Longitudinal beam sub assy drawing

The picture shows how the components of the longitudinal beam mounted together in a functional position. Longitudinal sub assy drawing needed to be determined for the components of the longitudinal beam dimensions and position of the hole is right for the upper horizontal pipe to occur conformity with each other 



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  • Cable channel end plate sub-assy drawing

    The picture shows how the component cable channel end plate attached together in a functional position.
    Cable channel end plate sub-assy drawing is required in order to set the dimensions for components c.cend plate, modesty panel and the position of the hole is right for vertical pipe outer and upper horizontal pipe to occur conformity with each other.


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  • Frame cover sub-assy drawing

    The picture shows how the cover is attached with leg frame sub assy in functional position.
    Frame cover sub-assy drawing is required in order to set the proper dimensions for the frame cover and profile bending the right to have happen conformity with each other.



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    Upper leg -lower leg sub assy drawing

    Pictures showing how the components of upper leg and lower leg sub assy mounted together in a functional position.
    Upper - lower leg sub assy drawing is required in order to set the dimensions for the vertical component of the inner pipe and outer pipe and the vertical position of the hole is right there is a match for each other, so that the resulting work desk with height in accordance with the will list the 730mm to 850mm













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  • Part catalog Assy / Sub assy drawing

    Part catalog
    Image shows a complete description of the number of components required in the manufacture of a product.

    Assy / Sub assy drawing (Figure assemblies / sub assemblies)
    Assy drawing (Fig. assembly) is a picture that shows how all the parts were installed with the complete product in its functional positio.
    The purpose of the assy drawing is to show the overall function of the unit assemblies and instead describes the forms of the individual.
    Sub assy drawing (image sub assemblies) show that the structure is assembled with one unit of the details in a functional condition.




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    Calculation of material requirements

    To produce or manufacture a product, it must first be made ​​a set of production drawings or working drawings.
    Working drawings is a way to analyze and communicate with others about the products to be made.
    To be able to know the dimensions and material requirements in the manufacture of a product needs to be drawn for each component so that the images could be described in full component.
    Working drawings includes images assembly (assy drawing), the image sub assemblies (sub assy drawing) and the image details (drawing part) It's all intertwined with each other, for the working drawings shall be made in a neat, orderly and followed each other to facilitate the manufacture of its products .


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  • CHAPTER IV

    CALCULATION OF MATERIAL REQUIREMENTS, ANALYSIS OF STRENGTH WORK ON THE TABLE AND WORKING

    From the results of a combination of abstraction and principles of the solution obtained variants of a product that meets customer satisfaction as well as meeting the beauty factor, comfortable, practical, these products can also be combined with hanging drawer, keyboard tray, computer, telephone without reducing the sense of beauty, as seen in the detail images 4.1








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    Concept confirms Varian

    Selection of sheet variations over the election, to choose the criteria that exist largely to satisfy the existing criteria, but in the end to be chosen the most appropriate variant.
    The most appropriate option is a variant to-4 with the following considerations:
    - Meets the criteria of beauty
    - Fulfilling a sense of comfort, practical simple.
    - The cost of making relatively inexpensive.
    - Easy to assemble and disassemble.
    Thus these four variants will be selected for further development.





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    Variant - variant Desk top

    From the combination of solution principles contained in Table 3.3 produced the following variants:
    o Variant 1: A.4 - B.3 - C.4 - D.2 - E.1-F.3 - G.4 - H.1 - J.1 - K.1 - L.2
    o Variant 2: A.3 - B.1 - C.2 - D.3 - E.4 - F.1 - G.3 - I.2 - J.4 - K.2 - L.1
    o Variant 3: A.2 - B.2 - C.4 - D.4 - E.2 - F.3 - H.4 - I.3 - J.1 - K.2 - L4
    o Variant 4: A.1 - B.4 - C.4 - D.1 - E.3 - F.1 - G.1 - pp.3 - I.1 - J.2 - K.1 - L. 1











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  • Combining the Principles of Solution

    Once the principle of sub-function solution is made, there should be a combination to form a system of mutual support. Combination of solution principles will be shared in several variants that can be seen in the table belo











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  • Selecting the Best Combination of Variations

    Because the number of combinations of variables that quite a lot, should be selected so that the planning drawings and calculations are not made for the calculations is less good.
    Variations and combinations are assessed based on the selected criteria, as follows:
    - In accordance with the function needs ..
    - In accordance with a list of the will,
    - The principle can be realized.
    - In the production cost limit.
    - Knowledge of the concepts adequately.
    - Compliance with the wishes of corporate planning or
    - Meet the safety requirements.
    Assessment of variations in the combination to get the best combination in the table selection sheet.




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  • Varian confirms Concept

    Selection of sheet variations over the election, to choose the criteria that exist largely to satisfy the existing criteria, but in the end to be chosen the most appropriate variant.


     The most appropriate option is a variant to-4 with the following considerations:
    - Meets the criteria of beauty
    - Fulfilling a sense of comfort, practical simple.
    - The cost of making relatively inexpensive.
    - Easy to assemble and disassemble.
    Thus these four variants will be selected for further development.




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  • Principle Solutions for subfunctions

    Having made ​​the overall structure and its function subfungsinya, we then look for the principles of a solution to meet these subfunctions. Methods to be used in finding a solution principle is the combination method, a method that combines all the existing solutions in the form of a matrix.
    The principle of the solution sought as much as possible, but the principles of the solution was analyzed again, where the principle of the less useful solutions can be eliminated or ignored in order in the next stage of the design concepts are not too many concepts that must be evaluated again.







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  • Sub Structure Function

    Overall structure of the function contained in figure 3.1 is less clear, so it needs to be clarified again by decomposing into subfunctions.

     Function and Structure Function Working Section Table
    In this section we shall define the functions and structure, to consider first the main elements involved in the system work desk.

    The main elements of the workbench:

    A. Support leg:
    - Upper leg support
    - Lower leg support

    2. stopper bolt
    3. Cable channel
    4. Long beam
    5. Modesty panel

    6. Cover:
    - Upper cover
    - Frame cover

    7. Foot plug
    8. Upper pipe plug
    9. adjuster bolt
    10. Desk top.

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    Working Table III abstraction

    Abstraction III transforming quantitative data into qualitative data is important. A third of this abstraction, it can be concluded that the desired work table is:
    a. A work table that can be raised-down.
    b. proportional to size
    c. convenient to use
    d. Meet the criteria of beauty.
    e. Manufacturing cost is not expensive.


    3.2.3.3 Abstraction Table IV Work
    In the abstraction IV is a further step in formulating abstractions III into the more common form. IV is the result of abstraction that will be subject to desk-height scaled by the proportional size and comfortable to use and meets the criteria of beauty with an inexpensive manufacturing cost.

    Work Table V 3.2.3.4 Abstraction
    On Abstraction V is a step to neutralize the whole problem with the task of formulating a free solution.
    Abstract The results of Table V is working to meet the required standard by the industry.
    3.2.4 Structure Function






    The structure function is generally defined as the relationship between input and output of a system of techniques that will execute a particular task, while the overall function is the usefulness of a tool. Overall function is then decomposed into several sub-functions that have a lower difficulty level. So that the sub-function is a task that must be executed by the components that make up the tool. Concatenation of several sub function to run an entire task is referred to as the structure function.
    The purpose of establishing the structure function is to obtain a clear definition of the existing sub-systems that can be described separately.
    3.2.4.1 Overall Function
    This function is illustrated by a block diagram showing the relationship between inputs and outputs where the inputs and outputs in the form of a flow of energy, material and signal.




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  • ABSTRACT: Work Desk

    All data related to the task, the purpose of solving, qualities that should be, completely and clearly Didefinisinikan a list will
    Once the list is complete will be made, so do I and II abstraction step by step to mendefinisakan basic packaging will list the results of abstraction that can be seen in the following section:

    Abstraction Tables I and II Job
    In the abstract I wish all on the list will be removed for a while.
    In the abstract II requirement that has no direct relationship to the principal functions and constraints can be ignored.
    Results of abstraction I and II can be seen in Table 3.2.






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  • List of desired

    Before we reach the specs, we do not yet know the outlines of how the form of tables which is height adjustable work and what will be achieved in the presenceof the workbench.
    Therefore drafted a list of the will. List will be listed initially randomly arranged in a systematic and ultimately included in a format called specifications.
    The first phase collected ideas that you want, the situation is still not settled, the ideas are as follows:
    a. Convenient to use the table.
    b. Height adjustable desks.
    c. Easily assembled and disassembled.
    d. Saving space, the table does not take a lot of places.
    e. Complementary components are easily replaced, compact and lightweight.
    f. Manufacturing cost is not expensive.
    g. In many manufacturing jobs.
    h. Dependence on foreign technology to a minimum.
    i. Can be made ​​in bulk.
    j. Style and moments are used as efficiently as possible.
    k. In try not too complex.
    l. Operation is relatively easy.
    m. Can be operated by one person.
    n. Safe for users.
    o. Easy maintenance.
    p. Meet the criteria of beauty.
    q. Can be developed as needed.
    r. Easily moved, move it.
    s. Dibengkel medium can be made.
    t. If any damage can be repaired in place.
    u. Framework must be sturdy.
    v. Resistant to corrosion.
    w. Materials are available in the country.







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  • CHAPTER III DESIGN CONCEPTS

    The Height Adjustment Table
    3.1 Duties
    Designing a work desk that can provide comfort to the wearer.

    3.2 Translation of Task (Clarification of Task)

    3.2.1 Background Design
    In general, people who work in offices spend more time behind a desk. One thing that is done routinely for years - years that must lead to saturation.
    But on the other hand, workload demands often makes an employee unable to take pause and unconsciously waktupun pass quickly.
    Departing from the problems mentioned above, the writer designed a comfortable work desk used so the wearer does not feel tired because this can affect the work produktivas. Here functions are preferred, then the design follows function, Though convenient to use the desk should be adjusted to the working atmosphere had to be done to support the work of the wearer.


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  • Detailed design

    This is the final stage of a systematic design method in the form of presentation of results.
    In this work step, carried out the works:
    Detailing the final image, including detailed drawings of each part / element of the product, the surface roughness, tolerance and so on.
    Detailing each data assembling and other data relating to the preparation of the production / manufacture.

    The work is obtained:
    Product documentation (online catalog)
    Shaped product documentation: detailed drawings, parts lists, data assembly, inspection, transportation performance and so on. In setuap steps above work, several variations of the solution is analyzed and if necessary inspected / tested in the form of the model / prototype, and then evaluated again. Kegatan selection, optimization and decision-making occur at each step of work. It should be further elaborated.


    At the end of this stage re-evaluated to see if the machine or system engineering products really meets the specifications and drawings document all other products have been completed and a complete





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  • Unarchiving into modules

    In this work step, the principles of the solution obtained in the previous step to be combined so that the module structure.
    The work is obtained:
    The structure of module / Module Structure.
    In contrast to the structure or function of the principle of the solution, the module structure of an early form of the intermediate solution into the system (sub systems) and parts (system elements).
    Module structures are formed as the drawings, flow charts, circuit diagrams or flow charts of software (software flowchart)
    2.3.2.3.2 Giving shape to the module
    On the steps of this work done to develop the design / layout of the module-modul.Ukuran-size geometry and other details of initially listed on the main modules, limited only to obtain the best modules.
    The work obtained is:
    Preliminary design of the main modules (key modules)
    The initial design of the form: scale drawings, circuit diagrams and so forth.
    2.3.2.3.3 Giving shape to the entire module.
    In this work a step preliminary design obtained in previous work steps enhanced by adding detailed information about the assembly and components used. Sometimes new modules can also be obtained in doing this work, after examination, for example, examination of the standard.
    The work is obtained:
    The overall design.

    The design of all important information regarding the configuration of production operations.
    Utamadari draft forms are: the scale drawings, a list of major components, flow charts instruments and so on.






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  • Evaluation

    Evaluation means determining the value, usefulness or power which is then compared with something dianggapa ideal.
    In engineering, one commonly used method is the method of VDI 2225.
    Broadly speaking, the steps taken are as follows:
    1. Determining the evaluation criteria (Identification of evaluation criteria) that is based on the specifications are made.
    2. Weighting criteria (Weighing of evaluation criteria)
    This step is selected criteria that have a degree of influence is at the level of concept variants. Evaluation should focus on key properties desired in the final solution.
    3. Determine the parameters of evaluation criteria (Compiling parameter)
    In order for the comparison of each variant kosep can be seen clearly, then selected a parameter or a quantity that is used by a variant of the concept.
    4. Inserting the parameter values ​​(Assesing value), the price should be included is the price nomonal, but if it is not possible, then VDI 2225 gives the price correlation and price tersebutsebagai qualitative examples are shown in Table 2.2 (Ref; G.Pahl-W.Bits, p. 350)
    5. Determining the overall value of the variant concept (Determining Overall Weighing Value / OWV)
    Overall value for concept variants can be calculated by the formula:
    OWV = - W1 Vv
    where:
    W1 = weight of evaluation criteria to the j
    Vv = the value of evaluation criteria to the j

    6. Estimating the uncertainty evaluation (Evaluation uncertainities)
    Mistakes can be disebakan evaluation by several things, including:
    - Errors subjective, such as a lack of information.
    - Error calculation parameters.
    7. If there is an adjacent OWV value of 2 (two) variants of the concept, then the evaluation will be a weak point (Weak Spot)
    By using the above evaluation method, it is expected to be obtained solutions are quite satisfactory.




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  • Manufacture a variant concept

    More information is needed to manufacture a variant concept to be done.
    This information can be obtained from:
    1. Drawings or sketches to see kemungkinankeserasian.
    2. Rough calculation based on the assumptions used.
    3. Preliminary testing of model testing to discover the nature of the primary or a quantitative approach to qualitative requirements on the performance of a finished product.
    4. Construction of the model for visualization and analysis.
    5. Analogy models and simulations are often done with the help of computers.
    6. Further studies of the literature.




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