Sterile protective sleeve production equipment
By driving the transmission gear connection and the inclined slot pushing component by a motor, the problems of blind spots of laser sensors and inconvenient removal of collection rollers in sterile protective cover production equipment are solved, achieving the flexibility and cost-effectiveness of the equipment.
Patent Information
- Application Number
- CN202422531225.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-21
AI Technical Summary
In existing sterile protective cover production equipment, the use of laser sensors is not flexible enough, blind spots are prone to occur, and the collection rollers are inconvenient to disassemble, resulting in high cost of use.
The motor drives the transmission gear connection to achieve free movement and installation of the collecting roller. Combined with the inclined groove and pushing component, the flexible adjustment of the laser sensor is ensured. The collecting roller contacts the transmission gear through the flexible rubber force-bearing head component to achieve convenient winding.
The flexibility and recognition efficiency of the laser sensor are improved, the use cost of the equipment is reduced, and the convenience and flexibility of the collecting roller are enhanced.
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Figure CN223354974U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sterile protective sleeve processing, in particular to sterile protective sleeve production equipment. Background Art
[0002] Sterile protective covers are bags made of polyethylene as the main raw material. They are usually used to protect certain medical devices that are easily contaminated by external bacteria, viruses, etc., such as needles, syringes, and straws. This type of bag is usually transparent, which makes it easy to observe the shape and size of the items and avoids contact with the outside world during use, thereby reducing the risk of bacterial contamination. Sterile protective covers are widely used in the medical field. They can protect medical devices from bacterial contamination during transportation and use, thereby ensuring the safety and health of patients. When sterile protective covers are produced, production equipment is needed to press the sterile protective covers together. The common production equipment for sterile protective covers on the market usually needs to be used with laser sensors to check whether the sterile protective covers are damaged. However, laser sensors are not flexible enough to use and are prone to blind spots. After the sterile protective covers are bonded, they are usually collected by a winding roller. Common winding rollers are separately driven by a motor, but the cost is high. Some are powered by the production equipment, but the collection roller is not convenient to disassemble and is not convenient to use. Utility Model Content
[0003] The disclosed embodiment relates to a sterile protective cover production device, in which a motor drives a transmission gear connection, so that the movable part and the collecting roller can be directly moved when needed, so that the side of the collecting roller is embedded in the interior of the pressing production equipment, so that the force-bearing head assembly contacts the transmission gear and is driven to rotate by the transmission gear to generate a winding force, so that the collecting roller can be freely moved and installed while winding, thereby improving the flexibility of use.
[0004] According to a first aspect of the present disclosure, a sterile protective sleeve production device is provided, specifically comprising: a pressing production device; a motor for driving a rotating roller to rotate is installed inside the pressing production device, a pressing roller capable of heating and pressing is installed inside the pressing production device, a moving part is installed at the rear of the pressing production device, two force-bearing parts are welded and fixed at the front end of the moving part, an inclined groove is provided inside the force-bearing part, a pushing component with a wedge-shaped structure at the bottom end is inserted into the inclined groove, and the contact surface is an inclined structure; an auxiliary structure; the two auxiliary structures are fixed to the front end of the pressing production device by bolts, the auxiliary structure is connected to the connecting head through a pull groove, the connecting head is fixedly connected to the fixed plate through a connecting plate structure, the fixed plate is fixed to the mounting part by clamping, and the mounting part is installed with evenly arranged laser sensors through a support rod, the laser sensors are located outside the support rod and can slide freely left and right, and the laser sensors are connected to the controller through a line.
[0005] In at least some embodiments, a transmission gear is installed inside the rear end of the pressing production equipment, and the transmission gear is connected to the motor through a transmission belt and is driven to rotate by the motor. A support assembly is welded on both sides of the rear end of the pressing production equipment; a guide rod is inserted into the interior of each support assembly, and the guide rod with vertical plates on both sides is inserted into the interior of the support assembly and can be pulled up and down freely. The bottom end of the guide rod is welded and fixed to the pushing assembly, and drives the pushing assembly to move up and down together; a moving wheel is provided at the bottom corner position of the moving part, and a collecting roller is installed on the top support of the moving part. The two ends of the collecting roller are embedded in the interior of the pressing production equipment, and a force-bearing head assembly made of flexible rubber material is fixed on the side of the collecting roller. The force-bearing head assembly with a protective groove on the outside is in contact with the transmission gear and is driven to rotate by the transmission gear.
[0006] In at least some embodiments, a T-shaped groove is provided on the outside of each of the auxiliary structures, and a square groove is provided on the top of the groove, and a connecting head and a connecting plate structure are inserted into the inside of the groove and can be freely pulled out; a fixed plate is welded on the top of the two connecting plate structures on the same side, and the connecting plate structure is inserted into the outer end of the mounting part, and the two mounting parts are respectively located above the two auxiliary structures, and the two mounting parts are symmetrically arranged; two freely rotatable guide roller structures are installed between the two mounting parts, and two cylindrical support rods are fixed between the two mounting parts, and the support rods pass through the laser sensor.
[0007] The utility model provides a sterile protective cover production device, which has the following beneficial effects:
[0008] The connecting head drives the connecting plate structure and the fixing plate to move left and right, which can drive the mounting parts to be fixed and installed, so that the mounting parts can drive the laser sensor to be installed and used conveniently. At the same time, during the use of the laser sensor, if some positions cannot be recognized, the laser sensor can be directly controlled to move left and right to adjust the recognition position to avoid blind spots.
[0009] The motor drives the transmission gear connection, so that the moving parts and the collecting roller can be directly moved when needed, so that the side of the collecting roller is embedded in the interior of the pressing production equipment, so that the force-bearing head component contacts the transmission gear and is driven by the transmission gear to rotate, generating a winding force, so that the collecting roller can be freely moved and installed while winding, thereby improving the flexibility of use;
[0010] At the same time, the pushing component continues to move with the help of gravity, is inserted into the cleaning tank, continuously pulls the moving part inward, and continuously pushes the force-bearing head component to contact and transmit the transmission gear, so that the collecting roller is continuously wound. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings of the embodiments will be briefly introduced below.
[0012] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.
[0013] In the attached figure:
[0014] Figure 1 Shows a schematic diagram of the three-dimensional structure of the present application;
[0015] Figure 2 Shows a bottom-up structural schematic diagram of the present application;
[0016] Figure 3 Shows a schematic diagram of the exploded three-dimensional structure of the present application;
[0017] Figure 4 Shows a schematic diagram of the exploded three-dimensional structure of the pressing production equipment of the present application;
[0018] Figure 5 It shows a schematic diagram of the exploded three-dimensional structure of the auxiliary structure of the present application;
[0019] Figure 6 A schematic diagram of the auxiliary structure of the present application is shown as an exploded bottom view;
[0020] Reference Signs List
[0021] 1. Pressing production equipment; 101. Transmission gear; 102. Support assembly; 103. Guide rod; 104. Push assembly; 105. Moving part; 106. Force-bearing part; 107. Collecting roller; 108. Force-bearing head assembly;
[0022] 2. Auxiliary structure; 201. Grooving; 202. Connecting head; 203. Connecting plate structure; 204. Fixing plate; 205. Mounting part; 206. Guide roller structure; 207. Support rod; 208. Laser sensor. DETAILED DESCRIPTION
[0023] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0024] Example 1: Please refer to Figures 1 to 6 :
[0025] The utility model proposes a sterile protective cover production equipment, comprising: a pressing production equipment 1; a motor for driving a rotating roller to rotate is installed inside the pressing production equipment 1; a pressing roller capable of heating and pressing is installed inside the pressing production equipment 1, and the sterile protective cover is pressed together after being heated; a moving part 105 is installed at the rear of the pressing production equipment 1; two force-bearing parts 106 are welded and fixed to the front end of the moving part 105; an inclined groove is provided inside the force-bearing part 106; a pushing component 104 with a wedge-shaped structure at the bottom end is inserted into the inclined groove; the contact surface is an inclined structure, so that the pushing component 104 continuously pushes the force-bearing part 106 and the moving part 105 to move, and controls the collecting roller 107 to be conveniently connected to the rear end of the pressing production equipment 1 for transmission, The rotational force of the transmission gear 101 reels the sterile protective cover; the auxiliary structure 2; the two auxiliary structures 2 are fixed to the front end of the pressing production equipment 1 by bolts, the auxiliary structure 2 is connected to the connecting head 202 through the groove 201, the connecting head 202 is fixedly connected to the fixed plate 204 through the connecting plate structure 203, the fixed plate 204 is clamped and fixed with the mounting part 205, so that the mounting part 205 drives the laser sensor 208 to be easily installed and used, the mounting part 205 is installed with evenly arranged laser sensors 208 through the support rod 207, the laser sensor 208 is located outside the support rod 207 and can slide freely left and right, the laser sensor 208 can be freely adjusted left and right to avoid blind spots, and the laser sensor 208 is connected to the controller through a line.
[0026] In the embodiment of the present disclosure, Figure 3 and Figure 4 As shown, a transmission gear 101 is installed inside the rear end of the pressing production equipment 1. The transmission gear 101 is connected to the motor through a transmission belt and is driven to rotate by the motor to generate a force to drive the force-bearing head component 108 and the collecting roller 107 to rotate. A support component 102 is welded on both sides of the rear end of the pressing production equipment 1 to support the guide rod 103 for guiding displacement; a guide rod 103 is inserted into the interior of each support component 102, and the guide rod 103 with vertical plates on both sides is inserted into the interior of the support component 102 and can be pulled up and down freely, so that the guide rod 103 will not rotate while moving up and down, and the pushing component 104 is controlled to move in a fixed direction. The bottom of the guide rod 103 The end is welded and fixed to the pushing component 104, and drives the pushing component 104 to move up and down together, controlling the pushing component 104 to be easily inserted into the interior of the inclined groove; a moving wheel is provided at the bottom corner position of the moving part 105, so that the moving part 105 can move smoothly, and the top support of the moving part 105 is installed with a collecting roller 107, and the two ends of the collecting roller 107 are embedded in the interior of the pressing production equipment 1, and the side of the collecting roller 107 is fixed with a force-bearing head component 108 made of flexible rubber material, and the force-bearing head component 108 with a protective groove on the outside is in contact with the transmission gear 101 and is driven to rotate by the transmission gear 101, and with the help of the rotational force of the transmission gear 101, the collecting roller 107 is controlled to rotate together.
[0027] In the embodiment of the present disclosure, Figure 5 and Figure 6 As shown, a T-shaped groove 201 is provided on the outside of each auxiliary structure 2, and a square groove is provided on the top of the groove 201. The connecting head 202 and the connecting plate structure 203 are inserted into the inside of the groove 201 and can be freely pulled and drawn to control the guided displacement of the connecting head 202; a fixing plate 204 is welded to the top of the two connecting plate structures 203 on the same side, and the connecting plate structure 203 is inserted into the outer end of the mounting part 205. The two mounting parts 205 are respectively located above the two auxiliary structures 2. The two mounting parts 205 are symmetrically arranged, driving the laser sensor 208 to be installed and used together; two freely rotatable guide roller structures 206 are installed between the two mounting parts 205, and two cylindrical support rods 207 are fixed between the two mounting parts 205. The support rod 207 passes through the laser sensor 208, which facilitates the free movement and position adjustment of the laser sensor 208.
[0028] Example 2, based on Example 1, Figure 3 As shown, if there is no need to detect whether the sterile protective cover is damaged, the fixing plate 204 can be directly pulled to move, thereby releasing the fixation of the mounting member 205 and the laser sensor 208 and conveniently removing them.
[0029] The working principle of this embodiment is as follows: first, the guide rod 103 is pulled upward, and then the movable part 105 is controlled to move, and the collecting roller 107 is driven to move together, so that the outer end of the collecting roller 107 is embedded in the interior of the pressing production equipment 1, and the force-bearing head component 108 is in contact with the transmission gear 101. Then, the guide rod 103 is stopped, and the pushing component 104 is continuously moved downward by gravity, so that the pushing component 104 is embedded in the interior of the inclined groove. At the same time, the movable part 105 is continuously pulled to move by gravity, so that the force-bearing head component 108 is continuously forced to contact with the transmission gear 101, and then the sterile protective cover is controlled to be original. The material is placed and the operation of the pressing production equipment 1 is controlled to make the sterile protective cover pass through the guide roller structure 206 and then be pressed. During the movement of the sterile protective cover, the laser sensor 208 continuously identifies the sterile protective cover and identifies whether the outside of the sterile protective cover is damaged. At the same time, the laser sensor 208 can be controlled to move left and right to adjust the identification position. After the pressing is completed, the sterile protective cover is wound up by the collecting roller 107. After the winding is completed, the guide rod 103 and the pushing component 104 are controlled to rise, and the collecting roller 107, the moving part 105 and the sterile protective cover are conveniently controlled to be removed, thereby improving the convenience of use.
[0030] In this article, there are several points to note:
[0031] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.
[0032] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.
[0033] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.
Claims
1. A sterile protective cover production equipment, characterized in that: include: Laminating production equipment (1); a motor for driving a rotating roller to rotate is installed inside the laminating production equipment (1); a laminating roller capable of heating and laminating is installed inside the laminating production equipment (1); a moving part (105) is installed at the rear of the laminating production equipment (1); two force-bearing parts (106) are welded and fixed to the front end of the moving part (105); an inclined groove is provided inside the force-bearing part (106); a pushing component (104) with a wedge-shaped bottom end is inserted into the inclined groove, and the contact surface is an inclined structure; an auxiliary structure (2); the two auxiliary structures (2) are screwed together. The bolt is fixed to the front end of the pressing production equipment (1), the auxiliary structure (2) is connected to the connecting head (202) through the groove (201), the connecting head (202) is fixedly connected to the fixing plate (204) through the connecting plate structure (203), the fixing plate (204) and the mounting member (205) are fixed by clamping, and the mounting member (205) is installed with uniformly arranged laser sensors (208) through the support rod (207). The laser sensor (208) is located outside the support rod (207) and can slide freely left and right. The laser sensor (208) is connected to the controller through a line.
2. The sterile protective cover production equipment according to claim 1, characterized in that: A transmission gear (101) is installed inside the rear end of the pressing production equipment (1), and the transmission gear (101) is connected to the motor through a transmission belt and is driven to rotate by the motor. A support assembly (102) is welded on both sides of the rear end of the pressing production equipment (1).
3. The sterile protective cover production equipment according to claim 2, characterized in that: A guide rod (103) is inserted into the interior of each support assembly (102). The guide rod (103) with vertical plates on both sides is inserted into the interior of the support assembly (102) and can be freely pulled up and down. The bottom end of the guide rod (103) is welded and fixed to the pushing assembly (104), and drives the pushing assembly (104) to move up and down together.
4. The sterile protective cover production equipment according to claim 3, characterized in that: The bottom corners of the movable member (105) are provided with movable wheels, and the top support of the movable member (105) is supported and installed with a collecting roller (107). Both ends of the collecting roller (107) are embedded in the interior of the pressing production equipment (1). A force-bearing head component (108) made of flexible rubber material is fixed on the side of the collecting roller (107). The force-bearing head component (108) with a protective groove on the outside is in contact with the transmission gear (101) and is driven to rotate by the transmission gear (101).
5. The sterile protective cover production equipment according to claim 4, characterized in that: A T-shaped groove (201) is provided on the outside of each auxiliary structure (2), a square groove is provided at the top of the groove (201), and a connecting head (202) and a connecting plate structure (203) are inserted into the groove (201) and can be freely drawn.
6. The sterile protective cover production equipment according to claim 5, characterized in that: A fixing plate (204) is welded to the top ends of the two connecting plate structures (203) on the same side. The connecting plate structure (203) is inserted into the outer ends of the mounting members (205). The two mounting members (205) are respectively located above the two auxiliary structures (2). The two mounting members (205) are symmetrically arranged.
7. The sterile protective cover production equipment according to claim 6, characterized in that: Two freely rotatable guide roller structures (206) are installed between the two mounting members (205), and two cylindrical support rods (207) are fixed between the two mounting members (205), and the support rods (207) pass through the laser sensor (208).