B65D90/46

Flexible intermediate bulk container with induction control
10023380 · 2018-07-17 · ·

A method, apparatus and system is provided for both (1) decreasing electrostatic discharges to reduce the potential for incendiary discharges caused by electrostatic charges in flexible containers such as flexible intermediate bulk containers (FIBCs) and (2) decreasing the induction on isolated conductors nearby the container to reduce the potential for incendiary discharges from the isolated conductors.

Flexible intermediate bulk container with induction control
10023380 · 2018-07-17 · ·

A method, apparatus and system is provided for both (1) decreasing electrostatic discharges to reduce the potential for incendiary discharges caused by electrostatic charges in flexible containers such as flexible intermediate bulk containers (FIBCs) and (2) decreasing the induction on isolated conductors nearby the container to reduce the potential for incendiary discharges from the isolated conductors.

EXPLOSION-PROOF INTELLIGENT TEMPERATURE CONTROL TANK CONTAINER

An explosion-proof intelligent temperature control tank container comprises a tank heat exchange tube system (4), the tank heat exchange tube system (4) being connected to an explosion-proof refrigeration unit (11) and an explosion-proof heating module (23), the explosion-proof refrigeration unit (11) being connected to an external pipeline (6), and an explosion-proof circulating liquid temperature sensor (8), an explosion-proof liquid level switch (9) and an inlet and outlet pipeline valve (10) are arranged on the external pipeline (6). The present explosion-proof intelligent temperature control tank container uses an explosion-preventing design, can be used normally in a specified explosion hazard environment, can monitor the state of cargo and equipment in real time, and can remotely operate and control equipment by means of a background system to prevent explosions.

FLEXIBLE INTERMEDIATE BULK CONTAINER WITH INDUCTION CONTROL
20180037405 · 2018-02-08 ·

A method, apparatus and system is provided for both (1) decreasing electrostatic discharges to reduce the potential for incendiary discharges caused by electrostatic charges in flexible containers such as flexible intermediate bulk containers (FIBCs) and (2) decreasing the induction on isolated conductors nearby the container to reduce the potential for incendiary discharges from the isolated conductors

FLEXIBLE INTERMEDIATE BULK CONTAINER WITH INDUCTION CONTROL
20180037405 · 2018-02-08 ·

A method, apparatus and system is provided for both (1) decreasing electrostatic discharges to reduce the potential for incendiary discharges caused by electrostatic charges in flexible containers such as flexible intermediate bulk containers (FIBCs) and (2) decreasing the induction on isolated conductors nearby the container to reduce the potential for incendiary discharges from the isolated conductors

Method for making static-dissipative composite structure with exposed conductive fiber

Provided is a method for making a composite structure with exposed conductive fibers. The exposed conductive fibers can be used for static dissipation. In the present method, a liquid, gum, gel, or impermeable film mask is applied to the conductive fiber material. The mask functions to prevent infiltration of curable liquid resin into the conductive fiber material. The masked conductive fiber material is incorporated into the composite structure, along with structural fiber material. The liquid resin is cured. The mask material and cured resin are removed from the masked areas, thereby exposing the conductive fiber material. The exposed conductive fiber material can collect and drain electrostatic charges. The present method can be used to make storage tanks and other objects that require electrostatic charge dissipation.

Method for making static-dissipative composite structure with exposed conductive fiber

Provided is a method for making a composite structure with exposed conductive fibers. The exposed conductive fibers can be used for static dissipation. In the present method, a liquid, gum, gel, or impermeable film mask is applied to the conductive fiber material. The mask functions to prevent infiltration of curable liquid resin into the conductive fiber material. The masked conductive fiber material is incorporated into the composite structure, along with structural fiber material. The liquid resin is cured. The mask material and cured resin are removed from the masked areas, thereby exposing the conductive fiber material. The exposed conductive fiber material can collect and drain electrostatic charges. The present method can be used to make storage tanks and other objects that require electrostatic charge dissipation.

Anti-incendiary flexible intermediate bulk container with induction control
09815618 · 2017-11-14 · ·

A method, apparatus and system is provided for both (1) decreasing electrostatic discharges to reduce the potential for incendiary discharges caused by electrostatic charges in flexible containers such as flexible intermediate bulk containers (FIBCs) and (2) decreasing the induction on isolated conductors nearby the container to reduce the potential for incendiary discharges from the isolated conductors.

Anti-incendiary flexible intermediate bulk container with induction control
09815618 · 2017-11-14 · ·

A method, apparatus and system is provided for both (1) decreasing electrostatic discharges to reduce the potential for incendiary discharges caused by electrostatic charges in flexible containers such as flexible intermediate bulk containers (FIBCs) and (2) decreasing the induction on isolated conductors nearby the container to reduce the potential for incendiary discharges from the isolated conductors.

Flexible intermediate bulk container with induction control
09815619 · 2017-11-14 · ·

A method, apparatus and system is provided for both (1) decreasing electrostatic discharges to reduce the potential for incendiary discharges caused by electrostatic charges in flexible containers such as flexible intermediate bulk containers (FIBCs) and (2) decreasing the induction on isolated conductors nearby the container to reduce the potential for incendiary discharges from the isolated conductors.