B29C48/272

Cross-linked polyolefin separator and method for producing same
11894575 · 2024-02-06 · ·

A crosslinked polyolefin separator having an average value of light transmittance of 30% or more in a region of 380 nm to 700 nm, after four sides of the separator are fixed and allowed to stand at 130 C. for 30 minutes. A method for manufacturing the crosslinked polyolefin separator is also provided. The crosslinked polyolefin separator has a low shutdown temperature to provide improved safety. The crosslinked polyolefin separator also has a high meltdown temperature and is inhibited from die-drooling.

Cross-Linked Polyolefin Separator and Method for Producing Same
20240120613 · 2024-04-11 · ·

A crosslinked polyolefin separator having an average value of light transmittance of 30% or more in a region of 380 nm to 700 nm, after four sides of the separator are fixed and allowed to stand at 130? C. for 30 minutes. A method for manufacturing the crosslinked polyolefin separator is also provided. The crosslinked polyolefin separator has a low shutdown temperature to provide improved safety. The crosslinked polyolefin separator also has a high meltdown temperature and is inhibited from die-drooling.

DIE PIN HAVING CERAMIC TIP FOR MOLTEN PLASTIC EXTRUSION

A die pin for forming a hollow plastic parison is provided, the die pin having a base member with a proximal mounting portion, a body portion, and a distal frustoconical portion, wherein the base member comprises a first material, and a tip member mounted on the distal frustoconical portion, wherein the tip member comprises a second material, the second material being different than the first material. An extrusion apparatus and method for forming a hollow plastic parison using the die pin are also provided.

EXTRUSION RESIDUE SHEARS AND METHOD FOR SHEARING OFF AN EXTRUSION RESIDUE

A precise shearing process can be made possible, with a cost-advantageous embodiment of extrusion residue shears, if the shearing forces and the shearing movement are applied or carried out in as compact and targeted a manner as possible. This can be implemented, in the case of a suitable embodiment of the corresponding extrusion residue shears or of the corresponding method, in each instance, by a suitable embodiment of the drive train that belongs to the shearing movement, by pulling of the related shear blade, by a shearing drive that is separate from positioning and/or by suitable regulation.

On-line automatic cleaning apparatus of slit extrusion type coating die for lithium battery and cleaning method thereof

An on-line automatic cleaning apparatus of slit extrusion type coating die for lithium battery and a method associated therewith are provided. The cleaning apparatus includes: a die lip, a coating steel roller, and a cleaning mechanism disposed therebetween. The cleaning mechanism includes a cleaning chamber which includes elongated sealing strips and a flow-guiding arc groove. Front and rear ends of the cleaning chamber are connected to an inlet sealing plate and an outlet sealing plate respectively. The flow-guiding arc groove is in contact with and presses upper and lower sloped surfaces of the die lip through the elongated sealing strips to seal and thereby define a closed cleaning tunnel. The inlet and outlet sealing plates are in contact with and press two ends of the closed cleaning tunnel respectively for circumferential sealing. An inlet and an outlet are connected to pipes having solenoid valves installed thereon.

Method to Improve Remote Phosphor Optical Properties in Polycarbonate

The disclosure concerns compositions and methods to improve remote phosphor optical properties in polycarbonate. One method includes combining a phosphor component and a polycarbonate component to form a phosphor-polycarbonate composition; and at a fixed phosphor concentration, combining the phosphor-polycarbonate composition with a diffusing agent comprising polytetrafluoroethylene (PTFE), wherein the diffusing agent diffuses light, and wherein the phosphor-polycarbonate composition exhibits an increase in chromaticity coordinate (CIEx) as determined by CIE 1931 or increase in CIE 1976 (u,v) of at least about 5% relative to a substantially similar reference composition in the absence of PTFE. Also described are methods to increase yield and reduce product accumulation of an extruded thermoplastic polycarbonate composition through the mixing of PTFE with a phosphor-polycarbonate (PCP) to form a PCP-PTFE component as well as a method forming a phosphor-polycarbonate master batch (PPCMB) composition, and during extrusion, adding PTFE to the PPCMB composition to form a PPCMB-PTFE composition.

Continuous extrusion forming apparatus
10207442 · 2019-02-19 · ·

An apparatus of the present invention is a continuous extrusion forming apparatus comprising: a screw which carries a forming raw material in the horizontal direction, the screw being built in the screw part; and a mouth piece structure for extrusion forming, which is provided on the downstream side of a screw part, wherein the mouth piece structure has a horizontal channel for extruding the forming raw material flowing in from the screw part in the horizontal direction, an extrusion channel orthogonal to the horizontal channel, and an extrusion port provided at a tip end of the extrusion channel, and wherein a mouth piece structure holder which holds the mouth piece structure is provided with a turning means which freely changes the opening direction of the extrusion port between the horizontal direction and a floor facing direction.

Mold Assembly for PVA Plastic Material and Shunt Cone of the Same
20240316852 · 2024-09-26 ·

A mold assembly has a pressing mold, a shunt cone, and a mold cap. The shunt cone is disposed in the pressing mold to define a conical pressing channel. The shunt cone has a body, an inlet channel, and an outlet channel. The body has a conical cone portion. The inlet channel has an extension height from a top of shunt cone being higher than an extension height of the inlet channel from the top of the shunt cone. The mold cap is attached to a bottom of the pressing mold and has a lower mold cavity to allow the cone portion to extend into the lower mold cavity and to define a conical shaped connection channel. The connection channel communicates with the pressing channel, and a material input channel is defined in the mold cap and communicating with the connection channel.

DEVICE AND METHOD FOR CLEANING AN EXTRUDER FOR ELASTOMER MIXTURES
20180194054 · 2018-07-12 ·

Device for cleaning an extruder intended to operate with elastomeric mixtures comprising a frame (11) supporting a screw (2) and a barrel (1), the screw (2) being made to rotate about the longitudinal axis (X-X) of the barrel (2) when it is rotationally driven by drive means, the barrel comprising an elastomeric-mixture feed inlet (3) and an outlet (4) opening directly into an extrusion die (21) mounted on a support (20).

According to the invention, the frame (11) is mounted with the ability to move translationally with respect to the die (21) support (20) in a direction parallel to the longitudinal axis X-X between a first position in which the barrel (1) and the die (21) are in sealed contact to allow the elastomeric mixture to pass through the die (21) and a second position in which the barrel (1) is moved away from the die (21) in order to perform cleaning, the parting line between the barrel (1) and the die being substantially axisymmetric with respect to the axis X-X and in that the said device comprises an automatic coupling mechanism (40) for quickly locking and unlocking the barrel (1) and the die (21) and allowing the frame (11) to move between the two positions.

Systems and Methods of Cleaning Extruders

Methods for cleaning a die face for an extruder include: positioning an articulating tool adjacent the die face while the die face is installed on the extruder, the die face defining a plurality of die orifices; triggering operation of the articulating tool and thereby articulating an end effector coupled to the articulating tool; and contacting the end effector against one or more surfaces of the die face and thereby removing fouling from the die plate. Methods may include: pausing production of a polymer pellet product from the extruder when at least one of the pressure at the die or a polymer pellet product properties indicates fouling at the die; removing a polymer residue from one or more orifices in the die with an articulating tool equipped with an end effector while the die is mounted on the extruder; and resuming production of the polymer pellet product.