CN113277271A - DTS belt conveyor - Google Patents

DTS belt conveyor Download PDF

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Publication number
CN113277271A
CN113277271A CN202110567028.3A CN202110567028A CN113277271A CN 113277271 A CN113277271 A CN 113277271A CN 202110567028 A CN202110567028 A CN 202110567028A CN 113277271 A CN113277271 A CN 113277271A
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CN
China
Prior art keywords
belt
driving
transmission
dts
conveyor
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Granted
Application number
CN202110567028.3A
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Chinese (zh)
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CN113277271B (en
Inventor
宁智琴
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Jiangxi Wanda Mining Equipment Co ltd
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Jiangxi Wanda Mining Equipment Co ltd
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Priority to CN202110567028.3A priority Critical patent/CN113277271B/en
Publication of CN113277271A publication Critical patent/CN113277271A/en
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Publication of CN113277271B publication Critical patent/CN113277271B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G23/00Driving gear for endless conveyors; Belt- or chain-tensioning arrangements
    • B65G23/02Belt- or chain-engaging elements
    • B65G23/04Drums, rollers, or wheels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G45/00Lubricating, cleaning, or clearing devices
    • B65G45/10Cleaning devices
    • B65G45/12Cleaning devices comprising scrapers

Abstract

The embodiment of the invention discloses a DTS belt conveyor, which relates to the technical field of conveying equipment and mainly aims to solve the problem that the existing DTS belt conveyor is easy to be stuck by scattered residues, and comprises a conveying belt and a driving assembly for driving the conveying belt to move, wherein a belt wheel assembly is arranged on a bearing part, and the DTS belt conveyor also comprises a transmission assembly and an auxiliary mechanism; so as to prevent the materials on the conveyer belt 2 from scattering to the edge position of the conveyer belt 2, thereby preventing the conveyer belt from being stuck by scattered residues.

Description

DTS belt conveyor
Technical Field
The application relates to the technical field of conveying equipment, in particular to a DTS belt conveyor.
Background
The DTS belt conveyor is a mechanical device used in the coal mining process, is used for conveying coal mines in a mine hole to a specified position, and generally comprises a machine head, a machine tail, a machine body and a conveying belt, wherein the conveying belt moves through a transmission device.
Current DTS belt conveyor is when carrying the colliery, in order to prevent that the coal cinder from dropping from the conveyer belt both sides because of reasons such as shake, generally can prevent that the coal cinder from dropping at devices such as the baffle of conveyer belt both sides installation take the altitude, but use a period of time after, coal mine residue on the conveyer belt or coal ash can pile up or block gap department between conveyer belt and baffle, can increase the resistance of conveyer belt in the operation process on the one hand, thereby increase the consumption, on the other hand can appear the conveyer belt even and blocked the unable moving condition, thereby the stability and the life of this conveyer have been reduced.
Disclosure of Invention
An object of an embodiment of the present invention is to provide a DTS belt conveyor to solve the problems in the background art.
In order to achieve the above purpose, the present application provides the following technical solutions:
the utility model provides a DTS belt conveyor, includes the conveyer belt and is used for driving the drive assembly of conveyer belt motion, the band pulley unit mount is on the bearing part, still includes:
the transmission component is assembled and connected with the driving component and the bearing part, and the driving component is used for driving the transmission component to rotate; and
an assist mechanism including a slide on the conveyor belt; the transmission component drives the swinging part to swing around the axis of the transmission component, so as to drive the sliding part to move towards the direction close to or far away from the boundaries of the two sides of the conveying belt; so as to prevent the materials on the conveyer belt from being scattered to the edge position of the conveyer belt.
As a further aspect of the present application: the linkage assembly further comprises a crank link assembly, the crank link assembly comprising an eccentric portion located on the transmission assembly; and a connecting part which is assembled and connected between the eccentric part and the swinging part.
As a still further aspect of the present application: the swing portion includes:
the main body part is positioned on the bearing part, and a base capable of rotating around the axis of the main body part is arranged in the main body part; and
the fixing part is located the base both sides, the fixed part respectively with sliding part and connecting portion assembled connection, the rotation of eccentric portion passes through the swing that connecting portion turned into the fixed part, and then drives the sliding part and slide.
As a still further aspect of the present application: the transmission assembly comprises a first transmission part assembled and connected with the driving assembly; and the second transmission part is assembled and connected with the first transmission part, the first transmission part is connected with the second transmission part through a transmission part, and a rotating part for driving the eccentric part to rotate is arranged in the second transmission part.
As a still further aspect of the present application: the cleaning mechanism comprises a slag scraping part attached to the surface of the conveying belt; and the rotating of the protruding part is used for driving the slag scraping part to move towards the direction close to the conveying belt so as to shake off the slag scraping part and residues on the conveying belt.
As a still further aspect of the present application: the inner of the slag scraping part is provided with an elastic part for resetting the slag scraping part, and the elastic part drives the slag scraping part to be attached to the surface of the conveying belt.
As a still further aspect of the present application: the drive assembly includes:
a driving wheel set fixed on the bearing part; and
and the conveying belt is connected on the surfaces of the driving wheel set and the driven wheel set in a sliding manner.
As a still further aspect of the present application: still include guiding mechanism, guiding mechanism includes:
the first telescopic part is positioned on the bearing part and used for driving the driven wheel set to move towards the direction close to or far away from the driving wheel set so as to adjust the conveying distance of the conveying belt; and
the adjusting wheel assembly is positioned on the bearing part, and a first telescopic part arranged in the adjusting wheel assembly is used for driving the conveying belt to move so as to tightly attach the conveying belt to the driving wheel set and the driven wheel set.
Compared with the prior art, the beneficial effects of this application are:
when the driving assembly drives the conveying belt to convey coal, the driving assembly can also drive the transmission assembly to rotate, and the linkage assembly in the auxiliary mechanism can convert the rotating motion of the transmission assembly into the swinging motion of the swinging part so as to drive the sliding part to move towards the direction close to or far away from the boundaries of the two sides of the conveying belt; the problem that the existing DTS belt conveyor is easy to be stuck by scattered residues is solved.
Drawings
Fig. 1 is an isometric view of a DTS belt conveyor according to an embodiment of the invention.
Fig. 2 is a front view of a DTS belt conveyor according to an embodiment of the present invention.
Figure 3 is a perspective view of another orientation of a DTS belt conveyor embodying the present invention.
Fig. 4 is an isometric view of an assist mechanism in a DTS belt conveyor, in accordance with an embodiment of the present invention.
Fig. 5 is a side view of an assist mechanism in a DTS belt conveyor in accordance with an embodiment of the present invention.
Fig. 6 is a side view of a cleaning mechanism in a DTS belt conveyor, in accordance with an embodiment of the present invention.
Fig. 7 is a partially enlarged view of a cleaning mechanism in a DTS belt conveyor according to an embodiment of the invention.
In the figure: 1-fixed support, 2-conveying belt, 3-first belt wheel, 4-fixed shell, 5-worm, 51-worm wheel, 6-auxiliary mechanism, 61-fixed block, 62-connecting rod, 63-first fixed rod, 64-base, 65-push plate, 66-first slide rod, 67-second fixed rod, 7-second belt wheel, 8-movable support, 9-first electric telescopic rod, 10-fixed plate, 11-driving wheel, 12-synchronous belt, 13-driven wheel, 14-adjusting wheel component, 141-second electric telescopic rod, 142-roller, 15-collecting box, 16-limiting plate, 161-limiting hole, 17-sliding rail, 18-scraping plate, 181-limiting rod, 19-second slide rod, 19-sliding rod, 7-auxiliary mechanism, 6-auxiliary mechanism, 9-fixed plate, 11-driving wheel, 12-synchronous belt, 14-adjusting wheel component, 141-second electric telescopic rod, 142-roller, 15-collecting box, 16-limiting plate, 161-limiting hole, 17-sliding rail, 18-scraping plate, 181-limiting rod, 19-second slide rod, 19-sliding rod, 4-sliding rod, 2-sliding rod, 3-sliding rod, 2-sliding rod, and a sliding rod, 2-sliding rod, 4-sliding rod, 2-sliding rod, 4-sliding rod, 2-sliding rod, and a sliding rod, 2-, 20-spring, 21-cam, 22-pulley.
Detailed Description
In the description of the present application, it is to be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only used for convenience of describing the present application and simplifying the description, but do not indicate or imply that the referred device or element must have a specific orientation, be configured and operated in a specific orientation, and thus, should not be construed as limiting the present application.
This embodiment provides a DTS belt conveyor, including conveyer belt 2 and the drive assembly who is used for driving 2 motion of conveyer belt, the band pulley unit mount is on the bearing part, still includes:
the transmission component is assembled and connected with the driving component and the bearing part, and the driving component is used for driving the transmission component to rotate; and
an auxiliary mechanism including a slide portion on the conveyor belt 2; the linkage assembly is assembled and connected between the sliding part and the transmission assembly, a swinging part is arranged in the linkage assembly, and the transmission assembly drives the swinging part to swing around the axis of the transmission assembly so as to drive the sliding part to move towards the direction close to or far away from the boundaries of the two sides of the conveying belt 2; to prevent the material on the conveyor belt 2 from spilling to the edge position of the conveyor belt 2.
Referring to fig. 1 to 3, in the above-mentioned technical solution, the sliding portion is designed as a push plate 65, but a sliding plate with a brush or a needle cluster may be designed, as long as the sliding portion can drive the coal, the cinder, or the coal ash on the conveyor belt 2 to move, and the specific structure of the sliding portion is not limited and will not be described again.
Further, the bearing part is designed as a fixing support 1 and a fixing housing 4, the fixing housing 4 is fixedly connected with the fixing support 1, of course, the fixing support 1 and the fixing housing 4 may also be designed as a whole, and a fixing frame is used instead of the fixing frame, which is a conventional technical means and will not be described again.
Referring to fig. 1 to 3, further, the driving assembly includes:
a driving wheel set fixed on the bearing part; and
and the conveying belt 2 is connected on the surfaces of the driving wheel set and the driven wheel set in a sliding way.
In the above-mentioned technical solution, the driving wheel set is designed as a first pulley 3 and a driving motor for driving the first pulley 3 to rotate, the driven wheel set is designed as a second pulley 7, where the type, size and number of the first pulley 3 and the first pulley 3 can be selected according to the need, and any conventional technical means can be used here as long as the conveyor belt 2 can be driven to move, and therefore, the description is omitted.
Referring to fig. 4 to 5, further, the linkage assembly further includes a crank link assembly, and the crank link assembly includes an eccentric portion located on the transmission assembly; and assembly joint is the connecting portion between eccentric portion and the swing portion, the eccentric portion design is fixed block 61, keep away from its central position on the fixed block 61 and install the fixed pin, connecting portion design is for rotating the connecting rod 62 of being connected with the fixed pin, and the fixed block 61 that of course has the fixed pin also can replace through the eccentric wheel that has the fixed pin, as long as can realize eccentric motion can, here is conventional technological means, just no longer gives unnecessary details, transmission assembly can drive the swing portion swing through connecting rod 62 when driving eccentric portion and doing eccentric motion.
Referring to fig. 4, further, the swing portion includes:
a main body portion on the bearing portion, in which a base 64 rotatable around its axis is provided; and
the fixing parts are positioned on two sides of the base 64 and are respectively assembled and connected with the sliding part and the connecting part, and the rotation of the eccentric part is converted into the swing of the fixing part through the connecting part, so that the sliding part is driven to slide.
In the above-mentioned technical solutions, the main body further includes a bracket mounted on the fixed housing 4 (the bracket is a conventional technical means of the prior art center and is not labeled in the drawings), the base 64 is connected to the bracket through a central shaft, the central shaft can be fixed on the bracket, the base 64 can rotate around the central shaft, or the central shaft can be fixed on the base 64, so that the central shaft can rotate on the bracket, and it is sufficient that the base 64 can rotate, and it is not specifically described here, the fixing portions are designed as a first fixing rod 63 and a second fixing rod 67 fixed on both sides of the base 64, the first fixing rod 63 and the second fixing rod 67 swing in opposite directions, a certain included angle is designed between the first fixing rod 63 and the second fixing rod 67 embodied in the drawings in this scheme, in order to improve the overall strength of the first fixing rod 63 and the second fixing rod 67, of course, the first fixing rod 63, the second fixing rod 67 and the base 64 may be designed as a single component instead, for example, it is designed as a fixing plate or a fixing rod as long as it can swing, when the transmission assembly drives the eccentric portion to do eccentric motion, the connecting rod 62 can pull or push the first fixing rod 63 to swing a certain angle around the central shaft, and at the same time, the second fixing rod 67 can swing to a moving angle in the opposite direction.
Referring to fig. 2 to 4, in order to realize the horizontal movement of the push plate 65, a guide structure is further required to be provided, the guide structure in this scheme is composed of a fixed plate 10 and a first slide bar 66, two ends of the first slide bar 66 are respectively connected with the push plate 65 and a second fixed bar 67, the connection mode here can be designed as fixed connection or hinge connection, and the like, as long as the three can be connected together, the fixed plate 10 is provided with a through hole, the first slide bar 66 is slidably connected in the through hole, of course, the guide structure here can also be replaced by other forms of structures, as long as the horizontal movement of the push plate 65 can be realized, which is not described herein again, therefore, under the combined action of the first slide bar 66 and the through hole on the fixed plate 10, the swing of the second fixed bar 67 can be converted into the horizontal movement of the first slide bar 66 and the push plate 65, so as to realize the function of driving the push plate 65, thereby realize removing the coal cinder, cinder or the coal ash on the conveyer belt 2 to the central point of conveyer belt 2 and put, prevent that coal cinder, cinder or coal ash from dropping from the edge of conveyer belt 2 to prevent that coal cinder, cinder or coal ash from piling up the gap department between conveyer belt 2 and baffle, prevent the dead condition of conveyer belt 2 card, can improve the stability and the increase of service life of conveyer belt 2 operation.
Referring to fig. 3, further, the transmission assembly includes a first transmission portion assembled and connected to the driving assembly; and with first transmission portion be assembled between/be connected between the second transmission portion, first transmission portion and second transmission portion pass through the driving medium and are connected, be provided with in the second transmission portion and be used for driving the rotatory rotation piece of eccentric portion, the driving medium is transmission shaft or transfer line, the rotation piece is worm 5 or dwang, first transmission portion includes action wheel 11, hold-in range 12 and follows driving wheel 13, action wheel 11 and the coaxial rotation of first band pulley 3, and drive from driving wheel 13 rotation through hold-in range 12, second transmission portion still includes worm wheel 51, worm wheel 51 passes through transmission shaft or transfer line and connects from driving wheel 13, transmission shaft or transfer line rotate to be connected on fixed bolster 1, and here worm wheel 51 meshes with worm 5 for first band pulley 3 is rotatory can drive worm 5 rotatory, when worm 5 was replaced by the dwang, in order to realize the rotation of dwang, the rotating rod and the transmission shaft or the transmission rod need to be in gear transmission, a specific transmission mode is not described here, the energy of the first belt wheel 3 can be transmitted to the second transmission part, and the energy utilization rate is high.
It is pointed out that all components in the auxiliary mechanism mentioned in the above solution are symmetrical with respect to the second transmission and the conveyor belt 2.
When the driving component drives the conveyer belt 2 to convey coal, the driving component can also drive the transmission component to rotate, when an eccentric part in the auxiliary mechanism rotates to do eccentric motion along with the transmission component, the first fixing rod 63 can be pulled or pushed to swing for a certain angle around the central shaft through the connecting rod 62, meanwhile, the second fixing rod 67 can swing for a certain angle towards the opposite direction, the swing of the second fixing rod 67 is converted into the horizontal movement of the push plate 65 through the guide structure, thereby realizing the function of driving the push plate 65 to be connected on the conveyer belt 2 in a sliding manner, so that coal briquettes, coal slag or coal ash on the conveyer belt 2 are moved to the central position of the conveyer belt 2, when baffles are not arranged on two sides of the conveyer belt 2, the push plate 65 plays the role of a baffle at the moment, the coal briquettes, the coal slag or the coal ash are prevented from falling from the edge of the conveyer belt 2, when the baffles are arranged on two sides of the conveyer belt 2, push plate 65 can prevent that coal cinder, cinder or coal ash from piling up the gap department between conveyer belt 2 and baffle this moment, prevents the dead condition of conveyer belt 2 card, can improve the stability and the increase of service life of conveyer belt 2 operation.
Referring to fig. 6 to 7, as an embodiment of the present application, the present application further includes a cleaning mechanism, where the cleaning mechanism includes a slag scraping portion attached to the surface of the conveyor belt 2; and a protrusion on the worm 5 or the rotating rod, wherein the rotation of the protrusion is used for driving the slag scraping part to move towards the direction close to the conveying belt 2 so as to shake off the slag scraping part and residues on the conveying belt 2.
In the above-mentioned scheme, the protruding portion is designed to be a cam 21 or a projection or other structures installed on the worm 5 or the rotating rod, and as long as the protruding portion can perform an eccentric motion along with the rotation of the worm 5 or the rotating rod, the protruding portion is configured to intermittently drive the slag scraping portion to move, and a specific structure herein is not limited, and thus, the detailed description is omitted.
Referring to fig. 7, further, an elastic portion for resetting the slag scraping portion is arranged in the slag scraping portion, the elastic portion drives the slag scraping portion to be tightly attached to the surface of the conveyor belt 2, the slag scraping portion includes a scraper 18 and a limiting rod 181 located on the scraper 18, in order to install the scraper 18, a limiting plate 16 is further installed on the fixing housing 4, a limiting hole 161 is formed in the surface of the limiting plate 16, the scraper 18 is installed in the limiting hole 161 between two adjacent limiting plates 16 through the limiting rod 181, the conveyor belt 2 can move in the limiting hole 161, the limiting hole 161 can fix the position of the conveyor belt 2 to prevent the conveyor belt 2 from shifting in the movement process, a through hole is further formed in the limiting hole 161, a second slide bar 19 is slidably connected in the through hole, and the end of the second slide bar 19 is fixedly connected to the limiting rod 181, the elastic part is designed to be a spring 20 sleeved on the second sliding rod 19, the spring 20 can be replaced by elastic rubber as long as the elastic deformation and reset functions are achieved, in order to reduce the resistance when the cam 21 is matched with the scraper 18, a pulley 22 is further arranged on the scraper 18, the cam 21 and the pulley 22 roll to reduce the friction force between the cam 21 and the pulley 22, the scraper 18 can be driven to move upwards when the cam 21 passes through the pulley 22, the scraper 18 can move upwards according to a certain frequency and move downwards under the action of the elastic force of the spring 20 in a reciprocating manner, the scraper 18 and the conveyor belt 2 in contact with the scraper 18 shake due to repeated up-and-down movement, the coal ash or the coal slag attached to the surfaces of the conveyor belt 2 and the scraper 1 can be better cleaned, the service life of the conveyor belt 2 is prolonged, the scraper 1 and the conveyor belt 2 can be tightly attached to the conveyor belt 2 due to the elastic force of the spring 20, so that the coal ash or coal slag on the surface of the conveyor belt 2 can be better scraped, and a collecting box 15 is also arranged in the cleaning mechanism for collecting the cleaned coal ash or coal slag.
Of course, the structural design of the scraper 18, the limiting rod 181 and the limiting hole 161 may be replaced by other structures, and any structure may be used as long as the functions of simultaneously achieving the installation of the scraper 18 and preventing the deviation of the conveyor belt 2 are achieved, and will not be described herein again.
Referring to fig. 1 to 2, as an embodiment of the present application, the present application further includes an adjusting mechanism, the adjusting mechanism including:
the first telescopic part is positioned on the bearing part and used for driving the driven wheel set to move towards the direction close to or far away from the driving wheel set so as to adjust the conveying distance of the conveying belt 2; and
the adjusting wheel assembly 14 is positioned on the bearing part, and a second telescopic part arranged in the adjusting wheel assembly 14 is used for driving the conveying belt 2 to move so as to attach the conveying belt 2 to the driving wheel set and the driven wheel set.
In the above solution, the first telescopic portion and the second telescopic portion are the first electric telescopic rod 9 and the second electric telescopic rod 141, respectively, and of course, the first electric telescopic rod 9 and the second electric telescopic rod 141 can also be replaced by hydraulic rods, and any component with telescopic function can be used, which is not described herein again, the purpose of the first electric telescopic rod 9 driving the second belt pulley 7 to move is to adjust the conveying distance of the conveying belt 2 according to actual needs, but considering that the total length of the conveying belt 4 is fixed from the beginning, in order to adjust the length of the conveying belt 4 between the first belt pulley 3 and the second belt pulley 7, and ensure that the conveying belt 4 is tightly attached to the first belt pulley 3 and the second belt pulley 7 (to prevent the conveying belt 4 from being unable to move due to looseness, the adjusting wheel assembly 14 is required to drive the conveying belt 4 to move, so as to ensure that the conveying belt 4 between the first belt pulley 3 and the second belt pulley 7 is always in a tight state, the roller 142 installed on the second electric telescopic rod 1 can not only apply pressure to the conveying belt 4, but also enable the conveying belt to slide along the surface of the roller 142.
Further, the second belt wheel 7 is mounted on a movable support 8, and the movable support 8 is slidably connected in a slide rail 17 formed on the surface of the fixed support 1, and can play a supporting role in the moving process of the second belt wheel 7.
When the coal conveying device is used, the driving assembly drives the conveying belt 2 to convey coal, the driving assembly can also drive the transmission assembly to rotate, when an eccentric part in the auxiliary mechanism rotates to do eccentric motion along with the transmission assembly, the first fixing rod 63 can be pulled or pushed by the connecting rod 62 to swing by a certain angle around the central shaft, meanwhile, the second fixing rod 67 can swing by a certain angle towards the opposite direction, the swing of the second fixing rod 67 is converted into the horizontal movement of the push plate 65 through the guide structure, so that the function of driving the push plate 65 to be connected on the conveying belt 2 in a sliding manner is realized, coal briquettes, coal slag or coal ash on the conveying belt 2 are moved to the central position of the conveying belt 2, the coal briquettes, the coal slag or the coal ash are prevented from falling off from the edge of the conveying belt 2, the coal briquettes, the coal slag or the coal ash are prevented from being accumulated in a gap between the conveying belt 2 and the baffle, and the jamming condition of the conveying belt 2 is prevented, the running stability of the conveyer belt 2 can be improved and the service life can be prolonged;
the transmission component can also drive the cam 2 to do eccentric motion, the cam 21 can drive the scraper 18 to move upwards when passing through the pulley 22, the reciprocating circulation is carried out, the scraper 18 can move upwards according to a certain frequency, and move downwards under the action of the elastic force of the spring 20, the scraper 18 and the conveyor belt 2 in contact with the scraper 18 shake repeatedly, coal ash or coal slag attached to the surfaces of the conveyor belt 2 and the scraper 1 can be better cleaned, the scraper 1 and the conveyor belt 2 can be tightly attached together through the elastic force of the spring 20, so that the coal ash or the coal slag on the surface of the conveyor belt 2 can be better scraped, the collection box 15 can collect the cleaned coal ash or the cleaned coal slag, and the service life of the conveyor belt 2 is prolonged.
In summary, when the driving assembly drives the conveying belt 2 to convey coal, the driving assembly can also drive the transmission assembly to rotate, and the linkage assembly in the auxiliary mechanism can convert the rotation motion of the transmission assembly into the swing motion of the swing portion, so as to drive the sliding portion to move towards the direction close to or far away from the boundaries of the two sides of the conveying belt 2; the problem that the existing DTS belt conveyor is easy to be stuck by scattered residues is solved.
It should be noted that, although the present specification describes embodiments, each embodiment does not include only a single technical solution, and such description of the specification is only for clarity, and those skilled in the art should take the specification as a whole, and the technical solutions in the embodiments may be appropriately combined to form other embodiments understood by those skilled in the art, and the above-mentioned embodiments only express the preferred embodiments of the technical solutions, and the description thereof is more specific and detailed, but should not be construed as limiting the scope of the claims of the technical solutions. It should be noted that, for those skilled in the art, without departing from the concept of the present application, several modifications, improvements and substitutions can be made, which are all within the protection scope of the present technical solution.

Claims (8)

1. The utility model provides a DTS belt conveyor, includes the conveyer belt and is used for driving the drive assembly of conveyer belt motion, the band pulley unit mount is on the bearing part, its characterized in that still includes:
the transmission component is assembled and connected with the driving component and the bearing part, and the driving component is used for driving the transmission component to rotate; and
an assist mechanism including a slide on the conveyor belt; the transmission component drives the swinging part to swing around the axis of the transmission component, so as to drive the sliding part to move towards the direction close to or far away from the boundaries of the two sides of the conveying belt; so as to prevent the materials on the conveyer belt from being scattered to the edge position of the conveyer belt.
2. The DTS belt conveyor of claim 1, wherein the linkage assembly further comprises a crank and link assembly, the crank and link assembly comprising an eccentric on the drive assembly; and a connecting part which is assembled and connected between the eccentric part and the swinging part.
3. The DTS belt conveyor of claim 2, wherein the oscillating portion comprises:
the main body part is positioned on the bearing part, and a base capable of rotating around the axis of the main body part is arranged in the main body part; and
the fixing part is located the base both sides, the fixed part respectively with sliding part and connecting portion assembled connection, the rotation of eccentric portion passes through the swing that connecting portion turned into the fixed part, and then drives the sliding part and slide.
4. The DTS belt conveyor of claim 1, wherein the transmission assembly comprises a first transmission portion in fitted connection with a drive assembly; and the second transmission part is assembled and connected with the first transmission part, the first transmission part is connected with the second transmission part through a transmission part, and a rotating part for driving the eccentric part to rotate is arranged in the second transmission part.
5. The DTS belt conveyor of claim 1, further comprising a cleaning mechanism comprising a scraper portion engaging a surface of the conveyor belt; and the rotating of the protruding part is used for driving the slag scraping part to move towards the direction close to the conveying belt so as to shake off the slag scraping part and residues on the conveying belt.
6. The DTS belt conveyor of claim 5, wherein an elastic part for restoring the slag scraping part is arranged in the slag scraping part, and the elastic part drives the slag scraping part to be tightly attached to the surface of the conveyor belt.
7. The DTS belt conveyor of claim 1, wherein the drive assembly comprises:
a driving wheel set fixed on the bearing part; and
and the conveying belt is connected on the surfaces of the driving wheel set and the driven wheel set in a sliding manner.
8. The DTS belt conveyor of claim 1, further comprising an adjustment mechanism, the adjustment mechanism comprising:
the first telescopic part is positioned on the bearing part and used for driving the driven wheel set to move towards the direction close to or far away from the driving wheel set so as to adjust the conveying distance of the conveying belt; and
the adjusting wheel assembly is positioned on the bearing part, and a first telescopic part arranged in the adjusting wheel assembly is used for driving the conveying belt to move so as to attach the conveying belt to the driving wheel set and the driven wheel set.
CN202110567028.3A 2021-05-24 2021-05-24 DTS belt conveyor Active CN113277271B (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113830516A (en) * 2021-10-21 2021-12-24 安徽信息工程学院 Coal transfer chain device
CN114084583A (en) * 2021-11-11 2022-02-25 河南省许昌新龙矿业有限责任公司 Coal mine electromechanical transportation transmission equipment with horizontal adjustment function

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