B65G43/04

Anti-skid speed measurement and material flow detection device for belt conveyor
11518623 · 2022-12-06 ·

The present invention relates to an anti-skid speed measurement and material flow detection device for a belt conveyor, include a base symmetrically arranged on the intermediate frame of the belt conveyor and arranged between two groups of slotted roller supports, sliding supports arranged on the base, a speed measurement roller and a sensor arranged on the two groups of sliding supports, and a control system connected with the sensor, a speed measurement disk is sleeved on an end face of one end of a barrel of the speed measurement roller, a circular hole is formed on the circumference of the speed measurement disk, the circular hole is arranged corresponding to the position of the senso. Compared with the prior art, the present invention has the advantages of dramatically reduced production cost and maintenance cost, simple structure and high reliability.

Flexible lance drive apparatus with autostroke function

An apparatus for sensing an obstruction within a tube being cleaned and repetitively advancing and retracting a flexible high pressure fluid cleaning lance within the tube is disclosed. The apparatus monitors drive roller/belt position and actual hose position, compares the belt (expected travel) to hose position (travel) and generates a position difference, or mismatch. If the mismatch is above a predetermined level, the drive motor direction is reversed for a predetermined time interval, and forward operation restored after the predetermined time interval; and the sequence of repeating the reversing and restoring operations is continued until the position difference or mismatch no longer exceeds the predetermined difference threshold.

Flexible lance drive apparatus with autostroke function

An apparatus for sensing an obstruction within a tube being cleaned and repetitively advancing and retracting a flexible high pressure fluid cleaning lance within the tube is disclosed. The apparatus monitors drive roller/belt position and actual hose position, compares the belt (expected travel) to hose position (travel) and generates a position difference, or mismatch. If the mismatch is above a predetermined level, the drive motor direction is reversed for a predetermined time interval, and forward operation restored after the predetermined time interval; and the sequence of repeating the reversing and restoring operations is continued until the position difference or mismatch no longer exceeds the predetermined difference threshold.

TRAVERSER, BASE UNIT, AND MOVING UNIT
20220250847 · 2022-08-11 · ·

A traverser includes a base unit including a rail member, a moving unit configured to reciprocally move on the rail member between a first position and a second position, and a conveyance unit mounted on the moving unit and configured to convey a conveyance target object. The moving unit include a first travel roller that is a drive roller, and a drive mechanism configured to give a rotation driving force to the first travel roller. The drive mechanism includes a travel motor configured to supply the rotation driving force, and a friction transmission mechanism configured to transmit the rotation driving force of the travel motor to the first travel roller by a friction force.

TRAVERSER, BASE UNIT, AND MOVING UNIT
20220250847 · 2022-08-11 · ·

A traverser includes a base unit including a rail member, a moving unit configured to reciprocally move on the rail member between a first position and a second position, and a conveyance unit mounted on the moving unit and configured to convey a conveyance target object. The moving unit include a first travel roller that is a drive roller, and a drive mechanism configured to give a rotation driving force to the first travel roller. The drive mechanism includes a travel motor configured to supply the rotation driving force, and a friction transmission mechanism configured to transmit the rotation driving force of the travel motor to the first travel roller by a friction force.

Printing apparatus and method of controlling printing apparatus
11376872 · 2022-07-05 · ·

A printing apparatus includes a printing unit that performs printing on a printing medium, a transporting belt that transports the printing medium and has an endless shape, and a belt-driving roller that causes the transporting belt to circulate and has a cylindrical shape. In the transporting belt, a magnetic scale having a magnetic pole changing at a predetermined pitch is arranged along a transport direction of the printing medium. The belt-driving roller includes an outer circumferential surface constituted of a magnet body, and is in contact with the transporting belt at the outer circumferential surface. The circumferential length of the outer circumferential surface of the belt-driving roller is an integer multiple of the pitch of the magnetic scale.

Smart monitoring of belt tension and slip

A method and apparatus for monitoring tension and detecting slip of industrial belts while in running condition on belt drive system by using ultrasonic transducers. The sensing part involves two ultrasonic transducers which are installed on an assembly which is placed within a constrained space between the tension side and slack side of belt. Sinusoidal waves having predefined amplitude are sent from transmitting transducer on the belt and amplitude of the signal reflected from the belt is measured and compared with a threshold value to detect reduced tension. An acoustic sleeve is mounted on driving and driven pulley locknuts to blank the reflected signal periodically to measure the speeds of the pulleys compared to detect the slip of the belt. The apparatus generates an alert to user when the belt tension is reduced and/or when slip is detected. The processing circuit involves microcontroller with Wi-Fi module to send alert messages.

Smart monitoring of belt tension and slip

A method and apparatus for monitoring tension and detecting slip of industrial belts while in running condition on belt drive system by using ultrasonic transducers. The sensing part involves two ultrasonic transducers which are installed on an assembly which is placed within a constrained space between the tension side and slack side of belt. Sinusoidal waves having predefined amplitude are sent from transmitting transducer on the belt and amplitude of the signal reflected from the belt is measured and compared with a threshold value to detect reduced tension. An acoustic sleeve is mounted on driving and driven pulley locknuts to blank the reflected signal periodically to measure the speeds of the pulleys compared to detect the slip of the belt. The apparatus generates an alert to user when the belt tension is reduced and/or when slip is detected. The processing circuit involves microcontroller with Wi-Fi module to send alert messages.

Conveyor chain and transverse member monitoring apparatus

An apparatus for monitoring alignment of a transverse member conveyor wherein the member is attached transversely at opposite end portions to two parallel endless chains and includes two position sensors affixed and located transversely adjacent to each chain and each other. One or more targets are attached to link of each chain, and at predetermined distances from the member. The position sensors inductively or magnetically sense the relative position of the target on each chain with respect to the respective position sensor adjacent the chain, and send a signal comparing the target and sensor proximity with respect to the target on each chain. This allows determination of whether the opposite end portions of the member attached to the respective chains are aligned transversely within predetermined tolerance limits. Another aspect is monitoring a single position on an endless chain. Another aspect monitors chain catenary.

Conveyor chain and transverse member monitoring apparatus

An apparatus for monitoring alignment of a transverse member conveyor wherein the member is attached transversely at opposite end portions to two parallel endless chains and includes two position sensors affixed and located transversely adjacent to each chain and each other. One or more targets are attached to link of each chain, and at predetermined distances from the member. The position sensors inductively or magnetically sense the relative position of the target on each chain with respect to the respective position sensor adjacent the chain, and send a signal comparing the target and sensor proximity with respect to the target on each chain. This allows determination of whether the opposite end portions of the member attached to the respective chains are aligned transversely within predetermined tolerance limits. Another aspect is monitoring a single position on an endless chain. Another aspect monitors chain catenary.