Cold bonding process for glass jugs
A technology for glass pots and crafts, applied in glass production, glass molding, glass manufacturing equipment, etc., can solve the problems of heat loss in the heating chamber, energy loss in the heating chamber, cracks in the pot body, etc., achieve good limit effect, and improve heating effect, the effect of reducing heat loss
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Embodiment 1
[0037] The cold joining process for glass pots includes the following steps:
[0038] Step 1: heat the raw material to 800~900℃ until the raw material softens, and use the softened raw material to prepare the pot body;
[0039] Step 2: anneal the pot body prepared in step 1 at a temperature of 550~600°C for 1.8~2.2h;
[0040] Step 3: After the pot body processed in Step 2 is cooled to room temperature, put it into the heating chamber of the heating furnace for heating for 1.4~1.6h, and the heating temperature is 550~600℃;
[0041] Step 4: heating the raw material to 800~900°C until the raw material is softened, and using the softened raw material to prepare the handle;
[0042] Step 5: Take out the pot body treated in step 3 from the heating furnace and weld the handle treated in step 4 on the pot body, and then anneal at a temperature of 550-560°C for 1.8-2.2 hours.
[0043] like figure 1 shown, as figure 1 As shown, the heating furnace used in the above-mentioned step 3 ...
Embodiment 2
[0052] On the basis of Example 1, as image 3 As shown, the side wall of the rotating shaft 3 in this embodiment is provided with two heating channels, and the two heating channels are respectively opposite to the heating cavities 12 in the two adjacent heating chambers on the left side, and are respectively connected with the heating cavities 12 on the two heating cavities 12. The hot air port is connected. In this embodiment, when the control piston slides to the side close to the heating element 36, the gas in the control piston enters the two heating chambers 12 on the left side at the same time, so that the temperature of the two heating chambers 12 increases. , and other operation methods in this embodiment are the same as those in Embodiment 1.
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