The 6 references with contexts in paper Xuedao Shu, Chuan Liu, Ying Wang, Сюэдао Шу, Чуань Лю, Ин Ванг (2016) “ИССЛЕДОВАНИЕ ТЕХНОЛОГИИ ПАРАЛЛЕЛЬНОЙ ПОПЕРЕЧНО-КЛИНОВОЙ ПРОКАТКИ ПОЛУОСИ АВТОМОБИЛЯ // STUDY ON TECHNOLOGY OF MULTI-WEDGE CROSS-WEDGE ROLLING OF AUTOMOBILE SEMI-AXIS SHAFTS” / spz:neicon:vestift:y:2016:i:2:p:49-53

1
Forming technologies and theories of Cross Wedge Rolling / Shu Xuedao [et al.]. – Beijing: China science & technology press, 2014.
Total in-text references: 1
  1. In-text reference with the coordinate start=4490
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    However, the investment of mold is large by single-wedge cross-wedge rolling, hence, it will © Shu Xuedao, Liu Chuan, Wang Ying, 2016 further reduce the costs and weight of the mold and equipment by applying MCWR technology
    Exact
    [1, 2]
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    . MCWR is one kind of plastic forming technology which conducts radial pression and axial extension on the raw shafts simultaneously by couples of wedges called main wedge and side wedges. And MCWR is an advanced precision long shaft parts near net shaping technology which has many advanta- ges like saving roll surface, reducing weight of the equipment, high efficiency, saving materials and

2
Research on influences of axial movement for cross wedge rolled asymmetric shafts / Peng Wenfei [et al.] // China Mechanical Engineering. – 2014. – N 2. – P. 311–314.
Total in-text references: 1
  1. In-text reference with the coordinate start=4490
    Prefix
    However, the investment of mold is large by single-wedge cross-wedge rolling, hence, it will © Shu Xuedao, Liu Chuan, Wang Ying, 2016 further reduce the costs and weight of the mold and equipment by applying MCWR technology
    Exact
    [1, 2]
    Suffix
    . MCWR is one kind of plastic forming technology which conducts radial pression and axial extension on the raw shafts simultaneously by couples of wedges called main wedge and side wedges. And MCWR is an advanced precision long shaft parts near net shaping technology which has many advanta- ges like saving roll surface, reducing weight of the equipment, high efficiency, saving materials and

3
Yu, Penghui Influence of Process Parameters on Grain Size of Hollow Axle in Multi-wedge Cross Wedge Rolling / Yu Penghui, Shu Xuedao, Peng Wenfei [et al.] // Hot Working Technology. – 2014. – N 43. – P. 96–99.
Total in-text references: 1
  1. In-text reference with the coordinate start=5057
    Prefix
    And MCWR is an advanced precision long shaft parts near net shaping technology which has many advanta- ges like saving roll surface, reducing weight of the equipment, high efficiency, saving materials and is low cost compared with single wedge CWR. This technology is one of the most effective technologies to produce long shafts professionally and economically in addition
    Exact
    [3–6]
    Suffix
    . Therefore, studying new effective and energy saving technology on producing large-scale long shafts meets the urgent requirement of the development of society and the market. At present, the research study of automobile semi-axis shafts by MCWR is almost vacant all over the world.

4
Yang, Cui-ping Numerical simulation study on the cause of ellipse generation in two-roll cross wedge rolling the hollow parts with uniform inner diameter / Yang Cui-ping, Zhang Kang-sheng, Hu Zheng-huan // Journal of University of Science and Technology Beijing. – 2012. – N 34. – P. 1426–1431.
Total in-text references: 1
  1. In-text reference with the coordinate start=5057
    Prefix
    And MCWR is an advanced precision long shaft parts near net shaping technology which has many advanta- ges like saving roll surface, reducing weight of the equipment, high efficiency, saving materials and is low cost compared with single wedge CWR. This technology is one of the most effective technologies to produce long shafts professionally and economically in addition
    Exact
    [3–6]
    Suffix
    . Therefore, studying new effective and energy saving technology on producing large-scale long shafts meets the urgent requirement of the development of society and the market. At present, the research study of automobile semi-axis shafts by MCWR is almost vacant all over the world.

5
Zhang, Ting Study on forming mechanism Rule of Hollow Railway Axle in Multi-wedge Synchrostep Cross Wedge Rolling / Zhang Ting, Shu Xuedao. – Ningbo University, 2013.
Total in-text references: 1
  1. In-text reference with the coordinate start=5057
    Prefix
    And MCWR is an advanced precision long shaft parts near net shaping technology which has many advanta- ges like saving roll surface, reducing weight of the equipment, high efficiency, saving materials and is low cost compared with single wedge CWR. This technology is one of the most effective technologies to produce long shafts professionally and economically in addition
    Exact
    [3–6]
    Suffix
    . Therefore, studying new effective and energy saving technology on producing large-scale long shafts meets the urgent requirement of the development of society and the market. At present, the research study of automobile semi-axis shafts by MCWR is almost vacant all over the world.

6
Jiang, Yang The effect of process parameter on non-circularity of thick-walled hollow axle during cross wedge rolling / Jiang Yang [et al.] // Journal of Plasticity Engineering. – 2012. – N 1. – P. 19–24. Received 09.10.2015
Total in-text references: 1
  1. In-text reference with the coordinate start=5057
    Prefix
    And MCWR is an advanced precision long shaft parts near net shaping technology which has many advanta- ges like saving roll surface, reducing weight of the equipment, high efficiency, saving materials and is low cost compared with single wedge CWR. This technology is one of the most effective technologies to produce long shafts professionally and economically in addition
    Exact
    [3–6]
    Suffix
    . Therefore, studying new effective and energy saving technology on producing large-scale long shafts meets the urgent requirement of the development of society and the market. At present, the research study of automobile semi-axis shafts by MCWR is almost vacant all over the world.