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1. SEKISUI FOAM Glebal Foam Solutions B W ER THERMOBREAK Fabrication from Thermobreak Tube and Sheet e 90 Elbow with Thermobreak Tube e 45 Elbow with Thermobreak Tub cp SEEDEDE SEES SEGS e 90 Elbow in 2 miter cuts with Thermobreak Tube e 45 Elbow in 2 miter cuts with Thermobreak Tube e 90 Elbow in 3 miter cuts with Thermobreak Tube e 45 Elbow in 3 miter cuts with Thermobreak Tube e Tee fitting using Thermobreak Tube sssseeeeeveevrvveresnnee e 90 Elbow with Thermobreak Sheet e Valve fitting with Thermobreak Sheet THERMOBREAK Thermal Insulation 90 Elbow using Thermobreak Tube a To achieve 45 angle use miter box or cut in an angle to achieve the outer diameter of the insulation as illustrated above b Apply rubber based solvent adhesive to both ends Join both ends firmly d Apply Thermobreak foil tape on the joints to protect against any moisture penetration Q THERMOBREAK Thermal Insulation 45 Elbow using Thermobreak Tube a To achieve 22 5 angle use miter box or cut in an angle to achieve the 1 3 9 of the outer diameter of the insulation as illustrated above Note The 1 3 of the outer diameter cut is approximate values to achieve 22 5 angle b Apply rubber based solvent a
2. 1 4 GC 14 GC F ME to the bonnet neck area as shown in vi j Yisthe difference between Li amp Lo Cut the Thermobreak sheet in size X La Divide it in to 4 quarters at the end of the 1st 274 and 3 d quarter use Y as the distance from top and use this as reference to draw an arc Connect the arc by staright lines and cut Thermobreak along these marks and install it on the bonnet area
3. dhesive to both ends Join both ends firmly d Apply Thermobreak foil tape on the joints to protect against any moisture penetration Q THERMOBREAK 90 Elbow using Thermobreak Tube 2 miter cuts 1 wi y I KE pl dl EN de ERP TA b EE CE Mh hae Gui ei h is va RS JOR ble HET an PETE pe 2 miter cuts are mostly for long radius elbows To achieve 2 miter cuts use miter box with 15 angle and a spacing of 10 15mm between them Use rubber based solvent adhesive to joint the miter cuts Join the adhered ends firmly Apply Thermobreak foil tape on the joints to protect against moisture penetration THERMOBREAK Thermal Insulation 90 Elbow using Thermobreak Tube 3 miter cuts m es 10 15mm a 3 miter cuts are mostly for short radius elbows b To achieve 3 miter cuts use miter box with 11 25 angle and spacing of 10 15mm between them Use rubber based solvent adhesive to joint the miter cuts Join the adhered ends firmly e Apply Thermobreak foil tape on the joints to protect against moisture penetration Bu THERMOBREAK Thermal Insulation Tee using Thermobreak Tube a Cut the two tubes as per drawing illustrated above b Apply rubber based solvent adhesive to both ends c Join both ends firmly d Apply Thermobreak foil tape on the joints to protect against any moisture penetration THERMOBREAK Thermal Insulati
4. on R c2 _ THERMOBREAK Thermal Insulation Valve fitting with Thermobreak Sheet Cut Thermobreak sheet in to donut shapes with the outside and inside diameter matching the flanges Install these donuts on the flange and valve stem areas Use scar strips of Thermobreak to fill the body of the valve until it is the same dimension as the outside diameter of the flanges Use rubber based solvent adhesive for scrap strips Measure the circumference of the Fill with Thermobreak strap strips 11 Same OD as flange flange using a strip of Thermobreak as shown in figure iii Cut Thermobreak sheet as show in Circumference figure iv The length A is obtained from iii The width B is obtained by measuring the distance between the two outer donuts The diameter of semi circle C is obtained by measuring across the throat of the valve at a point under the flange where the stem enters 111 iv THERMOBREAK Thermal Insulation The cut sheet iv is installed around the valve body using a rubber based solvent adhesive The last piece of insulation to wrap the bonnet area is made as show in Vil amp vili The overall length Cis determined by wrapping Thermobreak on the bonnet Li is obtained from the middle of the valve body till the neck of bonnet area as shown in vi i Lois obtained by measuring the Me Er outer surface of the insulated valve v 0

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