CN204957610U - Transmission connection structure of pottery sheet metal body conveyer belt - Google Patents

Transmission connection structure of pottery sheet metal body conveyer belt Download PDF

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Publication number
CN204957610U
CN204957610U CN201520474553.0U CN201520474553U CN204957610U CN 204957610 U CN204957610 U CN 204957610U CN 201520474553 U CN201520474553 U CN 201520474553U CN 204957610 U CN204957610 U CN 204957610U
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China
Prior art keywords
drive motor
frame
belt conveyor
support frame
thin plate
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CN201520474553.0U
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Chinese (zh)
Inventor
刘一军
萧礼标
麦仲铭
张永健
陈志坚
李汝湛
任国雄
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Monalisa Group Co Ltd
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GUANGDONG MONALISA NEW MATERIAL GROUP CO Ltd
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Abstract

Transmission connection structure of pottery sheet metal body conveyer belt, including frame, conveyer belt, initiative roller, driven roller, support frame and driving motor, the initiative roller with driven roller all install in the both ends of frame, the support frame with the driving motor installation is fixed in same one side of frame, still the support frame with driving motor is on same horizontal plane, the support frame is used for supporting driving motor, driving motor pass through the shaft coupling with the initiative roller is connected, driving motor's output shaft with the axis of rotation mutually perpendicular of initiative roller. The utility model discloses an use the shaft coupling to be connected driving motor with the initiative roller, in addition driving motor's the output shaft and the axis of rotation mutually perpendicular of initiative roller, such transmission connection structure reduces the maintenance and maintains, the convenient dismantlement and the maintenance, and area is little, and the structure is compacter, saves space, does not need the protection casing to realize the effect of preventing the dust, reduce cost simultaneously.

Description

The transmission connecting structure of ceramic thin plate base substrate belt conveyor
Technical field
The utility model relates to ceramic conveying technology field, particularly relates to the transmission connecting structure of ceramic thin plate base substrate belt conveyor.
Background technology
Along with the development of Structural ceramics industry, light and thin architectural pottery goods have become developing direction from now on.Large size ceramic thin plate as construction exterior exterior material arises at the historic moment thereupon, and is widely used.In ceramics, extensive ceramic thin plate typically refers to thickness and is less than or equal to 5mm and area is more than or equal to the ceramic board of 0.5 sq m.
The preparation of ceramic thin plate will, through several procedure, need connecting gear to transmit between each procedure, is all generally to adopt the mode of belt conveyor to transmit; And the transmission connecting structure of existing belt conveyor all adopts single-chain or biobelt to connect, because the transmission of chain can be elongated, need to be serviced; Re-use a period of time just elongation after maintenance, need constantly to safeguard, increase maintenance cost; And when startup, chain can shake suddenly; Certain impact is produced on ceramic thin plate base substrate, because ceramic thin plate is thinner, easy loss in vibrations process; And driving chain needs motor to be placed on below belt conveyor, must put protective cover like this, otherwise dust can be accumulated on described chain and motor, easy et out of order.
Summary of the invention
The purpose of this utility model is to overcome the transmission connecting structure that above deficiency and defect propose a kind of ceramic thin plate base substrate.
For reaching this object, the utility model by the following technical solutions:
The transmission connecting structure of ceramic thin plate base substrate belt conveyor, comprises frame, belt conveyor, active roll tube, driven roller, bracing frame and drive motor;
Described active roll tube and described driven roller are all installed on the two ends of described frame; Support frame as described above and described drive motor are mounted on the same side of described frame, but support frame as described above and described drive motor are in same level; Support frame as described above is for supporting described drive motor; Described drive motor is connected with described active roll tube by coupler; The output shaft of described drive motor is mutually vertical with the turning cylinder of described active roll tube.
Preferably, the output shaft of described drive motor is vertically connected with the turning cylinder of described active roll tube; The output shaft of described drive motor vertically upward.
Preferably, the output shaft of described drive motor is that level is connected with the turning cylinder of described active roll tube.
Preferably, described active roll tube and described driven roller are all installed in described frame by rolling bearing units.
Preferably, support frame as described above is the bracing frame of L-type structure; Described L-type structure comprises vertical wall and horizontal wall surface, and described vertical wall is for installing described drive motor; Described horizontal wall surface is installed in described frame.
Preferably, described drive motor is installed on described vertical wall by bolt.
Preferably, support frame as described above adopts chrome-nickel steel to be made.
Preferably, described drive motor is reducing motor.
Drive motor is connected with active roll tube by using coupler by the utility model, and the output shaft of drive motor is mutually vertical with the turning cylinder of active roll tube; Such transmission connecting structure reduces maintenance and safeguards, for convenience detach and maintenance, and floor area is little, and structure is compacter, saves space, does not need protective cover to realize the effect of anti-dust simultaneously, reduces costs.
Accompanying drawing explanation
Fig. 1 is the schematic top plan view of the utility model specific embodiment.
Fig. 2 is the schematic side view of a specific embodiment of the present utility model.
Wherein: frame 1, belt conveyor 2, active roll tube 3, driven roller 4, bracing frame 5, drive motor 6.
Detailed description of the invention
The technical solution of the utility model is further illustrated by detailed description of the invention below in conjunction with accompanying drawing.
The transmission connecting structure of ceramic thin plate base substrate belt conveyor, comprises frame 1, belt conveyor 2, active roll tube 3, driven roller 4, bracing frame 5 and drive motor 6;
Described active roll tube 3 and described driven roller 4 are all installed on the two ends of described frame 1; Support frame as described above 5 and described drive motor 6 are mounted on the same side of described frame 1, but support frame as described above 5 and described drive motor 6 are in same level; Support frame as described above 5 is for supporting described drive motor 6; Described drive motor 6 is connected with described active roll tube 3 by coupler; The output shaft of described drive motor 6 is mutually vertical with the turning cylinder of described active roll tube 3.
The preparation of ceramic thin plate will, through several procedure, need connecting gear to transmit between each procedure, is all generally to adopt the mode of belt conveyor to transmit; And the type of drive of described driving band 2 is drive motor is directly connected with described active roll tube 3 by coupler 7, maintenance when direct connection just decreases chain gear and maintenance, and there will not be when startup, the unexpected vibrations of chain cause the situation of the damage of ceramic thin plate brick.Support frame as described above 5 and described drive motor 6 are mounted on the same side of described frame 1, but support frame as described above 5 and described drive motor 6 are in same level, such structure makes support frame as described above 5 bearing force when supporting described drive motor 6 more balance, reduce the vibration amplitude of described drive motor 6, support more steady; And when drive motor breaks down, for convenience detach, convenient for maintaining.And the output shaft of described drive motor 6 is mutually vertical with the turning cylinder of described active roll tube 3, make described drive motor 6 little with the floor area of described frame 1, structure is compacter, does not need protective cover also can realize the effect of anti-dust simultaneously.Drive motor is connected with active roll tube by using coupler by the utility model, and the output shaft of drive motor is mutually vertical with the turning cylinder of active roll tube; Such transmission connecting structure reduces maintenance and safeguards, for convenience detach and maintenance, and floor area is little, and structure is compacter, saves space, does not need protective cover to realize the effect of anti-dust simultaneously, reduces costs.
Preferably, the output shaft of described drive motor 6 is vertically connected with the turning cylinder of described active roll tube 3; The output shaft of described drive motor 6 vertically upward.
When described drive motor 6 output shaft be vertically be connected with the turning cylinder of described active roll tube 3 time, described drive motor 6 floor area is less, and the space of saving is more; And do not need protective cover just can have good anti-dust effect.
Preferably, the output shaft of described drive motor 6 is that level is connected with the turning cylinder of described active roll tube 3.
The output shaft of described drive motor 6 is that described level is connected with the turning cylinder of described active roll tube 3, the area taken is large relative to area during vertical connection, but when connecting like this, can reduce the bearing force of support frame as described above 5, connect more firm, extend the service life of support frame as described above.
Preferably, described active roll tube 3 and described driven roller 4 are all installed in described frame 1 by rolling bearing units.
Install described active roll tube 3 and described driven roller 4 by rolling bearing units, while ensureing smoothness when rotating, structure is simple, and it is convenient to install, and cost is low.
Preferably, support frame as described above 5 is the bracing frame 5 of L-type structure; Described L-type structure comprises vertical wall and horizontal wall surface, and described vertical wall is for installing described drive motor 6; Described horizontal wall surface is installed in described frame 1.
The support frame as described above 5 of L-type structure, while the fixing described drive motor 6 of convenient support, is convenient to it and is installed in described frame 1.
Preferably, described drive motor 6 is installed on described vertical wall by bolt.
Bolt is quick for installation, convenient; And cost is low.
Preferably, support frame as described above 5 adopts chrome-nickel steel to be made.
The mechanical strength of chrome-nickel steel is high, and chrome-nickel steel hardness and toughness are large, chrome-nickel steel heat-and corrosion-resistant, long service life.
Preferably, described drive motor 6 is reducing motor.
Reducing motor saves space, reliability and durability, and it is high to bear overload capacity, and power can reach more than 95KW; Energy consumption is low, superior performance, and reductor efficiency is up to more than 95%; Vibrate little, noise is low, energy-conservation height, and select high-quality forged steel material, ferrostell casing, gear surface is through high frequency heat process.
Below know-why of the present utility model is described in conjunction with specific embodiments.These describe just in order to explain principle of the present utility model, and can not be interpreted as the restriction to the utility model protection domain by any way.Based on explanation herein, those skilled in the art does not need to pay performing creative labour can associate other detailed description of the invention of the present utility model, and these modes all will fall within protection domain of the present utility model.

Claims (8)

1. the transmission connecting structure of ceramic thin plate base substrate belt conveyor, is characterized in that: comprise frame, belt conveyor, active roll tube, driven roller, bracing frame and drive motor;
Described active roll tube and described driven roller are all installed on the two ends of described frame; Support frame as described above and described drive motor are mounted on the same side of described frame, but support frame as described above and described drive motor are in same level; Support frame as described above is for supporting described drive motor; Described drive motor is connected with described active roll tube by coupler; The output shaft of described drive motor is mutually vertical with the turning cylinder of described active roll tube.
2. the transmission connecting structure of ceramic thin plate base substrate belt conveyor according to claim 1, is characterized in that: the output shaft of described drive motor is vertically connected with the turning cylinder of described active roll tube; The output shaft of described drive motor vertically upward.
3. the transmission connecting structure of ceramic thin plate base substrate belt conveyor according to claim 1, is characterized in that: the output shaft of described drive motor is that level is connected with the turning cylinder of described active roll tube.
4. the transmission connecting structure of ceramic thin plate base substrate belt conveyor according to claim 1, is characterized in that: described active roll tube and described driven roller are all installed in described frame by rolling bearing units.
5. the transmission connecting structure of ceramic thin plate base substrate belt conveyor according to claim 4, is characterized in that: support frame as described above is the bracing frame of L-type structure; Described L-type structure comprises vertical wall and horizontal wall surface, and described vertical wall is for installing described drive motor; Described horizontal wall surface is installed in described frame.
6. the transmission connecting structure of ceramic thin plate base substrate belt conveyor according to claim 5, is characterized in that: described drive motor is installed on described vertical wall by bolt.
7. the transmission connecting structure of ceramic thin plate base substrate belt conveyor according to claim 6, is characterized in that: support frame as described above adopts chrome-nickel steel to be made.
8. the transmission connecting structure of ceramic thin plate base substrate belt conveyor according to claim 7, is characterized in that: described drive motor is reducing motor.
CN201520474553.0U 2015-07-01 2015-07-01 Transmission connection structure of pottery sheet metal body conveyer belt Active CN204957610U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520474553.0U CN204957610U (en) 2015-07-01 2015-07-01 Transmission connection structure of pottery sheet metal body conveyer belt

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520474553.0U CN204957610U (en) 2015-07-01 2015-07-01 Transmission connection structure of pottery sheet metal body conveyer belt

Publications (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104960851A (en) * 2015-07-01 2015-10-07 广东蒙娜丽莎新型材料集团有限公司 Transmission connecting structure of ceramic sheet billet body conveying belt

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104960851A (en) * 2015-07-01 2015-10-07 广东蒙娜丽莎新型材料集团有限公司 Transmission connecting structure of ceramic sheet billet body conveying belt

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GR01 Patent grant
C56 Change in the name or address of the patentee
CP01 Change in the name or title of a patent holder

Address after: 528211 Guangdong Province Nanhai District of Foshan City, Xiqiao Textile City Industrial Park

Patentee after: MONALISA GROUP CO., LTD.

Address before: 528211 Guangdong Province Nanhai District of Foshan City, Xiqiao Textile City Industrial Park

Patentee before: Guangdong Monalisa New Material Group Co., Ltd.