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The analysis of the application of grooveless rolling technology proves that grooveless rolling can be successfully realized in the big-distance mills.

通过对无孔型轧制的工业试验和技术分析,得出无孔型轧制可在大间距轧机上实现,脱方控制的关键点是导卫控制和宽展控制,翻平宽展能使轧件产生圆弧钝角,避免了应力集中和裂纹,采用无孔型轧制具有可统一坯料、提高轧辊寿命2~4倍、降低能耗6%~7%等优点。

The removal rate of organics which are in every molecular weight interzones could be 11.73%-39.56% higher than that with the use of pure electrocoagulation, and the removal rate of hydrophilic and hydrophobe organics were improved by 16.67% and 28.30%.

在电流密度为3A/m2,电极板间距为5mm,停留时间为30min的条件下,电凝聚对TOC去除率为53.57%,施加600W超声波后提高到了73.71%;与单纯的电凝聚法相比,采用超声波—电凝聚处理时,水中各分子量区间有机物的去除率提高了11.73%~39.56%;亲水性和疏水性有机物的去除率分别提高了16.67%和28.30%。

Result:Postoperatively,nasal obstruction of ten patients with 13 noses was eliminated,headache and hyposmia were eliminated or remis...

结果 :10例、13鼻治疗后鼻塞症状消除,头痛、嗅觉减退症状消除或明显改善,中鼻甲与鼻中隔间距明显扩大。

The result showed that the imbricative cuticle scales arranged irregularly with different distance and irregular orientation. There were overlapping of cuticle cells, smoothing of the zigzag appearance of their edges, local denudation and attached debris.

观察结果表明:矿工头发超微结构的变化主要表现为毛小皮鳞片排列疏密不均,毛小皮间的间距有宽有窄、走向不甚规则;观察到有数个毛小皮细胞相互重叠,游离缘锯齿状变得较为平滑,局部出现片层脱落及在毛干表面附着一些碎片。

The results indicate that the different thermal expansions and elastoplastic properties and distributed randomness of various mineral particles composed of oil shale will lead to the nonuniformity of thermal field , deformation field and stress field in heating process , which makes the particles of oil shale deform incompatibly : and the release of product pyrolysis results in irreversible damages of oil shale material and structure . These are the main reasons for the thermal fracture of oil shale .

研究结果表明:组成油页岩各种矿物颗粒热膨胀和弹塑性性质的不同及其分布的随机性,导致油页岩加热过程中温度场,变形场和应力场的非均匀性,使得油页岩颗粒间变形不协调和油页岩热解产物释放引起油页岩材料与结构性能发生不可逆的劣化损伤,这是油页岩发生热破裂的主要原因;热传导方式加热油页岩,温度的传递比较缓慢,加热井和生产井的间距不宜过大,对油页岩储层性质存在差异时,注热井应选择较高热导率的区段;油页岩的层理对油页岩地下原位开发形成渗透带至关重要,油页岩达到热解温度会产生附加的膨胀力,首先在层理处开裂,应充分利用油页岩层理赋存条件改造其渗透性。

The results indicate that the different thermal expansions and elastoplastic properties and distributed randomness of various mineral particles composed of oil shale will lead to the nonuniformity of thermal field, deformation field and stress field in heating process, which makes the particles of oil shale deform incompatibly: and the release of product pyrolysis results in irreversible damages of oil shale material and structure. These are the main reasons for the thermal fracture of oil shale. When oil shale is heated through thermal conduction, temperature transfers slowly, so the spacing between heating well and production well should not be kept too long. When difference exists in oil shale reservoir's properties, heating well should be chosen in the high conductivity region. Oil shale's stratification is vital for developing permeation zone in in-situ retorting. Oil shale will generate additional expansion force as it reaches its pyrolysis temperature, and stratification will be cracked first, so the oil shale stratification should be utilized to enhance its permeability.

研究结果表明:组成油页岩各种矿物颗粒热膨胀和弹塑性性质的不同及其分布的随机性,导致油页岩加热过程中温度场、变形场和应力场的非均匀性,使得油页岩颗粒间变形不协调和油页岩热解产物释放引起油页岩材料与结构性能发生不可逆的劣化损伤,这是油页岩发生热破裂的主要原因;热传导方式加热油页岩,温度的传递比较缓慢,加热井和生产井的间距不宜过大,对油页岩储层性质存在差异时,注热井应选择较高热导率的区段;油页岩的层理对油页岩地下原位开发形成渗透带至关重要,油页岩达到热解温度会产生附加的膨胀力,首先在层理处开裂,应充分利用油页岩层理赋存条件改造其渗透性。

On the other hand, the interatomic distance between Pb center and the nearest oxygen seems not comparable with each other.

另一方面,铅中心与最近邻氧的原子间距有较大的变化。

A new method for the determination of interatomic separation-pressure relations is investigated and applied for alkali halides and MgO crystals.

给出了一种新的方法来决定固体的离子间距与压强的关系,并将这种方法应用到碱卤化合物和MgO晶体。

A model of linear strain relaxation is proposed to obtain the interatomic longitudinal spacings of the strained superlattice.

在线性驰豫应变假设下给出了应变超晶格纵向原子间距的几何模型。

Fig. 5 shows the change of interatomic distance of dangling bond after single vacancy structure is optimized in (9, 0) carbon nano-tube.

图5是在(9, 0)碳纳米管中单空位结构优化后悬挂键原子间距的变化情况。

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