CN211222177U - Flat gauze roll press - Google Patents

Flat gauze roll press Download PDF

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Publication number
CN211222177U
CN211222177U CN201921613150.4U CN201921613150U CN211222177U CN 211222177 U CN211222177 U CN 211222177U CN 201921613150 U CN201921613150 U CN 201921613150U CN 211222177 U CN211222177 U CN 211222177U
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sliding plate
sliding
plate
gauze
pressure
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CN201921613150.4U
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Chinese (zh)
Inventor
熊国胜
高中义
梅锋
余红春
张婉
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Wuhan Jianeryou Health Materials Co ltd
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Wuhan Jianeryou Health Materials Co ltd
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Abstract

The utility model discloses a gauze flatwise roll press, its technical scheme main points are: including workstation, setting frame on the workstation, be in the frame top drive actuating cylinder, the output shaft that drives actuating cylinder is vertical down and be connected with the briquetting, sliding connection has the sliding plate on the workstation, and the sliding plate is in between the both sides lateral wall of frame, and the slip path of sliding plate is equipped with two bearing grooves with briquetting looks adaptation in proper order along the slip direction of sliding plate under the briquetting on the sliding plate. When the pressing block extrudes the pressure-bearing groove which is right below the pressure-bearing groove, a worker can take out the gauze roll which is flattened from the corresponding pressure-bearing groove and put the gauze roll to be flattened again; through the alternate use of two bearing grooves, the press machine can still process in the process of taking and placing materials by workers, the time is fully utilized, and the improvement of the production efficiency is facilitated.

Description

Flat gauze roll press
Technical Field
The utility model relates to a press technical field, in particular to gauze flat roll press.
Background
After the gauze roll is processed, the gauze roll is cylindrical. In the medical industry, a gauze roll is generally placed at the back of a patient to play a role of padding. However, the cylindrical gauze is easy to roll when in use, and is inconvenient to be lifted. Therefore, the gauze roll needs to be packed and used after being flattened.
A common press machine is shown in fig. 4 and comprises a workbench 1, a frame 2 arranged on the workbench 1, and a driving cylinder 3 positioned at the top of the frame 2, wherein an output shaft of the driving cylinder 3 is vertically downward and is connected with a pressing block 4. The workman places cylindric gauze book in the center of workstation 1, starts driving cylinder 3 again, and briquetting 4 pushes down and flattens the gauze book.
After the gauze roll is flattened, the structure of the gauze roll is similar to that of the gauze roll which is formed by repeatedly folding the gauze, and the integral structure of the gauze roll is loose. Workers must take care when taking out the gauze roll, if the workers do not grab the gauze roll at the correct position, the gauze roll is easy to scatter and needs to be wound again, so that the workers can spend more time in the material taking process, and the press machine cannot be used in the time, so that the production efficiency is low.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims to provide a gauze flatwise roll press, it has the advantage that production efficiency is high.
The above technical purpose of the present invention can be achieved by the following technical solutions: the utility model provides a gauze flat roll press, includes the workstation, sets up the frame on the workstation, is in the frame top drive actuating cylinder, the output shaft that drives actuating cylinder is vertical down and is connected with the briquetting, sliding connection has the sliding plate on the workstation, the sliding plate is in between the both sides lateral wall of frame, and the slip path of sliding plate under the briquetting, be equipped with two bearing grooves with briquetting looks adaptation in proper order along the slip direction of sliding plate on the sliding plate.
Through the technical scheme, the two pressure bearing grooves can be used for placing the gauze rolls to be flattened, after the gauze roll in one pressure bearing groove is flattened, the sliding plate is pushed to push the pressure bearing groove out of the rack, the other pressure bearing groove enters the position under the pressing block from the outside of the rack, and when the pressing block extrudes the pressure bearing groove which is positioned under the current position, a worker can take out the gauze roll which is flattened from the corresponding pressure bearing groove and put the gauze roll to be flattened again; through the alternate use of two bearing grooves, the press machine can still process in the process of taking and placing materials by workers, the time is fully utilized, and the improvement of the production efficiency is facilitated.
Preferably, the bottom of the pressure-bearing groove is provided with two limiting protrusions, the two limiting protrusions are located at the middle position of the bottom of the pressure-bearing groove, and the two limiting protrusions are close to the two corresponding sides of the pressure-bearing groove along the sliding direction of the sliding plate.
Through the technical scheme, the cylindrical gauze roll is placed between the two limiting bulges, the possibility that the gauze roll rolls in the process that a worker pushes the sliding plate is reduced, the gauze roll can be fully extruded by the pressing block, the condition that the single side is pressed is not easy to occur, and the shape of the processed gauze roll meets the use requirement.
Preferably, the surface of the sliding plate, which is far away from the workbench, is provided with two abutting plates, the two pressure-bearing grooves and the rack are both positioned between the two abutting plates, the length direction of the abutting plates is perpendicular to the sliding direction of the sliding plate, and the length of the abutting plates is longer than the shortest distance between the side walls at two sides of the rack; when any supporting plate is abutted against the corresponding end part of the rack, the pressure bearing groove close to the abutted supporting plate is just positioned under the pressing block.
Through the technical scheme, the abutting plates can limit the moving distance of the sliding plate, so that the sliding plate can only slide back and forth within the distance range between the two abutting plates, and the sliding plate cannot be separated from the workbench in an unexpected situation; and the worker also does not need to pay special attention to the position between the pressure bearing groove and the pressing block when pushing the sliding plate, and the pushing of the sliding plate can be stopped as long as the abutting plate on one side of the pressure bearing groove to be extruded abuts against the rack.
Preferably, through holes penetrating through the sliding plate are formed in both ends of the sliding plate, inserting rods are inserted into the two through holes, one ends of the inserting rods are located below the sliding plate through the through holes, supporting caps are arranged at the other ends of the inserting rods, the cross area of each supporting cap is larger than the orifice area of each through hole, and inserting holes corresponding to the inserting rods are formed in both ends of the workbench; when any abutting plate abuts against the end part of the rack, the through hole close to the abutting plate is positioned right above the plug hole on the corresponding side.
Through above-mentioned technical scheme, support the board to the frame after, pass the through-hole with the inserted bar from the top down and insert corresponding spliced eye, make sliding plate and workstation realize relative fixed in the slip direction, reduce because of the unexpected removal of sliding plate and lead to flattening the back gauze roll shape and not conform to the condition appearance that the operation needs.
Preferably, the length of the sliding plate is longer than that of the workbench, and the sliding direction of the sliding plate is the same as that of the workbench; the cross section of the insertion rod is square, the through hole and the insertion hole are square holes which are matched, an inclined plane is arranged on the end part of the insertion rod, which is positioned below the sliding plate, the inclined plane on the insertion rod faces one side of the workbench, and guide surfaces which correspond to the inclined planes of the insertion rods on the corresponding sides are arranged on the end surfaces of the two ends of the workbench.
Through above-mentioned technical scheme, the surface area of workstation need not too big, reduce area, and square peg graft pole can not take place rotation by a wide margin after inserting the through-hole, the inclined plane of peg graft pole can be towards same one side all the time, the peg graft pole that is in outside the workstation is when moving to workstation one side, the inclined plane on the peg graft pole contacts earlier with the guide face of the workstation of corresponding end, the peg graft pole passes through the inclined plane and moves along the guide face, make things convenient for this tip of sliding plate to enter into the top of workstation.
Preferably, the side walls of the two abutting plates which are deviated from each other are provided with handles.
Through the technical scheme, the worker can utilize the handle to pull the abutting plate, the force application of the worker to the sliding plate is more labor-saving, the sliding plate can be moved more stably, the influence on the gauze roll is reduced, and the gauze roll can be stably placed in the pressure bearing groove.
Preferably, the side walls of the two sides of the rack are provided with sliding grooves, the sliding directions of the sliding grooves and the sliding plate are the same, the two sides of the sliding plate are provided with convex edges matched with the sliding grooves, and the sliding plate is connected to the rack in a sliding mode through the two convex edges.
Through above-mentioned technical scheme, the lateral wall restriction chimb of spout moves in vertical direction, avoids the one end of sliding plate to receive the other end that leads to the sliding plate after the pressure to upwarp, makes the briquetting can fully and accurately extrude the pressure-bearing groove in, avoids the sliding plate to appear local atress and be difficult to transmit the power to the workstation and lead to the impaired condition of sliding plate to appear.
Preferably, the frame is further connected with two protection plates in a sliding mode, the two protection plates are located at two ends of the frame respectively, a connecting rod is arranged between the protection plates and the pressing block, one end of the connecting rod is hinged to the pressing block, the other end of the connecting rod is hinged to the corresponding protection plate, a supporting block for supporting the protection plates is arranged on the position, close to the workbench, of the frame, and the supporting block is located above the convex edge.
Through the technical scheme, when the pressing block moves downwards, the protection plate is close to the workbench before the pressing block and encloses and blocks the machining area to which the pressing block is to move together with the rack, the phenomenon that a worker accidentally puts articles into the machining area in the stage is avoided, and the effect of reducing production accidents is achieved.
To sum up, the utility model discloses the beneficial effect who contrasts in prior art does:
1. by arranging the sliding plate, when the press machine carries out flat rolling processing on the gauze roll placed on one end of the sliding plate, workers can carry out loading and unloading operations on the other end of the sliding plate, so that the time is fully utilized, and the production efficiency is improved;
2. the sliding distance of the sliding plate is limited by arranging the abutting plate, so that a pressure-bearing groove to be processed can be accurately positioned under the pressing block, and the processed gauze roll meets the use requirement;
3. through setting up inserted bar and corresponding through-hole, spliced eye for the sliding plate can fix a position in the course of working, reduces the sliding plate and appears the possibility of removing, further improves the positioning accuracy of gauze book.
Drawings
FIG. 1 is a schematic view of the overall structure of the embodiment;
FIG. 2 is a side view of the embodiment;
FIG. 3 is a partial sectional view of the embodiment;
fig. 4 is a schematic structural diagram of the prior art.
Reference numerals: 1. a work table; 11. inserting holes; 2. a frame; 21. a chute; 22. a support block; 3. a driving cylinder; 4. briquetting; 5. a sliding plate; 51. a pressure-bearing groove; 52. a limiting bulge; 53. a through hole; 54. a convex edge; 6. a resisting plate; 61. a handle; 7. a plug rod; 71. a support cap; 8. a connecting rod; 9. and (4) a protective plate.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The utility model provides a gauze flat roll press, as shown in figure 1, comprises a workbench 1, the frame 2 of setting on workstation 1, be in the drive actuating cylinder 3 that drives at frame 2 top, the output shaft that drives actuating cylinder 3 is vertical down and be connected with briquetting 4, sliding connection has two guard plates 9 between the both sides lateral wall of frame 2, two guard plates 9 are parallel to each other and the equal perpendicular to frame 2's lateral wall, two guard plates 9 are located respectively on frame 2's both ends, all be equipped with connecting rod 8 between every guard plate 9 and the briquetting 4, connecting rod 8's one end articulates on briquetting 4 lateral wall towards corresponding guard plate 9, connecting rod 8's the other end articulates on corresponding guard plate 9, sliding connection has sliding plate 5 that is used for placing the gauze book on workstation 1.
Referring to fig. 1 and 2, the opposite surfaces of the side walls of the two sides of the frame 2 are provided with sliding grooves 21, and the length direction of the sliding grooves 21 is the same as the length direction of the workbench 1. The opposite surfaces of the side walls of the two sides of the rack 2 are also provided with supporting blocks 22 for supporting the protection plate 9, the two supporting blocks 22 on the side wall of each side of the rack 2 are provided with two supporting blocks 22 on the same side and are respectively close to the two ends of the rack 2, and all the supporting blocks 22 are positioned above the sliding grooves 21 and are close to the sliding grooves 21 on the corresponding sides.
Referring to fig. 1 and 2, the length of the sliding plate 5 is longer than that of the working table 1, the sliding direction of the sliding plate 5 is the same as the length direction of the sliding chute 21, the two sides of the sliding plate 5 are both provided with flanges 54 adapted to the sliding chute 21, and the two flanges 54 are respectively located in the sliding chutes 21 on the two sides of the frame 2. The sliding plate 5 is provided with a first abutting plate 6, two pressure-bearing grooves 51 and a second abutting plate 6 in sequence along the sliding direction of the sliding plate 5. When one pressure-bearing groove 51 is located on the table 1, the other pressure-bearing groove 51 is located outside the table 1. The notch of the pressure-bearing groove 51 is larger than the cross-sectional area of the flat gauze roll, two limiting bulges 52 are arranged on the bottom of the pressure-bearing groove 51, the two limiting bulges 52 are both positioned at the middle position of the bottom of the pressure-bearing groove 51, the two limiting bulges 52 are respectively close to the two corresponding sides of the pressure-bearing groove 51 along the sliding direction of the sliding plate 5, the limiting bulges 52 are long-strip-shaped, and the length direction of the limiting bulges 52 is perpendicular to the sliding direction of the sliding plate 5.
Referring to fig. 1 and 2, the resisting plate 6 is vertically connected to the sliding plate 5, the length direction of the resisting plate 6 is perpendicular to the sliding direction of the sliding plate 5, the length of the resisting plate 6 is longer than the shortest distance between the side walls of the two sides of the frame 2, and the side walls of the two resisting plates 6 which are away from each other are provided with handles 61. When any abutting plate 6 abuts against the corresponding end part of the frame 2, the pressure bearing groove 51 close to the abutting plate 6 is just positioned right below the pressing block 4.
Referring to fig. 1 and 3, through holes 53 penetrating through the sliding plate 5 are further provided at both ends of the sliding plate 5, and the two through holes 53 are respectively located at the sides of the two abutting plates 6 away from each other. Two through-holes 53 are the quad slit, and peg 7 has been pegged graft in the through-hole 53. The cross section of the plug rod 7 is square, one end of the plug rod 7 is located below the sliding plate 5 through the through hole 53, the other end of the plug rod 7 is provided with a supporting cap 71, the supporting cap 71 is a square plate, and the width of the end face of the supporting cap 71 is larger than the maximum width of the orifice of the through hole 53. The end part of the insertion rod 7 below the sliding plate 5 is provided with an inclined plane, and the inclined plane on the insertion rod 7 faces one side of the workbench 1.
Referring to fig. 3, two ends of the workbench 1 are respectively provided with an inserting hole 11 corresponding to the inserting rod 7, the inserting holes 11 are also square holes, and two end faces of the workbench 1 are respectively provided with a guide surface corresponding to the inclined surface of the corresponding side inserting rod 7. When any abutting plate 6 abuts on the end part of the frame 2, the through hole 53 close to the abutting plate 6 is positioned right above the plug hole 11 on the corresponding side.
In practice, two workers are respectively positioned at the two ends of the table 1, wherein one worker firstly puts the gauze roll to be processed into the adjacent pressure-bearing groove 51 and then pushes the sliding plate 5 to the opposite side. When the abutting plate 6 on the side contacts the frame 2, the pressure bearing groove 51 on the side is pushed to be right below the pressing block 4, and the inserting rod 7 on the side direction is automatically inserted into the corresponding inserting hole 11 of the workbench 1. The driving cylinder 3 is started to make the pressing block 4 start to extrude the gauze roll. While the pressure-bearing groove 51 on the other side is now outside the table 1, and the worker on the other side puts the roll of gauze to be processed into the pressure-bearing groove 51 on the corresponding side. After the pressing block 4 drives the protection plate 9 to reset, the worker pulls out the insertion rod 7 in the insertion hole 11, reversely moves the sliding plate 5, and enables the other pressure bearing groove 51 to enter the position right below the pressing block 4, and in the process that the pressing block 4 extrudes the other pressure bearing groove 51, the worker can take materials from the pressure bearing groove 51 which is just extruded and feed the materials again. The subsequent processing flow can repeat the steps, and the time for processing a batch of gauze rolls is greatly shortened.
The above description is only an exemplary embodiment of the present invention, and is not intended to limit the scope of the present invention, which is defined by the appended claims.

Claims (8)

1. The utility model provides a gauze flat roll press, includes workstation (1), sets up frame (2) on workstation (1), is in frame (2) top drive actuating cylinder (3), the output shaft that drives actuating cylinder (3) is vertical downwards and is connected with briquetting (4), characterized by: the workbench (1) is connected with a sliding plate (5) in a sliding mode, the sliding plate (5) is located between the side walls of the two sides of the rack (2), the sliding path of the sliding plate (5) passes through the position right below the pressing block (4), and two pressure bearing grooves (51) matched with the pressing block (4) are sequentially formed in the sliding plate (5) along the sliding direction of the sliding plate (5).
2. The gauze edgewise roll press of claim 1, characterized in that: the pressure-bearing groove is characterized in that two limiting protrusions (52) are arranged on the bottom of the pressure-bearing groove (51), the two limiting protrusions (52) are located in the middle of the bottom of the pressure-bearing groove (51), and the two limiting protrusions (52) are close to the two corresponding sides of the pressure-bearing groove (51) respectively along the sliding direction of the sliding plate (5).
3. The gauze edgewise roll press of claim 1, characterized in that: the surface of the sliding plate (5) departing from the workbench (1) is provided with two abutting plates (6), the two pressure-bearing grooves (51) and the rack (2) are both positioned between the two abutting plates (6), the length direction of the abutting plates (6) is vertical to the sliding direction of the sliding plate (5), and the length of the abutting plates (6) is longer than the shortest distance between the side walls at two sides of the rack (2); when any abutting plate (6) abuts against the corresponding end part of the rack (2), the pressure bearing groove (51) close to the abutting plate (6) is just positioned under the pressing block (4).
4. The gauze edgewise roll press of claim 3, characterized in that: through holes (53) penetrating through the sliding plate (5) are formed in the two ends of the sliding plate (5), inserting rods (7) are inserted into the two through holes (53), one ends of the inserting rods (7) are located below the sliding plate (5) through the through holes (53), supporting caps (71) are arranged at the other ends of the inserting rods (7), the cross area of each supporting cap (71) is larger than the orifice area of each through hole (53), and inserting holes (11) corresponding to the inserting rods (7) are formed in the two ends of the workbench (1) respectively; when any abutting plate (6) abuts against the end part of the rack (2), the through hole (53) close to the abutting plate (6) is positioned right above the plug hole (11) on the corresponding side.
5. The gauze edgewise roll press of claim 4, characterized in that: the length of the sliding plate (5) is longer than that of the workbench (1), and the sliding direction of the sliding plate (5) is the same as that of the workbench (1); the cross section of the insertion rod (7) is square, the through hole (53) and the insertion hole (11) are square holes matched with each other, an inclined plane is arranged at the end part of the insertion rod (7) below the sliding plate (5), the inclined plane on the insertion rod (7) faces one side of the workbench (1), and guide surfaces corresponding to the inclined planes of the insertion rods (7) on the corresponding sides are arranged on the end surfaces of the two ends of the workbench (1).
6. The gauze edgewise roll press of claim 3, characterized in that: the side walls of the two abutting plates (6) which are deviated from each other are provided with handles (61).
7. The gauze edgewise roll press of claim 1, characterized in that: the side wall opposite surfaces of two sides of the rack (2) are respectively provided with a sliding chute (21), the sliding chutes (21) and the sliding plate (5) have the same sliding direction, two sides of the sliding plate (5) are respectively provided with convex edges (54) matched with the sliding chutes (21), and the sliding plate (5) is connected to the rack (2) in a sliding manner through the two convex edges (54).
8. The gauze edgewise roll press of claim 7, characterized in that: still sliding connection has two guard plates (9) on frame (2), and two guard plates (9) are located respectively on the both ends of frame (2), be equipped with connecting rod (8) between guard plate (9) and briquetting (4), the one end of connecting rod (8) articulates on briquetting (4), and the other end of connecting rod (8) articulates on corresponding guard plate (9), frame (2) are equipped with supporting shoe (22) that support guard plate (9) on being close to the position on workstation (1), supporting shoe (22) are in the top of chimb (54).
CN201921613150.4U 2019-09-24 2019-09-24 Flat gauze roll press Active CN211222177U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921613150.4U CN211222177U (en) 2019-09-24 2019-09-24 Flat gauze roll press

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921613150.4U CN211222177U (en) 2019-09-24 2019-09-24 Flat gauze roll press

Publications (1)

Publication Number Publication Date
CN211222177U true CN211222177U (en) 2020-08-11

Family

ID=71913436

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921613150.4U Active CN211222177U (en) 2019-09-24 2019-09-24 Flat gauze roll press

Country Status (1)

Country Link
CN (1) CN211222177U (en)

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