Troubleshooting with Sniffer Portable/Sniffer Distributed Exam Dumps

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Network-General
1T6-510
Troubleshooting with Sniffer Portable/Sniffer Distributed
https://killexams.com/pass4sure/exam-detail/1T6-510
QUESTION: 115
This is the Hex window for this question. At offset 39 there is the hex value of:
A. 4f
B. 20
C. 3a
D. 4c
Answer: D
QUESTION: 116
This is the Summary window for this question. Examine this capture closely. Which statement is
true?
A. This is an example of a poorly written application
B. Someone may have forgotten their password
C. This is an example of a slow application
51
D. None of the above
Answer: B
QUESTION: 117
The following statements are true about FTP: (Choose all that apply.)
A. It is generally faster than TFTP
B. It uses TCP as the transport
C. It handles authentication externally
D. It is generally slower than TFTP
E. It uses UDP as the transport
Answer: A, B
QUESTION: 118
An example of a streaming application is:
A. HTTP
B. SSH
C. VoIP
D. DNS
Answer: C
QUESTION: 119
Telnet is an example of:
A. a throughput-oriented application
B. a streaming application
C. an encrypted application
D. a transaction-oriented application
Answer: D
52
QUESTION: 120
TFTP is an example of an application protocol that is:
A. Simple but efficient
B. Simple but inefficient
C. A more efficient version of FTP
D. None of the above
Answer: B
53
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1T6-510 Troubleshooting learning

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ebook to color troubleshooting

Coloring plastics at the press is one of the most useful, cost-delivered aspects a molder can impart to a molded product. Self-coloring now not simplest improves aesthetic houses, it can additionally improve UV steadiness and make processing more convenient. additionally, including colour at the computer is almost always less costly than deciding to buy precolored cloth from a company.

there is only 1 catch. once the color equipment has been integrated into the polymer matrix, it turns into an essential component of the fabric and might alter its engineering residences as well as its processability. consequently, it's vital to be privy to one of the most normal complications worried with melt-coloring plastics and the way to stay away from them.

generally, aesthetic flaws can be attributed to 3 distinctive reasons: machine (computing device, mold, ancillary gadget), molding (system), and design (half and power)/system (base resin and colorant). In some circumstances, the flaw can be the effect of problems in additional than one category, however often, there is always a predominant challenge. in a similar way, some problems can also have more than one symptom, so a few distinctive "complications" can be displaying up in constituents that have the same root cause, which requires the identical corrective motion.

When troubleshooting aesthetic problems in molded parts, it's essential to start with an open intellect. given that a hit molding is an interdependent mixture of equipment, labor, material, and design, troubleshooting is often more advanced than individuals at the beginning predict.

picking the ProblemThe first step in identifying if the flaw is led to by means of a molding- or colorant-connected issue is to check out components visually to determine what the difficulty appears like. Some flaws are very assorted and straight away lead you to their root trigger. Others are much less distinct and might be brought about through a few factors that fall into a couple of categories. due to this fact, some basic troubleshooting and root-cause/corrective-action work is required. The desk with this text offers a listing of ordinary aesthetic flaws that could involve colorant and their most in all likelihood factors.

The next step is to find out when and the place the issues are being stated. Flaws that show up automatically upon molding require one approach to troubleshooting-for instance, processing and gadget considerations are more convenient to check at this element. in this case, the troubleshooting technique could start by way of asking the following questions:

  • Have the procedure settings changed?
  • How generally does the issue happen?
  • Is the relevant equipment in area and functioning?
  • turned into the colorant adequately metered in and blended with the melt?
  • Is the colorant appropriate with the bottom resin?
  • youngsters, container disasters that ensue after months or even years will imply a unique beginning factor-a focus that begins with both part design or components:

  • Is UV publicity greater than at the start predicted?
  • Is the half getting used as at the beginning designed?
  • Has the half been inadvertently uncovered to a few chemical agent?
  • Is the cultured trade a symptom of a bigger issue (as an example, lack of mechanical residences)?
  • even with the simplicity or complexity of a molding project, respectable documentation practices should still be in impact and adopted diligently with the aid of all team individuals. Processing parameters may still be stated all through. now not only will this follow aid molders stabilize their procedure and create respectable ingredients faster, it will additionally give a baseline for reference may still the manner glide and complications arise.

    average sense- regularly UncommonThe gold standard method to start troubleshooting a classy problem through which colorant and/or particular-effects packages are involved is to rule out the colorant package as the source of the difficulty. here's finished by using working uncolored (natural) material through on the same system settings to look if the difficulty recurs. If it does reappear, then it's likely that the issue isn't led to by using the colorant equipment, however the base resin may nevertheless be part of the problem. If the difficulty disappears, then the colorant equipment is the correct location to start your investigation. it's essential to bear in mind that aesthetic concerns may additionally exist which are difficult to look without colour. In different phrases, a coloured background will generally magnify aesthetic issues.

    whereas it is backyard the scope of this text to cowl the total system, one thing that should be outlined is that correct troubleshooting requires a realistic, methodical approach. unless a Taguchi design of experiments look at is being carried out, only 1 parameter at a time should be modified, and its impact may still be cautiously evaluated and documented. Then the parameter should still be lower back to its baseline environment before one other parameter is modified.

    while right here instructions contain colorant-related issues, we are able to also touch in short on processing, equipment, and design concerns, indicating areas of situation that may affect colorant and/or aesthetics. If the troubleshooting procedure shows that one of those categories is a likely cause, then there are a couple of respectable supplies, both human and written, that may and will be consulted for further aid.

    Troubleshooting instructions

    as with all manufacturing procedure, molding a top quality product at all times requires correct machine, design, material, and processing approaches. the following record of concerns are provided as conventional publications when beginning to troubleshoot aesthetic problems.

    1. First, verify right here four machine areas.

    Screws/nonreturn valves. In most circumstances, a common-purpose screw will work well with colorants, depending on the letdown ratio, chromaticity, and base resin used. although it's continually not critical, a transforming into variety of injection molders are the use of mixing screws to aid in colour distribution. methods with excessive throughput, short cycle times, and big shot sizes or people who use complicated-to-colour resins will regularly improvement from this classification of screw.

    As with screws, choice of non-return valves is commonly resin-specific. Ball investigate valves are extra shear intensive and can support in colour distribution, although this components can prove problematic when processing parameters akin to screw velocity, backpressure, and barrel temperatures are pushed near the base resin's limits, leading to each colorant and resin degradation.

    Screw and barrel wear. A worn screw or barrel-even with the design-will inhibit mixing, inflicting a loss in plasticating high-quality and hence colour distribution.

    Barrel capability. As a conventional rule, the usage of greater than 60 percent of the barrel potential with a GP screw is considered to be pushing the processing envelope for respectable colour incorporation. Of route, this is cycle-time dependent. The barrel's L/D ratio is also important. for instance, shorter barrels (18:1) are much less conducive to a fine combine, whereas longer barrels (24:1) give an extended mix atmosphere, but additionally longer house time. it be important to maintain an eye on fabric house time, as a result of extreme home can degrade either the base resin or the colorant, or each, whereas inadequate time in the barrel might also cause distribution concerns.

    Colorant handling and meting out. one of the vital keys to a success color processing is an accurate blending/distribution of colorant and base resin before both enter the molding laptop. When blending equipment is used, creation personnel have to be aware about appropriate operation, calibration, and renovation. If the equipment is not accurately calibrated to the system, any money saved by way of coloring the uncooked materials will be lost in wasted product.

    For strong (salt and pepper mix) colorants, there are a variety of alternate options, akin to drum tumblers or auger mixers. For mixing concentrates and powders at the computer, either volumetric or gravimetric feeders are used. Volumetric feeders are each much less costly and probably much less accurate than gravimetric types because they feed colorant based on velocity vs. time. Gravimetric feeders weigh and mix every part in the combine. For liquid colorant, special volumetric pumps are usually used to tackle the colour accurately and neatly. (See the sidebar on p. 87 for definitions of ordinary colorant-device formats and their features.)

    2. Tooling design can also affect aesthetics.

    Gates and runner techniques. relevant gating and runner varieties should still be considered at the design table. or not it's essential to be aware that additional warmth generated by a scorching manifold or pin gate during injection fill can affect the integrity of the colour. If it be normal forward of time that such tooling is getting used, a colorant organization can formulate the color package otherwise.

    Knitlines. expecting aesthetic concerns all over the early design stage is terribly vital, primarily if knitlines are a factor. When moldfilling evaluation or journey suggests knitlines are possible, colour system alterations will also be made with certain resin households which will improve the appearance of knitlines. Of direction, this subject is more comfortably resolved all the way through the early stages of half and tooling design.

    mold texture. also an important consideration all over the design levels is mildew texture, seeing that it will possibly affect how the eye perceives color. The presence of gloss and/or texture in the tool can make what would in any other case be an actual color healthy appear very different. Gloss should still be considered on the subject of each the mold and resin being processed, for the reason that some substances naturally have larger gloss.

    three. Take a fine look at part design.

    colour/special consequences. it's important to remember a joint blessing and problem of molding color and/or special consequences is that the colour kit can also accentuate design or molding problems which are already present in a component, akin to knitlines, slight sinks, or stress-whitening marks close the base of a snapfit. Taking colour again out and working the half in natural resin may additionally appear to make the issue disappear, however truly the issue, if it is a molding or design subject, is probably nevertheless there, and simply no longer as visible.

    The difficulty should be accentuated in chromatic colorings and excessive-gloss designs. So if it be something that may in any other case be lived with, mild design changes may additionally clear up the difficulty. on the other hand, certain issues, like stress-whitening marks, can often be hidden by the relevant use of colour or possible reformulation.

    When integrally coloured, molded elements of distinctive materials are mated with other molded or painted components, they should commonly suit in colour, gloss, and texture. right here, or not it's critical to work closely with the resin and colour suppliers to make sure that the constituents will in shape as intently as viable when they are new and that they will fade at the same cost right through the lifetime of the assembly.

    Bosses/ribs/knitlines/parting traces. wherever there's a circulate interruption in the half design-from bosses, ribs, and even converging circulate fronts on diverse gated ingredients-there's a robust chance of sink marks, knitlines, and compromised mechanical integrity because knitlines are always weaker than the encircling resin. considering that the orientation of the material in these areas shifts, the refractive index throughout this region of the part will also shift, posing aesthetic challenges for a lot of particular-results programs. hence, these interruptions should still be designed into nonvisible faces and noncritical areas of the half.

    four. Take these processing suggestions to heart.

    Screw pace. For color processing, a slower screw speed is constantly greater to evade shearing and burning the colorant and to make certain correct colour distribution, cycle time allowing.

    Backpressure. greater backpressure promotes more thorough mixing, in particular with a GP screw, once again, if cycle time enables. A highest price of 300 psi (2 MPa) is frequently recommended by machinery OEMs.

    Resin temperature. better melt temperatures also promote stronger mixing, as long as the processor is careful no longer to begin melting too early in the feed part of the screw, however this too may also be resin dependent.

    5. Be aware about these colorant and formula concerns.

    Resin and colorant compatibility. The soften index relationship between the bottom resin and color are very essential and should be considered early within the design. moreover, definite pigments react with selected resins to a more desirable or lesser diploma.

    as an example, some biological pigments are likely to dissolve and disappear (or trade color) in styrenic polymers. in a similar way, many dyes are inclined to alternate color or disappear in nylon polymers, which are vulnerable decreasing agents that conveniently smash the chromophore element of the dye that offers colour. moreover, apart from in particular circumstances, dyes don't seem to be advised for use in olefins as a result of very constrained solubility and a potential for colour migration (crocking). further, dyes can act as a plasticizer in some substances, cutting back thermal homes or even reacting with the resin itself to produce a considerable number of outcomes.

    Phthalocyanine (phthalo) pigments will also be challenging, because they can act as nucleators, inflicting regularly uncontrollable shrinkage and warpage problems in crystalline resins. Fluorescent dyes can also pose problems in definite environments. They lack thermal balance for use in many engineering resins, they chemically react with nylon, and that they lack UV steadiness to be used in most out of doors purposes.

    A final class of problems is often discovered with polymer blends and alloys. There may also be phase boundaries between the a number of accessories of those substances that can cause mild scattering and a ensuing milkiness. hence, obtaining chromatic colorations can develop into a costly undertaking as a result of the tremendous quantity of colorant that must be introduced to counteract the milkiness-regularly on the fee of financial concerns and critical physical or mechanical properties.

    service specification. The selected provider for the colour and its circulation residences vs. the bottom resin play a vital role in colour distribution, and ought to be regarded throughout the preliminary design. The provider should soften in the late-feed or early-transition sections of the screw to ensure proper distribution of the pigment or dye in the combine. If the service has both too high or too low a melting element, the colorant usually are not safely distributed in the soften, and finally in the molded half.

    other additives. special additives for the colorant package can aid with some color-related problems. besides the fact that children, these elements are always no longer incorporated except processing efforts have failed, primarily because they add can charge that may make the conclusion product less low in cost.

    Grade could make a difference. it's important to be aware that not all resin families and even grades inside the equal household are interchangeable with a given color kit, not to mention with distinctive pigment or dye programs in the identical chemical family unit. extra, because most colorant suppliers custom formulate their packages to a selected resin grade with the aid of a particular company, if the resin service provider is switched after the color equipment has been formulated, it'll be retested.

    a great example of here is the relatively huge fluctuation that can be viewed within the natural color of polypropylene, that may range from a yellow-white to a gray-white color, reckoning on the nice and quantity of filler used.

    an ounce of PreventionLike so many different issues in life, colorant concerns are a long way more straightforward to assume and prevent than to remedy as soon as they've happened in molded materials. If colour is important to the closing efficiency of an utility, then it can be designed in from the start via simultaneous engineering. To ensure the colorant equipment is correctly formulated for the utility, provide the color formulator with all purchasable tips on both the utility and its material targets as quickly as they're set.

    If any of these specs trade during the latter tiers of the design procedure, inform each the resin and colorant suppliers. adjustments might also require a new method. do not hesitate to name on the colorant supplier to research, retest, and reformulate a colour system to make certain it may be appropriate in the conclusion-use ambiance.

    it's additionally essential to inform the colorant formulator of your machine setup, in case you need to make alterations with the intention to optimize the resin/colorant/throughput requirements of a selected application. finally, watch your system parameters and once the process has stabilized, observe any surprising changes that may sign the beginnings of a problem.

    particular care is required when self-coloring engineering resins as a result of a good portion of their perceived price-and hence cost-lies of their superior actual, mechanical, and aesthetic homes, which can be sensitive to even small compositional alterations. The extra vital colour is in a given utility, the earlier the colorant supplier should still be concerned in the design system.

     desk 1: possible color-linked problems and skills motives . desktop/mould manner fabric . Bubbles
  • excessive screw and barrel wear
  • inadequate mildew venting
  • Resin temperature too excessive
  • Backpressure too low
  • Pack and/or hold force too low
  • Pack and/or hold time too brief
  • Injection fill cost too fast
  • extreme moisture within the base resin*
  • extreme moisture within the colorant
  • . Burns
  • mistaken screw design
  • Cavity gating too small
  • bad scorching runner design (if relevant)
  • unsuitable or worn nonreturn valve
  • Required shot measurement too small
  • unsuitable nozzle classification
  • Nozzle tip orifice too small
  • melt temperature too high
  • Injection fill cost too quick
  • Screw speed too fast
  • excessive backpressure
  • sizzling runner temperature too excessive (if relevant)
  • heat delicate colorant formulation
  • wrong resin intended for the application
  • . bad clarity
  • extreme put on between the screw and barrel
  • Required shot measurement too excellent
  • bad mold floor
  • melt temperature too low
  • mold temperature too low
  • Injection speed too sluggish
  • Incompatible base resin and colorant mixture
  • fabric contamination
  • . colour streaks
  • Required shot measurement too amazing
  • Resin temperature too low
  • Barrel heating point malfunctioning or out of calibration
  • Worn screw and/or barrel
  • Out of calibration or erratic colorant feeder
  • mistaken screw design
  • Resin residence time too low
  • Screw pace too speedy
  • Backpressure too low
  • poor colour and resin uncooked cloth mix (salt and pepper)
  • insufficient uncooked material mixing time
  • not enough colorant used
  • Base resin vs. colorant soften index incompatibility
  • Incompatible colorant carrier equipment
  • . Black specks
  • Screw, barrel, or nonreturn put on
  • Nozzle tip, nozzle, nozzle adapter or barrel conclusion cap leaking
  • Mismatched nozzle tip, nozzle, or nozzle adapter rear orifice
  • Nonreturn unthreaded from screw
  • Degraded cloth or scale flaking off the screw and/or barrel
  • Degraded cloth or scale flaking off sizzling manifold channel
  • Required shot size too small
  • bad purging practices
  • Barrel temperatures too excessive
  • Contaminated base resin
  • Contaminated colorant
  • Colorant pigments are scrubbing the screw and barrel (particularly loaded TiO2 formulation)
  • Contaminated regrind or recycled substances
  • . Delamination
  • Sharp corners in the cloth stream route
  • negative mildew venting
  • soften temperature too low
  • Injection velocity too quickly
  • terrible purging practices
  • Incompatible mixture of colorant and base resin
  • flawed colorant service system
  • cloth illness
  • . Discoloration
  • Required shot measurement too small (excessive dwelling time)
  • Cavity gating too small
  • terrible hot manifold design
  • soften temperature too excessive
  • Injection pace too quickly
  • excessive resin drying time
  • Base resin color shift
  • Colorant out of specification
  • Colorant letdown ratio is inaccurate
  • Colorant heat stability is just too low
  • .

    References


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