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September 2006

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Subject:
From:
Joe Russeau <[log in to unmask]>
Reply To:
TechNet E-Mail Forum <[log in to unmask]>, Joe Russeau <[log in to unmask]>
Date:
Thu, 14 Sep 2006 10:12:19 -0400
Content-Type:
text/plain
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text/plain (105 lines)
Hi Inge,

I would be interested in the table.  Oh, and thank you for making the offer!

Best Regards,

Joe Russeau
Process Analyst

Precision Analytical Laboratory, Inc.
4106 Cartwright Dr. Ste. A
Kokomo, IN 46902

P: 765-455-1993
F: 765-455-1996
E: [log in to unmask]


----- Original Message -----
From: "Ingemar Hernefjord (KC/EMW)" <[log in to unmask]>
To: <[log in to unmask]>
Sent: Thursday, September 14, 2006 6:37 AM
Subject: Re: [TN] US Cleaning in IPA


> Furthermore, I have some values about the cavitation vs. Liquids vs.
> Temperature e.g. Below:
>
>
> Liquid          Formula         Boiling         Max cavitation intensity
> Temperature at which
>                                                                 for 46
> MHz lambda/2            reaches intensity max
>
> 1. Water                H2O             100 C
> 100%                                    35 C
>
> 2. Xylen                C6H4 etc        137 C
> 61%                                     93 C
>
> 3. Ethanol              C2H5OH  78  C                           45%
> 21 C
>
> 4. Aceton               (CH3)2CO        56  C
> 44%                             minus 36 C
>
> Etc
>
> Can send whole table to interested, or for Steve's wall
>
>
> Inge
>
> -----Original Message-----
> From: TechNet [mailto:[log in to unmask]] On Behalf Of [log in to unmask]
> Sent: den 13 september 2006 20:51
> To: [log in to unmask]
> Subject: Re: [TN] US Cleaning in IPA
>
> 40 MHz was the typical frequency used for augmenting solvent cleaning.
> There is a classic paper by Brandreth & Johnson on removal of a
> standardized particle (diamond dust) published in 1978 as I recall. Will
> send you the exact reference later if you are interested-- let me know.
> 25-28 MHz was more typically used with aqueous systems until we got into
> the more elaborate multi-frequency systems.
>
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