials that have been selected for this product. Metal components such as aluminum foil trays, metal cans, aluminum foil bags or metalized firm structures are much more suited to X-ray inspection. Flexible materials without a metal component, paperboard folding cartons, bags or pouches work very well with either metal detectors or X-ray inspection systems. At this stage, checkweighers are frequently used in combination with a metal detector or X-ray inspection system to ensure product weight matches information printed on the product label.

- After case packing. After case packing is another good inspection point as this is the last stop before the finished products leave the facility. The recommended inspection equipment type is dependent on the packaging material of the individual product. This is typically done via X-ray inspection. In addition to contaminant detection, the X-ray system's ability to detect missing pieces will help ensure that the specified count has been loaded into the case. In certain situations, especially when X-ray inspection is not included at the end of the line, checkweighers are placed here to ensure that the proper number of packages are contained inside the case.

What is "product effect" in pet food manufacturing?

“Product effect” occurs when a product has a conductive property which affects the magnetic field generated by the food metal detector. This is typically found in high salt, high moisture product environments. For example, wet cat food will show significantly more product effect due to its high moisture and salt content. This negatively impacts the metal detector's ability to distinguish between actual non-ferrous metal contaminants and the false signal given by the combination of typical product attributes. In these situations, industrial X-ray inspection equipment will produce significantly better results since product effect is not a factor.