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Design of electromechanical steering amplifier

  • Added: 29.07.2014
  • Size: 836 KB
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Description

Course draft explanatory note, drawings

Project's Content

Name Size
icon elektromehanicheskij_usilitel_rulja.rar
836 KB
icon POYASNILKA
icon Analyzing_Existing_Constructs.doc
615 KB
icon AKHD_Belebeyevskoye_ATP_2.doc
294 KB
icon BJD_10.DOC
103 KB
icon Structure.doc
34 KB
icon THOSE_PART.doc
30 KB
icon ECONOMICS_2003.doc
61 KB
icon Analyzing_Existing_Constructs.cdw
119 KB
icon AHD10.cdw
85 KB
icon installation_drawing.cdw
162 KB
icon DETAILING
icon Part_1.bak
78 KB
icon Part_1.cdw
78 KB
icon Part_2.bak
66 KB
icon Part_2.cdw
67 KB
icon Part_3.bak
59 KB
icon Part_3.cdw
60 KB
icon Part_4.bak
53 KB
icon Part_4.cdw
53 KB
icon Part_5.bak
56 KB
icon Part_5.cdw
61 KB
icon Part_6.bak
60 KB
icon Part_6.cdw
61 KB
icon Part_7.bak
53 KB
icon Part_7.cdw
53 KB
icon Fragment.frw
55 KB

Additional information

Contents

Cover Sheet

Thesis Project Assignment

Paper

Table of contents

Introduction

1 Analysis of economic activity of Belebeyevskoye ATP OJSC

1.2 Human Resources Analysis and Use

1.3 Analysis of profitability indicators

2 Development of electric amplifier

2.1 Analysis of existing structures

2.2 Description of development

2.3 Calculation of units

3 Calculation of steering elements

4 Process part (installation and maintenance of rudder electric booster)

5 Project safety and environmental friendliness

5.1 Ensuring labor safety conditions in OJSC Belebeyevskoye ATP

5.2 Safety features during operation of tractor T-30-69 with electric booster embedded in steering column

5.3 Environmental protection measures

5.4 Measures to protect the population and values

in emergency situations

6 Economic part

Conclusion

List of literature

Applications

Graphic part

1 Business Analysis

2 Analysis of existing structures

3 Functional diagram (for development)

4 Assembly drawing

5 Detail

6 Installation drawing

7 R&D (ergonomic calculation)

8 Job Instruction (Electric Booster Unit)

9 Economic part

4 development of technology for inspection of electrically controlled nozzles

A routing is the only working document that reflects all issues related to the manufacture of parts or the assembly of products.

It is the organizing beginning of the technological process of product production. This is a complete source of information for the worker and the wizard about the sequence of work in the workplaces; about equipment, accessories and tools, materials and power sources, requirements to the product before and after the performed operation. The routing defines not only the operations or techniques associated with qualitative changes in materials, workpieces, but also the rules for their movement, storage, control and testing methods, special safety and industrial sanitation rules that must be observed during the execution of the operation. It contains the level of work and information related to the standardization of labor costs.

In accordance with the topic of the diploma project, it is necessary to develop a technology for checking electrically controlled nozzles using the presented bench. The process is presented as follows:

4.1 Install the nozzle on the bench using the key S14, the labour intensity of this operation is 0.03 people.

4.2 Connect sensors, fuel lines to the installed nozzle, attach the nozzle on the sleeve, using the switches S13 S17, the labor intensity of this operation is 0.05 people.

4.3 Check injector (bench actuation):

4.3.1 Check the injector in the start-up mode, using the measuring system and personal computer, the labor intensity of this operation is 0.05 hourly;

4.3.2 Check the injector in idling mode, using the measuring system and personal computer, the labor intensity of this operation is 0.025 people.

4.3.3 Check the injector at nominal operation mode, using the measuring system and personal computer, the labour intensity of this operation is 0.016 people.

4.3.4 Check the injector in the maximum load mode, using the measuring system and personal computer, the labor intensity of this operation is 0.016 people.

4.3.5 Check the injector for tightness, using the measuring system and personal computer, the labor intensity of this operation is 0.008 people.

4.4 Analyze the obtained parameters and detect the state of the nozzle, the labor intensity of this operation is 0.016 people;

4.5 Disconnect sensors, fuel lines, sleeve using switches S13 S17, labour intensity of this operation is 0.05 people.

4.6 Remove the nozzle from the bench using the key S14, the labour intensity of this operation is 0.03 people.

The stand is serviced by one person, the total difficulty of checking one nozzle is 0.291 people.

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