The stability of any foam ultimately relies on the hindrance of bubble coalescence.
任何泡沫的稳定性归根到底都依赖于阻止泡泡们的合并。
Scrunched up, they make just as good packing material as those non-degrading foam chips or reams of bubble wrap.
把它们揉成一团就可以当作如非降解泡沫芯片或巨量的泡沫包装一样的良好包装材料。
The structure and measuring principle of gradient furnace were introduced, and the curve of the foam temperature and bubble diameter was drawn.
介绍了梯温炉的结构及原理,根据测量结果绘制了发泡温度与泡径的关系曲线。
Bubble size plays a significant role to the aluminum foam performance.
气泡直径是影响泡沫铝性能的非常重要的因素。
煮沸,起泡沫,泡沫。
Main products: rare earth kiln production line, foam (bubble) ceramic kiln production line, foam glass kiln production line, all kinds of metallurgical kiln production line, etc.
主要产品:稀土窑炉生产线、发泡(泡沫)陶瓷窑炉生产线、泡沫玻璃窑炉生产线、各类冶金窑炉生产线等。
Especially EPS foam board, XPS bubble board of flame resistant is poorer, in 80 degrees Celsius above will melt deformation and drop off.
特别是EPS泡沫板、XPS泡沫板的耐火性较差,在80摄氏度以上就会熔融变形并滴落下来。
The durable time and fire resistant time of foam is dependent with gas fraction and bubble diameter etc.
另外,泡沫的析液时间、抗烧时间与泡沫气体百分比和泡沫平均直径等因素有关。
The calculated results obtained with the static and dynamic models are capable of accurate predicting the bubble size under varied conditions of processing the closed cell aluminum foam.
根据静态和动态气泡直径预测模型计算得到的结果可准确地用于预测不同发泡条件下闭孔泡沫铝胞直径。
After analyzing the physical process of polyurethane foam formation, such conclusions can be got: bubble nucleation and bubble growth affect cell size primarily.
通过对泡沫合成中的物理过程系统分析得出:泡沫的孔径大小主要受气泡成核与气泡生长两阶段的影响。
Melting bubble method perpetrating foam aluminum alloy is one of the most the industrialization scale production in the future because its production craft relatively simple, the cost is low.
熔体发泡法生产泡沫铝合金,因其生产工艺相对简单、成本低,因而最具有工业化规模生产的前途。
The emulsibility, producing bubble ability and the foam stability for PDPB are weaker, and it has definite effect on disappeared and restrained bubbles.
十六烷二甲基苯氧乙基溴化铵的乳化能力、起泡力和泡沫稳定性都比较弱,具有一定的消泡和抑泡作用。
Gold Phoenix foam plastics machine equipments, produce every kind of specification plank material machine equipments, hair bubble machine, incise the machine, model the machine.
金凤凰泡塑机械设备,生产各种规格板材机械设备,发泡机,切割机,成型机。
In the foam process of cellular plastics, bubble nucleation has decisive effect on cell density and cell distribution, so it is the crucial factor to control the foam quality.
前人对泡沫塑料气泡成核过程的研究基本上都是以经典成核理论为基础进行的。
The influence of foaming effect on bubble stability of foam aluminum prepared by powder metallurgy was studied, with relevant influencing factors analysed.
对采用粉末冶金法制备泡沫铝材料过程中气泡稳定性对发泡效果的影响进行了研究,对影响气泡稳定的因素进行了分析。
But it was 1998, the Internet bubble burst, the foam begins, stock is rising.
但是当时是1998年,互联网泡沫即将破裂,泡沫开始时,股票都处于上扬之中。
The effect of foam temperature on bubble diameter was discussed. The DTA curve of foam glass powder and experiment results was compared.
讨论了发泡温度对泡径的影响,并将测量结果和DTA曲线进行了比较,结果表明,梯温炉法与DTA曲线的实验结果吻合。
To lower the surface tension of the bubble, so delicate foam evenly, mobility, and closed strong, rapid fire, high capacity anti-recrudescence.
降低泡沫表面张力,使泡沫均匀细腻,流动性好,封闭性强,灭火迅速,抗复燃能力高。
After the experiments are finished, the effects of the different bubble-removing components to reduce the foam height of the frothing system are measured.
在完成上述实验之后,测试了不同消泡构件对降低易起泡物系泡沫层高度的效果。
High strength rare earth foam aluminium alloy is prepared in our laboratory by smelting bubble system.
用熔体发泡法制备出了高强度稀土泡沫铝合金。
A mathematic model of foam fractionation was set up based on the following assumptions: adsorption equilibrium, same bubble size and regular dodecahedron model of real bubbles.
前言:假设吸附过程始终处于平衡态、气泡大小均一以及每一个气泡均为正十二面体,构建了泡沫分离过程的数学模型。
There are three main interior structure defects in the preparation of aluminum foam with melt foaming process such as free-bubble-layer at the bottom, partial free-bubble-zone and heat crack.
泡沫铝常见的内部缺陷主要有底部无泡层、局部无泡区和内部热裂纹。
There are three main interior structure defects in the preparation of aluminum foam with melt foaming process such as free-bubble-layer at the bottom, partial free-bubble-zone and heat crack.
泡沫铝常见的内部缺陷主要有底部无泡层、局部无泡区和内部热裂纹。
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