The present invention relates in general to apparatus for backfilling a trench and, more particularly, to apparatus for laying a pipeline bed layer in a trench and for laying a pipeline bedding layer once a pipeline is laid in the trench.
Such a device is known from U.S. Pat. No. 5,259,699. The known apparatus comprises a feed hopper in which backfilling material can be supplied, a first feeder conveyor for conveying the material from the feeder hopper to a vibrating double decked screen unit, with the upper screen element being of a coarser mesh than the lower screen element. The double decked screen is vibrated. The known device is pulled by a tractor.
A second longitudinally extendable and retractable bedding (fines) conveyor is situated beneath the vibrating screen and receives the fine particulate fraction of the original fill material which has passed pass through the lower screen element.
The extendable and retractable conveyor is translated by a suitable expansible drive means such as hydraulic cylinders, or the like, whose stroke length may be but is not required to be sufficient to traverse the width of the pipeline trench to be backfilled.
U.S. Pat. No. 5,183,160 describes an apparatus that is also pulled by a tractor and positioned on a flat bed trailer. A screening apparatus significantly longer than the width of the trailer, preferably at least two times its width, for screening undesirable materials and objects from excavated earth is mounted on and selectively rotatable in relation to the trailer to either a fixed longitudinal transport mode or at least one fixed transverse operational mode. In the operational mode in the screening apparatus is oriented transverse to the longitudinal axis or direction of movement of the carrier-trailer. Collector apparatus mounted beneath the screening apparatus receives the earth from a discharge at the bottom of the screening apparatus and conveys it to its discharge end. In the operational mode the screening apparatus extends well beyond the trailer and it does not comprise a feed hopper. The device requires much space to the side of the to be filed trench which is not always available.
GB 2468966 describes a screening device used in quarry environments to sort out different sizes materials in a quarry and to provide different piles of materials with different sizes. Various discharge conveyors are used. Said conveyor belts extend upwards so as to discharge at stock piles or on a lorry at various positions, at either side or in front of the screening device. Although such devices have tracks to move the device from one spot to another in the quarry, such devices developed for quarry use are not used or usable for filling a trench since they do not and cannot operate while moving.
The material used for filling the trench may be for instance clay, if the trench is laid in an area in which the ground in which the pipeline is laid is of clay or clay-like.
Clay and especially wet clay is cloggy and tends to clog up the screens.
There is a need for a mobile device for backfilling a trench that is compact, efficient and operable in many situations.
It is an object of the invention to provide an improved apparatus for backfilling a trench.
The apparatus according to the invention is a self-propelled apparatus for backfilling a trench with filler material while moving along a to be filled trench, the apparatus comprising
The vibrating finger tines or grizzly deck break up clay clumps, thereby preventing or reducing clogging up either the upper or lower deck screen.
The device provides a compact design with a large degree of safety and efficiency. The dimension of the vibrating screen unit with respect to the width of the device is not increased in the operational mode. Clogging up of the screens is reduced.
In preferred embodiments the upper deck screen comprises at an end facing the first conveyor a grizzly structure and at an end remote from the feeding conveyor finger tines.
The part of the upper deck screen facing the feeder conveyor receives the heaviest material and hardest blows and shaping this part in the form of a grizzly screen reduces the risk of damage.
The feeding conveyor for feeding the material from the hopper to the multi-deck vibrating screen unit may be a conveyor belt or a steel plate apron feeder.
Preferably a lower deck screen below the upper deck screen comprises a series of cascade bars, smaller in size and at a smaller distance to each other than the finger tines.
These and further aspects of the invention are described below and illustrated by means of the drawing:
The figures contained in the drawing show the following:
The figures are not drawn to scale; as a rule, like numerals denote like elements.
There is a high demand for the laying of underground piping to transport liquids or gas. To lay a pipe of this type, an excavation is usually first made with a back hoe excavator with the excavated rocks and soil piled to one side of the excavation.
Once the trench for the laying of a pipeline has been excavated and water has been extracted, backfilling can commence as proper bedding needs to be put in place before the pipe can be laid.
The layers of back fill can be made of different materials and the main backfill itself can be composed of several layers of different materials. Fine soil is used close to the pipe so as not to damage it and eliminate the risk of rock-to-pipe contact. It is crucial for all the backfill layers close to the pipe to be carefully installed as the soil settlement caused by the load of the main backfill could lead to excessive pressure on the pipe causing deformation. A properly backfilled pipeline trench can considerably extend a pipeline's lifespan.
The financial, environmental, social and logistical problems associated with the importation of selective bedding and backfill materials have contributed to the drive to reuse the excavated material with a positive impact on the cost of projects.
This process is known as padding and, in the past, was a time consuming and expensive stage of laying an underground pipeline.
The padding machine separates the fine material out of spoil which is piled alongside the trench excavation and transports it by conveyor into the excavation, thereby padding the pipeline.
The types of spoil generated during excavation depend on location, depth, and the method used and frequently includes wet sticky material, large boulders or large frozen lumps of soil. Various materials may be encountered when excavating a trench, such as large boulders, wet sticky material and/or large clumps of clays. The material may change along the length of a trench wherein for instance at some parts along the trench rocky material is found, whereas further along the trench wet sticky material is found and/or clay.
There has existed a long and unfilled need for a padding machine which is adaptable to various types of excavated material and is effective in demanding screening conditions.
The present invention aims to provide such an apparatus
The apparatus 1 for backfilling a trench and, more particularly, to apparatus for laying a pipeline bed layer in a trench and for laying a pipeline cover layer once a pipeline is laid in the trench comprises a feed hopper 2. The apparatus shown is a self-propelled apparatus which moves along a to be filed trench and fills the trench while moving along the trench. A first conveyor 3, which may be a conveyor belt or a steel plat apron, is provided for feeding the material from the feed hopper 2 to the multi-deck vibrating screen unit 4. Below the multi-deck vibrating screen unit 4 a second conveyor 5 is situated for bringing the material exiting the multi-deck vibrating screen unit 4 to back fill the trench. The device is in this example self-propelled and provided with caterpillar tracks. The apparatus moves along a trench in which for instance a pipeline is provided. The apparatus is to able to travel and process material on its own power at the same time. Material is provided in the feeder hopper and padding material is via the conveyor brought in the trench to cover the pipeline. The apparatus moves along the trench.
The first conveyor or feeder 3 may be for example:
Belt feeder: This is a continuous flat, rubber conveyor belt between two drums and supported on idlers. They can be variable speed and are recognised as being highly accurate means of controlling flow rates.
Apron feeder: This type of feeder is heavy duty, robust and designed to handle heavy shock loads and wet sticky materials.
The side conveyor 5 is preferably retractable and can fold up on both sides for transporting. For example, a speed controlled 800 mm wide belt can extend on either side and be equipped with a hydraulic adjustable head deflector. These features facilitate adjusting the material flow and direction into the trench. The second conveyor 5 is oriented substantially horizontal and transports the material 9 that has slid down the bottom side 6 of the multi-deck vibrating 4 and has fallen on the conveyor 5 sideways to a to be filled trench. The side conveyor 5 extends at both sides of the self-propelled apparatus and can transport material to either of the sides of the self-propelled apparatus as it moves along a trench. The side conveyor 5 is preferably a variable speed horizontal discharge conveyor which can be operated in either direction and can be shuttled out on either side. This feature enables shuttling the conveyor over the trench on either side, which combined with the hydraulically adjustable head deflector, facilitates the placement of the material in the trench. The side conveyor 5 is preferably able to slide closer and further to the trench and is able to turn both clockwise and counter-clockwise.
The multi-deck vibrating screen unit 4 facilitates interchangeability between various upper and lower deck-screen configurations depending on the nature of the raw material fed into the feed hopper. Various raw materials can be handled with ease. The upper deck-screen 4a can be a welded mesh or finger tines, or grizzly bars, but preferably finger tines and/or grizzly bars, the lower deck may be a screen mesh or cascade finger bars or a self-cleaning screen mesh. The versatile multi-deck vibrating screen unit greatly reduces the possibility of oversize material contaminating the filler material 9 with costly consequential damage to the pipeline 10 while also reducing the risk of clogging up of a deck-screen, thus reducing down-time of the apparatus and improving efficiency.
Finger bar screens operate as a linear or circular vibrating screen. The top deck finger tines are preferably made from high quality abrasion resistant material capable of taking the abuse other padding machines throw directly on the main screen deck.
This deck is designed to eliminate clogging and sift out hard, potentially damaging, large boulders and wet sticky clay.
This protects the lower screen deck from impact damage and greatly reduces the possibility of large/oversize boulders penetrating the screen cloth and contaminating the padding material with costly consequential damage to the pipe.
Finger tines form a large number of vibrating elements, compared to a grizzly arrangement as shown in
A further preferred embodiment is one wherein the upper deck screen has grizzly bars at the receiving end if the raw material is very robust and finger tines at the discharge end to sort remaining wet sticky material.
In this embodiment the lower deck screen is provided with a series of cascade bars 51, smaller is size and at smaller distance to each other than the finger tines 31. This is a preferred embodiment. The lower deck screen may alternatively be formed of a woven wire mesh; Woven wire mesh is versatile and is a good choice for applications that require precision and strength.
The combination of an upper deck comprising rows of finger tines as shown in
The invention is also related to a method of backfilling a trench and, more particularly, of laying a pipeline bed layer in a trench and in particular laying a pipeline covering layer once a pipeline is laid in the trench.
In said method a self-propelled apparatus 1 for backfilling a trench moves along a to be filled trench and raw material is fed into a feed hopper and is transported by transport means to a multi-deck vibrating screen unit, and while moving, the raw material is segregated in the multi-deck vibrating screen unit into waste material 8 and filler material 9, the filler material 9 slides of the bottom 6 of the vibrating unit 4 onto a further transport means 5 and the filler material 9 is transported sideways to a to be filled trench by the further transport means 5 wherein the waste material 8 exits the vibrating unit 4 at an end of the vibrating unit 4 beyond the further transport means 5.
It will be clear that the invention is not limited to the examples provided here. Any combination of features may be used.
Various embodiments are possible. The upper deck finger bars are preferable variable pitch which means they can rotate to 3 different positions to change the angle.
The lower deck cascade bars are also preferably variable pitch which means they can rotate to 3 different positions to change the angle.
Number | Date | Country | Kind |
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2016528 | Mar 2016 | NL | national |
Filing Document | Filing Date | Country | Kind |
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PCT/NL2017/050203 | 3/31/2017 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2017/171552 | 10/5/2017 | WO | A |
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4664791 | McClain | May 1987 | A |
5183160 | McClain | Feb 1993 | A |
5259699 | Klamar | Nov 1993 | A |
5769240 | Middour | Jun 1998 | A |
8464874 | Whitley | Jun 2013 | B2 |
8708154 | Holmberg | Apr 2014 | B1 |
20150129467 | Holmberg | May 2015 | A1 |
Number | Date | Country | |
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20190112785 A1 | Apr 2019 | US |