CN215093905U - Gantry lateral vertical type horizontal moving mechanism for sponge cutting machine - Google Patents
Gantry lateral vertical type horizontal moving mechanism for sponge cutting machine Download PDFInfo
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- CN215093905U CN215093905U CN202120351714.2U CN202120351714U CN215093905U CN 215093905 U CN215093905 U CN 215093905U CN 202120351714 U CN202120351714 U CN 202120351714U CN 215093905 U CN215093905 U CN 215093905U
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- conveying platform
- cutting machine
- portal frame
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Abstract
The utility model relates to a portal frame side vertical horizontal migration mechanism for sponge cutting machine, sponge cutting machine include portal frame and conveying platform, above the support below of portal frame both sides is respectively through side vertical horizontal migration mechanism slidable mounting conveying platform's the both sides face, side vertical horizontal migration mechanism includes slide rail, slider, slide, actuating mechanism. The advantages are that, the design is simple, convenient to use, and slider slide rail mounting means was up in the past, then becomes the side-standing type now, and the orientation is then both sides, is difficult for laying dust, and the both sides support lower extreme of portal frame slides subaerial in the past, changes the inboard lower extreme of both sides support and slides on conveying platform's both sides side, keeps away from ground and the side-standing type is difficult to have debris to fall on the slide rail, does not influence and slides safe and reliable, compact structure.
Description
Technical Field
The utility model relates to a sponge cutting machine tool technical field, concretely relates to portal frame side vertical horizontal migration mechanism for sponge cutting machine.
Background
The portal frame of the conventional sponge cutting machine can slide back and forth above the conveying platform and is used for cutting sponge, the lower ends of the supports on the two sides of the portal frame are slidably mounted on the ground through the sliding rails, the portal frame is large in occupied space and not compact enough in structure, dust is easily collected on the sliding rails, and the sliding effect is affected. For example, south-through herd machinery limited, my company, an invention patent, patent No.: CN201210431207.5, a full-automatic sponge cutting machine, this patent just exists the technical problem that the solution now exists.
Disclosure of Invention
In order to solve the technical problem, the utility model provides a portal frame side vertical horizontal migration mechanism for sponge cutting machine, the design is simple, convenient to use, compact structure.
The technical scheme of the utility model:
the utility model provides a portal frame side vertical horizontal migration mechanism for sponge cutting machine, sponge cutting machine includes portal frame and conveying platform, and the support below of portal frame both sides is respectively through the above-mentioned both sides face of side vertical horizontal migration mechanism slidable mounting conveying platform, side vertical horizontal migration mechanism includes slide rail, slider, slide, actuating mechanism, and two rows of horizontally slide rails are installed respectively to conveying platform's both sides, and the slide inboard passes through slider slidable mounting on the slide rail, and the outside correspondence of slide is installed at the inboard lower extreme of support of portal frame both sides, and actuating mechanism installs on the slide, and actuating mechanism drives the slide and passes through the slider and slide on the slide rail.
The driving mechanism comprises a motor, a belt wheel and a section of belt, the motor is installed on the outer side of the sliding plate and located on one side of a support of the portal frame, the belt wheel is installed at the front end of the motor, the end portion of one side of the conveying platform is installed at one end of the section of belt, the section of belt is wound around the outer side of the belt wheel, and the other end of the section of belt is installed at the position, close to the end portion, of the other side of the conveying platform.
The two sides of the belt wheel are respectively provided with a reversing wheel, the reversing wheels are arranged on the sliding plate, and the two reversing wheels respectively prop against the outer side of one section of belt.
The motor is installed on the sliding plate and is positioned on one side of the support of the portal frame, and the side of the motor is the same as the end part, fixed on one side of the conveying platform, of the section of belt.
The utility model has the advantages that, the design is simple, and convenient to use, slider slide rail mounting means is up in the past, then becomes the side-standing type now, and the orientation then is both sides, is difficult for the laying dust, and the both sides support lower extreme of portal frame slides subaerial in the past, and the inboard lower extreme that changes into the both sides support slides on conveying platform's both sides side, keeps away from ground and side-standing type and is difficult to have debris to fall on the slide rail, does not influence the slip, safe and reliable, compact structure.
Drawings
Fig. 1 is a schematic diagram of the present invention.
Fig. 2 is a partially enlarged schematic view of the slide rail of the present invention.
Fig. 3 is a schematic partial cross-sectional view of the belt wheel of the present invention.
Detailed Description
Referring to the attached drawings 1-3, the portal frame side-vertical type horizontal moving mechanism for the sponge cutting machine comprises a portal frame 1 and a conveying platform 2, wherein the lower portions of supports 11 on two sides of the portal frame 1 are respectively installed on the two side surfaces of the conveying platform 2 through the side-vertical type horizontal moving mechanism in a sliding mode, the side-vertical type horizontal moving mechanism comprises a sliding rail 3, a sliding block 4, a sliding plate 5 and a driving mechanism, two rows of horizontal sliding rails 3 are respectively installed on two sides of the conveying platform 2, the inner side of the sliding plate 5 is installed on the sliding rail 3 through the sliding block 4 in a sliding mode, the outer side of the sliding plate 5 is correspondingly installed at the lower ends of the inner sides of the supports 11 on two sides of the portal frame 1, the driving mechanism is installed on the sliding plate 5, and the driving mechanism drives the sliding plate 5 to slide on the sliding rail 3 through the sliding block 4.
As shown in fig. 3, the driving mechanism includes a motor 6, a belt wheel 7, and a belt 8, the motor 6 is installed on the outer side of the sliding plate 5, and the motor 6 is located on one side of the bracket 11 of the gantry 1, the belt wheel 7 is installed at the front end of the motor 6, one end of the belt 8 is installed on the end portion on one side of the conveying platform 2, the belt 8 is wound around the outer side of the belt wheel 7, and the other end of the belt 8 is installed on the position on the other side of the conveying platform 2 close to the end portion. The two sides of the belt wheel 7 are respectively provided with a reversing wheel 9, the reversing wheels 9 are arranged on the sliding plate 5, and the two reversing wheels 9 respectively prop against the outer side of the section of belt 8. The belt direction is changed by the two reversing wheels, the belt penetrates through the inner side of the sliding plate, the belt is located between the upper sliding rail and the lower sliding rail when the two sides of the belt wheel are located, the belt is wound around the outer side of the belt wheel in a semicircular range approximately when the two reversing wheels are used, friction is increased, slipping is avoided, and effective driving is achieved.
The motor 6 is arranged on the sliding plate 5, and the motor 6 is positioned on one side of a bracket 11 of the portal frame 1, which is the same side with the end part of the belt segment 8 fixed on one side of the conveying platform 2. This design mainly is the tip of the side of conveying platform can not need to be installed to the one end of belt, and the disappearance distance can compensate through the length of slide, is exactly the motor need not drive pulley walk to the tip of conveying platform's side, only need one end tip walk to arrive just can, certainly both ends all design the tip also can, not the utility model discloses an optimal scheme.
The utility model discloses during the use, the parcel of the band pulley outside is in one section belt, and one section belt both ends are fixed connection, then one section belt is immovable, and the motor is fixed on the slide, and motor drive band pulley is rotatory, and the band pulley then under one section belt reaction, the band pulley removes along one section belt, and the band pulley reaction is on the motor, and the motor drives the slide and slides to the realization drives whole portal frame and removes.
Claims (4)
1. The utility model provides a portal frame side vertical horizontal migration mechanism for sponge cutting machine, sponge cutting machine includes portal frame and conveying platform, its characterized in that, the support below of portal frame both sides respectively through the side vertical horizontal migration mechanism slidable mounting conveying platform's the both sides face above, side vertical horizontal migration mechanism includes slide rail, slider, slide, actuating mechanism, and two rows of horizontally slide rails are installed respectively to conveying platform's both sides, and the slide inboard is through slider slidable mounting on the slide rail, and the outside correspondence of slide is installed at the support inboard lower extreme of portal frame both sides, and actuating mechanism installs on the slide, and actuating mechanism drive slide passes through the slider and slides on the slide rail.
2. The gantry lateral vertical horizontal movement mechanism for the sponge cutting machine as claimed in claim 1, wherein the driving mechanism comprises a motor, a belt wheel and a section of belt, the motor is installed on the outer side of the sliding plate and located on one side of the gantry support, the belt wheel is installed at the front end of the motor, one end of the section of belt is installed at the end part of one side of the conveying platform, the section of belt is wound around the outer side of the belt wheel, and the other end of the section of belt is installed at the position, close to the end part, of the other side of the conveying platform.
3. The gantry lateral vertical horizontal movement mechanism for the sponge cutting machine as claimed in claim 1, wherein two sides of the belt wheel are respectively provided with a reversing wheel, the reversing wheels are arranged on the sliding plate, and the two reversing wheels respectively abut against the outer side of a section of belt.
4. The gantry side vertical horizontal movement mechanism for a sponge cutting machine as claimed in claim 2, wherein the motor is installed on the sliding plate and the motor is located at the side of the gantry frame which is the same side as the end of the belt fixed at the side of the conveying platform.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120351714.2U CN215093905U (en) | 2021-02-08 | 2021-02-08 | Gantry lateral vertical type horizontal moving mechanism for sponge cutting machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120351714.2U CN215093905U (en) | 2021-02-08 | 2021-02-08 | Gantry lateral vertical type horizontal moving mechanism for sponge cutting machine |
Publications (1)
Publication Number | Publication Date |
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CN215093905U true CN215093905U (en) | 2021-12-10 |
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Family Applications (1)
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CN202120351714.2U Active CN215093905U (en) | 2021-02-08 | 2021-02-08 | Gantry lateral vertical type horizontal moving mechanism for sponge cutting machine |
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2021
- 2021-02-08 CN CN202120351714.2U patent/CN215093905U/en active Active
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