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Has Anyone Switched From R12 To 134? On A 89 Stang

  • Thread starter Thread starter 89llx
  • Start date Start date Aug 16, 2016
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89llx

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#1
  • Aug 16, 2016
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Has anyone switched from r12 to 134? on a 89 stang--[FOXBODY]

was it cold enough

thanks
 
Last edited: Aug 16, 2016

RaggedGT

Been here over a DECADE and still no CT
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Yes.and...Yes.. lol
 
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Mstng93SSP

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I don't know many people still running r12. I run 134 and it's so cold I could chill a beer in front of my ac vents.
 
Last edited: Aug 16, 2016
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Gearbanger 101

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Every vehicle built For more than the last 20-years running R134a. So have you ever ridden in a new car and found yourself saying....man this just isn't cold enough.

Besides, I'm gonna bet that since you're asking the question, you probably aren't old enough to remember what it was like being in a car cooled with R12 refrigerant anyway.
 
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8

89llx

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RaggedGT said:
Yes.and...Yes.. lol
Click to expand...
Thanks what year mustang was it?
 
8

89llx

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Gearbanger 101 said:
Every vehicle built For more than the last 20-years running R134a. So have you ever ridden in a new car and found yourself saying....man this just isn't cold enough.

Besides, I'm gonna bet that since you're asking the question, you probably aren't old enough to remember what it was like being in a car cooled with R12 refrigerant anyway.
Click to expand...
I can remember paying a little under 2 dollar a can for r12, now what does that tell you

now how much was that bet for?
 
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Mustang5L5

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You can still get it on eBay. It's a bit more than $2, but might be cheaper than a 134a conversion.

I got my epa cert just to buy r12 and upon buying cans off eBay....not a single person asked to see it. I don't advocate skirting the law, but r12 is pretty available. I got mine for about $25/can.

My personal opinion is if the system is not totally fubar, and maybe has a slight leak or other minor issue, fix it and stick with r12. I know that retrofitted 134a systems can be cold, but a system that was once r12 will always cool best with r12. Systems that start life as r134 are designed slightly differently to work more efficiently with r12. Condensers are larger, operating pressures dumifferent, compressors different. Different pressure cutoff limits.

If the system is ripped out, broken compressor, or being reinstalled from scratch, then you can consider r134a as a refrigerant. At that point it really won't matter.

I personally chose a new system from scratch. All new parts, and I figured I might as well get the correct refrigerant.




Ultimately it's up to you, and 134a retrofits have been done with success. It's a little more involved than just adding a few cans to the system however


Sent from my big ass iPhone 6 using Tapatalk
 
Last edited: Aug 16, 2016
8

89llx

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Mustang5L5 said:
You can still get it on eBay. It's a bit more than $2, but might be cheaper than a 134a conversion.

I got my epa cert just to buy r12 and upon buying cans off eBay....not a single person asked to see it. I don't advocate skirting the law, but r12 is pretty available. I got mine for about $25/can.

My personal opinion is if the system is not totally fubar, and maybe has a slight leak or other minor issue, fix it and stick with r12. I know that retrofitted 134a systems can be cold, but a system that was once r12 will always cool best with r12. Systems that start life as r134 are designed slightly differently to work more efficiently with r12. Condensers are larger, operating pressures dumifferent, compressors different. Different pressure cutoff limits.

If the system is ripped out, broken compressor, or being reinstalled from scratch, then you can consider r134a as a refrigerant. At that point it really won't matter.

I personally chose a new system from scratch. All new parts, and I figured I might as well get the correct refrigerant.




Ultimately it's up to you, and 134a retrofits have been done with success. It's a little more involved than just adding a few cans to the system however


Sent from my big ass iPhone 6 using Tapatalk
Click to expand...


you are so right, I was told that after 1993 was when they started not using r-12, and the cars that were not much older than 1993 had good results with 134, but too much older than 93 and you would not be able to get the air cold enough.

so that is why I asked if anyone switched to 134 with an 89 mustang
 

nickpic

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#9
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My 92 was converted by the PO and it's almost unbelievable how cold it is.
 
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89llx

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thanks for posting the year of your car
 

Mustang5L5

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#11
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89llx said:
you are so right, I was told that after 1993 was when they started not using r-12, and the cars that were not much older than 1993 had good results with 134, but too much older than 93 and you would not be able to get the air cold enough.
Click to expand...

The main differences between an r12 system and a 134a system are larger condemsors and stronger compressors on the 134a system. This is because the 134a doesn't cool as well as r12 and needs a larger surface area to disperse heat and is charged to typically higher pressures than an r12 system.

Modern 134a systems are designed around this. Retrofitting an r12 system really isn't ideal without a larger condensor and different compressor, but like I said before, it has been done with success. But given that r12 is still available, I don't see why the effort shouldn't be made to try and keep the original refrigerant.



The changeover occurred around 1993/1994. I had a 93 Lincoln that was 134a.

With regards to the mustang. The 1993 r12 system is identical to the 1986 r12 system. Not much changed really.

Why convert? Well because you can walk into Walmart and buy 134a for $5....for now.



Sent from my big ass iPhone 6 using Tapatalk
 

88 BLK FOX

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New to the forum! 88 mustang converted to 134 A. It's ice cold and have had no problems
 

RaggedGT

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89llx said:
Thanks what year mustang was it?
Click to expand...
I had an '80 Capri ,a '91 LX and a '91 Dakota and a bunch of other cars that I retrofitted, as well as a bunch of customer cars retrofitted to 134a- though I don't retrofit cars very often any more lol
Like everyone else was saying- R-12 is colder. An R-12 compressor will have to work harder to cool with 134a,but it will cool very well.
If you decide to convert to 134a I would suggest you change the dryer, orifice tube and use the 134a compliant pressure switch. You can reclock the R-12 switch @jrichker has a very detailed how to regarding the complete AC system for R-12 or 134a . Recommended reading to help you make your decision
 

Adieu

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Gearbanger 101 said:
Every vehicle built For more than the last 20-years running R134a. So have you ever ridden in a new car and found yourself saying....man this just isn't cold enough..
Click to expand...
Yes, most of the 2009-2014 F150s, including mine.

But back to the subject at hand:

If you switch from 12 to 134, it will be a few degrees warmer, but it's still going to work fine, provided that you flush as much of the old mineral-based oil out of the system and replace with esther oil. (If you're replacing EVERYTHING, you can use PAG oil, if not, use esther, as esther is compatible with the old mineral oil residue that will be left behind, where as PAG is not.) That said, if you have a working R12 system, leave it the heck alone, there's nothing colder out there. Hell, that was the one thing I liked about the '84 F150 that I owned for all of six months.
 

Jersey Joe

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I switched to 134 on my 89, I can't tell the difference .
 
8

89llx

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88 BLK FOX said:
New to the forum! 88 mustang converted to 134 A. It's ice cold and have had no problems
Click to expand...
thanks!!
 
8

89llx

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#17
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Jersey Joe said:
I switched to 134 on my 89, I can't tell the difference .
Click to expand...
thanks!!!
 

jrichker

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Try eBay for some R12, it is running $20-$30 a can. You need 3 each 12 oz. cans and 6-8 oz. of R12 compatible mineral oil. The R12 compatible oil is like $20 a quart when you can find it. You may be able to find a combination can of R12 and oil together which may be cheaper than buying a quart of oil..

It is illegal for a company to sell any refrigerant other than R134 to a person who does not have an EPA 608 or 609 certification. That includes Freeze 12. However, individual sellers like those on eBay and, not affiliated with a store often do not ask for any certification information, they just want prompt payment.

See http://www.epa.gov/Ozone/title6/608/overlap.html for more details


R134a Air Conditioner Conversion and recharge instructions


Revised 14-Jul-2013 to add Low Pressure Cutout Switch adjustments for R134 & Freeze 12

Color Legend:
R134 specific items and instructions are in red text
Freeze 12 specific items instructions are in orange text
Note: R12 is available on eBay. Use the Freeze 12 instructions except use the R12 36 oz refrigerant charge with R12 refrigerant
Items and instructions common to both R134 and Freeze 12 are in black text


Tools and materials you will need:

Gauge set for recharging = $20-$120 – check out the pawn shops for a bargain before you pay retail.
See Harbor Freight Tools for an inexpensive gauge set.



Vacuum pump – I use an old refrigerator compressor = $20- $40 at used appliance stores, or go to the Dump and get one for free. Be sure to have some R12 compatible oil handy to keep it lubed up properly.


O ring seal kit = $8.

Replacement accumulator/dryer assembly with hose $55-$75


Alternative refrigerant – Freeze 12 – it will allow you to skip flushing the system and reuse the original accumulator/dryer under certain conditions:
1.) If the A/C system has not been open to air for more than an hour or so.
2.) Or if it hasn’t out of refrigerant for more than 5-7 days and the system is till sealed up with no open or disconnected lines. You need to be able to hear the hiss when depress the valve core in either one of the service ports. That tells you that there is still pressure in the system, which keeps out moisture and contaminants.
If either of the above is not true, you must replace the accumulator/dryer assembly.

Freeze 12 refrigerant: $15-$16 per 12 Oz can on eBay. Get 3 cans, 2 for the initial charge and 1 spare for a top off charge.
Use R12 compatible mineral oil, 6-8 Oz. This may be difficult to find or expensive (~$20 a quart). Sometimes eBay will have the oil/R12 combination cans, which have about 4 oz. R12 and 2 oz. oil in them. If you go this route, add the R12/oil charge first, then add the cans of R12.
Do not use PAG oil in a Freeze 12 system without flushing it first.

Freeze 12 refrigerant charge= 26-28 Oz plus 6-8 Oz R12 mineral oil on an empty system. A recharge may only require 2-4 OZ of R12 mineral oil if you only replaced a line, hose or seals.


A/C systems that have had a compressor failure must be flushed. Failure to do so will result in the floating trash left behind from the compressor failure destroying the replacement compressor.

R134a = $11-$16 a can – takes 2 cans.

R134a PAG or Ester compatible oil = $7-$12 for an 8 oz bottle .

Pump to force cleaning fluid through the system $20-$50 (may use compressed air to do the same thing).

R134a charging adapter = $13 (I cut mine up to use it with the R12 gauge set that I have had for a long time).

Plastic tools to disconnect refrigerant lines - 1/2" & 5/8" = $4 each.

Flushing agent - Discount Auto Parts has some flushing solvent in a 1 gallon plastic bottle - try that first. Or use Mineral spirits = $4-$5 a gallon, tetrachloroethylene =$5-$10 a gallon, takes 2 gallons of either one.

Miscellaneous hoses and fittings to adapt the flushing pump to the system, and the R134a adapter to the R12 gauge set = $15.


R134 Refrigerant charge is 26-28 Oz plus 6-8 Oz of PAG 100 oil.

R134 Conversion Instructions:
I did a R134a conversion on my 89GT, and used all stock parts. You will need to replace the dryer/receiver (about $75 if you get the one with the hose made as part of the unit), and should replace all of the rubber "O" ring seals as well. You will need to drain all of the oil out of the compressor and replace it with new R134a compatible oil.

R134 instructions (skip this if you use Freeze 12)
Keep in mind that to fulfill the requirements of the EPA, you are required by law to recover any refrigerant that still remains in the system. How (or wither or not) you accomplish this is up to you. Connect the charging gauge hoses to the service ports on the A/C (red gauge = high pressure, blue gauge = low pressure) and open the valves on the gauges to dump the remaining refrigerant (if any) into your "Freon recovery system", whatever it may be. Disconnect the charging gauges since you are finished with them until you are ready to fill the system with R134a. Next comes the nasty part – in order to get all the old oil out of the system, you will need to flush it with special flushing solvent, or mineral spirits (ok) or tetrachloroethylene (better, but may be hard to get). If you leave the old oil in place it will congeal and reduce the heat transfer in the condenser and evaporator (read that it won’t cool good) and possibly damage the compressor.

Disconnect the compressor and remove it from its mount to flush it with cleaning solvent. Pour about a cup of solvent into the suction port and turn the compressor center hub about 10 turns while shaking the compressor to move the solvent around inside the compressor sump. Drain the flushing solvent out and continue to turn the center hub by hand to force out any remaining solvent. Then fill it with oil: add about 6-8 oz of the new oil to the compressor large suction fitting. Turn the compressor center hub about 20 turns as you turn the compressor face up and face down to distribute the new oil inside the compressor. Catch and replace any oil that comes out of the compressor.

Connect the pump (I had an electric sump pump I bought for $20) to the hose from the high-pressure side of the compressor. Alternately, you could use compressed air to force the cleaning fluid through the system. I didn’t like to do this since compressed air has lots of moisture in it, which is death to A/C systems. Pump the cleaning fluid through the system and let it come out the hose that was attached to the old dryer/receiver. I used 2 gallons of mineral spirits and pumped it all through the condenser and evaporator. The expansion valve is located near the firewall in the high-pressure line of the evaporator, and may cause the cleaning fluid to trickle through the lines at a very slow pace. You may want to pump cleaning fluid through the evaporator and condenser separately to speed up the process.


All refrigerant types
Next comes the changing of all the old "O" rings so that the chances for leaks is minimized. The new R134 compatible O rings are green colored, so be sure that the replacement O rings are green. Use the plastic connector tools to separate the lines, place the extended collar part of the tool so that it faces the large part of the connector and push inwards: this expands the spring so that you can pull the tube apart. You may need a helper to push on the tool while you pull on the tubes to separate them. Install the new "O" rings: be sure to coat them with new oil when you put them in. Install the new dryer/receiver, refrigerant service port adapter on the compressor, add about more 4oz of oil to high pressure line and tighten up all the lines. You may have to add more oil when you do a system that has been flushed or new R12 installation. The total oil charge should be 6-8 oz. for all types of refrigerants. Close the hood, start the engine, let everything get warm under the hood, but don’t add the refrigerant or turn the A/C on. Connect the charging gauge hoses to the service ports on the A/C (red gauge = high pressure, blue gauge = low pressure) and open both valves, then connect the center hose to the vacuum pump. The purpose of this exercise is to heat up the system so that when you vacuum it all down (yes, you will need a vacuum pump- mine is an old refrigerator compressor), that all the air, vapor and moisture from the cleaning fluid vaporizes and is removed from the system. Vacuum it down for about 30 minutes, this should give you about 28" of vacuum or more inside the A/C system. I have a vacuum gauge "T" connected into the vacuum pump line so that I can accurately watch the vacuuming process. This is a good time to take a soda and sandwich break since it doesn’t go faster if you watch it.

the R134a service fittings on the system: the red goes on the high side and the blue on the low side. This will help others identify that a R134a conversion has been done on the system.

Typical low pressure side R134 coupling


Typical high pressure side R134 coupling



Charging instructions for all refrigerant types:
Remove the electrical connector from the dryer/receiver and jumper the two connections inside the wiring harness side of the connector together: this allows the compressor to engage in spite of low pressure/no gas in the system. Close both charging gauge valves, and then disconnect the center hose of the charging gauges from the vacuum pump and connect it to the refrigerant can tapper. Put the refrigerant can in the can tapper and screw it down with the can tapper valve closed, then open the valve. Loosen the hose at the center connection of the charging gauge set until the refrigerant squirts out: this purges the line of air and moisture. The refrigerant is added through the low pressure side of the system, so open the low pressure gauge valve to add the refrigerant. Start the car and take note of the idle speed, then set the idle speed up to about 1200-1500 rpm, and turn the A/C on inside and set the fan speed on high. Watch for the pressure on the low side to drop off as you are filling, and the refrigerant can will get warm and stay warm. This tells you the current can is empty and needs to be changed for a fresh one. Before you disconnect the can, be sure to close the valve on the refrigerant can tapper.

Watch the high side pressure on the charging gages and regulate the adding of gas to keep the high side pressure under 350 psi. You will probably need a fan in front of the car to keep the readings below 350 psi. I had to put the refrigerant can in hot water while I was charging the system with it, or else the can got so cold that it quit flowing. Use caution when you do this so that you don’t get water in the charging adapter when you change the cans.

R12 Pressures when charging is complete
When you have added the 32-36 oz. of gas, the high side will read about 250-300 psi and low side about 28-38 psi. No adjustments need to be made to the low pressure cutout switch.


Freeze 12& R134 Pressures when charging is complete.
When you have added the 24-28 oz. of gas, the high side will read about 250-300 psi and low side about 18-28 psi.


Freeze 12& R134 Low pressure cutout switch adjustment.
The low pressure cutout switches are adjustable. They should be set with the low limit about 18-21 PSI, the stock setting is about 25 PSI. Remove the wiring connector and there is a screw slot in between the connector pins. Turning it clockwise increases the trip pressure where it cuts off and counterclockwise decreases the trip pressure. I believe that each 1/4 turn counterclockwise lowers the cutoff pressure by 1 PSI.


After Charging refrigerant instructions, all refrigerant types
Turn the idle speed back to where it was, turn the A/C off, disconnect the charging gauges, and re-install all the caps on the service ports. Remove the jumper from the low pressure switch harness and plug it back on the switch connectors.

R134 only
Then put the R134a Service Sticker on, secure all the loose wiring on the system and you are done.

The typical sticker looks like this, yours may be different.




I hope it cools good, mine doesn’t get quite as cold as it used to driving around town.

Thanks go to WWW.ACKITS.COM for some of the graphics.
Check out their website for parts and the Auto AC Forum.

The above technical note is for informational purposes only, and the end user is responsible for any damages or injury. The end user bears all responsibility for proper recovery/disposal of any R12 refrigerant.
I have EPA 608 and EPA 609 MVAC certification. And yes, you can shortcut the process, but there are negative factors if you do. Sooner or later, something will cease to function like it should. Shoddy work is a time bomb ticking away, waiting to explode.
 
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