CN220437547U - Scanning and weighing integrated machine for logistics - Google Patents

Scanning and weighing integrated machine for logistics Download PDF

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Publication number
CN220437547U
CN220437547U CN202322184915.XU CN202322184915U CN220437547U CN 220437547 U CN220437547 U CN 220437547U CN 202322184915 U CN202322184915 U CN 202322184915U CN 220437547 U CN220437547 U CN 220437547U
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China
Prior art keywords
weighing
frame
scanning
angle limiting
bottom plate
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CN202322184915.XU
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周韶宁
张砚冰
陈陆俊
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Zhejiang Baishi Technology Co Ltd
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Zhejiang Baishi Technology Co Ltd
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Abstract

The utility model discloses a scanning and weighing integrated machine for logistics, which comprises a scanning and weighing frame, wherein a weighing bottom plate is arranged in the scanning and weighing frame, and a contact panel is arranged above the weighing bottom plate; the dust fan frame is arranged on one side of the weighing bottom plate, and a soot blowing fan is arranged in the dust fan frame; the conveying frame is arranged on one side of the scanning weighing frame, and the outer wall of the scanning weighing frame is connected with a data control display. This scanning all-in-one of weighing can carry out the angle modulation as required through the soot blowing fan that can rotate to reach good soot blowing effect, can carry out the damping spacing to pivoted soot blowing fan through arc slider and the spacing spout of angle on the soot blowing fan, convenient soot blowing, can reduce frictional force through connecting the pulley on the connection balladeur train, thereby avoid the phenomenon that produces the hindrance in the slip process, can form the shock attenuation effect to connecting the balladeur train through the damping spring that sets up, thereby reach stable effect.

Description

Scanning and weighing integrated machine for logistics
Technical Field
The utility model relates to the technical field of weighing integrated machines, in particular to a scanning and weighing integrated machine for logistics.
Background
The weighing device is usually a weight weighing device for large objects in industry or trade, and refers to the matched use of modern electronic technologies such as program control, group control, telex printing recording, screen display and the like, so that the weighing device has complete functions and higher efficiency. The weighing equipment mainly comprises a bearing system (such as a scale pan and a scale body), a force transmission conversion system (such as a lever force transmission system and a sensor) and a value indicating system (such as a dial and an electronic display instrument) 3.
In chinese patent one kind survey volume scanning all-in-one that weighs (publication No. CN 218211569U), the device includes work platform, device regulating plate, data display screen, universal bracing piece, volume scanning structure, weighing platform, rotation platform, the top surface at work platform is fixed to the weighing platform, the rotation platform sets up the top surface at the weighing platform, the device regulating plate sets up at work platform rear end topside, data display screen passes through universal bracing piece and connects on work platform. The utility model optimizes the setting of the volume and mass scanning integrated machine, changes the traditional top-hung equipment structure, improves the equipment structure into equipment with more accurate scanning, has a planar full-coverage volume scanning structure, can realize the omnibearing scanning of articles by matching with a rotating platform, and is suitable for popularization and use.
However, such a machine also has some problems in that the material can carry some dust and sundries to drop onto the plate surface in the weighing process, and the accuracy of weighing is not only affected for a long time, but also the material is inconvenient to take and place.
Disclosure of Invention
The utility model aims to provide a scanning and weighing integrated machine for logistics, which is used for solving the problems that the scanning and weighing integrated machine which is proposed in the background technology but used in modern production firstly conveys materials to the machine through a conveying structure and then uses the materials through scanning and weighing, but the machine also has some problems that the materials can carry some dust and sundries to drop onto a plate surface in the weighing process, the weighing accuracy is influenced for a long time, and the materials are inconvenient to take and place.
In order to achieve the above purpose, the present utility model provides the following technical solutions: a scanning and weighing all-in-one machine for logistics, comprising:
the scanning weighing frame is internally provided with a weighing bottom plate, and a touch panel is arranged above the weighing bottom plate;
the dust fan frame is arranged on one side of the weighing bottom plate, and a soot blowing fan is arranged in the dust fan frame;
the conveying frame is arranged on one side of the scanning weighing frame, and the outer wall of the scanning weighing frame is connected with a data control display;
the scanning frame is arranged on the other side of the scanning weighing frame, the outer wall of the scanning frame is connected with a height adjusting rod, one side of the scanning frame is provided with a laser scanner, both sides of the height adjusting rod are provided with height adjusting sliding grooves, the inside of each height adjusting sliding groove is provided with a height adjusting sliding block, one side of the outer wall of the laser scanner is connected with a limit sleeve rod, and one end of the limit sleeve rod is connected with a buffer rod.
Preferably, the touch panel further comprises:
the rotating rod is connected to the lower end face of the touch panel, and lifting telescopic rods are arranged on two sides of the rotating rod.
Preferably, the lifting telescopic rod is movably connected with the touch panel, and the touch panel is movably connected with the weighing bottom plate through a rotating rod.
Preferably, the weighing base plate is further provided with:
the pulling slide block is connected to the lower end face of the weighing base plate, a pulling sliding groove is connected to the outer wall of the pulling slide block, an induction base plate is arranged below the weighing base plate, and a placing frame body is arranged below the induction base plate.
Preferably, the weighing bottom plate is fixedly connected with the pulling sliding block, a sliding structure is formed between the weighing bottom plate and the sensing bottom plate through the pulling sliding block and the pulling sliding groove, and the external dimensions of the pulling sliding block and the pulling sliding groove are mutually matched.
Preferably, the dust fan frame is further provided with:
the dust fan frame comprises an angle limiting frame, wherein the angle limiting frame is arranged on two sides of the dust fan frame, an angle limiting chute is formed in the angle limiting frame, an arc-shaped sliding block is arranged in the angle limiting chute, a plurality of connecting sliding frames are arranged in the arc-shaped sliding block, one ends of the connecting sliding frames are connected with connecting pulleys, and damping springs are connected with the other ends of the connecting sliding frames.
Preferably, the soot blower fan is movably connected with the arc-shaped sliding block, a sliding structure is formed between the soot blower fan and the angle limiting chute through the arc-shaped sliding block and the angle limiting frame, and the outline dimensions of the arc-shaped sliding block and the angle limiting chute are mutually matched.
Preferably, the connecting sliding frame is movably connected with the connecting pulley, the connecting sliding frame is in threaded connection with the damping spring, and an elastic telescopic structure is formed between the connecting sliding frame and the damping spring.
Preferably, the angle limiting frame is in a circular arc structure, the angle limiting frame is welded with the dust fan frame, and the dust fan frame is movably connected with the soot blowing fan.
Preferably, the laser scanner is fixedly connected with the height adjusting slide block, the laser scanner forms a height adjusting structure through the height adjusting slide block, the height adjusting slide groove and the height adjusting rod, the limit sleeve rod is in threaded connection with the laser scanner, a spring is arranged in the limit sleeve rod, and the buffer rod forms an elastic telescopic structure through the spring and the limit sleeve rod.
Compared with the prior art, the utility model provides a scanning and weighing integrated machine for logistics, which has the following beneficial effects:
1. the contact panel can be powered by the arranged lifting telescopic rod, so that the contact panel is slightly lifted to form a certain oblique angle, and the aim of facilitating blanking is fulfilled; the weighing bottom plate capable of being pulled can slide in and out according to the requirement, so that the weighing bottom plate can be conveniently moved, slid out and taken;
2. the angle adjustment can be carried out according to the needs through the soot blowing fan capable of rotating, so that a good soot blowing effect is achieved, the arc-shaped sliding blocks and the angle limiting sliding grooves on the soot blowing fan can carry out damping limiting on the rotating soot blowing fan, soot blowing is facilitated, friction force can be reduced through the connecting pulleys on the connecting sliding frame, the phenomenon of obstruction in the sliding process is avoided, the damping effect can be formed on the connecting sliding frame through the damping springs, and therefore a stable effect is achieved; can let laser scanner adjust the use as required through the laser scanner that can carry out the vertical slip regulation, avoid laser scanner high problem to lead to using not very convenient problem, can carry out the separation to some too objects that are close to when scanning through the spacing loop bar that sets up on the laser scanner and buffer rod, avoid causing the problem of damage to laser scanner's screen, avoid laser scanner's damage.
Drawings
FIG. 1 is a schematic side view of the present utility model;
FIG. 2 is a schematic diagram of the front structure of the present utility model;
FIG. 3 is a schematic view of the internal structure of the angle limiting frame of the present utility model;
FIG. 4 is a schematic view of a partial enlarged structure of the portion A in FIG. 3 according to the present utility model;
FIG. 5 is a schematic perspective view of a frame according to the present utility model;
fig. 6 is a schematic view of a partially enlarged structure at B in fig. 5 according to the present utility model.
In the figure: 1. scanning a weighing frame; 2. a weighing base plate; 3. a touch panel; 4. lifting the telescopic rod; 5. a rotating lever; 6. pulling the sliding block; 7. pulling the chute; 8. an induction bottom plate; 9. a placing frame body; 10. a dust fan frame; 11. a soot blowing fan; 12. a conveying frame; 13. a data control display; 14. an angle limiting frame; 15. an angle limiting chute; 16. an arc-shaped sliding block; 17. connecting the sliding frame; 18. a connecting pulley; 19. a damping spring; 20. a scanning frame; 21. a laser scanner; 22. a height adjusting lever; 23. a height adjusting chute; 24. a height adjusting slider; 25. a limit loop bar; 26. a buffer rod.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1 and 2, a scanning and weighing integrated machine for logistics includes: the weighing device comprises a scanning weighing frame 1, wherein a weighing base plate 2 is arranged in the scanning weighing frame 1, and a touch panel 3 is arranged above the weighing base plate 2; a dust fan frame 10 provided at one side of the weighing base plate 2, the dust fan frame 10 being provided with a soot blower fan 11 inside; a conveying frame 12 arranged at one side of the scanning weighing frame 1, and a data control display 13 connected with the outer wall of the scanning weighing frame 1; the rotating rod 5 is connected to the lower end face of the touch panel 3, lifting telescopic rods 4 are arranged on two sides of the rotating rod 5, the lifting telescopic rods 4 are movably connected with the touch panel 3, and the touch panel 3 is movably connected with the weighing bottom plate 2 through the rotating rod 5; the contact panel 3 can be powered through the arranged lifting telescopic rod 4, so that the contact panel 3 is slightly lifted to form a certain oblique angle, and the aim of facilitating blanking is fulfilled; the pulling slide block 6 is connected to the lower end face of the weighing base plate 2, a pulling slide groove 7 is connected to the outer wall of the pulling slide block 6, an induction base plate 8 is arranged below the weighing base plate 2, a placing frame 9 is arranged below the induction base plate 8, the weighing base plate 2 is fixedly connected with the pulling slide block 6, a sliding structure is formed between the weighing base plate 2 and the induction base plate 8 through the pulling slide block 6 and the pulling slide groove 7, and the external dimensions of the pulling slide block 6 and the pulling slide groove 7 are mutually matched; the weighing bottom plate 2 capable of being pulled out can slide in and out according to the requirement, so that the weighing bottom plate 2 can be conveniently moved out and taken.
As shown in fig. 3 and 4, a scanning and weighing integrated machine for logistics comprises: the dust blowing fan comprises an angle limiting frame 14, a dust blowing fan frame 10, an angle limiting chute 15, an arc-shaped sliding block 16, a plurality of connecting sliding frames 17, a connecting pulley 18, a damping spring 19, a dust blowing fan 11, a sliding structure and a sliding structure, wherein the angle limiting chute 15 is arranged in the angle limiting frame 14, the arc-shaped sliding block 16 is arranged in the angle limiting chute 15, the connecting sliding frames 17 are arranged in the arc-shaped sliding block 16, one ends of the connecting sliding frames 17 are connected with the connecting pulleys 18, the other ends of the connecting sliding frames 17 are connected with the damping springs 19, the dust blowing fan 11 is movably connected with the arc-shaped sliding blocks 16, the dust blowing fan 11 forms a sliding structure with the angle limiting chute 14 through the arc-shaped sliding blocks 16 and the angle limiting chute 15, and the arc-shaped sliding blocks 16 are mutually matched with each other in appearance size; the angle of the rotatable soot blowing fan 11 can be adjusted as required, so that a good soot blowing effect is achieved, the rotatable soot blowing fan 11 can be damped and limited through the arc-shaped sliding blocks 16 and the angle limiting sliding grooves 15 on the soot blowing fan 11, and soot blowing is facilitated; connect balladeur train 17 and connection pulley 18 swing joint, and connect balladeur train 17 and damping spring 19 threaded connection, and constitute elasticity extending structure between connection balladeur train 17 and the damping spring 19, angle limit frame 14 is convex structure, and angle limit frame 14 and dust fan frame 10 welding, and dust fan frame 10 and soot blower fan 11 swing joint, can reduce frictional force through connecting the connection pulley 18 on the balladeur train 17, thereby avoid the phenomenon that produces the hindrance in-process of sliding, can form the shock attenuation effect to connection balladeur train 17 through the damping spring 19 that sets up, thereby reach stable effect.
As shown in fig. 5 and 6, a scanning and weighing integrated machine for logistics comprises: the scanning frame 20 is arranged on the other side of the scanning weighing frame 1, the outer wall of the scanning frame 20 is connected with a height adjusting rod 22, one side of the scanning frame 20 is provided with a laser scanner 21, both sides of the height adjusting rod 22 are provided with height adjusting sliding grooves 23, the inside of the height adjusting sliding grooves 23 is provided with a height adjusting sliding block 24, one side of the outer wall of the laser scanner 21 is connected with a limit sleeve rod 25, and one end of the limit sleeve rod 25 is connected with a buffer rod 26; the laser scanner 21 is fixedly connected with the height adjusting slide block 24, the laser scanner 21 forms a height adjusting structure through the height adjusting slide block 24, the height adjusting slide groove 23 and the height adjusting rod 22, the limit sleeve rod 25 is in threaded connection with the laser scanner 21, a spring is arranged in the limit sleeve rod 25, and the buffer rod 26 forms an elastic telescopic structure through the spring and the limit sleeve rod 25; the laser scanner 21 can be adjusted and used according to the requirement by sliding the laser scanner 21 up and down, so that the problem that the use is not very convenient due to the problem of the height of the laser scanner 21 is avoided, and objects which are too close to each other can be blocked by the limiting sleeve rod 25 and the buffer rod 26 which are arranged on the laser scanner 21 when scanning is performed, so that the problem of damage to the screen of the laser scanner 21 is avoided, and the damage to the laser scanner 21 is avoided.
Working principle: when the scanning and weighing integrated machine is used, firstly, materials are conveyed through the conveying frame 12, then the materials are placed on the contact panel 3 in the scanning and weighing frame 1, after weighing, the lifting telescopic rod 4 is started, the lifting telescopic rod 4 is movably connected with the contact panel 3, the contact panel 3 generates acting force, the contact panel 3 is movably connected with the rotating rod 5, the contact panel 3 rotates, at the moment, the contact panel 3 forms an inclined plane, the materials are convenient to take in a sliding manner, when the weighing bottom plate 2 needs to be pulled, the weighing bottom plate 2 applies acting force, the weighing bottom plate 2 is fixedly connected with the pulling sliding block 6, the pulling sliding block 6 generates acting force under the action of the acting force, the pulling sliding block 6 slides on the sensing bottom plate 8 through the pulling sliding groove 7, when the placing surface needs to be cleaned, the angle of the soot blower fan 11 in the dust blower fan frame 10 on the placing frame body 9 is adjusted, the acting force is applied to the soot blower fan 11, the soot blower fan 11 is movably connected with the arc-shaped sliding block 16, the arc-shaped sliding block 16 generates the acting force, the arc-shaped sliding block 16 is welded with the damping spring 19, the damping spring 19 moves, the damping spring 19 is in threaded connection with the connecting sliding block 17, the connecting sliding block 17 moves, the connecting sliding block 17 is movably connected with the connecting sliding block 18, the moving connecting sliding block 18 finishes the sliding on the angle limiting frame 14 through the angle limiting sliding groove 15 under the action of friction force, when scanning is performed, the laser scanner 21 on the scanning frame 20 is firstly subjected to the height adjustment, the acting force is applied to the laser scanner 21, the laser scanner 21 is fixedly connected with the height adjusting sliding block 24, the acting force is generated by the height adjusting sliding block 24, the height adjusting slide block 24 slides on the height adjusting rod 22 through the height adjusting slide groove 23 under the action of the force, the sliding is locked through the bolt after the sliding is finished, and when the contact scanning is carried out, the limiting sleeve rod 25 and the buffer rod 26 can avoid the situation that the materials are too close to each other, so that an object collides with the screen of the laser scanner 21.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides a commodity circulation is with scanning all-in-one of weighing which characterized in that includes:
the scanning weighing frame (1), wherein a weighing bottom plate (2) is arranged in the scanning weighing frame (1), and a contact panel (3) is arranged above the weighing bottom plate (2);
a dust fan frame (10) which is arranged on one side of the weighing base plate (2), wherein a soot blowing fan (11) is arranged in the dust fan frame (10);
the conveying frame (12) is arranged at one side of the scanning weighing frame (1), and the outer wall of the scanning weighing frame (1) is connected with a data control display (13);
the scanning frame (20), it sets up the opposite side of scanning weighing frame (1), the outer wall connection of scanning frame (20) has altitude mixture control pole (22), one side of scanning frame (20) is provided with laser scanner (21), altitude mixture control spout (23) have all been seted up to the both sides of altitude mixture control pole (22), the inside of altitude mixture control spout (23) is provided with altitude mixture control slider (24), one side of laser scanner (21) outer wall is connected with spacing loop bar (25), the one end of spacing loop bar (25) is connected with buffer rod (26).
2. The machine according to claim 1, characterized in that said touch panel (3) is further provided with:
the rotating rod (5) is connected to the lower end face of the touch panel (3), and lifting telescopic rods (4) are arranged on two sides of the rotating rod (5).
3. The integrated machine for scanning and weighing for logistics according to claim 2, wherein the lifting telescopic rod (4) is movably connected with the contact panel (3), and the contact panel (3) is movably connected with the weighing bottom plate (2) through the rotating rod (5).
4. A machine as claimed in claim 1, wherein said weighing base (2) is further provided with:
pulling slider (6), it is connected in the lower terminal surface of weighing bottom plate (2), the outer wall connection of pulling slider (6) has pulling spout (7), the below of weighing bottom plate (2) is provided with response bottom plate (8), the below of response bottom plate (8) is provided with rack body (9).
5. The integrated machine for scanning and weighing for logistics according to claim 4, wherein the weighing base plate (2) is fixedly connected with the pulling slide block (6), the weighing base plate (2) forms a sliding structure through the pulling slide block (6) and the pulling slide groove (7) and the induction base plate (8), and the external dimensions of the pulling slide block (6) and the pulling slide groove (7) are mutually matched.
6. The all-in-one machine for scanning and weighing logistics according to claim 1, wherein said dust fan frame (10) is further provided with:
the dust fan frame comprises an angle limiting frame (14), wherein the angle limiting frame is arranged on two sides of the dust fan frame (10), an angle limiting chute (15) is formed in the angle limiting frame (14), an arc-shaped sliding block (16) is arranged in the angle limiting chute (15), a plurality of connecting sliding blocks (17) are arranged in the arc-shaped sliding block (16), one end of each connecting sliding block (17) is connected with a connecting pulley (18), and the other end of each connecting sliding block (17) is connected with a damping spring (19).
7. The integrated machine for scanning and weighing logistics according to claim 6, wherein the soot blowing fan (11) is movably connected with the arc-shaped sliding block (16), the soot blowing fan (11) forms a sliding structure through the arc-shaped sliding block (16) and the angle limiting sliding groove (15) and the angle limiting frame (14), and the outline dimensions of the arc-shaped sliding block (16) and the angle limiting sliding groove (15) are mutually matched.
8. The integrated machine for scanning and weighing logistics according to claim 6, wherein the connecting sliding frame (17) is movably connected with the connecting pulley (18), the connecting sliding frame (17) is in threaded connection with the damping spring (19), and an elastic telescopic structure is formed between the connecting sliding frame (17) and the damping spring (19).
9. The integrated machine for scanning and weighing logistics according to claim 6, wherein the angle limiting frame (14) is of a circular arc structure, the angle limiting frame (14) is welded with the dust fan frame (10), and the dust fan frame (10) is movably connected with the soot blowing fan (11).
10. The integrated machine for scanning and weighing for logistics according to claim 1, wherein the laser scanner (21) is fixedly connected with the height adjusting slide block (24), the laser scanner (21) forms a height adjusting structure through the height adjusting slide block (24) and the height adjusting slide groove (23) and the height adjusting rod (22), the limit sleeve rod (25) is in threaded connection with the laser scanner (21), a spring is arranged in the limit sleeve rod (25), and the buffer rod (26) forms an elastic telescopic structure through the spring and the limit sleeve rod (25).
CN202322184915.XU 2023-08-15 2023-08-15 Scanning and weighing integrated machine for logistics Active CN220437547U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322184915.XU CN220437547U (en) 2023-08-15 2023-08-15 Scanning and weighing integrated machine for logistics

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322184915.XU CN220437547U (en) 2023-08-15 2023-08-15 Scanning and weighing integrated machine for logistics

Publications (1)

Publication Number Publication Date
CN220437547U true CN220437547U (en) 2024-02-02

Family

ID=89702273

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322184915.XU Active CN220437547U (en) 2023-08-15 2023-08-15 Scanning and weighing integrated machine for logistics

Country Status (1)

Country Link
CN (1) CN220437547U (en)

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