CN211894800U - Stable non-eccentric charging equipment for container from counter weight - Google Patents

Stable non-eccentric charging equipment for container from counter weight Download PDF

Info

Publication number
CN211894800U
CN211894800U CN201922444582.3U CN201922444582U CN211894800U CN 211894800 U CN211894800 U CN 211894800U CN 201922444582 U CN201922444582 U CN 201922444582U CN 211894800 U CN211894800 U CN 211894800U
Authority
CN
China
Prior art keywords
belt
ground rail
container
support frame
roller
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201922444582.3U
Other languages
Chinese (zh)
Inventor
孟要谦
田生兵
袁百力
刘庆安
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ningxia Zhuyuan Machinery Manufacturing Co ltd
Original Assignee
Ningxia Zhuyuan Machinery Manufacturing Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ningxia Zhuyuan Machinery Manufacturing Co ltd filed Critical Ningxia Zhuyuan Machinery Manufacturing Co ltd
Priority to CN201922444582.3U priority Critical patent/CN211894800U/en
Application granted granted Critical
Publication of CN211894800U publication Critical patent/CN211894800U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

The utility model provides a loading device for container with stable and non-eccentric self-counterweight, which comprises a belt conveyor, a ground rail, a container and a counterweight unit, wherein the ground rail is arranged at the front end of the container, the belt conveyor comprises an assembly frame, an assembly drive, a driving roller, a driven roller and a belt, the assembly frame is arranged above the ground rail and is matched with the ground rail in a rolling way, the driving roller and the driven roller are respectively arranged at the front end part and the rear end part of the assembly frame, the assembly frame comprises a lower support frame and an upper support frame, the lower support frame is close to the rear end of the upper support frame, rollers are arranged at the bottom of the lower support frame to be matched with the ground rail, the counterweight unit is arranged at the rear end of the upper support frame, the scheme can realize the autonomous transmission of the belt conveyor, and simultaneously, the belt conveyor can retreat towards the direction of the container after moving relative to, the problem that the inside of the container is hollow and materials cannot be fully distributed is avoided, and the problem that personnel push materials into the container can be avoided.

Description

Stable non-eccentric charging equipment for container from counter weight
Technical Field
The utility model relates to a container bulk cargo vanning equipment technical field especially relates to a stable not eccentric charging equipment for container from counter weight.
Background
When the container is feeding, usually adopt special dolly to feed, be like the container loader of patent No. 2015204729862, this loader is a dolly in fact, through stretching into the extension pipe to container inside, feed to inside through the pipeline, this kind of mode is to some extent to the material, and charging efficiency is lower, and a dolly in addition is equipped with the fork fill on the automobile body, has the material on the fork fill, and the dolly size is less, directly bores to container inside and feeds, and this kind of mode not only charging efficiency is low, has the potential safety hazard moreover.
Disclosure of Invention
There is a need for a container loading device that is self-weight stable and non-eccentric.
A loading device for a container with stable and non-eccentric self-counterweight comprises a belt conveyor, a ground rail and a counterweight unit, wherein the ground rail is arranged on the ground or a platform, the length direction of the ground rail is consistent with the conveying direction of the belt conveyor, the ground rail is arranged at the front end of the container, the belt conveyor comprises an assembly frame, an assembly drive, a drive roller, a driven roller and a belt, the assembly frame is arranged above the ground rail and is matched with the ground rail in a rolling manner, the assembly drive is arranged below the assembly frame and is in transmission connection with the assembly frame so as to drive the assembly frame to move back and forth along the ground rail, the drive roller and the driven roller are respectively arranged at the front end part and the rear end part of the assembly frame, the belt is sleeved between the drive roller and the driven roller so as to drive forward through the drive roller, the assembly frame comprises a lower support frame and an upper support frame, the lower support frame is close to the rear end of the upper support frame, the bottom of the lower support frame is provided with a roller to be matched with the ground rail, and the counterweight unit is arranged at the rear end of the upper support frame.
Preferably, the weight box is arranged below the rear end of the upper support frame, and the weight of the weight unit is adjustable.
Preferably, the weight unit comprises a weight box and a weight material filled in the weight box, the weight box is arranged below the rear end of the upper support frame, and the weight material with heavy specific gravity is filled in the weight box.
Preferably, still set up the support roll side by side on the upper bracket of belt feeder, it is articulated between support roll and the upper bracket to make the support roll rotate for between the upper bracket, still set up a plurality of backup pads in the left and right sides of upper bracket interval side by side, the setting in the left and right sides side below of belt of backup pad is in order to support the left and right sides of belt to upwarp for the belt forms low, the high concave type area in middle of, both sides.
Preferably, the side brace includes riser and swash plate, and the riser is fixed to be set up in the upper bracket top, and the swash plate slope sets up in the riser top, the one end of swash plate with even connect, the below of belt is arranged in to the other end.
Preferably, still set up the side and keep off the roller at the front end of upper bracket, the side keeps off the roller and can rotate for upper bracket, and the roll surface and the belt side contact of side fender roller to carry on spacingly to the position about the belt, avoid the off tracking.
Preferably, a front end limiting unit and a rear end limiting unit are further arranged on the ground rail, the front end limiting unit is arranged close to the front end of the ground rail, and the rear end limiting unit is arranged close to the rear end of the ground rail so as to limit the advancing position and the retreating position of the belt conveyor.
The utility model discloses in, this scheme can realize the autonomic conveying of belt feeder, to the inside transported substance material of container, the belt feeder can retreat after removing to the container direction for ground rail simultaneously, when needs feed to container inside, drive the belt feeder by the assembly drive and stretch into to the most inside to the container inside, then rotate by the belt feeder, unload to container inside with the material on the belt feeder, realized starting to feed from container inside most inside, avoid the inside most inside hollow of container, the unable problem of full of material, also can avoid personnel to the inside problem of pushing away the material of container.
Drawings
Fig. 1 and 2 are schematic diagrams of different angles of a loading device for a self-weight-balancing stable non-eccentric container.
Fig. 3 is a schematic view of the belt conveyor of fig. 2.
Fig. 4 is a comparative schematic of the present apparatus and variant design.
In the figure: the device comprises a belt conveyor 20, an assembly frame 21, a lower support frame 211, an upper support frame 212, a roller 213, a support roller 214, a vertical plate 215, a sloping plate 216, a side baffle roller 217, a front end limiting unit 218, a rear end limiting unit 219, an assembly drive 22, a driving roller 23, a driven roller 24, a belt 25, a ground rail 30, a counterweight unit 40 and a container 100.
Detailed Description
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
Referring to fig. 1-3, an embodiment of the present invention provides a loading device for a container with stable and non-eccentric self-weight, comprising a belt conveyor 20, a ground rail 30, and a weight unit 40, wherein the ground rail 30 is placed on the ground or a platform, the length direction of the ground rail 30 is consistent with the conveying direction of the belt conveyor 20, the ground rail 30 is disposed in front of a container 100 for loading, the belt conveyor 20 comprises an assembly frame 21, an assembly driver 22, a driving roller 23, a driven roller 24, and a belt 25, the assembly frame 21 is placed above the ground rail 30 and is in rolling fit with the ground rail 30, the assembly driver 22 is disposed below the assembly frame 21 and is in transmission connection with the assembly frame 21 to drive the assembly frame 21 to move back and forth along the ground rail 30, the driving roller 23 and the driven roller 24 are respectively disposed at the front end portion and the rear end portion of the assembly frame 21, the belt 25 is sleeved between the driving roller 23 and the driven roller 24 to drive the belt conveyor 20 to transmit forwards through the driving roller 23, the assembly frame 21 includes a lower support frame 211 and an upper support frame 212, the lower support frame 211 is close to the rear end of the upper support frame 212, a roller 213 is arranged at the bottom of the lower support frame 211 to match with the ground rail 30, and the counterweight unit 40 is arranged at the rear end of the upper support frame 212.
This scheme can realize the autonomic conveying of belt feeder 20, to the inside transported substance material of container 100, belt feeder 20 can remove or retreat to container 100 direction for ground rail 30 simultaneously, when needs are loaded to container 100 is inside, drive belt feeder 20 by assembly drive 22 and stretch into to the most inside to container 100 inside, then rotate by belt feeder 20, unload the material on belt feeder 20 to container 100 is inside, realized starting to load from container 100 is inside most inside, avoid container 100 inside hollow the most inside, the unable problem of full cloth of material, also can avoid the problem that personnel pushed away the material to container 100 inside.
The belt conveyor 20 unloads the container 100 at one time, and the assembly drive 22 drives the belt conveyor 20 to move backward, so that the belt conveyor 20 is also withdrawn from the container 100 after the container 100 is filled with the materials.
In this scheme, belt feeder 20 is a short distance belt 25 conveying equipment, play and arrange the bulk cargo to the inside effect of carrying of container 100, in order to reduce equipment cost, satisfy belt feeder 20 simultaneously and stretch into length to container 100 inside and reach the longest, arrange the position of the inside deepest of container 100 with the material, in this scheme, be close to the rear end setting with lower carriage 211, make upper carriage 212 reach the longest to the inside distance of marcing of container 100 along ground rail 30, satisfy belt feeder 20 and come and go rolling effect on ground rail 30 simultaneously.
However, the lower support frame 211 is disposed near the rear end and in an eccentric position, so that the belt conveyor 20 and the upper support frame 212 are not supported by the lower portion near the front end and in a suspended state, and there is a possibility of falling down after bearing bulk materials, and therefore, the counterweight unit 40 is disposed at the rear end of the upper support frame 212, so that after the front end of the whole belt conveyor 20 bears the materials, the front end and the rear end of the belt conveyor 20 are balanced with the lower support frame 211 as a fulcrum, and the front end of the belt conveyor 20 is prevented from falling down after being weighted.
Referring to fig. 4, this scheme is different from the other two designs, such as the schematic diagram of the first comparison scheme in fig. 4, in which the lower support frame 211 is set at the middle gravity position in order to keep the belt conveyor 20 stable and not toppling over, and at the same time, the length of the belt conveyor 20 extending into the container 100 is unchanged, i.e. (L32 = L12), so that the overall length of the belt conveyor 20 can only be lengthened to L31, compared with the scheme in fig. 1, in which L31> L11 is at least 1/3 of the length of L11, which increases the manufacturing cost of the belt conveyor 20. There is no advantage. In another embodiment, as shown in the schematic diagram of the second comparison scheme in fig. 4, in order to not increase the length and cost of the belt conveyor 20, i.e. to maintain L21= L11 and to maintain the belt conveyor 20 stable and not toppling over, the lower support 211 is disposed at the middle gravity position, and only the lower support 211 can be moved to the front end, at this time, only the overall length L21 of the belt conveyor 20 is unchanged, however, the length L22 of the belt conveyor 20 extending into the value container 100 is shortened, so that the front end of the belt conveyor 20 cannot fully extend into the innermost part of the value container 100 to load the material, compared with the present scheme, although the overall length of the belt conveyor 20 is not increased, the length of the belt conveyor 20 extending into the value container 100 is greatly shortened, so that the material distribution in the container 100 is not uniform and not sufficient. Therefore, in the two designs, consideration of all aspects cannot be considered, the beneficial effect of the scheme cannot be achieved, and the scheme has remarkable progress.
In the prior art, 201721544160.8 can not realize that belt feeder 20 stretches into the length of container 100 inside and can not change, can not reach the purpose of the utility model.
Further, the weight box is disposed below the rear end of the upper support frame 212, and the weight of the weight unit 40 is adjustable.
Further, the weight unit 40 includes a weight box and a weight material filled therein, the weight box is disposed below the rear end of the upper support frame 212, and the weight material with a heavy specific gravity is filled in the weight box.
This counter weight unit 40 has adopted the mode that can add the counter weight material more or add less for the weight of counter weight unit 40 is adjustable, so can adjust the weight of counter weight unit 40 according to the proportion of the material of carrying on the belt feeder 20, or the gross weight, makes belt feeder 20 keep balance, avoids empting.
Further, still set up the support roller 214 on the upper support frame 212 of belt feeder 20 side by side, it is articulated between support roller 214 and the upper support frame 212 to make support roller 214 can rotate for between the upper support frame 212, still set up a plurality of backup pads in the left and right sides of upper support frame 212 side by side interval, the setting in the left and right sides side below of belt 25 of backup pad to support the left and right sides of belt 25 to upwarping, make belt 25 form the middle low, the high concave type area in both sides. Because the belt 25 is a feasible rubber material or a nylon material, in order to avoid material leakage on two sides, the belt 25 is usually set to be a concave belt surface, in the conventional design, the supporting roller 214 is designed to be a roller with a thin middle part and thick two ends, the price of the roller is higher, and the cost is very high.
Further, the side supporting plate comprises a vertical plate 215 and an inclined plate 216, the vertical plate 215 is fixedly arranged above the upper supporting frame 212, the inclined plate 216 is obliquely arranged above the vertical plate 215, one end of the inclined plate 216 is connected with the vertical plate, and the other end of the inclined plate is arranged below the belt 25.
Further, still set up side fender roller 217 at the front end of upper bracket 212, side fender roller 217 can rotate for upper bracket 212, and the roll surface of side fender roller 217 contacts with belt 25 side to carry on spacingly to the left and right sides position of belt 25, avoid the off tracking.
Further, a front end limiting unit 218 and a rear end limiting unit 219 are further disposed on the ground rail 30, the front end limiting unit 218 is disposed near the front end of the ground rail 30, and the rear end limiting unit 219 is disposed near the rear end of the ground rail 30, so as to limit the forward position and the backward position of the belt conveyor 20. (the front-end limiting unit 218, the back-end limiting unit 219 may be a form switch).
The embodiment of the utility model provides a module or unit in the device can merge, divide and delete according to actual need.
The above disclosure is only a preferred embodiment of the present invention, which is not intended to limit the scope of the present invention, and the present invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. It will be understood by those skilled in the art that all or part of the above-described embodiments may be implemented and equivalents thereof may be made to the claims of the present invention while remaining within the scope of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may include only a single embodiment, and such description is for clarity only, and those skilled in the art will be able to make the description as a whole, and the embodiments may be suitably combined to form other embodiments as will be apparent to those skilled in the art.

Claims (6)

1. The utility model provides a stable not eccentric charging equipment for container from counter weight which characterized in that: the container type ground rail conveyor comprises a belt conveyor, a ground rail, a container and a counterweight unit, wherein the ground rail is placed on the ground or a platform, the length direction of the ground rail is consistent with the conveying direction of the belt conveyor, the container is placed at the front end head part of the ground rail, the belt conveyor comprises an assembly frame, an assembly drive, a drive roller, a driven roller and a belt, the assembly frame is placed above the ground rail and is matched with the ground rail in a rolling manner, the assembly drive is arranged below the assembly frame and is in transmission connection with the assembly frame so as to drive the assembly frame to move back and forth along the ground rail, the drive roller and the driven roller are respectively arranged at the front end part and the rear end part of the assembly frame, the belt is sleeved between the drive roller and the driven roller so as to drive the belt conveyor to transmit forwards through the drive roller, the assembly frame comprises a lower support frame and an upper support frame, the lower support frame is close, the bottom of the lower support frame is provided with a roller to be matched with the ground rail, and the counterweight unit is arranged at the rear end of the upper support frame.
2. The self-weighing stable non-eccentric container loading device of claim 1, wherein: the weight of the counterweight unit is adjustable;
the counterweight unit comprises a counterweight box and a counterweight material filled in the counterweight box, the counterweight box is arranged below the rear end part of the upper support frame, and the counterweight material with heavy specific gravity is filled in the counterweight box.
3. The self-weighing stable non-eccentric container loading device of claim 1, wherein: the belt conveyor is characterized in that supporting rollers are arranged on an upper supporting frame of the belt conveyor side by side and hinged with the upper supporting frame, so that the supporting rollers can rotate relative to the upper supporting frame, a plurality of side supporting plates are arranged on the left side and the right side of the upper supporting frame side by side at intervals, the side supporting plates are arranged below the side edges of the left side and the right side of the belt, the left side and the right side of the belt are supported to upwarp, and the belt forms a concave belt surface which is low in the middle and high in two sides.
4. A self-weighing stable non-eccentric container loading apparatus as defined in claim 3, wherein: the side brace includes riser and swash plate, and the riser is fixed to be set up in the upper bracket top, and the swash plate slope sets up in the riser top, the one end of swash plate with even connect, the below of belt is arranged in to the other end.
5. A self-weighing stable non-eccentric container loading apparatus as defined in claim 3, wherein: still set up the side and keep off the roller at the front end of upper bracket, the side keeps off the roller and can rotate for upper bracket, and the roll surface and the belt side contact of side fender roller to carry on spacingly to the position about the belt, avoid the off tracking.
6. The self-weighing stable non-eccentric container loading device of claim 1, wherein: still set up front end limit unit, rear end limit unit on the ground rail, front end limit unit is close to ground rail front end and sets up, and rear end limit unit is close to ground rail rear end and sets up to carry out spacingly to the position of advancing and retreating of belt feeder.
CN201922444582.3U 2019-12-30 2019-12-30 Stable non-eccentric charging equipment for container from counter weight Active CN211894800U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922444582.3U CN211894800U (en) 2019-12-30 2019-12-30 Stable non-eccentric charging equipment for container from counter weight

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922444582.3U CN211894800U (en) 2019-12-30 2019-12-30 Stable non-eccentric charging equipment for container from counter weight

Publications (1)

Publication Number Publication Date
CN211894800U true CN211894800U (en) 2020-11-10

Family

ID=73294664

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922444582.3U Active CN211894800U (en) 2019-12-30 2019-12-30 Stable non-eccentric charging equipment for container from counter weight

Country Status (1)

Country Link
CN (1) CN211894800U (en)

Similar Documents

Publication Publication Date Title
CN111017594B (en) Logistics unloading platform
CN111056230A (en) Stable non-eccentric charging equipment for container from counter weight
CN205952922U (en) A high efficiency dregs conveying system for interim switching is used
CN211310007U (en) Panel upset material collecting device
CN109850614B (en) Logistics cargo loading and unloading platform
CN211894800U (en) Stable non-eccentric charging equipment for container from counter weight
US4103789A (en) Unitized loading system
CN112224924B (en) Logistics safety unloading equipment
CN207375183U (en) A kind of adjustable for height handling conveying device
CN210735570U (en) Waterproofing membrane pile up neatly equipment
CN110371580B (en) Double-layer feeding device
CN213294584U (en) Carrying device
CN111056331A (en) Special charging equipment for container
CN212374349U (en) Novel conveyor
CN211895171U (en) Special charging equipment for container
CN208908619U (en) A kind of self-propelled beet cleaning weighing stacking apparatus
US3650330A (en) Sod pick-up machine
CN214297920U (en) Ball chain scraper conveyor
CN219238237U (en) Feeding machine
CN216426099U (en) Loading device of road and bridge construction material transport vehicle
CN214494452U (en) Drum-type conveyor
CN215478499U (en) Unloading mechanism of logistics transportation loading box
CN113003242B (en) Basket is transported to controllable discharge speed's material
CN219525587U (en) Butt joint device of mobile vehicle and feeding and discharging table top
CN219949552U (en) Grain transport hoisting device

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant