Patent classifications
B29C2045/1784
Control panel for injection molding machine
A control panel for an injection molding machine is equipped with a module, a mounting member that supports the module and has a width wider than that of the module in a lateral direction of the module, and a plurality of vibration absorbing devices that support the mounting member between the mounting member and an installation surface, and which elastically absorb vibrations transmitted from the installation surface to the module. The plurality of vibration absorbing devices are disposed symmetrically about a center of gravity line defined by a straight line lying parallel to a longitudinal direction of the module and which passes through the center of gravity of the module.
PROTECTIVE COVER FOR A PLASTICISING CYLINDER
A protective cover for a plasticising cylinder of a shaping machinehas an elongate internal space which is enclosed by at least one wall and in which the plasticising cylinder can be arranged. A terminal box for heating strips arranged on the plasticising cylinder projects into the internal space, and one of the walls of the protective cover has an opening which is closed by an openable cover member. In the opened condition, the opening allows access to the terminal box or the interior of the terminal box.
INJECTION MOLDING DIE
Provided is an injection molding die capable of adjusting a size of a support member, preventing bending of a mold, and preventing occurrence of burrs without removing the mold and making the support member again. The present invention provides an injection molding die including a fixed mold and a movable mold that face each other, the fixed mold and the movable mold being clamped to form a cavity for molding a molded product, the injection molding die further including at least one support member that is provided to abut on a surface opposite to a surface on which the cavity is formed in either or both of the fixed mold and the movable mold, the at least one support member being a stretchable support member in a direction of the cavity.
Method and injection molding manifold adapted for leak detection during injection molding
An injection molding hot runner system adapted for leak detection during injection molding includes a manifold and a housing surrounding the manifold, wherein the manifold and the housing are spaced apart defining one or more pockets, the manifold comprises at least one junction point establishing a connection to a component attached to the manifold, wherein at the at least one junction point a sensor is located in the pocket, wherein the sensor is configured to indicate a leak when getting in contact with the molten plastic due to a leak at the junction point.
INJECTION MOLDING MACHINE
An injection molding machine includes: a timing belt wound around a driving-side rotation member and a driven-side rotation member and configured to transmit power from the driving-side rotation member to the driven-side rotation member; a driving-side rotation detecting unit configured to detect a rotational speed of the driving-side rotation member; a driven-side rotation detecting unit configured to detect a rotational speed of the driven-side rotation member; and an abnormality detecting unit configured to detect an abnormality in the timing belt based on a relative speed difference between the rotational speed of the driving-side rotation member detected by the driving-side rotation detecting unit and the rotational speed of the driven-side rotation member detected by the driven-side rotation detecting unit in a predetermined period after the driving-side rotation member starts to rotate from a stopped state.
METHOD FOR PRODUCING FLOORBOARD FOR QUICK SIDESLIP INSTALLATION
A production method of a floor for quick side-slide installation includes the following steps: step 1: sorting of floor blanks; step 2: curing of the floor blanks; step 3: sanding of the floor blanks; step 4: cutting-to-thickness of the floor blanks; step 5: surface treatment of the floor blanks; step 6: cutting-to-length and molding of the floor blanks; step 7: spraying of anti-cracking oil on the floor blanks; step 8: plastic encapsulation of the floor blanks; step 9: application of a paint to back surfaces of the floor blanks; and step 10: application of the paint or vegetable oil to the floor blanks. A locking frame is hidden under bosses of a floor blank after being injection-molded, which achieves high locking accuracy and firm assembly.
LOW FRICTION GIB
A gib includes a metallic substrate having a first face and a second face and an attachment disposed on the metallic substrate. The attachment includes a first functional surface disposed on the first face of the metallic substrate. The first functional surface is configured as a bearing surface. The attachment may be formed of a fabric resin composite material.
METHOD AND INJECTION MOLDING MANIFOLD ADAPTED FOR LEAK DETECTION DURING INJECTION MOLDING
An injection molding hot runner system adapted for leak detection during injection molding includes a manifold and a housing surrounding the manifold, wherein the manifold and the housing are spaced apart defining one or more pockets, the manifold comprises at least one junction point establishing a connection to a component attached to the manifold, wherein at the at least one junction point a sensor is located in the pocket, wherein the sensor is configured to indicate a leak when getting in contact with the molten plastic due to a leak at the junction point.
CONTROL PANEL FOR INJECTION MOLDING MACHINE
A control panel for an injection molding machine is equipped with a module, a mounting member that supports the module and has a width wider than that of the module in a lateral direction of the module, and a plurality of vibration absorbing devices that support the mounting member between the mounting member and an installation surface, and which elastically absorb vibrations transmitted from the installation surface to the module. The plurality of vibration absorbing devices are disposed symmetrically about a center of gravity line defined by a straight line lying parallel to a longitudinal direction of the module and which passes through the center of gravity of the module.
Method for producing floorboard for quick sideslip installation
A production method of a floor for quick side-slide installation includes the following steps: step 1: sorting of floor blanks; step 2: curing of the floor blanks; step 3: sanding of the floor blanks; step 4: cutting-to-thickness of the floor blanks; step 5: surface treatment of the floor blanks; step 6: cutting-to-length and molding of the floor blanks; step 7: spraying of anti-cracking oil on the floor blanks; step 8: plastic encapsulation of the floor blanks; step 9: application of a paint to back surfaces of the floor blanks; and step 10: application of the paint or vegetable oil to the floor blanks. A locking frame is hidden under bosses of a floor blank after being injection-molded, which achieves high locking accuracy and firm assembly.