1. Luan Xifu, Zhang Tao and Zhao Chunxiang. Theoretical Mechanics 理論力學(xué).1st ed. 哈爾濱工業(yè)大學(xué)出版社, 2007.

2. Hibbeler RC. Engineering Mechanics (Statics), 10th ed. 高等教育出版社, 2004.

3. Hibbeler RC. Engineering Mechanics (Dynamics), 10th ed. 高等教育出版社, 2004.

4. Hibbeler RC. Mechanics of Materials, 5th ed. 高等教育出版社, 2004. 2100433B

Engineering Mechanics (《工程力學(xué)》全英文)造價(jià)信息

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教材 詳見線下技術(shù)要求文件|10本 2 查看價(jià)格 溫州貝爾教儀有限公司 廣東   2022-05-24
IME3D教程書本教材 "進(jìn)階版書本教材:封面:250克銅板紙,膠釘,覆亞膜內(nèi)文:1|1本 3 查看價(jià)格 深圳市大昆三維科技有限公司 全國(guó)   2019-08-07
力學(xué)軌道套裝 ,滑輪套件,光電門固定桿,M5X10蝶形栓若干,Ф12X50金屬固定桿2個(gè),彈簧圈2個(gè),L型高度調(diào)節(jié)套裝一套,方形螺母若干等,軌道與小車的接觸為截面3點(diǎn)接觸,減少了面接觸帶來(lái)的滑動(dòng)摩擦力,可替代氣墊導(dǎo)軌,避免氣軌噪聲和能耗,能夠完成基礎(chǔ)型教材力學(xué)實(shí)驗(yàn)及上百個(gè)擴(kuò)展實(shí)驗(yàn).|15套 1 查看價(jià)格 重慶市馳諾科技有限公司 四川   2019-06-24
力學(xué)軌道套裝 ,滑輪套件,光電門固定桿,M5X10蝶形栓若干,Ф12X50金屬固定桿2個(gè),彈簧圈2個(gè),L型高度調(diào)節(jié)套裝一套,方形螺母若干等,軌道與小車的接觸為截面3點(diǎn)接觸,減少了面接觸帶來(lái)的滑動(dòng)摩擦力,可替代氣墊導(dǎo)軌,避免氣軌噪聲和能耗,能夠完成基礎(chǔ)型教材力學(xué)實(shí)驗(yàn)及上百個(gè)擴(kuò)展實(shí)驗(yàn).|15套 1 查看價(jià)格 廣州市翔達(dá)教學(xué)儀器有限公司 四川   2019-06-23
力學(xué)軌道套裝 ,滑輪套件,光電門固定桿,M5X10蝶形栓若干,Ф12X50金屬固定桿2個(gè),彈簧圈2個(gè),L型高度調(diào)節(jié)套裝一套,方形螺母若干等,軌道與小車的接觸為截面3點(diǎn)接觸,減少了面接觸帶來(lái)的滑動(dòng)摩擦力,可替代氣墊導(dǎo)軌,避免氣軌噪聲和能耗,能夠完成基礎(chǔ)型教材力學(xué)實(shí)驗(yàn)及上百個(gè)擴(kuò)展實(shí)驗(yàn).|1套 1 查看價(jià)格 廣州市翔達(dá)教學(xué)儀器有限公司 四川   2019-06-23
力學(xué)實(shí)驗(yàn)桌 1、規(guī)格:1200×600×780mm; 2、材質(zhì):鋁塑結(jié)構(gòu):主框架全鋁Z字型結(jié)構(gòu),承重性強(qiáng),整體外觀簡(jiǎn)約美觀.臺(tái)面:采用12.7mm優(yōu)質(zhì)實(shí)芯理化板,防火阻燃、防腐蝕、耐酸堿、防靜電、耐磨、抗污|1張 1 查看價(jià)格 成都志能實(shí)驗(yàn)儀器有限公司 四川   2020-07-21
力學(xué)軌道套裝 ,滑輪套件,光電門固定桿,M5X10蝶形栓若干,Ф12X50金屬固定桿2個(gè),彈簧圈2個(gè),L型高度調(diào)節(jié)套裝一套,方形螺母若干等,軌道與小車的接觸為截面3點(diǎn)接觸,減少了面接觸帶來(lái)的滑動(dòng)摩擦力,可替代氣墊導(dǎo)軌,避免氣軌噪聲和能耗,能夠完成基礎(chǔ)型教材力學(xué)實(shí)驗(yàn)及上百個(gè)擴(kuò)展實(shí)驗(yàn).|1套 1 查看價(jià)格 重慶市馳諾科技有限公司 四川   2019-06-24
模型制作教材 企業(yè)自編|6本 3 查看價(jià)格 佛山市粵風(fēng)智能科技有限公司 全國(guó)   2019-08-05

Introduction

(Students are required to know the study objects, contents and methods of Theoretical Mechanics and Mechanics of Materials.)

Introduction

01 Reductions of force systems

(Students should be able to understand the Principles of statics, how to reduce a concurrent force system to a single equivalent force, how to calculate the moment of a force about a point/axis and the concepts of couples, how to draw free-body diagrams, how to reduce an arbitrary force system to a force and a couple)

1.1 Fundamental concepts of statics

1.2 Basic operations with force systems

1.3 Support reactions and free-body diagrams

1.4 Reductions and resultants of force systems

Tests for week 1

02 Equilibrium of force systems

( Students should be able to perform equilibrium analyses of composite bodies and determine the unknowns in the structure,understand the role of friction in equilibrium analysis and solve some simple problems involving friction)

2.1 Coplanar equilibrium equations

2.2 Equilibrium of composite bodies

2.3 Plane truss analysis

2.4 Center of gravity and centroid

2.5 Friction

Tests for week 2

03 Kinematics of a point

(Students should know how to determine the position, velocity and acceleration of a point by the method of rectangular coordinates and the method of normal and tangential coordinates.)

3.1 Kinematics of a point

04 Translation and rotation of rigid bodies

(Students should understand the fundamental concepts of translation and rotation of rigid bodies.)

4.1 Translation and rotation of rigid bodies

05 Composite motion of a point

(Students are required to know the definition of absolute, relative and transport velocities (accelerations), and should be able to solve problems using theorem of composition of velocities (accelerations).)

5.1 Composite motion of a point (I)

5.2 Composite motion of a point (II)

Tests for week 3

06 Plane motion of rigid bodies

(Students should be able to perform velocity analysis by the base point method, theorem for projection of velocities and instantaneous center for velocities, and also acceleration analysis by the based point method.)

6.1 Plane motion of rigid bodies

6.2 Plane motion analysis (I)

6.3 Plane motion analysis (II)

Tests for week 4

07 Kinetics of a particle

(Students should know how to determine the force, acceleration or velocity of a particle by differential equations of motion.)

7.1 Kinetics of a particle

08 Principle of impulse and momentum

(Students are required to know the concepts about impulse and momentum and be able to solve kinetic problems using the principle of linear impulse and momentum and motion of the mass center for a system of particles.)

8.1 Principle of impulse and momentum (I)

8.1 Principle of impulse and momentum (II)

Test for week 5

09 Principle of angular impulse and momentum

(Students are required to know the concepts about angular impulse and angular momentum and be able to solve kinetic problems using the principle of angular impulse and momentum.)

9.1 Mass moment of inertia

9.2. Principle of angular impulse and momentum

10 Principle of work and kinetic energy

(Students should be able to solve kinetic problems using the principle of work and kinetic energy.)

10.1 Principle of work and kinetic energy

Test for week 6

11 D'Alembert's principle

(Students should know how to determine the inertial forces and inertial moments and be able to solve kinetic problems using D’Alembert’s principle.)

11.1 D'Alembert's principle

Test for week 7

12 Stress

(Students should be able to understand the method of section for internal force determination, the concepts of stress, gerneral stress state, average normal and shear stresses, and safety factor, the method to determine required cross section area or dimensions.)

12.1 Equilibrium of a deformable body

12.2 Stress

12.3 Average normal stress in an axially loaded bar

12.4 Average shear stress

12.5 Allowable stress

13 Strain

(Students should be able to understand the concepts of strain, normal strain, shear strain, general strain state and the assumpations for small strain analysis.)

13 Strain

Test for week 8

14 Mechanical properties of materials

(Students should understand the concepts related to stress-strain diagram, brittle and ductile materials, and Hooke's law.)

14.1 The tension and compression test

14.2 The stress-strain diagram

14.3 Stress-strain behavior of ductile and brittle materials

14.4 Hooke's law, Poisson's ratio, the shear stress- strain diagram

15 Axial load

(Students should be able to understand the concept of Saint-Venant's Principle, know how to determine the elastic deformation of an axially loaded bar and how to solve statically indeterminate problems.)

15.1 Saint-Venant's Principle, Elastic deformation of an axially loaded member

15.2 Elastic deformation of an axially loaded member (continued)

15.3 Principle of superposition, Statically indeterminate axially loaded member

15.4 Thermal stress, the stress on the inclined surface

15.5 Stress concentration

Test for week 9

17 Bending

(Students should be able to draw shear force and bending moment diagrams, know the sign conventions for shear force and bending moment, know the derivation of normal stress on the cross section of beam bending and the flexure formula.)

17.1 Shear and moment diagrams

17.2 Graphical method for constructing shear and moment diagrams

17.3 Bending deformation of a straight member

17.4 The flexure formula

Test for week 10

16 Torsion

(Students should know the shear stress distribution of a circular shaft and how to solve statically indeterminate problems for torque-loaded members.)

16.1 Torsional deformation of a circular shaft

16.2 The torsion formula

16.3 Angle of twist

16.4 Statically indeterminate torque-loaded members

18 Transverse shear

(Students should know the shear stress distribution in a beam with prismatic cross seection and the method to determine the shear stress and shear flow for beams or thin-walled members.)

18.1 Shear in straight members, the shear formula

18.2 Shear stresses in beams

19 Combined loadings

(Students should know how to determine the critical section and critical point of member under combined deformation.)

19.1 Thin-walled pressure vessels

19.2 State of stresses caused by combined loadings

test for week 11

20 Stress transformation

(Students should be familiar with the concepts of stress state, know how to perform plane-stress transformation, know how to perform stress state analysis by graphical method.)

20.1 Plane-stress transformation

20.2 Principal stresses and maximum in-plane shear stress

20.3 Mohr's circle-plane stress

20.4 Absolute maximum shear stress

21 Deflections of beams and shafts

(Students should be able to determine the deflection and slope of beams by the integration method and the superposition method, know to to solve statically indeterminate problems.)

12.1 The elastic curve

12.2 Slope and displacement by integration

12.3 Method of superposition, statically indeterminate beams and shafts

Test for Week 12

Engineering Mechanics (《工程力學(xué)》全英文)參考教材常見問(wèn)題

Engineering Mechanics (《工程力學(xué)》全英文)參考教材文獻(xiàn)

基礎(chǔ)力學(xué)課程全英文教學(xué)實(shí)踐與探索 基礎(chǔ)力學(xué)課程全英文教學(xué)實(shí)踐與探索

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理論力學(xué)和材料力學(xué)是高校工科專業(yè)的重要基礎(chǔ)課程,課程開設(shè)的主要目的是培養(yǎng)學(xué)生掌握工程力學(xué)的基本理論、計(jì)算技術(shù)與實(shí)驗(yàn)技能,能夠解決工程領(lǐng)域中與力學(xué)相關(guān)的基本問(wèn)題.該文對(duì)基礎(chǔ)力學(xué)課程全英文教學(xué)的經(jīng)驗(yàn)進(jìn)行了總結(jié),針對(duì)教學(xué)過(guò)程中發(fā)現(xiàn)的一些問(wèn)題和新形勢(shì)下對(duì)全英文教學(xué)模式的要求,闡述了多項(xiàng)正在實(shí)施且不斷改進(jìn)的教學(xué)舉措,并取得了很好的教學(xué)效果.

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《工程力學(xué)》參考習(xí)題 《工程力學(xué)》參考習(xí)題

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大?。?span id="y0i0lsv" class="single-tag-height">2.6MB

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. Word 專業(yè)資料 2011 年課程考試復(fù)習(xí)題及參考答案 工程力學(xué) 計(jì)算題: 1.梁結(jié)構(gòu)尺寸、受力如圖所示,不計(jì)梁重,已知 q=10kN/m ,M =10kN · m,求A、B、C處的約束力。 2.鑄鐵 T 梁的載荷及橫截面尺寸如圖所示, C 為截面形心。已知 I z=60125000mm 4,yC=157.5mm ,材 料許用壓應(yīng)力 [σc]=160MPa ,許用拉應(yīng)力 [σt]=40MPa 。試求:①畫梁的剪力圖、彎矩圖。②按正應(yīng)力 強(qiáng)度條件校核梁的強(qiáng)度。 3.傳動(dòng)軸如圖所示。已知 Fr=2KN , Ft=5KN ,M =1KN· m,l=600mm ,齒輪直徑 D=400mm ,軸的 [σ]=100MPa 。試求:①力偶 M 的大小;②作 AB 軸各基本變形的力圖。③用第三強(qiáng)度理論設(shè)計(jì)軸 AB 的直徑 d。 4.圖示外伸梁由鑄鐵制成,截面形狀如圖示。已知 Iz=4500cm 4

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在海岸工程建設(shè)中,對(duì)現(xiàn)場(chǎng)和建筑物進(jìn)行的測(cè)驗(yàn)。用以探索海岸工程設(shè)施的可能性和合理性,探索有關(guān)海洋動(dòng)力因素運(yùn)動(dòng)特征和岸灘演變規(guī)律,以及它們同海岸工程建筑物或其他設(shè)施之間相互作用的規(guī)律,為海岸工程的實(shí)施提供科學(xué)依據(jù)。這是研究海岸工程的一種重要方法。

海岸工程的建筑物的結(jié)構(gòu),可分為斜坡式、直墻式、透空式和浮式等4種。無(wú)論哪一種結(jié)構(gòu),都需要先經(jīng)過(guò)室內(nèi)的模擬試驗(yàn)、數(shù)學(xué)模型和現(xiàn)場(chǎng)測(cè)驗(yàn)等手段進(jìn)行研究論證。在海岸帶建造各種工程設(shè)施時(shí),常需進(jìn)行工程前期的環(huán)境調(diào)查、理論分析研究和模型試驗(yàn)研究,確定各種動(dòng)力因素對(duì)工程設(shè)施的作用,搞清工程設(shè)施對(duì)岸灘演變和環(huán)境、生態(tài)的影響。此外,對(duì)重要的或有代表性的海岸工程還需進(jìn)行單項(xiàng)或局部工程設(shè)施的現(xiàn)場(chǎng)試驗(yàn),以提供必要的科學(xué)論證。有些海岸工程建成后,仍要進(jìn)行長(zhǎng)期的現(xiàn)場(chǎng)測(cè)驗(yàn)。為此在工程施工階段,需將有關(guān)量測(cè)傳感器預(yù)裝在建筑物的測(cè)試部位,工程竣工后就能開始測(cè)試。理論分析和模型試驗(yàn)的成果,常需通過(guò)現(xiàn)場(chǎng)原型的測(cè)驗(yàn)進(jìn)行驗(yàn)證,而海岸工程現(xiàn)場(chǎng)測(cè)驗(yàn)又常為海岸工程的理論研究和模型試驗(yàn)提出新的課題和提供論證資料。

海岸工程海岸動(dòng)力因素及其對(duì)岸灘的影響

在現(xiàn)場(chǎng)量測(cè)波浪、潮汐、水流、泥沙在近岸帶運(yùn)動(dòng)的基本特征資料,以及這些動(dòng)力因素同各種類型的岸段(平直海岸、海灣、河口、瀉湖通道、島嶼等)各種岸灘(沙質(zhì)、礫質(zhì)、淤泥質(zhì)等)相互作用的基本資料。根據(jù)上述資料,進(jìn)一步分析研究淺海區(qū)的波浪譜、波浪變形,破波帶的波浪、水流與泥沙運(yùn)動(dòng)規(guī)律,以及岸灘的演變規(guī)律等。

海岸工程海岸動(dòng)力因素與海岸工程建筑物

如關(guān)于、波浪對(duì)斜坡堤的作用、直墻堤和采油(氣)平臺(tái)樁柱上的波壓力、丁壩和順壩的平面布置及其尺度對(duì)于保灘促淤效果的現(xiàn)場(chǎng)測(cè)驗(yàn)。海岸工程建筑結(jié)構(gòu)型式、工程材料、地基基礎(chǔ)問(wèn)題  通常需要在現(xiàn)場(chǎng)測(cè)定新型海岸工程建筑物和新型材料的使用特性,天然地基和人工地基的承載能力,材料防腐耐久性能和防止生物附著的技術(shù)措施等。還包括在現(xiàn)場(chǎng)進(jìn)行新技術(shù)和新材料的中間試驗(yàn),如鋼柱防腐技術(shù)的現(xiàn)場(chǎng)測(cè)驗(yàn)、聚烯烴材料在海水中老化的試驗(yàn)等。在現(xiàn)場(chǎng)量測(cè)波浪、水流等因素同直墻式、斜坡式、透空式和浮式等海岸工程建筑物相互作用的基本資料,根據(jù)這些資料分析各種動(dòng)力因素對(duì)建筑物的作用荷載,建筑物附近的水位變化、流速場(chǎng),建筑物的平面布置及其結(jié)構(gòu)型式對(duì)波浪、水流、泥沙運(yùn)動(dòng)的影響等。

海岸工程海岸工程施工方法、施工技術(shù)及施工機(jī)械

如中堵口合龍的程序、筑堤、堵口技術(shù)以及機(jī)具的試驗(yàn),新型打樁、挖泥機(jī)具的試驗(yàn)等。

海岸工程海岸工程觀測(cè)儀器及裝置

現(xiàn)場(chǎng)測(cè)驗(yàn)用的儀器、裝置的性能和精度直接影響研究成果。新儀器研制成后,為了確保其精度和穩(wěn)定度,往往需要經(jīng)過(guò)一定時(shí)期的現(xiàn)場(chǎng)測(cè)試考驗(yàn)。

海岸工程為了某些特定的目標(biāo)

如水產(chǎn)養(yǎng)殖、能源開發(fā)、環(huán)境保護(hù)等需要,進(jìn)行專門的工程設(shè)施現(xiàn)場(chǎng)測(cè)驗(yàn),作為大面積推廣前的中間試驗(yàn)。

歐洲北海沿岸、美國(guó)東西兩岸、蘇聯(lián)黑海、日本沿海建立的試驗(yàn)站,對(duì)淺水區(qū)風(fēng)浪譜、破波帶水流和泥沙運(yùn)動(dòng)規(guī)律、波浪對(duì)直墻式防波堤和透空式建筑物作用力等方面進(jìn)行了大量的測(cè)驗(yàn)和研究。中國(guó)在20世紀(jì)50年代以來(lái),先后在塘沽新港、長(zhǎng)江口、福建莆田、浙江慈溪和海鹽、渤海及山東沿海,建立了海港淤積研究站、海堤試驗(yàn)站、丁壩保灘促淤觀測(cè)站、網(wǎng)壩促淤現(xiàn)場(chǎng)試驗(yàn)點(diǎn)、直墻上和孤立柱上波壓力現(xiàn)場(chǎng)觀測(cè)點(diǎn)、鋼樁防腐現(xiàn)場(chǎng)觀測(cè)點(diǎn)等現(xiàn)場(chǎng)測(cè)驗(yàn)臺(tái)站。海岸工程現(xiàn)場(chǎng)測(cè)驗(yàn)常需設(shè)置專門的臺(tái)站進(jìn)行工作,按其測(cè)驗(yàn)內(nèi)容和范圍的不同,可分為單項(xiàng)試驗(yàn)站和綜合試驗(yàn)站;按其觀測(cè)期限又可分為臨時(shí)試驗(yàn)站和長(zhǎng)期試驗(yàn)站。

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For Industrial Engineering courses focusing on logistic engineering and management. An authoritative exploration of logistics management within the engineering design and development process, this book concentrates on the design, sustaining maintenance and support of systems from a lifecycle perspective. This is the only text that deals with logistics and system support: (1) a...(展開全部) For Industrial Engineering courses focusing on logistic engineering and management. An authoritative exploration of logistics management within the engineering design and development process, this book concentrates on the design, sustaining maintenance and support of systems from a lifecycle perspective. This is the only text that deals with logistics and system support: (1) as an integrated entity and an integral part of the overall structure of a total "system"; (2) from a total system life-cycle perspective--from the initial identification of a need through design and development, production, utilization and support, and retirement and material disposal; and (3) as a major consideration early in the system life cycle during the system engineering design and development process. MyLab或是Mastering系列是在線作業(yè)系統(tǒng)。Access Code Card是在線作業(yè)系統(tǒng)的訪問(wèn)碼,是老師和學(xué)生課堂之外網(wǎng)絡(luò)互動(dòng)及交流的平臺(tái),個(gè)人是無(wú)法使用這個(gè)平臺(tái)的。請(qǐng)讀者注意您購(gòu)買的這個(gè)ISBN是不帶Access Code Card的。2100433B

《土木工程概論(Introduction to Civil Engineering)》共8章,主要包括: Chapter I Civil Engineering and Civil Engineers(土木工程和土木工程師) Chapter II Civil Engineering Materials(土木工程材料) Chapter III Construction Engineering(建筑工程) Chapter IV Civil Engineering Structures(土木工程) Chapter V Construction of Civil Engineering(土木工程施工) Chapter VI Construction Management(施工與管理) Chapter VII Hazard Mitigation of Civil Engineering(土木工程減災(zāi)) Chapter VIII Application of Information Technology in Civil Engineering(信息技術(shù)在土木工程中的應(yīng)用)

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