Beads Metallic

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Seed Beads — quality of different types of seed beads?

Hello everybody.

I have a question about seed beads…… I’ve heard that the metallic ones eventually lose their color. I’ve heard that the “lined” ones eventually lose their lining. So my question is the following…..

1) is it true that metallic seeds and lined seeds lose their quality over time?
2) what other seeds lose their quality over time?
3) Are Ceylon seed beads lined? I just bought some and they looked lined on the inside….
4) the ultimate question I’m asking is what can I expect from different types of seed beads over time??

I ask because I don’t want to do a project with beads that will change and then all my hard work fades away……

HAVE A GREAT DAY!!

1. Yes. Especially in applications which may need to be washed(clothing) or otherwise exposed to water(bracelets).
2. Beads listed as “inside color” or “Color Lined“. These beads are usually clear or colored transparent glass that are usually lined with colored paint. This can wear out just like the Silver Lined beads.
3. No. They usually have a finish that is baked on. They are fairly stable in most applications.
4. Most solid color(opaque) and “true color” beads are very reliable and long lasting in color. A metallic finish can fade or tarnish, as will most metallic lined beads.

Your best bet is to buy a small amount of the Beads You are thinking of using and then subject them to your own wear testing. String some beads and wash them, roll them around on the string to see how well the lining or finish holds up. Maybe apply a lacquer coat to metallic beads to see if it will protect the finish or affect the look.

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Method for Finishing Characteristics of Metal Stamping Dies

A method for improving the release and finish characteristics of metal stamping dies includes shot peening the interior die cavity walls with substantially spherical shot having a hardness value at least equal to the hardness value of the die cavity walls.

Optimizing the parameters of the peening process, such as the Almen intensity and the shot type, size, hardness and uniformity, maximizes the improvement to the release and finish characteristics of the die. Optionally, the initial shot peening is followed by a second shot peening with substantially spherical glass beads. Metal stamping dies shot peened in accordance with the present method exhibit substantial improvement in their release and finish characteristics over unpeened dies.

The present invention relates to metal stamping dies, and, more particularly, to a method for improving the release and finish characteristics of metal stamping dies through shot peening.

The use of metal stamping to produce a wide variety of metal parts is widespread. While there are variations of the metal stamping process, such as forming, piercing, deep drawing and the like and combinations thereof, and different types ofdies, such as single and multiple cavity dies and progressive dies, most of the principles and techniques are the same. The problems are also often the same.

One of the major problems which is common to virtually all metal stamping operations involvingdrawing or deformation of the workpiece,whereby the workpiece contacts the interior die cavity walls during the stamping operation, is a poor release characteristic between the workpiece and the die cavity walls. Poor release characteristics, whichcauses problems both during the stamping downstroke and the upstroke and workpiece removal stage, invariably leads to problems such as machine jams or smashups, misformed and non-uniform parts and poor finish characteristics on the workpiece surfaceproximal to the die cavity walls, such as scratches, galling, scoring, random shiny spots and the like. Although a poor release characteristic is most often the cause of a poor finish, poor finish can also be caused by other factors, such as heatbuildup, improper lubrication, surface flaws and the like.

Because of the high cost of rejected parts and the down time due to die maintenance and reconditioning, as well as the potential very high cost occasioned by a machine or die jam or smashup, constant efforts are being made to improve the releaseand finish characteristics of metal stamping dies. These efforts range from varying the composition of the die material to coating the interior die cavity walls with release agents, plating and the like. Even the die designer continually attempt toimprove the release and finish characteristics of dies by experimenting with variations of draft angles and the like.

While there has been steady improvement over the years, there is a continuing need for further improvements, especially improvements that are economical, reliable and durable.

The present invention was the result of the surprising discovery that shot peening metal stamping dies with generally spherical shot dramatically improves the release and finish characteristics of such dies, as well as substantially increasingdie life. Heretofore, the accepted rule in die construction and maintenance and reconditioning, with respect to achieving satisfactory release and finish characteristics, was to provide the interior die cavity walls with as smooth and uniform a surfaceas possible. Although shot peening has been in widespread use for years to increase the fatigue life and prevent stress corrosion cracking of metal parts, an irregular peened surface on the interior die cavity walls would predictably adversely affectthe release and finish characteristics of the die. Since any improvement in fatigue life or the prevention of stress corrosion cracking through shot peening would not be worth the sacrifice of having to accept poor release and finish characteristics ofthe die, shot peening has never been seriously considered for treatment of the interior die cavity walls of metal stamping dies.

In the broader aspects of the present invention, conventional shot peening techniques and equipment are utilized, i.e., the surface of the part is bombarded with shot by a peening apparatus under controlled conditions. However, in the preferredembodiment, optimum results are achieved by utilizing specific combinations of parameters with respect to shot type, size, hardness and Almen peening intensity. Examples of suitable conventional peening apparatus include air blasting equipment whichpropel the shot media at the part under air pressure, utilizing either suction, direct pressure or gravity feed, and airless or centrifugal wheel equipment which propels the shot media at the part by a rotating wheel. There are also freefall peeningmachines, where the shot media is dropped upon the part from various selected heights.

With respect to the shot peening media, the media must be substantially spherical. Irregular, angular or abrasive media, such as employed in grit blasting and sand blasting, are unacceptable in the method of the present invention. While avariety of generally spherical peening media may be utilized, such as steel shot, ceramic media and conditioned cut steel wire shot, steel shot is preferred. In the case of cut steel wire shot, it must be conditioned prior to use, such as by blasting itagainst a steel plate until the particles are rounded. Whichever peening media is selected, it must have a hardness value at least equal to the hardness value of the die cavity walls to achieve the improvements of the method of the present invention.

The peening process should be conducted under conditions that will yield substantially 100% coverage and saturation of the interior die cavity walls. In addition, it has been found that increasing the depth of the compressive stress layerprovides additional improvement. A substantial improvement, especially in die life, is achieved when the compressive stress layer is about 0.02 inch or greater. This increase in die life is partly due to the fact that some surface metal is removedduring each periodic maintenance or reconditioning operation. Accordingly, the greater the depth of the compressive stress layer, the more the amount of metal that can be removed during maintenance and reconditioning operations before the benefits ofthe shot peening are negated.

The optimum shot peening intensity will vary depending upon the hardness of the dies and the type of die metal. Under the generally accepted Almen shot peening intensity standard, which was developed by the General Motors Research LaboratoriesDivision of General Motors Corporation, the various variables of shot peening are integrated into a single scale for measuring, specifying and duplicating shot peening intensities and results. All measurements are made on the standard Almen No. 2 gage,as shown in the SAE Manual on Shot Peening, AMS 2430 and MIL S-13165. Even though the exact optimum Almen intensity will vary as the die material and shot parameters vary, it has been found that when regular hardness steel shot, with a Rockwell hardnessof from about C45 to about C55, is utilized, the desired compressive stress layer of at least about 0.02 inch will be achieved with Almen intensities of from about 0.004 to about 0.014 C2.

Also, while the optimum size of the shot peening media will vary, steel shot with a Mil Spec size of from about SAE 70 to about SAE 230 is preferred for most applications. For optimum reliability and uniformity of the peening media, cast steelshot certified to Mil Spec 13165 is especially preferred.

Finally, it has been found that yet further improvement is achieved by following the initial shot peening with a second shot peening utilizing substantially spherical glass beads. The optional second peening procedure provides primarily acleaning function and enhances the uniformity of the peened die surface.

The improvement achieved in the die release and finish characteristics by the present method is consistent and dramatic over a wide range of varying die constructions. One of the clearest gages of improvement is to monitor the frequency of diecleaning and reconditioning that is required. Comparison testing between untreated dies and dies shot peened in accordance with the present invention at various stamping work stations at a major automotive assembly plant revealed consistent improvementwith the shot peened dies. From large steel quarter panel dies to smaller front fender steel insert dies, the results are the same. The shot peened dies experienced far less down time and required far fewer periodic maintenance and reconditioningoperations. The improvement as a function of reduced down time and periodic maintenance and reconditioning ranges from a factor of several fold to a factor of over 30. In addition, the surface finish of the stamped parts is consistently uniform andfree from flaws.

In addition to the improvements that the present method provides with respect to release and finish characteristics and the reduction of down time and the need for periodic maintenance and reconditioning, additional advantages are achieved. Costwise, the present method is less costly than most other surface treatments and coatings which are applied to the interior die cavity walls. Moreover, additional cost savings are realized during die reconditioning or modification. Coatings, such asplating, tend to chip and flake and eventually must be replaced at high cost. In the event that the die needs modification due to an engineering change or the like or requires a repair operation such as welding, only the immediate area that is alteredor repaired may require repeening. In sharp contrast, such an isolated modification or repair in a plated die most often requires the entire die surface to be replated.

Thus, the surprising discovery that shot peening metal stamping dies in accordance with the present method dramatically improves release and finish characteristics, instead of adversely affecting them as would be predicted, has resulted in asimple, reliable and economical method which can benefit the entire metal stamping industry.

About the Author

xlnb.cn is a Manufacturer and suppliers of shower drain, sheet metal stamping, metal stamping, Equipment parts by OEM/ODM service with diversified schemes.


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