The present invention is directed to a method and device for wrapping multi-sheet printed products, for example wrapping newspapers with plastic for protection.
BACKGROUND
U.S. Pat. No. 5,189,865 describes a method and device for wrapping a multi-sheet printed article, such a bundle of signatures of a newspaper.
An object of the present invention is to improve the throughput of devices for wrapping multi-sheet printed products.
The present invention provides a device for wrapping multi-sheet printed products comprising:
a conveyor carrying a multi-sheet printed product;
a first rotating drum having a first exterior surface with at least one surface indentation;
a second rotating drum having a second exterior surface, the second roattaing drum interacting with the first rotating drum at a first nip;
a first wrapping supply providing first wrapping to the first nip on one side of a multi-sheet printed product; and
a second wrapping supply providing second wrapping to the first nip on another side of the multi-sheet printed product.
By using rotating drums to wrap the multi-sheet printed products, faster speeds are possible than with reciprocating wrappers.
The second rotating drum may have a second indentation on its outer surface, and the printed product may fit within the first and second indentation as it passes through the nip.
One of the first or second rotating drums may have a knife to cut the wrapping material, and the other drum may have an anvil to interact with the knife.
The first and second rotating drums also may be heated at their exterior surfaces to melt the first and second wrapping together around the printed product.
The first wrapping and second wrapping may be delivered as a continuous film. The wrapping may be made of plastic or thermoplastic material.
The exterior surfaces may be ribbed and interact with each other so as to crimp the first and second wrappings together.
The conveyor may be a gripper conveyor, and the grippers can drop the printed products into the nip.
A sensor can be provided downstream from the nip to check the completed bag formed by the two wrappings encloses a printed product. If so, the full bag may be delivered to a further conveyor. If the bag is empty, the empty bag may be blown away using a blower. The sensor may also check for skewed bags.
The present invention also provides a method for forming bags around multi-sheet printed products comprising the steps of:
delivering a multi-sheet printed product to a nip of two drums between two wrappings passing through the nip;
passing the multi-sheet printed product and two wrappings through the drums; and
sealing the two wrappings around the printed product using the nip so as to form a bag around the multi-sheet printed product.
The method may further include cutting the bag.
The bag may remain open at one or both ends, or may be closed at both ends.
The multi-sheet printed product may enter the nip horizontally, vertically or at any other angle.
The present invention may have particular applicability to wrapping newspapers, leaflets, and jackets or a combination thereof, which form collated packs and can be delivered for example with a gripper conveyor.
A preferred embodiment of the present invention is described on the basis of the following figures, as well as their descriptions, in which:
Referring again to
The wrappings 52, 54 are crimped together and heated by crimping surfaces 36, 38 of drums 22, 24 respectively, as shown in
A serrated or flat knife 46 interacts with an anvil 48 to cut the bags, so that separated full bags 60 are formed after the nip area 20, as shown in
A sensor at a chute 80 can determine, for example by using a scale to measure weight. A blower can blow away bags which are not full.
A conveyor 70 can then carry away full bags.
Rotating drum as defined herein may be cylindrical or oblong, for example through the use of a rotating belt.