scholarly journals Development of Strength Calculation Program for Arbitrary Section Based on BIM Technology

2021 ◽  
Vol 2044 (1) ◽  
pp. 012124
Author(s):  
Yongyi Yang ◽  
chenyao Fu ◽  
haiyan Xu
2015 ◽  
Vol 12 (03) ◽  
pp. 1550013 ◽  
Author(s):  
Siu-Siu Guo ◽  
Dongfang Wang ◽  
Zishun Liu

The concept of structural intensity (SI) is extended to the random domain by introducing a physical quantity denominated random structural intensity (RSI). This quantity is formulated for mechanical systems whose dynamical responses are stochastic due to random excitations. In order to fully characterize the stochastic behavior of a system under random loadings, it is imperative to obtain the probability density function (PDF) of RSI. Based on the elastic theory and the definition of SI, RSI is expressed as functions of system responses. In general, the PDF of system responses is governed by Fokker–Planck–Kolmogorov (FPK) equation under the assumption that random dynamic loadings are idealized as white noise excitations. Therefore, the PDF of RSI is derived with the joint PDF of system responses. In the present study, four demonstrating cases of beams and plates under separately concentrated and uniform random loadings are studied to investigate the properties of RSI. Stationary and non-stationary PDFs of RSI at arbitrary section of beam and plate are obtained. Numerical results show that the PDF of RSI is transient at early stage of stationary loading and then converges to the exact stationary ones as time increases. With the obtained PDFs of RSI, energy transmission path over the beam and plate can be determined, which is guided from the locations with lower probabilities of RSI to the ones with higher probabilities of RSI. Furthermore, virtual energy flow sinks on the plate and beam can be found, which are identified by the locations with the maximum probabilities of RSI.


Author(s):  
Shaojun Wang ◽  
Xiaoying Tang ◽  
Houde Yu ◽  
Yaozhou Qian ◽  
Jun Cheng ◽  
...  

Responding to complexity and particularity welding on the geometry of TKY tubular node, this paper constructs mathematical model of tubular joint weld of arbitrary section by simplifying the geometry structure, and draws welded joints and ultrasonic sound beam lines based on the actual specifications in order to solve the problems of low efficiency, positioning difficulty, missing inspection and etc. The computeraided simulation technology can realize the visualization in the beam coverage model of welded joints, which can commendably guide the design of ultrasonic phased array inspection and overcome the blindness of the instrument detection parameters, thus improving the effectiveness and pertinence of the actual detection. Study shows that it is beneficial to enhance the effectiveness of the detection tubular joint weld by employment of Visual beam and ultrasonic phased array technology.


Author(s):  
Igor Sergeyevich Sazonov ◽  
Mikhail Evgenyevich Lustenkov ◽  
Ekaterina Sergeyevna Lustenkova ◽  
Alexander Petrovich Prudnikov ◽  
Maxim Victorovich Razgonov
Keyword(s):  

Author(s):  
A.N. Sirotenko ◽  
◽  
S.A. Partko ◽  
G.V Davydov

The article is devoted to the modernization of the design of the inclined chamber mechanism of the combine harvester. The inclined chamber is connected to the header. When moving over the roughness of the field, the header changes the angle of inclination. At certain angles of inclination of the header, there is an interruption in the supply of bread mass and accumulation in front of the inclined chamber. The article proposes a new design of the inclined chamber mechanism for a "Vector" type combine and performs a strength calculation of this node.


2014 ◽  
Vol 28 (32) ◽  
pp. 1450231 ◽  
Author(s):  
Hai-Sheng Shu ◽  
Xiao-Na Shi ◽  
Shi-Dan Li ◽  
Shao-Gang Liu ◽  
Wei-Yuan Wang ◽  
...  

For the propagation of harmonic longitudinal stress wave in phononic crystal rod (PCR), transfer matrix of elastic wave in PCR was derived based on the wave equation and band structure of infinite PCR was calculated. For semi-infinite PCR, theoretical derivation of dynamic stress solutions of arbitrary section and internal interfaces was conducted with Bloch theorem. Inherent relationship between dynamic stress and surface wave modal frequency (SWMF) was analyzed. Afterwards, numerical computation mainly focusing on dynamic stress level of the internal interfaces of PCR was given in detail. Finally, numerical analysis for finite PCR was carried out and verified by finite element simulation. Our results show that SWMF has a significant influence on the dynamic stress, and exactly it is the formal pole of stress solution whose nature is directly determined by the sort order of the two materials constituting the PCR.


2017 ◽  
Vol 116 ◽  
pp. 01009
Author(s):  
Vladimir Mozgovyi ◽  
Sergei Baran ◽  
Alexander Kutsman

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