Abhijeet_29 Universal Joint Explain New

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    V.J.T.I. ABHIJEET PATIL

    (091040041)

    UNIVERSAL JOINT:

     

    PART NAME: BODY

    Entern! nt" #$rt %e&!n '"ren*+:• This shows you how to enter in the part design workbench. select File-

     New command

    • Select Part in the List of Types field and click ok.

    • The Part Design workbench is loaded and an empty Part document

    opens.

    To draw uniersal !oint first select the plane on which the component to be

    drawn and then by selecting the shapes drawing shapes such as line" circle

    and rectangle and thus make the part green by using constraint command andgiing dimensions accordingly.

    • Steps followed# Part design$sketch$lines geometry$constraint$e%it

    workbench

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 1

    Drawing tool

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    V.J.T.I. ABHIJEET PATIL

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    &fter e%iting workbench the figure is as shown aboe e%truded and e%truded

    geometry is seen aboe. 'y pad definition e%trude of the part can be done.  

    (reating a pad means e%truding a profile in one or two directions. (&T)&

    lets you choose the limits of creation as well as the direction of e%trusion.

    *. Select the profile to be e%truded.

    +. ,ou can use profiles sketched in the Sketcher or 

    . planar geometrical elements created in the

    . /eneratie Shape Design workbench

    0. (lick the Pad icon. The Pad Definition dialog bo% appears and

    (&T)& preiews the pad to be created.

     

    12L3 D3F)N)T)2N# Selecting plane>hole defnition>

    (reating a hole consists in remoing material from a body. 4arious shapes of 

    standard holes can be created. These holes are#

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT

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    V.J.T.I. ABHIJEET PATIL

    (091040041)

    5hateer hole you choose" you need to specify the limit you want. There are

    a ariety of limits#

    • 6)7727)N/ 2PT)2N#

    *. Select the body to be mirrored and define the reference.

    +. 6ulti-select both pads as the features to be mirrored.

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT /

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    V.J.T.I. ABHIJEET PATIL

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    . (lick the 6irror icon. The 6irror Definition dialog bo% appears

    . Select the lateral face to define the mirror reference. The application

     preiews the material to be created. (lick 28 to confirm the

    operation. The pads are mirrored.

    (&T)& proides three planes to let you start your design. &ctually"

    Designing a part from scratch will first re9uire designing a sketch. Sketching

     profiles is performed in the Sketcher workbench" which is fully integrated

    into Part Design.

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 4

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    V.J.T.I. ABHIJEET PATIL

    (091040041)

    &gain P&D D3F)N)T)2N command is used by proiding limits on the

    direction of pad. The Pad Definition dialog bo% appears and (&T)&

     preiews the pad to be created

    The geometry or shape of the part" after the complete pad definition

    command.

    • 3dge fillet option#

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT

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    V.J.T.I. ABHIJEET PATIL

    (091040041)

      Edge Fillet:

    The cured surface of an outside corner is generally called a round and that

    of an inside corner is normally referred to as a fillet. 3dge fillets are smooth

    transitional surfaces between two ad!acent faces.

    Steps#

    *. (lick the edge fillet icon.

    +. The 3dge Fillet Definition dialog bo% appears.

    . 3nter alues for fillets.

    . Select edge or face for the filleting.

    0. &n arrow appears on the plane to indicate the portion of material thatwill be kept.

    :. (licking this arrow reerses the direction and therefore indicates that

    the portion of 6aterial that will be kept will be the opposite one.

    ;. (lick 28 

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT

    Selecting edges to beEdge fllet defnition

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    V.J.T.I. ABHIJEET PATIL

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    • 1ole definition#

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 2

    Selecting edges to be

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    V.J.T.I. ABHIJEET PATIL

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    (reating a hole consists in remoing material from a body. 4arious shapes of 

    standard holes can be created.

    Step to be follow#

    *. (lick the 1ole icon+. Select the face on which you wish to create the hole.

    . )n the 1ole Definition dialog bo% that displays" define the hole shape

    and enter the parameters of your choice.

    •3dge fillet option#

    &s described aboe about the edge fillet selecting and then selecting edge

    fillet option with filleting dimensions of re9uired definition. Thus the part is

    as shown below.

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 3

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    V.J.T.I. ABHIJEET PATIL

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    2. PART NAME: JOINT

    Part drawing is made by selecting the plane and by simple geometric shapes

    selection and thus final shape of re9uired dimension can be obtained.

    &fter e%trude command the final shape of part of re9uired dimension can be

    made. The !oint is made by the final profile of part.

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 9

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    V.J.T.I. ABHIJEET PATIL

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    *. Selecting the plane on other side in order to obtain" the !oint shape

    which can connect the rod and parts !oined together to shaft and body

    in assembly drawing.

    +. Drawing the shape to be e%truded in order to get the desire dimension.

    'y using P&D definition command

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    V.J.T.I. ABHIJEET PATIL

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    • 1ole definition sing hole definition command drawing hole by selecting the plane and hole

    dimensions entering dimensions in dialogue bo% and click 28.

    Final component after hole drilling#

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 11

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    V.J.T.I. ABHIJEET PATIL

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    3. PART NAME: KE 

    Step to be followed#

    *. Drawing the desire shape on +d plane

    +. 3%iting workbench

    . Selecting pad definition option in order to obtain the desire

    dimensions.

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 1

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    V.J.T.I. ABHIJEET PATIL

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    *. &fter e%truding to the part the desire part is obtained.

    +. Limiting the e%truding or pad definition of both side to make 9uick

    iew.

    PART NAME: !INK

    1e%agonal geometry of the desired link has been made in order to getdesired shape of link.

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 1/

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    • 'y using Pad definition command

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    V.J.T.I. ABHIJEET PATIL

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    &fter pad definition command the link is as shown in fig. below

    • >se of shaft command#

    ,re$tn! t+e S+$t:

    )t is to create a shaft that is a reoled feature" by using an open profile.

    ,ou need an open or closed profile" and an a%is about which the feature will

    reole.

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 1

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    V.J.T.I. ABHIJEET PATIL

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    Part name# shaft

    &gain using pad definition command

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    V.J.T.I. ABHIJEET PATIL

    (091040041)

    PART NAME: !INK 2 S"# $OMPONENT

    *. Drawing the desire shape of link + sub assembly in order to get

    desired shape of part

    +. 1ole definition option is used after e%truding the component and thus

    desired hole shape is drawn and obtained as per re9uirements and

    dimensions.

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 13

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    V.J.T.I. ABHIJEET PATIL

    (091040041)

    3dge filleting by using edge filleting command shown aboe.

    • Pocket definition#

    • ,re$tn! $ P"*et#

    *. (reating a pocket consists in e%truding a profile and remoing the

    material resulting from the e%trusion. The limits you can use are the

    same as those aailable for creating pads.

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 19

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    V.J.T.I. ABHIJEET PATIL

    (091040041)

    +. )t is to create a pocket" that is a caity" in an already e%isting part" then

    you will edit this pocket to remoe the material surrounding the

    )nitial profile.. Select the profile.

    . ,ou can now create pockets from sketches including seeral closed

     profiles. These profiles must not intersect.

    0. (lick the Pocket icon.

    :. The Pocket Definition dialog bo% is displayed and (&T)& preiews a

     pocket.

    ;. 3nter the depth alue.

    @. define a specific depth for your pocket or set one of these options#

    A. Dimension >p to ne%t" >p to last" >p to plane" >p to surface.

    &fter pocket command the shape obtained as shown#

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 0

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    V.J.T.I. ABHIJEET PATIL

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    /rooing command#

    • (reating a /rooe#

    /rooes are reoled features that remoe material from e%isting features. )t

    is to create a grooe that is how to reole a profile about an a%is

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    1ole definition#

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    • Steps to be follow for chamfering part#

    *. (lick the (hamfer icon.

    +. The (hamfer Definition dialog bo% appears. The default parameters to

     be defined are Length* and &ngle. ,ou can change this creation modeand set Length* and Length+.

    . Select the edges to be chamfered.

    . (lick Preiew to see the chamfers to be created.

    0. 8eep the default mode# enter a length alue and an angle alue.

    :. (lick 28.

     

    A&&e567 " #$rt&:

    *. Firstly select mechanical design then part design and then select

    assembly design.

    +. Then for selecting the products select the option from e%istingcomponent.

    . &nd click on product on tree thus selecting the number of components

    to be assembled in assembly drawing.

    . &boe screen shows the number of different components e%isting

    while selecting the parts to be assembled.

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT /

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    V.J.T.I. ABHIJEET PATIL

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    B7 5$n#86$t"n *"55$n%:

    M$n#86$tn! $ ,"5#"nent:

    The 6anipulate command lets you moe a component freehand with the

    mouse

    *. (lick the 6anipulate icon+. The 6anipulation Parameters dialog bo% appears#

    . (lick the Drag icon.

    . Select the components to be translates or rotate.

    0. Drag the component along selected direction.

    :. (lick 28 to e%it.

    &rranging by manipulation#

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 4

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    V.J.T.I. ABHIJEET PATIL

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    (onstraints Toolbar#

    &= (reating a ,"n*%en*e ,"n&tr$nt#

    (oincidence-type constraints are used to $6!n e6e5ent&

    *. (lick the (oincidence (onstraint icon+. Select the face to be constrained.

    . Select the second face to be constrained.

    . /reen arrows appear on the selected faces" indicating orientations.

    0. (lick 28 to create the coincidence constraint.

    '= (reating a ,"n*%en*e ,"n&tr$nt:

    (ontact-type constraints can be created between t'" #6$ne& "r $*e&.

    The common area between the two planes can be a plane

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    V.J.T.I. ABHIJEET PATIL

    (091040041)

    (= (reating an O&et ,"n&tr$nt#

    5hen defining an offset constraint between two components" you need to

    specify how faces should be oriented.

    *. (lick the 2ffset (onstraint icon

    +. Select the face to be constrained. Select the second face to be

    constrained

    . The (onstraint Properties dialog bo% that appears displays the

     properties of the constraint. The components inoled and their status

    are indicated. ,ou can define the orientation of the faces to be

    constrained by choosing the opposite or same option.

    . 3nter @ mm in the 2ffset field.

    D) (reating an An!6e ,"n&tr$nt:

    5hen setting an angle constraint" you will hae to define an angle alue.

     Note that this angle alue must not e%ceed A?B.

    *. (lick the &ngle (onstraint icon

    +. Select the face to be constrained

    . Select the second face to be constrained

    . 8eep the &ngle option

    0. 3nter alues in the &ngle field

    :. (lick 28 to create the angle constraint.

    Fi%ing a (omponent#

    *. Fi%ing a component means preenting this component from moing

    from its parents during the update operation.

    +. (lick the Fi% icon

    . 'y default" the Fi% command fi%es components in space.

    . Select the component to be fi%ed

    0. Double-click the fi% constraint you hae !ust created to edit it.

    :. )n the dialog bo% that appears" click 6ore to e%pand the dialog bo%

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT

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    V.J.T.I. ABHIJEET PATIL

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    &fter giing constraints" to assemble parts properly.

    Final assembly of uniersal !oint#

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 2

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    V.J.T.I. ABHIJEET PATIL

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    (hoosing the re9uired material for uniersal !oint" in this case the material is

    steel.

    Different constraints list tree#

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT 3

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    V.J.T.I. ABHIJEET PATIL

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    Dr$tn! " *"5#"nent&:

    3ntering the )nteractie Drafting 5orkbench#

    *. This first task shows you how to enter the Drafting workbench and

    start a new drawing.+. Select the File -$ New command

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    V.J.T.I. ABHIJEET PATIL

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    • &d!usting the iew" on sheet as re9uirements by directional

    command.

    • Then select the iew and finally gie dimensioning to iew

    selected.

     

    The dimensioning of the sheet is as shown below #

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT /0

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    V.J.T.I. ABHIJEET PATIL

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     Adding a Generative Bill of Material:

    This task will show you how to insert 'ill of 6aterial information into

    the actie iew. This 'ill of 6aterial corresponds to information onthe product element which the iews were generated from. This 'ill of

    6aterial" or parts list" consists of an itemiCed list of the seeral

     parts of a structure shown on a cat drawing or on an assembly.

    *. )f the actie iew has no links with the product" a message will states

    whether the insertion is all right.

    +. )f the actie iew has a link with a product" the 'ill of 6aterial can be

    inserted.

    . has the actie iew a link or not with a product" you can go into an open product and click on this product before clicking on the (&T Drawing in

    which you want to insert the 'ill of 6aterial. Not that you can perform this

    as often as you need.

    . (lick the )nsert 'ill of 6aterial icon.

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT /1

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    V.J.T.I. ABHIJEET PATIL

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    Final drafting sheet#

    ,AD ,AM LAB ASSI-NMENT UNIVERSAL JOINT /

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    V.J.T.I. ABHIJEET PATIL

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    Final assembly drafting#

    *. Select the final assembly drawing from assembly design.

    +. 'efore the aboe procedure select the iew command from which we

    will selecting the iew to be imprint on the drafting paper 

    . Select multi iew and produce multi iew of assembly product

    . &fter completing the assembly drafting produce or generate bill of

    material.

    #ill o%