Thread Content
Vulcanization is divided into ( ) stage, ( ) stage, ( ) stage, ( ) stage, ( ) stage. Vulcanization is divided into a (temperature increase) stage, a (constant-temperature removal of adsorbed water) stage, a (temperature increase) stage, a (constant-temperature leveling of the bed temperature) stage, and a (vulcanization) stage.
Vulcanization is divided into a (temperature increase) stage, a (constant-temperature removal of adsorbed water) stage, a (temperature increase) stage, a (constant-temperature leveling of the bed temperature) stage, and a (vulcanization) stage.
IV. Induction, pre-sulfurization, normal sulfurization, over-sulfurization
Vulcanization is divided into a (temperature increase) stage, a (constant-temperature removal of adsorbed water) stage, a (temperature increase) stage, a (constant-temperature leveling of the bed temperature) stage, and a (vulcanization) stage.
Vulcanization is divided into a (temperature increase) stage, a (constant-temperature removal of adsorbed water) stage, a (temperature increase) stage, a (constant-temperature leveling of the bed temperature) stage, and a (vulcanization) stage.
Raise temperature, remove adsorbed water at a constant temperature; raise temperature again, maintain a constant temperature to level out the bed temperature, then carry out sulfidation
Raise temperature, remove adsorbed water at a constant temperature; raise temperature again, maintain a constant temperature to level out the bed temperature, then carry out sulfidation
Vulcanization is divided into a (temperature increase) stage, a (constant-temperature removal of adsorbed water) stage, a (temperature increase) stage, a (constant-temperature leveling of the bed temperature) stage, and a (vulcanization) stage
Charring stage, sulfur-deficient stage, optimal sulfur stage, sulfur-excess stage
Sulfidation induction, pre-sulfurization, normal sulfidation, and over-sulfurization
It is divided into four stages: scorching stage, thermal vulcanization stage, leveling vulcanization stage, and over-vulcanization stage