Patent classifications
B22C15/06
Flaskless molding machine
A flaskless molding machine includes: an upper flask; a lower flask; an upper sand tank; an upper plate attached to a lower end of the upper sand tank; a first lower sand tank; a second lower sand tank; a lower plate attached to an upper end of the second lower sand tank; a drive unit performing squeezing using the upper plate and the lower plate; an adjustment drive unit moving the first lower sand tank; a first detector detecting a height position of the first lower sand tank; a second detector detecting a height position of the second lower sand tank; and a control unit operating the drive unit and the adjustment drive unit so that the height positions of the first communication port and the second communication port coincide with each other, based on detection results of the first detector and the second detector.
Flaskless molding machine
A flaskless molding machine includes: an upper flask; a lower flask; an upper sand tank; an upper plate attached to a lower end of the upper sand tank; a first lower sand tank; a second lower sand tank; a lower plate attached to an upper end of the second lower sand tank; a drive unit performing squeezing using the upper plate and the lower plate; an adjustment drive unit moving the first lower sand tank; a first detector detecting a height position of the first lower sand tank; a second detector detecting a height position of the second lower sand tank; and a control unit operating the drive unit and the adjustment drive unit so that the height positions of the first communication port and the second communication port coincide with each other, based on detection results of the first detector and the second detector.
Molding flask for a molding machine and a molding process using the molding flask
A flask for containing mold sand within it prevents any mold shifting or mold dropping. Each of an upper flask 2 and a lower flask 3 includes a body that defines an opening in which a sand mold is to be molded. The body has at least one inlet 101 for introducing the mold sand into the opening. Two flanges 102 are extended from the body such that they are opposed to each other across the opening. Each flange has a through bore. The flask also includes engaging members for engaging an actuator in the outside of the flask such that a force or forces from said actuator could be transmitted to the flask. An upper flask 104 and a lower flask 105 are opposed to each other across a pattern plate 107. They are integrally assembled to make a flask unit by means of a pair of connecting rods 106 that are fitted in each bore.
Molding flask for a molding machine and a molding process using the molding flask
A flask for containing mold sand within it prevents any mold shifting or mold dropping. Each of an upper flask 2 and a lower flask 3 includes a body that defines an opening in which a sand mold is to be molded. The body has at least one inlet 101 for introducing the mold sand into the opening. Two flanges 102 are extended from the body such that they are opposed to each other across the opening. Each flange has a through bore. The flask also includes engaging members for engaging an actuator in the outside of the flask such that a force or forces from said actuator could be transmitted to the flask. An upper flask 104 and a lower flask 105 are opposed to each other across a pattern plate 107. They are integrally assembled to make a flask unit by means of a pair of connecting rods 106 that are fitted in each bore.
FLASKLESS MOLDING MACHINE
A flaskless molding machine includes: an upper flask; a lower flask; an upper sand tank; an upper plate attached to a lower end of the upper sand tank; a first lower sand tank; a second lower sand tank; a lower plate attached to an upper end of the second lower sand tank; a drive unit performing squeezing using the upper plate and the lower plate; an adjustment drive unit moving the first lower sand tank; a first detector detecting a height position of the first lower sand tank; a second detector detecting a height position of the second lower sand tank; and a control unit operating the drive unit and the adjustment drive unit so that the height positions of the first communication port and the second communication port coincide with each other, based on detection results of the first detector and the second detector.
Molding Flask for a Molding Machine and A Molding Process Using the Molding Flask
A flask for containing mold sand within it prevents any mold shifting or mold dropping. Each of an upper flask 2 and a lower flask 3 includes a body that defines an opening in which a sand mold is to be molded. The body has at least one inlet 101 for introducing the mold sand into the opening. Two flanges 102 are extended from the body such that they are opposed to each other across the opening. Each flange has a through bore. The flask also includes engaging members for engaging an actuator in the outside of the flask such that a force or forces from said actuator could be transmitted to the flask. An upper flask 104 and a lower flask 105 are opposed to each other across a pattern plate 107. They are integrally assembled to make a flask unit by means of a pair of connecting rods 106 that are fitted in each bore.
Molding Flask for a Molding Machine and A Molding Process Using the Molding Flask
A flask for containing mold sand within it prevents any mold shifting or mold dropping. Each of an upper flask 2 and a lower flask 3 includes a body that defines an opening in which a sand mold is to be molded. The body has at least one inlet 101 for introducing the mold sand into the opening. Two flanges 102 are extended from the body such that they are opposed to each other across the opening. Each flange has a through bore. The flask also includes engaging members for engaging an actuator in the outside of the flask such that a force or forces from said actuator could be transmitted to the flask. An upper flask 104 and a lower flask 105 are opposed to each other across a pattern plate 107. They are integrally assembled to make a flask unit by means of a pair of connecting rods 106 that are fitted in each bore.
CASTING MOLD SHAPING APPARATUS AND CASTING MOLD SHAPING METHOD
A casting mold shaping apparatus is provided that includes: a pressing member for pressing charged casting sands in a molding space formed by a molding flask and a carrier plate placed on a squeezing table; a driving mechanism for performing driving so as to bring the pressing member and the squeezing table close to each other or separate that pressing member and the squeezing table from each other, the driving mechanism including an output unit that relatively moves along a direction of pressing the pressing member; an electric motor for driving the driving mechanism; and a pressure adjustment device for adjusting a force of the driving mechanism outputted to the output unit so as to decrease and causing the pressing member to generate a predetermined pressing force necessary for pressing the casting sands, are included.
CASTING MOLD SHAPING APPARATUS AND CASTING MOLD SHAPING METHOD
A casting mold shaping apparatus is provided that includes: a pressing member for pressing charged casting sands in a molding space formed by a molding flask and a carrier plate placed on a squeezing table; a driving mechanism for performing driving so as to bring the pressing member and the squeezing table close to each other or separate that pressing member and the squeezing table from each other, the driving mechanism including an output unit that relatively moves along a direction of pressing the pressing member; an electric motor for driving the driving mechanism; and a pressure adjustment device for adjusting a force of the driving mechanism outputted to the output unit so as to decrease and causing the pressing member to generate a predetermined pressing force necessary for pressing the casting sands, are included.
ELECTRIC SQUEEZE DEVICE
An electric squeeze device is provided and includes: an electric squeeze device includes: a squeezing frame that applies a pressurizing force to the casting sands, a swing arm that is positioned on an upper side of the squeezing frame and reciprocates at a predetermined angle with respect to a rotation center; a link having one end side connected to a position of a radius of rotation A from the rotation center O of the swing arm and another end side connected to the squeezing frame; a driven gear formed along a virtual arc of a radius of rotation B from the rotation center of the swing arm; a drive gear that meshes with the driven gear; and an electric motor that rotationally drives the drive gear.