CN112010039B - Glass transportation frame convenient to stack fixedly - Google Patents

Glass transportation frame convenient to stack fixedly Download PDF

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Publication number
CN112010039B
CN112010039B CN202010689393.7A CN202010689393A CN112010039B CN 112010039 B CN112010039 B CN 112010039B CN 202010689393 A CN202010689393 A CN 202010689393A CN 112010039 B CN112010039 B CN 112010039B
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China
Prior art keywords
frame
pressing plate
fixed
threaded pipe
rod
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CN202010689393.7A
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CN112010039A (en
Inventor
李馨隆
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Qingdao Fusion Photoelectric Technology Co Ltd
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Qingdao Fusion Photoelectric Technology Co Ltd
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Priority to CN202010689393.7A priority Critical patent/CN112010039B/en
Publication of CN112010039A publication Critical patent/CN112010039A/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
    • B65G49/00Conveying systems characterised by their application for specified purposes not otherwise provided for
    • B65G49/05Conveying systems characterised by their application for specified purposes not otherwise provided for for fragile or damageable materials or articles
    • B65G49/06Conveying systems characterised by their application for specified purposes not otherwise provided for for fragile or damageable materials or articles for fragile sheets, e.g. glass
    • B65G49/062Easels, stands or shelves, e.g. castor-shelves, supporting means on vehicles

Abstract

The invention discloses a glass transportation frame convenient for stacking and fixing, which comprises a bearing frame, an upper clamping mechanism, a lower clamping mechanism and a side clamping mechanism, wherein the bearing frame is formed by a rectangular underframe, a guide sleeve, a guide rod and a U-shaped top frame, three bottom inclined frames are arranged on the rectangular underframe, a back inclined frame is vertically fixed on the bottom inclined frames, the upper clamping mechanism comprises a first threaded pipe, a first screw rod, a first rotating handle, an upper pressing plate, a first sleeve, a sliding rod, an inclined pressing plate, a second threaded pipe, a second screw rod, a second rotating handle and a first limiting ring, the lower clamping mechanism comprises a third screw rod, a third rotating handle, a nut seat, a sliding rod, a sliding block, a lower pressing plate and a connecting rod, and the side clamping mechanism comprises a lantern ring, a second limiting ring, a first baffle plate, a side pressing plate, a third threaded pipe, a fourth screw rod, a fourth rotating handle, a second sleeve and a third sliding rod. The invention has the advantages of simple structure and strong practicability.

Description

Glass transportation frame convenient to stack fixedly
Technical Field
The invention relates to the technical field of glass transportation equipment, in particular to a glass transportation frame convenient to stack and fix.
Background
The glass is formed by fusing silica and other chemical substances together, and the main production raw materials are as follows: soda ash, limestone, quartz, and the like. In the conventional transportation method of the glass substrate, after the glass substrate is placed in the transportation container, the glass substrate needs to be fixed in the transportation container by using a rope, or the glass substrate needs to be fixed in the transportation container by using a box body, so that the glass substrate is prevented from being damaged due to collision and scratch in the transportation process. However, the method of fixing the glass substrate to the transportation container by using the rope or the box body cannot stably position the glass substrate in the transportation container, and the glass substrate may be damaged by collision and scratch during transportation. The sizes of the glass models are different, the stacking number is different, the containers suitable for transportation are also different, and the transportation device for the glass with different sizes and models is not satisfied. Therefore, it is an important issue to firmly position the glass substrate in the transportation container so that the glass substrate is not damaged by collision and scratch during transportation.
Disclosure of Invention
The invention aims to solve the problems and designs a glass transport frame convenient to stack and fix.
The technical scheme of the invention is that the glass transportation frame convenient to stack and fix comprises a bearing frame, an upper clamping mechanism, a lower clamping mechanism and side clamping mechanisms, wherein the bearing frame is composed of a rectangular bottom frame, a guide sleeve, a guide rod and a U-shaped top frame, the guide sleeve is vertically fixed at the edges of four corners at the upper end of the rectangular bottom frame, the guide rod is inserted in the guide sleeve, the upper end of the guide rod is fixedly connected with the U-shaped top frame, cross beams are fixed among the guide sleeves at the rear end of the rectangular bottom frame, three bottom inclined frames are arranged on the rectangular bottom frame, a back inclined frame is vertically fixed on the bottom inclined frames, and the upper ends of the back inclined frames are fixedly connected with the cross beams;
the U-shaped top frame is internally provided with a first threaded pipe which is in threaded connection with the first threaded pipe, the lower end of the first threaded pipe penetrates through the cross beam and is vertically installed on the rectangular bottom frame through a first bearing, the upper end of the first threaded pipe is provided with a first rotating handle, an upper pressure plate is fixed on the U-shaped top frame, the other end of the upper pressure plate is provided with a notch, an inclined pressure plate is arranged at the notch, two first sleeves which are symmetrically distributed are fixed on the upper pressure plate, a first sliding rod is inserted into the first sleeves, one end of the first sliding rod is fixed on the inclined pressure plate, a second threaded pipe is fixed on the upper pressure plate and is positioned between the two first sliding rods, a second threaded pipe which is in threaded connection with the second threaded pipe is installed in the second threaded pipe, one end, which is not provided with threads, penetrates through the inclined pressure plate and is provided with the second rotating handle, and first limiting rings are arranged on the second threaded pipe and positioned on two sides of the inclined pressure plate;
the lower clamping mechanism comprises a third screw rod positioned in the bottom inclined frame, the third screw rod is positioned in the bottom inclined frame in the middle, one end of the third screw rod extends into the bottom inclined frame cavity and is installed in the bottom inclined frame through a second bearing, the other end of the third screw rod extends out of the bottom inclined frame and is provided with a third rotating handle, a nut seat is sleeved on the part of the third screw rod positioned in the bottom inclined frame, second slide rods are fixed in the bottom inclined frame on two sides of the third screw rod, a sliding block is sleeved on the second slide rods, a lower pressing plate is arranged above the bottom inclined frame, three connecting rods are fixed at the lower end of the lower pressing plate, and the connecting rods are respectively and fixedly connected with the nut seat and the sliding block;
the side clamping mechanism comprises a sleeve ring sleeved on the guide sleeve and a second limiting ring fixed on the guide sleeve, the sleeve ring and the second limiting ring are both located on the guide sleeve at the left rear end of the bearing frame, the number of the sleeve ring and the second limiting ring is two, the sleeve ring is located between the second limiting rings, one end of the sleeve ring is fixed with a first baffle, a third bearing is embedded in the center of the first baffle, a side pressure plate is arranged on one side of the first baffle, a third threaded pipe is fixed in the center of the side pressure plate, a fourth screw connected with the third threaded pipe in a threaded manner is arranged in the third threaded pipe, one end, without tapping threads, of the fourth screw penetrates through the third bearing and is provided with a fourth rotating handle, two second sleeves are fixed on the first baffle, the second sleeves are located on two sides of the fourth screw, a third sliding rod is sleeved in the second sleeves, and the third sliding rod is fixedly connected with the side pressure plate.
The first threaded pipe is fixedly connected with the U-shaped top frame through a reinforcing rib.
And a second baffle is fixed between the guide sleeves and is positioned between the two guide sleeves at the right end of the rectangular underframe.
The inclined pressing plate has the same inclination angle with the lower pressing plate and the back inclined frame, and the bottom inclined frame has the same inclination angle with the U-shaped top frame and the upper pressing plate.
The universal wheels are arranged at the four corners of the lower end of the rectangular underframe and have a self-locking function.
And damping rubber pads are arranged on the inclined pressing plate, the back inclined frame, the bottom inclined frame, the upper pressing plate, the lower pressing plate, the side pressing plate and the second baffle.
The first baffle is connected with a guide sleeve at the left front end of the bearing frame through buckling and locking.
The bottom inclined frame is provided with an opening for the connecting rod to extend out, and the connecting rod extending opening is fixedly connected with the lower pressing plate.
The glass transportation frame convenient to stack and fix, which is manufactured by the technical scheme of the invention, presses glass through the upper pressing plate, the inclined pressing plate, the lower pressing plate and the side pressing plate, so that the glass is kept fixed, the upper pressing plate, the inclined pressing plate, the lower pressing plate and the side pressing plate can be adjusted, the glass transportation frame is suitable for glass of different models and sizes, the stacking and transportation of a plurality of pieces of glass are convenient, and the stability of the transportation process is ensured.
Drawings
FIG. 1 is a schematic structural view of a glass transportation frame convenient for stacking and fixing according to the invention;
FIG. 2 is a three-dimensional view of the load-bearing frame of the present invention;
FIG. 3 is a rear view of the upper clamping mechanism of the present invention;
FIG. 4 is a top view of the upper clamping mechanism of the present invention;
FIG. 5 is a schematic view of the lower clamping mechanism of the present invention;
FIG. 6 is a partial schematic view of the side clamping mechanism of the present invention;
in the figure, 1, a rectangular chassis; 2. a guide sleeve; 3. a guide bar; 4. a U-shaped top frame; 5. a cross beam; 6. a bottom bevel frame; 7. a back bevel frame; 8. a first threaded pipe; 9. a first screw; 10. a first swing handle; 11. an upper pressure plate; 12. a notch; 13. an inclined pressing plate; 14. a first slide bar; 15. a second threaded pipe; 16. a second screw; 17. a second swing handle; 18. a first limit ring; 19. a third screw; 20. a third swing handle; 21. a nut seat; 22. a second slide bar; 23. a slider; 24. a first sleeve; 25. a lower pressing plate; 26. a connecting rod; 27. a collar; 28. a second stop collar; 29. a first baffle plate; 30. side pressing plates; 31. a third threaded pipe; 32. a fourth rotating handle; 33. reinforcing ribs; 34. a second baffle; 35. a universal wheel; 36. buckling and locking; 37. a fourth screw; 38. a second sleeve; 39. a third slide bar.
Detailed Description
The invention is described in detail below with reference to the accompanying drawings, as shown in FIGS. 1-5:
in this embodiment, when the glass needs to be transported, the buckle latch 36 is opened, the first baffle 29 is rotated to the outside, so that the first baffle 29 does not block the glass inlet, then the glass is transported into the bearing frame, the bottom of the glass is placed on the rectangular bottom frame 1, the right side of the glass is attached to the second baffle 34, the back of the glass leans against the inclined frame 7, the glass is obliquely placed on the bearing frame to increase the stability of the glass, when the glass is completely placed in the bearing frame, the first rotary handle 10 is manually screwed, the first screw 9 rotates along with the first rotary handle 10, the first threaded pipe 8 converts the rotary motion of the first screw 9 into a linear motion and drives the U-shaped top frame 4 to move downwards, the guide rod 3 stably descends in the guide sleeve 2, when the upper pressing plate 11 descends and presses the glass, the first rotary handle 10 stops being screwed, and the upper pressing plate 11 fixes the upper end of the glass; then screwing a second rotating handle 17, wherein the second rotating handle 17 rotates to drive a second screw 16 to rotate, the second screw 16 rotates in a second threaded pipe 15 and drives an inclined pressing plate 13 to approach an upper pressing plate, a first limiting ring 18 on the second screw 16 pushes the inclined pressing plate 13 to move at the position of a gap 12, so that the inclined pressing plate 13 does not rotate along with the second screw 16 and only moves linearly, a second sliding rod 22 moves along with the inclined pressing plate 13 and moves in a first sleeve 24, the inclined pressing plate 13 can stably move linearly, when the inclined pressing plate 13 moves to a glass panel and presses glass, screwing of the second rotating handle 17 is stopped, and the inclined pressing plate 13 presses the upper inclined surface of the glass; then, the third rotating handle 20 is screwed, the third screw rod 19 rotates in the bottom inclined frame 6 along with the rotation of the third rotating handle 20, the nut seat 21 converts the rotation motion of the third screw rod 19 into linear motion and drives the lower pressing plate 25 to move through the connecting rod 26, the sliding block 23 moves on the sliding block along with the movement of the lower pressing plate 25, so that the lower pressing plate 25 can move stably, when the lower pressing plate 25 moves to the position of the glass panel and presses the glass, the third rotating handle 20 stops being screwed, and the lower part of the inclined surface of the glass is pressed by the lower pressing plate 25; then, the first baffle plate 29 is locked on the guide sleeve 2 through the snap lock 36, the fourth rotary handle 32 is screwed, the fourth screw rod 37 rotates along with the rotation of the fourth rotary handle 32, the third threaded pipe 31 converts the rotation motion of the fourth screw rod 37 into a linear motion and pushes the first baffle plate 29 to move, the third sliding rod 39 slides in the second sleeve 38, so that the first baffle plate 29 moves smoothly, when the first baffle plate 29 moves to the left end of the glass and presses the glass, the fourth rotary handle 32 stops rotating, the first baffle plate 29 and the second baffle plate 34 clamp the two sides of the glass, and therefore, the two sides, the upper end and the panel of the glass are fixed; the carrying frame is pushed, i.e. transported via the universal wheels 35.
The technical solutions described above only represent the preferred technical solutions of the present invention, and some possible modifications to some parts of the technical solutions by those skilled in the art all represent the principles of the present invention, and fall within the protection scope of the present invention.

Claims (8)

1. A glass transportation frame convenient to stack and fix comprises a bearing frame, an upper clamping mechanism, a lower clamping mechanism and a side clamping mechanism, and is characterized in that the bearing frame is composed of a rectangular underframe (1), guide sleeves (2), guide rods (3) and a U-shaped top frame (4), the guide sleeves (2) are vertically fixed at the edges of four corners of the upper end of the rectangular underframe (1), the guide rods (3) are inserted in the guide sleeves (2), the upper ends of the guide rods (3) are fixedly connected with the U-shaped top frame (4), cross beams (5) are fixed between the guide sleeves (2) positioned at the rear end of the rectangular underframe (1), three bottom inclined frames (6) are arranged on the rectangular underframe (1), back inclined frames (7) are vertically fixed on the bottom inclined frames (6), and the upper ends of the back inclined frames (7) are fixedly connected with the cross beams (5);
the upper clamping mechanism comprises a first threaded pipe (8) fixed at the center of a U-shaped top frame (4), a first screw (9) in threaded connection with the first threaded pipe (8) is arranged in the first threaded pipe (8), the lower end of the first screw (9) penetrates through a cross beam (5) and is vertically installed on a rectangular bottom frame (1) through a first bearing, a first rotating handle (10) is installed at the upper end of the first screw (9), an upper pressing plate (11) is fixed on the U-shaped top frame (4), a notch (12) is arranged at the other end of the upper pressing plate (11), an inclined pressing plate (13) is arranged at the notch (12), two first sleeves (24) which are symmetrically distributed are fixed on the upper pressing plate (11), a first sliding rod (14) is inserted in the first sleeves (24), one end of the first sliding rod (14) is fixed on the inclined pressing plate (13), a second threaded pipe (15) is fixed on the upper pressing plate (11), and the second threaded pipe (15) is located between the two first sliding rods (14), a second screw (16) in threaded connection with the second threaded pipe (15) is arranged in the second threaded pipe (15), one end, which is not threaded, of the second screw (16) penetrates through the inclined pressing plate (13) and is provided with a second rotating handle (17), and first limiting rings (18) are arranged on the second screw (16) and positioned on two sides of the inclined pressing plate (13);
the lower clamping mechanism comprises a third screw rod (19) positioned in a bottom inclined frame (6), the third screw rod (19) is positioned in the bottom inclined frame (6) in the middle, one end of the third screw rod (19) extends into a cavity of the bottom inclined frame (6) and is installed in the bottom inclined frame (6) through a second bearing, the other end of the third screw rod (19) extends out of the bottom inclined frame (6) and is provided with a third rotating handle (20), a nut seat (21) is sleeved on the part, positioned in the bottom inclined frame (6), of the third screw rod (19), second sliding rods (22) are fixed in the bottom inclined frame (6) on two sides of the third screw rod (19), sliding blocks (23) are sleeved on the second sliding rods (22), a lower pressing plate (25) is arranged above the bottom inclined frame (6), three connecting rods (26) are fixed at the lower end of the lower pressing plate (25), and the connecting rods (26) are respectively and fixedly connected with the nut seat (21) and the sliding blocks (23);
the lateral clamping mechanism comprises a lantern ring (27) sleeved on the guide sleeve (2) and second limiting rings (28) fixed on the guide sleeve (2), the lantern ring (27) and the second limiting rings (28) are both positioned on the guide sleeve (2) at the left rear end of the bearing frame, the number of the lantern ring (27) and the number of the second limiting rings (28) are two, the lantern ring (27) is positioned between the second limiting rings (28), one end of the lantern ring (27) is fixed with a first baffle (29), a third bearing is embedded in the center of the first baffle (29), one side of the first baffle (29) is provided with a lateral pressure plate (30), the center of the lateral pressure plate (30) is fixed with a third threaded pipe (31), a fourth threaded rod (37) in threaded connection with the third threaded pipe (31) is arranged in the third threaded pipe (31), one end of the fourth threaded rod (37), which is not threaded, penetrates through the third bearing and is provided with a fourth rotating handle (32), two second sleeves (38) are fixed on the first baffle (29), the second sleeves (38) are positioned at two sides of the fourth screw (37), a third sliding rod (39) is sleeved in the second sleeves (38), and the third sliding rod (39) is fixedly connected with the side pressing plate (30).
2. Glass carrier for facilitating stacking and fixing according to claim 1, c h a r a c t e r i z e d in that the first threaded tube (8) is fixedly connected to the U-shaped top frame (4) by means of strengthening ribs (33).
3. A glass carrier frame for facilitating stacking and fixing according to claim 2, characterized in that a second baffle (34) is fixed between the guide sleeves (2), the second baffle (34) being located between the two guide sleeves (2) at the right end of the rectangular base frame (1).
4. A glass carrier frame for facilitating stacking and fixing of glass sheets, according to claim 1, characterized in that said angle of inclination of said oblique clamps (13) is the same as that of lower clamp (25) and back-oblique clamp (7), and that of inclination of bottom-oblique clamp (6) is the same as that of U-shaped top-clamp (4) and top-clamp (11).
5. The glass transportation frame convenient for stacking and fixing as claimed in claim 1, wherein universal wheels (35) are arranged at four corner edges of the lower end of the rectangular bottom frame (1), and the universal wheels (35) are universal wheels (35) with self-locking function.
6. The glass transportation frame convenient for stacking and fixing as claimed in claim 3, wherein the inclined pressing plate (13), the back inclined frame (7), the bottom inclined frame (6), the upper pressing plate (11), the lower pressing plate (25), the side pressing plates (30) and the second baffle plate (34) are provided with shock-absorbing rubber pads.
7. A glass carrier rack for stack securing according to claim 1, characterised in that the first stop (29) is connected to the guide sleeve (2) at the left front end of the carrying frame by means of a snap lock (36).
8. A glass transportation frame convenient for stacking and fixing as claimed in claim 1, characterized in that the bottom oblique frame (6) is provided with an opening for the connection rod (26) to extend out, and the connection rod (26) extends out of the opening and is fixedly connected with the lower pressure plate (25).
CN202010689393.7A 2020-07-17 2020-07-17 Glass transportation frame convenient to stack fixedly Active CN112010039B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202010689393.7A CN112010039B (en) 2020-07-17 2020-07-17 Glass transportation frame convenient to stack fixedly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202010689393.7A CN112010039B (en) 2020-07-17 2020-07-17 Glass transportation frame convenient to stack fixedly

Publications (2)

Publication Number Publication Date
CN112010039A CN112010039A (en) 2020-12-01
CN112010039B true CN112010039B (en) 2022-01-18

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Application Number Title Priority Date Filing Date
CN202010689393.7A Active CN112010039B (en) 2020-07-17 2020-07-17 Glass transportation frame convenient to stack fixedly

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Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4274394B2 (en) * 1999-06-14 2009-06-03 大日本印刷株式会社 Glass substrate laminate transporter
CN102442495A (en) * 2010-09-30 2012-05-09 旭硝子株式会社 Plate glass packing box, as well as packing method, unpacking method and unpacking device for plate glass packing box
CN207738086U (en) * 2017-11-14 2018-08-17 江苏飞天玻璃实业有限公司 A kind of glass transfer frame
CN208429389U (en) * 2018-07-18 2019-01-25 福建省翰晟科技有限公司 A kind of plane mirror is packed for breakage-proof scratch resistant cabinet

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Effective date of registration: 20211231

Address after: 266000 room 3-3025, No. 3, dagongdao Road, Huangdao District, Qingdao City, Shandong Province

Applicant after: Qingdao fusion Photoelectric Technology Co.,Ltd.

Address before: 257300 Dongying Vocational College of science and technology, No. 1 Wenhua Road, Dawang Town, Guangrao County, Dongying City, Shandong Province

Applicant before: Li Xinlong

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