CN113443382B - Mining is with integral type belt feeder carriage - Google Patents

Mining is with integral type belt feeder carriage Download PDF

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Publication number
CN113443382B
CN113443382B CN202110597043.2A CN202110597043A CN113443382B CN 113443382 B CN113443382 B CN 113443382B CN 202110597043 A CN202110597043 A CN 202110597043A CN 113443382 B CN113443382 B CN 113443382B
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CN
China
Prior art keywords
carrier roller
frame
conveying frame
conveying
pieces
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Active
Application number
CN202110597043.2A
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Chinese (zh)
Other versions
CN113443382A (en
Inventor
张念生
吴立忠
王继国
汪涛
张永红
石娜
闫亚录
杨浩
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 Tiandi Benniu Industrial Group Co Ltd
Ningxia Tiandi Heavy Equipment Technology Co Ltd
Original Assignee
Ningxia Tiandi Benniu Industrial Group Co Ltd
Ningxia Tiandi Heavy Equipment Technology 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.)
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Application filed by Ningxia Tiandi Benniu Industrial Group Co Ltd, Ningxia Tiandi Heavy Equipment Technology Co Ltd filed Critical Ningxia Tiandi Benniu Industrial Group Co Ltd
Priority to CN202110597043.2A priority Critical patent/CN113443382B/en
Publication of CN113443382A publication Critical patent/CN113443382A/en
Application granted granted Critical
Publication of CN113443382B publication Critical patent/CN113443382B/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
    • B65G39/00Rollers, e.g. drive rollers, or arrangements thereof incorporated in roller-ways or other types of mechanical conveyors 
    • B65G39/10Arrangements of rollers
    • B65G39/12Arrangements of rollers mounted on framework
    • 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
    • B65G21/00Supporting or protective framework or housings for endless load-carriers or traction elements of belt or chain conveyors
    • B65G21/02Supporting or protective framework or housings for endless load-carriers or traction elements of belt or chain conveyors consisting essentially of struts, ties, or like structural elements
    • B65G21/06Supporting or protective framework or housings for endless load-carriers or traction elements of belt or chain conveyors consisting essentially of struts, ties, or like structural elements constructed to facilitate rapid assembly or dismantling
    • 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
    • B65G2201/00Indexing codes relating to handling devices, e.g. conveyors, characterised by the type of product or load being conveyed or handled
    • B65G2201/04Bulk
    • B65G2201/045Sand, soil and mineral ore
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

Abstract

An integral belt conveyor conveying frame for mining belongs to the technical field of belt conveyors for mining, and comprises a walking frame body and a conveying frame assembly, wherein the walking frame body is detachably connected with the conveying frame assembly; the walking frame body comprises a plurality of supporting frames and a plurality of carrier roller pieces, each supporting frame is detachably connected, a plurality of groups of carrier roller plates are arranged on each supporting frame, the carrier roller pieces are detachably connected with the carrier roller plates, and each group of carrier roller plates can be provided with one carrier roller piece or not provided with a carrier roller piece; the conveying frame assembly comprises a plurality of placing frames and a plurality of conveying frame idler assemblies, each placing frame is detachably connected, and the conveying frame idler assemblies are arranged in the placing frames. The material conveying device has the advantages that the material conveying device is used for conveying materials, the material and tools can be placed by the placement frame, and along with the pushing of the working face, the materials and the tools can be pushed simultaneously, so that manual carrying is avoided, and the manual labor intensity is reduced.

Description

Mining is with integral type belt feeder carriage
Technical Field
The invention belongs to the technical field of belt conveyors for mining, and particularly relates to an integrated belt conveyor conveying frame for mining.
Background
In the present mining activity, in order to guarantee the continuity of transportation work, all can dispose the belt feeder, the carriage on the traditional belt feeder only plays the effect of supporting the belt bearing roller, can only guarantee the continuous transport of belt feeder, but can't settle the necessary material of during operation, material and instrument, if: spare bearing roller spare, spanner and hammer, motor, rope etc. that change bearing roller spare used do not possess in mining work yet, along with the propulsion of working face, the unable synchronous function of transporting of material, material and instrument that uses in the work, when these materials, material and instrument of urgent need in the course of the work, need the staff to carry these materials, material and instrument, can't satisfy the demand of high-yield, high-efficient work at all.
Disclosure of Invention
In view of the above, the application provides an integral belt conveyor conveying frame for mining, which not only ensures normal conveying of materials, but also satisfies the requirement of synchronous conveying and moving of materials, materials and tools used in working production along with the pushing of a mining working face, improves the production efficiency, and avoids manual conveying.
The integral belt conveyor conveying frame for mining comprises a walking frame body and a conveying frame assembly, wherein the walking frame body is detachably connected with the conveying frame assembly;
the walking frame body comprises a plurality of supporting frames and a plurality of carrier roller pieces, each supporting frame is detachably connected, a plurality of groups of carrier roller plates are arranged on each supporting frame, the carrier roller pieces are detachably connected with the carrier roller plates, and one carrier roller piece or no carrier roller piece can be arranged on each group of carrier roller plates;
the conveying frame assembly comprises a plurality of placing frames and a plurality of conveying frame carrier roller assemblies, each placing frame is detachably connected, and the conveying frame carrier roller assemblies are installed inside the placing frames.
Preferably, the placing frame comprises a conveying frame guide shoe and a material Chu Yunping table, wherein the conveying frame guide shoe is arranged on the lower bottom surface of the placing frame, and the material storage and transportation platform is flatly paved on the upper end surface of the placing frame.
Preferably, the placing frame is further provided with a connecting piece, and the connecting piece is located at the end part of the conveying frame guide shoe and used for detachably connecting the walking frame body and the conveying frame assembly or the two conveying frame assemblies.
Preferably, the carrier roller assembly comprises a carrier upper roller assembly and a carrier lower roller assembly, wherein the carrier upper roller assembly is positioned below the material storage and transportation platform, and the carrier lower roller assembly is positioned below the carrier upper roller assembly.
Preferably, the carrier roller assembly comprises a lap joint part and carrier roller parts, the lap joint part is fixedly arranged on two sides of the placement frame, two ends of the carrier roller parts are in a hook shape, and the carrier roller parts are hung on the lap joint part.
Preferably, the bridging piece is provided with a clamping piece for clamping the carrier roller piece on the conveying frame to prevent the carrier roller piece from moving left and right.
Preferably, the lower carrier roller assembly of the conveying frame comprises lower carrier roller pieces of the conveying frame and fixing pieces, wherein the fixing pieces are arranged on two sides of the placing frame, a plurality of limiting grooves are formed in the fixing pieces, the lower carrier roller pieces of the conveying frame are erected between the limiting grooves, and the lower carrier roller pieces of the conveying frame can be clamped on different limiting grooves.
Preferably, the placing frame is further provided with rope-lapping pieces, and the rope-lapping pieces are arranged on two sides of the placing frame.
Preferably, the walking frame body further comprises two guide rail frames with upper end faces, and guide rails are arranged on the guide rail frames.
Preferably, the carrier roller piece comprises an upper carrier roller piece and a lower carrier roller piece, wherein the upper carrier roller piece is arranged between the two guide rail frames, and the lower carrier roller piece is arranged between the two guide shoes and is arranged above the two guide shoes.
According to the technical scheme, the integral conveyor frame for the mining has the beneficial effects that the integral conveyor frame for the mining comprises a walking frame body and a conveyor frame assembly, and the walking frame body is detachably connected with the conveyor frame assembly; the walking frame body comprises a plurality of supporting frames and a plurality of carrier roller pieces, each supporting frame is detachably connected, a plurality of groups of carrier roller plates are arranged on each supporting frame, the carrier roller pieces are detachably connected with the carrier roller plates, and one carrier roller piece or no carrier roller piece can be arranged on each group of carrier roller plates; the conveying frame assembly comprises a plurality of placing frames and a plurality of conveying frame carrier roller assemblies, each placing frame is detachably connected, and the conveying frame carrier roller assemblies are installed inside the placing frames. The walking frame body with the carriage subassembly is connected, works as the walking frame body motion drives the carriage subassembly motion has realized synchronous motion, and is provided with on the carriage subassembly again the carriage bearing roller subassembly, the carriage bearing roller subassembly is installed place inside the frame, the belt passes through behind the bearing roller spare on the walking frame body pass through the carriage bearing roller subassembly on the carriage bearing roller subassembly has realized the transportation to the material, still place the frame can place material, material and instrument, and along with the propulsion of working face, material and instrument also can impel simultaneously, have avoided the manual work to carry, have reduced artifical intensity of labour.
Drawings
Fig. 1 is an isometric view of an integral belt conveyor carriage for mining.
Fig. 2 is a front view of an integral belt conveyor carriage for mining.
Fig. 3 is a partial enlarged view of a.
Fig. 4 is a top view of an integral belt conveyor carriage for mining.
Fig. 5 is a partial enlarged view of B.
In the figure, a walking frame body 100, a supporting frame 110, a carrier roller plate 111, a carrier roller piece 120, an upper carrier roller piece 121, a lower carrier roller piece 122, a guide rail frame 130, a guide shoe 140, a carrier frame assembly 200, a placement frame 210, a carrier frame guide shoe 211, a material Chu Yunping table 212, a connecting piece 213, a rope member 214, a carrier roller assembly 220, a carrier frame upper carrier roller assembly 221, a lap joint 2211, a clamping piece 2212, a carrier frame upper carrier roller piece 2213, a carrier frame lower carrier roller assembly 222, a carrier frame lower carrier roller piece 2221 and a fixing piece 2222.
Detailed Description
The technical scheme and technical effects of the present application are further elaborated below in conjunction with the drawings of the present application.
Referring to fig. 1 and 5, an integral belt conveyor for mining comprises a travelling frame body 100 and a conveyor frame assembly 200, wherein the travelling frame body 100 and the conveyor frame assembly 200 are detachably connected; the walking frame body 100 comprises a plurality of support frames 110 and a plurality of carrier roller pieces 120, wherein each support frame 110 is detachably connected, a plurality of groups of carrier roller plates 111 are arranged on each support frame 110, the carrier roller pieces 120 are detachably connected with the carrier roller plates 111, and each group of carrier roller plates 111 can be provided with one carrier roller piece 120 or no carrier roller piece 120; the carrier assembly 200 includes a plurality of placement frames 210 and a plurality of carrier roller assemblies 220, wherein each placement frame 210 is detachably connected with each other, and the carrier roller assemblies 220 are installed inside the placement frames 210. The walking frame body 100 is connected with the conveying frame assembly 200, when the walking frame body 100 moves to drive the conveying frame assembly 200 to move, synchronous movement is achieved, the conveying frame assembly 200 is provided with the conveying frame carrier roller assembly 220, the conveying frame carrier roller assembly 220 is installed inside the placing frame 210, a belt passes through the conveying frame carrier roller assembly 220 on the conveying frame carrier roller assembly 220 after passing through the carrier roller assembly 120 on the walking frame body 100, material transportation is achieved, the placing frame 210 can place materials, materials and tools, and along with the pushing of a working face, the materials and the tools can also be pushed simultaneously, manual carrying is avoided, and the manual labor intensity is reduced.
Preferably, the placement frame 210 includes a carrier guide shoe 211 and a material storage and transportation platform 212, the carrier guide shoe 211 is disposed on the lower bottom surface of the placement frame 210, and the material storage and transportation platform 212 is tiled on the upper end surface of the placement frame 210. The lower bottom surface of the carriage guide shoe 211 is smooth, similar to a channel steel, and can slide on the ground, the width of the lower bottom surface is moderate, the width is too wide or the width is too narrow, so that the friction force is too large or the pressure on the ground is too large, the movement and the transportation are inconvenient, the front end of the carriage guide shoe 211 is tilted, the movement of the belt conveyor carriage is facilitated, the tilting is the uneven ground, the clamping is prevented, the material storage and transportation platform 212 is tiled on the upper end surface of the placement frame 210, and materials, materials and tools can be placed on the material storage and transportation platform 212. The material storage and transportation platform 212 may be configured to be at least one of a steel plate or a grid plate horizontally laid and fixed on the upper end of the placement frame 210.
Specifically, rails are disposed on two sides of the material storage and transportation platform 212 to prevent the materials, materials and tools from falling during movement or vibration. Ear loops are provided on both sides of the rail for hanging or fixing objects sliding on the material storage and transportation platform 212 by telescoping or other objects, and then are pinned to the ear loops to prevent movement of the objects.
Further, a connecting member 213 is further disposed on the placement frame 210, and the connecting member 213 is located at an end of the carriage guide shoe 211, for detachable connection between the walking frame 100 and the carriage assembly 200 or between two carriage assemblies 200. The connecting pieces 213 are located at lower positions of the front end and the rear end of the placement frame 210, the connecting pieces 213 are also disposed on the walking frame 100, and are also located at lower positions of the front end and the rear end, the connecting pieces 213 are matched with each other, and are connected by pins, and are connected actively, so that rigid connection such as bolts and studs is avoided, and stable movement of the walking frame 100 and the conveying frame assembly 200 can be ensured.
Still further, the placing frame is further provided with a rope-carrying member 214, the rope-carrying member 214 is disposed on two sides of the placing frame 210, the rope-carrying member 214 may be at least one of an O-ring, a square frame or a hook, and the O-ring or the square frame may be used to carry out arrangement on a cable rope on the ground or a hauling rope, etc. which only have a slight connection effect in the construction process, through the O-ring to the rope-carrying member 214 or the square frame rope-carrying member 214, thereby preventing the occurrence of cables or ropes on the ground, and tripping staff, wherein the hook-like rope-carrying member 214 is beneficial to the taking out and overlapping of the ropes, and also has the function of arranging the ropes.
Preferably, the carrier roller assembly 220 includes a carrier upper roller assembly 221 and a carrier lower roller assembly 222, the carrier upper roller assembly 221 is located below the material storage and transportation platform 212, and the carrier lower roller assembly 222 is located below the carrier upper roller assembly 221.
Specifically, referring to fig. 3, the carrier roller assembly 221 includes a lap joint 2211 and a carrier roller assembly 2213, the lap joint 2211 is fixedly disposed on two sides of the placement frame 210, two ends of the carrier roller assembly 2213 are in a hook shape, and are hung on the lap joint 2211. The device is characterized in that the lap joint pieces 2211 are arranged, hooks are arranged at two ends of the carrier upper carrier roller piece 2213, different hook lengths determine different carrier upper carrier roller pieces 2213, the hooks are connected to the lap joint pieces 2211 in an active mode, damage to the carrier roller pieces can be effectively prevented, the carrier upper carrier roller pieces 2213 are connected to the lap joint pieces 2211 in a hanging mode, the carrier upper carrier roller pieces 2213 can be taken down from the lap joint pieces 2211, the purpose of replacing the carrier roller pieces is achieved, the position of the lap joint pieces 2211 is generally arranged at two sides of the upper end of the placement frame 210, the height of the lap joint pieces 2211 is higher than that of the carrier roller pieces of the walking frame body 100, according to the different hook lengths arranged at two ends of the carrier upper carrier roller pieces 2213, when the carrier upper carrier roller pieces 2213 are connected to the lap joint pieces 2211, if the shorter hooks are used, the carrier upper carrier roller pieces 2213 can be lifted up, the carrier roller pieces on the belt conveyor are lifted down, the carrier roller assemblies on the belt conveyor are used, and the mining belt can be lifted down in a long angle, or the height of the belt conveyor is adjusted to be longer, and the belt conveyor is used, and the height of the belt conveyor is adjusted to be longer than the height of the belt conveyor is used.
Specifically, the bridging member 2211 is provided with a clamping member 2212 for clamping the carrier roller 2213 on the conveying frame to prevent the carrier roller 2213 from moving left and right. Meanwhile, a plurality of clamping pieces 2212 are arranged on the lap joint pieces 2211, each clamping piece 2212 can be clamped with a hook at one end of the upper carrier roller piece 2213 of the conveying frame, some clamping pieces can be clamped with the hooks without being in a vacant state, when the upper carrier roller piece 2213 of the conveying frame is damaged, a new upper carrier roller piece 2213 of the conveying frame is hung between the vacant clamping pieces, the damaged upper carrier roller piece 2213 of the conveying frame is taken down, and in addition, when materials conveyed on the belt conveyor are heavy, the existing upper carrier roller piece 2213 of the conveying frame can bear large force, then a new upper carrier roller piece 2213 of the conveying frame is hung between the vacant clamping pieces, so that the pressure born by the existing upper carrier roller piece 2213 of the conveying frame is reduced, and the abrasion and damage to the upper carrier roller piece 2213 of the conveying frame are reduced.
Preferably, the lower carrier roller assembly 222 includes a lower carrier roller member 2221 and fixing members 2222, the fixing members 2222 are mounted on two sides of the placement frame 210, a plurality of limiting grooves are formed in the fixing members 2222, the lower carrier roller member 2221 is erected between the limiting grooves, and the lower carrier roller member 2221 can be clamped in different limiting grooves. Different conveyer lower carrier roller parts 2221 are erected between the spacing grooves with different widths, when the conveyer lower carrier roller parts 2221 are heavier and rotate at a higher speed, the erection shafts at the two ends of the conveyer lower carrier roller parts 2221 are thicker and are arranged in the wider spacing grooves, otherwise, the conveyer lower carrier roller parts 2221 are arranged in the narrower spacing grooves, and further, the conveyer lower carrier roller parts 2221 can move along the vertical direction of the spacing grooves, so that the belt on the belt conveyor is loosened to a certain degree, and the damage to the belt is avoided.
Preferably, each of the walking frames 100 includes two rail frames 130 having upper end surfaces, and the rail frames 130 are provided with rails. The walking frame body 100 is used with the development machine in a matched mode, each section of walking frame body 100 is provided with two guide rail frames 130, guide rails matched with rollers of the development machine are arranged on the guide rail frames 130, the development machine can move on the guide rails, the development machine transports mined materials to the belt conveyor, during operation, the development machine is firstly lapped at a certain position of the guide rails of the walking frame body 100, the development machine moves forwards along with the fact that the development machine does not break the mined materials, the development machine can slowly move to the end portions of the walking frame body 100, the development machine can be blocked, the development machine cannot continue to move forwards, the development machine is required to continue to move forwards, and the distance that the development machine can move on the guide rails is reserved.
Specifically, the top ends of the two guide rail frames 130 are provided with connecting buckles, the buckles are used for connecting the walking frame bodies 100, the buckles are arranged in a matched mode, a concave shape and a convex shape are connected and fixed through pins, and the loosening phenomenon is prevented from occurring.
Further, the walking frame 100 includes two guide shoes 140 at the bottom surface, and the front ends of the guide shoes 140 are in a tilted state. The lower bottom surface of the walking frame body 100 is provided with the guide shoes 140, when the tunneller spreads materials on the belt conveyor, the materials are inevitably dropped on the ground, the guide shoes 140 are inevitably blocked, and when the ground is uneven, the frame plate is provided with the guide shoes 140, the front end is tilted, the belt conveyor is more beneficial to advancing, and the belt conveyor is effectively prevented from being blocked by external factors.
Further, the idler 120 includes an upper idler 121 and a lower idler 122, the upper idler 121 is disposed between the two guide rails 130, and the lower idler 122 is disposed between the two guide shoes 140 and is mounted above the two guide shoes 140. The upper carrier roller piece 121 and the carrier roller plate 111 are connected through bolts and nuts or pins, the lower carrier roller piece 122 is erected or lapped on the carrier roller plate 111, and the lower carrier roller piece 122 can move on the carrier roller plate 111 along the vertical direction, so that the transmission belt is tightly relaxed to a certain degree, and the transmission belt is prevented from being damaged.
The foregoing disclosure is illustrative of the present invention and is not to be construed as limiting the scope of the invention, but rather as providing for the full or partial flow of the liquid to be delivered to the patient in accordance with the invention.

Claims (6)

1. The integral belt conveyor conveying frame for mining is characterized by comprising a traveling frame body and a conveying frame assembly, wherein the traveling frame body is detachably connected with the conveying frame assembly;
the walking frame body comprises a plurality of supporting frames and a plurality of carrier roller pieces, each supporting frame is detachably connected, a plurality of groups of carrier roller plates are arranged on each supporting frame, the carrier roller pieces are detachably connected with the carrier roller plates, one carrier roller piece or no carrier roller piece can be arranged on each group of carrier roller plates, the walking frame body comprises two guide shoes at the lower bottom surface, and the front ends of the guide shoes are tilted;
the conveying frame assembly comprises a plurality of placing frames and a plurality of conveying frame carrier roller assemblies, each placing frame is detachably connected, the conveying frame carrier roller assemblies are installed inside the placing frame, each placing frame comprises conveying frame guide shoes and a material Chu Yunping table, the conveying frame guide shoes are arranged on the lower bottom surface of each placing frame, and the material storage and transportation platform is flatly paved on the upper end surface of each placing frame; the placing frame is also provided with rope-carrying pieces which are arranged at two sides of the placing frame;
the conveying frame carrier roller assembly comprises a conveying frame upper carrier roller assembly and a conveying frame lower carrier roller assembly, the conveying frame upper carrier roller assembly is positioned below the material storage and transportation platform, and the conveying frame lower carrier roller assembly is positioned below the conveying frame upper carrier roller assembly;
the lower carrier roller assembly of the conveying frame comprises lower carrier roller pieces of the conveying frame and fixing pieces, wherein the fixing pieces are arranged on two sides of the placing frame, a plurality of limiting grooves are formed in the fixing pieces, the lower carrier roller pieces of the conveying frame are erected between the limiting grooves, and the lower carrier roller pieces of the conveying frame can be clamped on different limiting grooves;
each traveling frame body comprises two guide rail frames on the upper end face, guide rails are arranged on the guide rail frames, the traveling frame bodies are matched with the heading machine for use, two guide rail frames are arranged on each traveling frame body, guide rails matched with rollers of the heading machine are arranged on the guide rail frames, the heading machine can move on the guide rails, the heading machine transports mined materials to a belt conveyor, during working, the heading machine is firstly lapped at a certain position of the guide rails of the traveling frame bodies, the heading machine moves forwards along with the fact that the heading machine does not break the mined materials, the heading machine can slowly move to the end parts of the traveling frame bodies, the heading machine can be clamped, the heading machine cannot continue to move forwards, and then the traveling frame bodies are required to move forwards continuously, and the distance that the heading machine can move on the guide rails is reserved.
2. A mining integrated belt conveyor carriage as in claim 1 wherein the placement frame is further provided with a connector located at the carriage guide shoe end for removable connection between the travelling carriage and carriage assembly or between two of the carriage assemblies.
3. The integrated conveyor belt conveyor conveying frame for mining according to claim 2, wherein the conveyor upper carrier roller assembly comprises a lap joint part and conveyor upper carrier roller parts, the lap joint part is fixedly arranged on two sides of the placing frame, and two ends of the conveyor upper carrier roller parts are in a hook shape and are hung on the lap joint part.
4. A mining integrated belt conveyor carrier as in claim 3 wherein the bridge members are provided with detents for snapping the carrier roller members of the carrier to prevent side-to-side movement.
5. The mining integrated belt conveyor carriage according to claim 1, wherein the travelling carriage body further comprises two guide rail frames with upper end surfaces, and guide rails are arranged on the guide rail frames.
6. The mining integrated belt conveyor carrier of claim 5, wherein the idler members include an upper idler member disposed between the two guide brackets and a lower idler member disposed between the two guide shoes and mounted above the two guide shoes.
CN202110597043.2A 2021-05-31 2021-05-31 Mining is with integral type belt feeder carriage Active CN113443382B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110597043.2A CN113443382B (en) 2021-05-31 2021-05-31 Mining is with integral type belt feeder carriage

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110597043.2A CN113443382B (en) 2021-05-31 2021-05-31 Mining is with integral type belt feeder carriage

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CN113443382A CN113443382A (en) 2021-09-28
CN113443382B true CN113443382B (en) 2023-06-30

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Publication number Priority date Publication date Assignee Title
NL7408031A (en) * 1973-08-27 1975-03-03 Masyc Ag ASSORTMENT, GROUP OR SET OF CONSTRUCTION ELEMENTS FOR THE MANUFACTURE OF TRANSPORT EQUIPMENT.
DE102013205041B4 (en) * 2013-03-21 2019-12-24 Takraf Gmbh Method and device for changing idlers of a belt conveyor
CN104944109B (en) * 2015-06-11 2017-06-20 河南工业大学 A kind of roller belt conveyor
CN105201552B (en) * 2015-09-30 2017-12-08 中国煤炭科工集团太原研究院有限公司 A kind of self-movable foot end train of taking a step provided with Jiang Zu travel mechanisms
CN208802003U (en) * 2018-09-19 2019-04-30 星崎电机(苏州)有限公司 A kind of multiple layers of molds transport vehicle
CN109625740B (en) * 2019-01-21 2024-02-27 建科机械(天津)股份有限公司 Multilayer storage mechanism
CN210557217U (en) * 2019-06-28 2020-05-19 龙工(福建)液压有限公司 Detachable conveying frame of unpowered carrier roller for machining hydraulic guide sleeve
CN112758593B (en) * 2021-01-12 2022-11-08 中国煤炭科工集团太原研究院有限公司 Inserting frame device

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