Automatic processing equipment for electrocardio electrode and processing technology thereof
By using the limiting and multi-blade cutting technology of the automatic ECG electrode processing equipment, the problems of adhesion and deviation during the electrode cutting process have been solved, achieving stable and efficient electrode cutting, and improving production efficiency and equipment practicality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-28
- Publication Date
- 2026-04-10
AI Technical Summary
Existing ECG electrode cutting equipment is prone to causing conductive nonwoven fabric to stick together and electrode material to deviate, affecting production efficiency and cutting quality.
An automated processing device for electrocardiogram (ECG) electrode pads is used, including a cutting table, a winding roller, a limiting plate, and multiple adjustable annular cutting blades. The limiting plate limits the electrode pad raw material, and the position of the cutting blades is adjusted by a rotating shaft and an arc plate to achieve the cutting of electrode pads of different sizes.
It improves the stability and efficiency of electrode sheet cutting, avoids deviation and vibration of electrode sheet raw materials, enhances the practicality and convenience of cutting equipment, and improves production efficiency.
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Figure CN117283643B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of heart electrode patch processing, in particular to a heart electrode patch automatic processing equipment and a processing technology thereof. BACKGROUND
[0002] Electrode patches are various, including massage electrode patches, physiotherapy electrode patches, conductive electrode patches, self-adhesive electrode patches, adhesive electrode patches, non-woven electrode patches, electrocardiogram electrode patches, medical electrode patches, silica gel electrode patches, heating electrode patches, breast enhancement electrode patches, etc.; among them, electrocardiogram electrode patches are electrode patches for electrocardiogram monitoring, replacing ordinary electrocardiogram suction cups and electrode clamps, and can be used for long-term detection of human body electrocardiogram, and compared with ordinary suction cups, electrode patches are soft and adhesive, can be stably and fixedly placed on the corresponding skin part of the human body, and will not fall off due to changes in patient's body position, activities, sweating and other conditions, and are relatively stable, which can help doctors to record the electrocardiogram activities of patients in time and accurately.
[0003] In the production of electrocardiogram electrode patches, the metal buckle needs to be connected with the conductive non-woven fabric, and the electrode patch on the conductive non-woven fabric needs to be cut down during processing. At present, most of the electrocardiogram electrode patches on the market are disc-shaped.
[0004] Most of the cutting equipment in the prior art is single and vertically downwardly moves the shearing knife driven by the telescopic rod to cut the electrode patch, which is easy to cause the conductive non-woven fabric on the electrode patch to stick together and the cutting to be incomplete. Moreover, in the process of cutting the electrode patch, the electrode patch is not limited in the prior art, and when cutting, the electrode patch raw material may deviate, which affects the production and processing efficiency.
[0005] In view of the above, the present application provides an electrocardiogram electrode patch automatic processing equipment and a processing technology thereof to improve the above-mentioned technical problems. SUMMARY
[0006] In order to make up for the deficiencies of the prior art, the present application provides an electrocardiogram electrode patch automatic processing equipment; the automatic processing equipment comprises an electrocardiogram electrode patch cutting device, and the cutting device comprises a cutting table and a winding roller, the winding roller is arranged at one end of the cutting table, and the cutting table comprises:
[0007] A support plate is arranged above the cutting table through a support, and the lower end face of the support plate is provided with a telescopic device;
[0008] A first plate is arranged at the lower end of the telescopic device, and a plurality of first columns are uniformly arranged below the first plate through springs;
[0009] A first annular groove is arranged at the lower end of each first column;
[0010] A first ring-shaped cutting knife is arranged below the first plate, the upper end of the first ring-shaped cutting knife is provided with two adjusting plates, the upper end of the adjusting plate is connected with the lower end of the first plate, the number of the first ring-shaped cutting knives is the same as the number of the first columns, and the lower end of the first ring-shaped cutting knife is located inside the first ring-shaped groove;
[0011] A limiting plate is arranged at the upper end of the cutting table, and the limiting plate is used for limiting the cutting of the electrode sheet raw material;
[0012] According to a preferred scheme of the present application, the lower end of each first column is provided with a second ring-shaped groove and a third ring-shaped groove, the sizes of the first ring-shaped groove, the second ring-shaped groove and the third ring-shaped groove are as follows: the size of the first ring-shaped groove is smaller than that of the second ring-shaped groove, and the size of the second ring-shaped groove is smaller than that of the third ring-shaped groove.
[0013] According to a preferred scheme of the present application, the lower end of the first plate is provided with a second ring-shaped cutting knife and a third ring-shaped cutting knife, the lower end of the second ring-shaped cutting knife extends into the second ring-shaped groove, the lower end of the third ring-shaped cutting knife is located inside the third ring-shaped groove, the upper end of each of the first ring-shaped cutting knife, the second ring-shaped cutting knife and the third ring-shaped cutting knife is provided with an adjusting plate, the upper end of the adjusting plate penetrates through the first plate and is in sliding connection with the first plate, and the upper end of each of the first ring-shaped cutting knife, the second ring-shaped cutting knife and the third ring-shaped cutting knife is located above the first plate.
[0014] The adjusting plates on the first ring-shaped cutting knife, the second ring-shaped cutting knife and the third ring-shaped cutting knife are eccentrically distributed, and an arc surface is formed on one side of each adjusting plate.
[0015] The upper end of the first plate is provided with a rotating shaft, and an arc-shaped plate is arranged at the outer ring of the rotating shaft, when the rotating shaft rotates, the arc-shaped plate sequentially contacts the adjusting plates on the first ring-shaped cutting knife, the second ring-shaped cutting knife and the third ring-shaped cutting knife.
[0016] According to a preferred scheme of the present application, the upper end of each arc-shaped plate on the rotating shaft is provided with a rotating column, the upper end of the rotating column is provided with a connecting rod, and the connecting rod is in rotating connection with each rotating column.
[0017] According to a preferred scheme of the present application, a plurality of strip-shaped grooves are uniformly arranged in the cutting table, the number of the strip-shaped grooves is the same as the number of the first columns, a collecting plate is in sliding connection with the inside of each strip-shaped groove, a plurality of column-shaped grooves are uniformly arranged on the collecting plate, the diameter of each column-shaped groove is 1-2 cm larger than the diameter of the first column, a placing groove is arranged on the upper end surface of the cutting table, the placing groove is located directly below the first column, the placing groove is in communication with the strip-shaped groove, and the column-shaped groove coincides with the placing groove when the strip-shaped groove moves.
[0018] The cutting table is provided with two adjusting grooves, and the strip-shaped groove is located between the two adjusting grooves; a sliding plate is slidably connected in the adjusting grooves, and the sliding plate is fixedly connected with the collecting plate;
[0019] The lower end of the first plate is provided with a right-angle rod, the lower end of the right-angle rod is provided with an adjusting column, a hinged plate is hinged to the adjusting column through a torsional spring, and the minimum angle between the hinged plate and the right-angle rod is 30°; the end of the hinged plate away from the right-angle rod is made of rubber.
[0020] As a preferred scheme of the application, the lower end of the sliding plate is provided in a sawtooth shape.
[0021] As a preferred scheme of the application, the cylindrical groove penetrates the collecting plate, and the cutting table is provided below the side close to the right-angle rod with a collecting box.
[0022] An automatic processing technology for an electrocardio electrode piece, which is applicable to the automatic processing equipment for the electrocardio electrode piece, comprises the following steps.
[0023] S1: First, the electrocardio electrode piece cutting raw material is pulled out and placed on the knife winding roller from the previous step, then the winding roller is controlled to rotate to realize winding of the electrocardio electrode piece, and the stretching and retracting device is extended downward in the process of winding of the electrocardio electrode piece, and the stretching and retracting device pushes the first plate to drive the adjusting plate to move downward.
[0024] S2: On the basis of S1, the rotating shaft drives the arc-shaped plate to rotate, the rotating column on the arc-shaped plate drives the connecting rod to rotate, thereby realizing synchronous rotation of the connecting rod and other arc-shaped plates, thereby realizing synchronous adjustment of the first ring-shaped cutting knife, the second ring-shaped cutting knife and the third ring-shaped cutting knife in the first column, and realizing cutting of electrocardio electrode pieces of different sizes.
[0025] S3: On the basis of S2, as the first plate continuously moves downward, the first plate drives the adjusting plate on one of the first ring-shaped cutting knife, the second ring-shaped cutting knife and the third ring-shaped cutting knife to move downward, and pushes one of the cutting edges to move downward, thereby realizing cutting of the electrocardio electrode piece raw material at the lower end of the first column.
[0026] S4: On the basis of S3, after the electrocardio machine raw material is cut, it falls into the upper cylindrical groove of the collecting plate, then the first plate moves upward to drive the hinged plate to move upward, the hinged plate drives the sliding plate to move in the adjusting groove, the sliding plate drives the collecting plate to move in the strip-shaped groove, the electrocardio electrode piece cut in the cylindrical groove falls into the collecting box, and one cutting is realized.
[0027] The application has the following beneficial effects:
[0028] 1. An electrocardio electrode piece automatic processing equipment and its processing technology; before the electrocardio electrode piece raw material is cut, the first column first extrudes the upper end of the electrocardio electrode piece raw material, and the limiting plate limits the two sides of the electrocardio electrode piece raw material, so that the electrocardio electrode piece raw material does not deviate when cutting, and the stability of the electrocardio electrode piece raw material is realized, and after cutting is completed, the telescopic equipment is contracted, the telescopic equipment drives the first plate to move upward, the first plate drives the adjusting plate and the first annular cutter to move upward, and when the telescopic equipment moves upward, the spring between the first plate and the first column is elastically extended, so that the first plate moves upward, and after the spring is fully extended, the first plate moves upward with the first column, so that the electrocardio electrode piece raw material does not vibrate when the first cutting knife moves upward after cutting the electrocardio electrode piece raw material.
[0029] 2. An electrocardio electrode piece automatic processing equipment and its processing technology; by rotating the rotating shaft, the first annular cutter, the second annular cutter and the third annular cutter are adjusted, different sizes of electrocardio electrode pieces are cut, and the practicability of the cutting equipment is improved; the rotating column is arranged on the arc-shaped plate, and the connecting rods are arranged on the rotating column, so that when one of the rotating shafts rotates, the rotating shaft drives the arc-shaped plate to rotate, the rotating column on the arc-shaped plate drives the connecting rod to rotate, so that the connecting rod can drive the other arc-shaped plates to rotate synchronously, so that the first annular cutter, the second annular cutter and the third annular cutter in the plurality of first columns are synchronously adjusted, and the convenience of the cutting equipment is improved. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 is a perspective view of the processing equipment in the application;
[0031] Figure 2 is a structure view of the first plate in the application;
[0032] Figure 3 is a structure view of the first column in the application;
[0033] Figure 4 is a structure view of the adjusting plate in the application;
[0034] Figure 5 is a structure view of the cutting table in the application;
[0035] Figure 6 is a half sectional view of the cutting table in the application;
[0036] Figure 7 is a structure view of the collecting plate in the application;
[0037] In the diagram: Cutting table 1, shelf 11, telescopic device 12, No. 1 plate 13, No. 1 annular cutter 131, adjusting plate 132, No. 2 annular cutter 133, No. 3 annular cutter 134, rotating shaft 135, arc plate 136, rotating column 137, connecting rod 138, No. 1 column 14, No. 1 annular groove 141, No. 2 annular groove 142, No. 3 annular groove 143, strip groove 15, collecting plate 16, column groove 161, placement groove 17, adjusting groove 18, sliding plate 181, right angle rod 19, hinge plate 191, winding roller 2, limiting plate 3, collecting box 4. Detailed Implementation
[0038] The present invention will be further described below with reference to specific embodiments.
[0039] Example 1
[0040] like Figures 1-7 As shown; an automatic processing device for ECG electrode pads; the automatic processing device includes an ECG electrode pad cutting device, the cutting device including; a cutting table 1 and a take-up roller 2, the take-up roller 2 being disposed at one end of the cutting table 1, the cutting table 1 including:
[0041] The support plate 11 is mounted directly above the cutting table 1 via a bracket, and a telescopic device 12 is provided on the lower end face of the support plate 11.
[0042] A No. 1 plate 13 is disposed at the lower end of the telescopic device 12; and multiple No. 1 columns 14 are evenly arranged below the No. 1 plate 13 by means of springs.
[0043] A first annular groove 141 is formed at the lower end of each first post 14;
[0044] A first annular cutting blade 131 is disposed below the first plate 13. Two adjusting plates 132 are provided on the upper end of the first annular cutting blade 131, and the upper end of the adjusting plates 132 is connected to the lower end of the first plate 13. The number of first annular cutting blades 131 is the same as the number of first columns 14. The lower end of the first annular cutting blade 131 is located inside the first annular groove 141.
[0045] A limiting plate 3 is disposed at the upper end of the cutting table 1, and the limiting plate 3 is used to limit the cutting of the electrode sheet raw material;
[0046] The specific workflow is as follows;
[0047] First, the ECG electrode piece cutting raw material is pulled out from the previous step and placed on the knife winding roller 2, then the winding roller 2 is controlled to rotate to realize winding of the ECG electrode piece. In the process of winding the ECG electrode piece, the ECG electrode piece is cut;
[0048] When the ECG electrode piece is wound, the ECG electrode piece is located at the upper end of the cutting table 1, and the upper end of the cutting table 1 is provided with a limiting plate 3, so that when the ECG electrode piece raw material moves at the upper end of the cutting table 1, the ECG electrode piece raw material is located between the two limiting plates 3, and the limiting plate 3 limits the ECG electrode piece raw material to avoid deviation of the ECG electrode piece;
[0049] When the raw material of the heart electrode sheet moves, the support plate 11 is arranged on the side of the cutting table 1 and located above the cutting table 1, so that the raw material of the heart electrode sheet moves below the support plate 11; when the winding roller 2 rotates intermittently through the stepping motor, the raw material of the heart electrode sheet stops moving, and the telescopic device 12 at the lower end of the support plate 11 performs telescopic movement; the telescopic device 12 can be any one of an electric telescopic rod or a telescopic cylinder; when the telescopic device 12 extends downward, the No. 1 plate 13 fixedly connected to the lower end of the telescopic device 12 moves downward, the adjusting plate 132 fixedly connected to the lower end of the No. 1 plate 13 moves downward, the No. 1 annular cutting knife 131 is pushed by the adjusting plate 132 to move downward, and the No. 1 annular cutting knife 131 is located in the No. 1 annular groove 141 in the No. 1 column 14; the No. 1 column 14 is fixedly connected to the lower end of the No. 1 plate 13 through a spring, so that when the No. 1 plate 13 moves downward, the No. 1 plate 13 synchronously drives the No. 1 column 14 to move downward; until the lower end of the No. 1 column 14 contacts the raw material of the heart electrode sheet, the telescopic device 12 continuously moves downward; after the No. 1 column 14 contacts the raw material of the heart electrode sheet, the No. 1 column 14 cannot move downward, and the No. 1 column 14 is pressed by the No. 1 plate 13; the spring located between the No. 1 column 14 and the No. 1 plate 13 is squeezed and contracted; at this time, the No. 1 plate 13 continuously moves downward, the No. 1 plate 13 pushes the adjusting plate 132 to move downward, the adjusting plate 132 drives the No. 1 annular cutting knife 131 to move downward in the No. 1 annular groove 141, until the No. 1 annular cutting knife 131 extends from the No. 1 annular groove 141, the No. 1 annular cutting knife 131 cuts the raw material of the heart electrode sheet at the lower end of the No. 1 column 14; before the raw material of the heart electrode sheet is cut, the No. 1 column 14 first presses and limits the upper end of the raw material of the heart electrode sheet, and the limiting plate 3 limits the two sides of the raw material of the heart electrode sheet, so that the raw material of the heart electrode sheet does not deviate during cutting, and the stability of the raw material of the heart electrode sheet during cutting is realized; after cutting is completed, the telescopic device 12 is retracted, the telescopic device 12 drives the No. 1 plate 13 to move upward, the No. 1 plate 13 drives the adjusting plate 132 and the No. 1 annular cutting knife 131 to move upward; before the telescopic device 12 moves upward, the spring arranged between the No. 1 plate 13 and the No. 1 column 14 is elastically extended, so that the No. 1 column 14 does not move upward; after the spring is completely extended, the No. 1 plate 13 drives the No. 1 column 14 to move upward, so that the raw material of the heart electrode sheet does not vibrate when the No. 1 cutting knife moves upward after cutting the raw material of the heart electrode sheet.
[0050] Example 2
[0051] As Figures 1-7The lower end of the first column 14 is respectively provided with a second annular groove 142 and a third annular groove 143, the sizes of the first annular groove 141, the second annular groove 142 and the third annular groove 143 are that the size of the first annular groove 141 is smaller than that of the second annular groove 142, and the size of the second annular groove 142 is smaller than that of the third annular groove 143;
[0052] The lower end of the first plate 13 is provided with a second annular cutting knife 133 and a third annular cutting knife 134, the lower end of the second annular cutting knife 133 extends into the inside of the second annular groove 142, the lower end of the third annular cutting knife 134 is located in the third annular groove 143, and the upper ends of the first annular cutting knife 131, the second annular cutting knife 133 and the third annular cutting knife 134 are all provided with adjusting plates 132, the upper ends of the adjusting plates 132 penetrate through the first plate 13 and are in sliding connection with the first plate 13, and the upper ends of the first annular cutting knife 131, the second annular cutting knife 133 and the third annular cutting knife 134 are located above the first plate 13;
[0053] The adjusting plates 132 on the first annular cutting knife 131, the second annular cutting knife 133 and the third annular cutting knife 134 are eccentrically distributed, and one side of the adjusting plate 132 is provided with an arc surface
[0054] The upper end of the first plate 13 is provided with a rotating shaft 135, the outer circle of the rotating shaft 135 is provided with an arc plate 136, when the rotating shaft 135 rotates, the arc plate 136 sequentially contacts the adjusting plates 132 on the first annular cutting knife 131, the second annular cutting knife 133 and the third annular cutting knife 134;
[0055] The upper end of each arc plate 136 on the rotating shaft 135 is provided with a rotating column 137, the upper end of the rotating column 137 is provided with a connecting rod 138, and the connecting rod 138 is in rotating connection with each rotating column 137;
[0056] The specific working process is as follows:
[0057] On the basis of the movement of embodiment 1 and the working away, embodiment 2 is supplemented, wherein the second annular slot 142 and the third annular slot 143 are opened on the first column 14, and the second annular cutting knife 133 and the third annular cutting knife 134 are slidably connected inside the second annular slot 142 and the third annular slot 143, and the adjusting plate 132 is arranged on the second annular cutting knife 133 and the third annular cutting knife 134, and the adjusting plate 132 is eccentrically arranged, and the rotating shaft 135 is arranged on the first plate 13, the arc-shaped plate 136 is arranged on the outer circle of the rotating shaft 135, and when the arc-shaped plate 136 rotates counterclockwise, the arc-shaped plate 136 sequentially contacts the adjusting plate 132 on the first annular cutting knife 131, the adjusting plate 132 on the second annular cutting knife 133, and the adjusting plate 132 on the third annular cutting knife 134, when the rotating shaft 135 rotates, the arc-shaped plate 136 on the outer circle of the rotating shaft 135 first contacts the adjusting plate 132 on the first annular cutting knife 131, the adjusting plate 132 on the first annular cutting knife 131 is extruded, and then the rotating shaft 135 remains stationary; the adjusting plate 132 on the first annular cutting knife 131 extrudes the first annular cutting knife 131, pushes the first annular cutting knife 131 to move downward in the first annular slot 141, at this time, when the telescopic device 12 telescopes, the first plate 13 moves downward, the first plate 13 pushes the adjusting plate 132 on the first annular cutting knife 131 to move downward, and the first annular cutting knife 131 cuts the electrode piece raw material;
[0058] and when the rotating shaft 135 continues to rotate, the rotating shaft 135 drives the arc-shaped plate 136 to rotate, at this time, the arc-shaped plate 136 extrudes the adjusting plate 132 on the first annular cutting knife 131, and as the rotating shaft 135 rotates, the arc-shaped plate 136 passes over the adjusting plate 132 on the first annular cutting knife 131, the arc-shaped plate 136 extrudes the adjusting plate 132 on the second annular cutting knife 133, at this time, the adjusting plate 132 on the second annular cutting knife 133 is extruded by the arc-shaped plate 136, and the lower end of the second annular cutting knife 133 moves downward in the second annular slot 142; at this time, the rotating shaft 135 remains stationary; when the telescopic device 12 extends downward, the telescopic device 12 drives the arc-shaped plate 136 on the rotating shaft 135 and the first plate 13, the first plate 13 and the arc-shaped plate 136 push the second annular cutting knife 133 to move downward, and the second annular cutting knife 133 cuts the cardiac electrode piece raw material; when the rotating shaft 135 continues to rotate, the rotating shaft 135 drives the arc-shaped plate 136 to rotate, the arc-shaped plate 136 extrudes the adjusting plate 132 on the third annular cutting knife 134 which passes over the adjusting plate 132 on the second annular cutting knife 133, and the third annular cutting knife 134 cuts the cardiac electrode piece raw material;
[0059] By rotating the rotating shaft 135, the No. 1 annular cutting blade 131, the No. 2 annular cutting blade 133 and the No. 3 annular cutting blade 134 can be adjusted to cut cardiac electrode sheets of different sizes, thereby improving the practicality of the cutting equipment.
[0060] By setting rotating columns 137 on the arc plate 136, and each rotating column 137 is equipped with a connecting rod 138, when one of the rotating shafts 135 rotates, the rotating shaft 135 drives the arc plate 136 to rotate, and the rotating column 137 on the arc plate 136 drives the connecting rod 138 to rotate, thereby enabling the connecting rod 138 to drive the other arc plates 136 to rotate synchronously. This allows for the synchronous adjustment of the first annular cutting blade 131, the second annular cutting blade 133, and the third annular cutting blade 134 inside the multiple first columns 14, thereby improving the convenience of the cutting equipment.
[0061] Example 3
[0062] like Figures 1-7 As shown; the cutting table 1 has a plurality of strip grooves 15 evenly distributed inside, the number of which is the same as the number of the first column 14; a collection plate 16 is slidably connected inside the strip grooves 15, and a plurality of cylindrical grooves 161 are evenly distributed on the collection plate 16, the diameter of the cylindrical grooves 161 being 1-2 cm larger than the diameter of the first column 14; a placement groove 17 is opened on the upper end face of the cutting table 1, the placement groove 17 being located directly below the first column 14, and the placement groove 17 communicating with the strip grooves 15; and when the strip grooves 15 move, the cylindrical grooves 161 coincide with the placement groove 17;
[0063] The cutting table 1 has two adjustment slots 18, and the strip groove 15 is located between the two adjustment slots 18; a sliding plate 181 is slidably connected inside the adjustment slot 18, and the sliding plate 181 is fixedly connected to the collecting plate 16.
[0064] A right-angle rod 19 is provided at the lower end of the first plate 13. An adjustment column is provided at the lower end of the right-angle rod 19. A hinge plate 191 is hinged to the adjustment column by a torsion spring. The minimum angle between the hinge plate 191 and the right-angle rod 19 is 30°. The end of the hinge plate 191 away from the right-angle rod 19 is made of rubber.
[0065] The lower end of the slide plate 181 is serrated;
[0066] The cylindrical groove 161 passes through the collection plate 16, and a collection box 4 is provided below the side of the cutting table 1 near the right angle rod 19;
[0067] The specific workflow is as follows:
[0068] On the basis of the movement of embodiment 2 and the principle, supplementary embodiment 3 is added, wherein the strip-shaped groove 15 is arranged on the cutting table 1, the collecting plate 16 is slidably connected inside the strip-shaped groove 15, and the cylindrical groove 161 is arranged on the collecting plate 16, the size of the cylindrical groove 161 is 1-2 cm larger than the size of the first column 14, and the placement groove 17 is opened on the cutting table 1, which is located directly below the first column 14. When the telescopic device 12 is extended, the first column 14 is moved downward under the action of the first plate 13, and the first column 14 cuts the cardiac electrode piece raw material. At this time, one of the first annular cutter 131, the second annular cutter 133 and the third annular cutter 134 inside the first column 14 cuts the cardiac electrode piece raw material. The cut cardiac electrode piece raw material enters the cylindrical groove 161 on the cutter collecting plate 16 through the placement groove 17. Subsequently, the telescopic device 12 is retracted upward, the first column 14 is moved upward under the action of the first plate 13, the right angle rod 19 is moved upward under the action of the first plate 13, the adjusting column is moved upward under the action of the right angle rod 19, the hinged plate 191 is moved upward under the action of the adjusting column, and the minimum angle between the hinged plate 191 and the right angle rod 19 in the initial state is 30 degrees. When the hinged plate 191 moves upward, two adjusting grooves 18 are opened on the cutting table 1, the strip-shaped groove 15 is located between the adjusting grooves 18, the sliding plate 181 is slidably connected inside the adjusting groove 18, and the lower end of the sliding plate 181 is serrated. Therefore, when the hinged plate 191 moves upward, the end of the hinged plate 191 away from the right angle rod 19 will contact the lower end of the sliding plate 181, and the end of the hinged plate 191 away from the right angle plate is made of rubber. When the lower end of the hinged plate 191 contacts the lower end of the sliding plate 181, the first plate 13 continues to move upward, the sliding plate 181 presses the hinged plate 191 at this time, the hinged plate 191 is pressed to rotate, the gap between the hinged plate 191 and the right angle rod 19 becomes larger, and the hinged plate 191 rotates clockwise. Since the lower end of the sliding plate 181 is serrated and the end of the hinged plate 191 is made of rubber, the friction between the hinged plate 191 and the sliding plate 181 is large when the hinged plate 191 rotates, so the sliding plate 181 slides in the adjusting groove 18 when the hinged plate 191 rotates clockwise. When the sliding plate 181 rotates in the adjusting groove 18, the sliding plate 181 drives the collecting plate 16 to slide in the strip-shaped groove 15. At this time, the cut cardiac electrode piece is taken away by the collecting plate 16, and the subsequent cylindrical groove 161 is recombined with the placement groove 17. When the first plate 13 moves downward, the first column 14 cuts the cardiac electrode piece raw material under the action of the first plate 13; and the cylindrical groove 161 penetrates the collecting plate 16, and the collecting box 4 is arranged at the lower end of the collecting plate 16. When the collecting plate 16 with the cut cardiac electrode piece moves out of the strip-shaped groove 15, the lower end of the cardiac electrode piece is not supported by the inner wall of the strip-shaped groove 15, the cardiac electrode piece falls from the inside of the cylindrical groove 161 to the inside of the collecting box 4, thereby realizing automatic discharging and improving the use efficiency of the cutting device.
[0069] Embodiment 4
[0070] An automatic processing process of an electrocardio electrode patch, the processing process is suitable for the automatic processing equipment of the electrocardio electrode patch, and the process comprises the following steps.
[0071] S1: firstly, the electrocardio electrode patch cutting raw material is placed on the winding roller 2 from the previous step, then the winding roller 2 is controlled to rotate to realize winding of the electrocardio electrode patch, and the stretching and retracting device 12 is extended downward in the process of winding the electrocardio electrode patch, the stretching and retracting device 12 drives the first plate 13 to move downward together with the adjusting plate 132.
[0072] S2: on the basis of S1, the rotating shaft 135 drives the arc-shaped plate 136 to rotate, the rotating column 137 on the arc-shaped plate 136 drives the connecting rod 138 to rotate, so that the connecting rod 138 can drive other arc-shaped plates 136 to rotate synchronously, thereby realizing synchronous adjustment of the first ring-shaped cutting knife 131, the second ring-shaped cutting knife 133 and the third ring-shaped cutting knife 134 in the first column 14, and realizing cutting of electrocardio electrode patches of different sizes.
[0073] S3: on the basis of S2, as the first plate 13 moves downward, the adjusting plate 132 on one of the first ring-shaped cutting knife 131, the second ring-shaped cutting knife 133 and the third ring-shaped cutting knife 134 moves downward, and one of the cutting edges moves downward, thereby realizing cutting of the electrocardio electrode patch raw material at the lower end of the first column 14.
[0074] S4: on the basis of S3, after the electrocardio machine raw material is cut, it falls into the column-shaped groove 161 of the collecting plate 16, then the first plate 13 moves upward to drive the hinged plate 191 to move upward, the hinged plate 191 drives the sliding plate 181 to move in the adjusting groove 18, the sliding plate 181 drives the collecting plate 16 to move in the strip-shaped groove 15, and the electrocardio electrode patch cut in the column-shaped groove 161 falls into the collecting box 4, thereby realizing one-time cutting.
[0075] The basic principles, main features and advantages of the present application are shown and described above; it should be understood by those skilled in the art that the present application is not limited by the above examples, the above examples and descriptions in the specification are only to illustrate the principles of the present application, and various changes and improvements can be made without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. An automatic processing equipment for electrocardio electrode patch; the automatic processing equipment comprises an electrocardio electrode patch cutting equipment, the cutting equipment comprises a cutting table (1) and a winding roller (2), the winding roller (2) is arranged at one end of the cutting table (1), characterized in that, The cutting table (1) comprises: A support plate (11) is arranged above the cutting table (1) by a support, and the lower end surface of the support plate (11) is provided with a telescopic device (12); A first plate (13) is arranged at the lower end of the telescopic device (12); and a plurality of first columns (14) are uniformly arranged below the first plate (13) by springs; A first annular groove (141) is arranged at the lower end of each first column (14); A first annular cutting knife (131) is arranged below the first plate (13), and the upper end of the first annular cutting knife (131) is provided with two adjusting plates (132), the upper end of the adjusting plate (132) is connected with the lower end of the first plate (13), the number of the first annular cutting knife (131) is the same as that of the first column (14), and the lower end of the first annular cutting knife (131) is located in the first annular groove (141); A limiting plate (3) is arranged at the upper end of the cutting table (1), and is used for limiting the cutting of the raw material of the cardiac electrode sheet; The lower end of the first column (14) is provided with a second annular groove (142) and a third annular groove (143), respectively, and the sizes of the first annular groove (141), the second annular groove (142) and the third annular groove (143) are that the size of the first annular groove (141) is smaller than that of the second annular groove (142), and the size of the second annular groove (142) is smaller than that of the third annular groove (143); The lower end of the first plate (13) is provided with a second annular cutting knife (133) and a third annular cutting knife (134), the lower end of the second annular cutting knife (133) extends into the second annular groove (142), the lower end of the third annular cutting knife (134) is located in the third annular groove (143), the upper ends of the first annular cutting knife (131), the second annular cutting knife (133) and the third annular cutting knife (134) are provided with adjusting plates (132), the upper end of the adjusting plate (132) penetrates through the first plate (13) and is in sliding connection with the first plate (13), and the upper ends of the first annular cutting knife (131), the second annular cutting knife (133) and the third annular cutting knife (134) are located above the first plate (13); The adjusting plates (132) on the first annular cutting knife (131), the second annular cutting knife (133) and the third annular cutting knife (134) are eccentrically distributed; and an arc surface is formed on one side of the adjusting plate (132); An rotating shaft (135) is arranged at the upper end of the first plate (13), an arc plate (136) is arranged at the outer circle of the rotating shaft (135), when the rotating shaft (135) rotates, the arc plate (136) sequentially contacts the adjusting plates (132) on the first annular cutting knife (131), the second annular cutting knife (133) and the third annular cutting knife (134); The upper end of the arc-shaped plate (136) on each rotating shaft (135) is provided with a rotating column (137), and the upper end of the rotating column (137) is provided with a connecting rod (138) which is rotationally connected with each rotating column (137).
2. The apparatus for automatically processing ECG electrode patches according to claim 1, characterized in that: A plurality of strip-shaped grooves (15) are evenly arranged in the cutting table (1), and the number of the strip-shaped grooves (15) is the same as that of the first columns (14); a collecting plate (16) is slidably connected in the strip-shaped groove (15), a plurality of columnar grooves (161) are evenly arranged on the collecting plate (16), the diameter of the columnar grooves (161) is 1 2cm larger than that of the first columns (14), a placing groove (17) is arranged on the upper end surface of the cutting table (1), the placing groove (17) is located directly below the first column (14), the placing groove (17) is in communication with the strip-shaped groove (15), and when the strip-shaped groove (15) moves, the columnar groove (161) coincides with the placing groove (17). The cutting table (1) is provided with two adjusting grooves (18), and the strip-shaped groove (15) is located between the two adjusting grooves (18); the adjusting groove (18) is slidably connected with a sliding plate (181), and the sliding plate (181) is fixedly connected with the collecting plate (16); The lower end of the first plate (13) is provided with a right-angle rod (19), the lower end of the right-angle rod (19) is provided with an adjusting column, the adjusting column is hingedly connected with a hinge plate (191) through a torsional spring, and the smallest angle between the hinge plate (191) and the right-angle rod (19) is 30°; the end of the hinge plate (191) away from the right-angle rod (19) is made of rubber.
3. The apparatus for automatically processing ECG electrode patches according to claim 2, characterized in that: The lower end of the sliding plate (181) is sawtooth-shaped.
4. The apparatus for automatically processing ECG electrode patches according to claim 1, characterized in that: The cylindrical groove (161) penetrates the collecting plate (16), and the cutting table (1) is provided with a collecting box (4) below the side close to the right-angle rod (19).
5. An automatic processing process of electrocardio electrode patch, which is suitable for the automatic processing equipment of electrocardio electrode patch in any one of claims 1-4, characterized in that: The process comprises the following steps: S1: first, the electrocardio electrode piece cutting raw material is placed on the winding roller (2) from the previous step, then the winding roller (2) is controlled to rotate to realize winding of the electrocardio electrode piece, and the telescopic device (12) extends downward in the process of winding of the electrocardio electrode piece, and the telescopic device (12) pushes the first plate (13) to drive the adjusting plate (132) to move downward; S2: on the basis of S1, the rotating shaft (135) drives the arc-shaped plate (136) to rotate, the rotating column (137) on the arc-shaped plate (136) drives the connecting rod (138) to rotate, thereby realizing synchronous rotation of the connecting rod (138) and other arc-shaped plates (136), thereby realizing synchronous adjustment of the first annular cutting knife (131), the second annular cutting knife (133) and the third annular cutting knife (134) in the first column (14), and cutting of electrocardio electrode pieces of different sizes is realized; S3: on the basis of S2, as the first plate (13) continuously moves downward, the first plate (13) drives the adjusting plate (132) on one of the first annular cutting knife (131), the second annular cutting knife (133) and the third annular cutting knife (134) to move downward, pushes one of the cutting edges to move downward, and realizes cutting of the electrocardio electrode piece raw material at the lower end of the first column (14); S4: on the basis of S3, after the electrocardio machine raw material is cut and falls into the upper cylindrical groove (161) of the collecting plate (16), then the first plate (13) moves upward to drive the hinge plate (191) to move upward, the hinge plate (191) pushes the sliding plate (181) to move in the adjusting groove (18), the sliding plate (181) drives the collecting plate (16) to move in the strip-shaped groove (15), and the electrocardio electrode piece cut in the cylindrical groove (161) falls into the collecting box (4), and one cutting is completed.
Citation Information
Patent Citations
Automatic electrode plate cutting device
CN214770264U