Medical antibacterial impermeable composite disposable operating gown
The surgical gown with a metal fiber and carbon fiber mesh inner layer efficiently dissipates static electricity to the ground, addressing the discomfort and safety issues caused by friction in existing surgical gowns, ensuring safer and more comfortable surgical operations.
Patent Information
- Application Number
- CN202510358126.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2025-07-15
AI Technical Summary
Existing surgical gowns are prone to static electricity during the operation, which affects surgical operation and patient comfort, and static electricity may be transmitted to patients or medical staff.
A mesh-blend layer liner made of metal fibers and carbon fibers combines the design of metal wire and metal buckles to guide static electricity to the ground through wire branches to avoid static electricity accumulation on the surgical instrument.
It effectively reduces the generation and accumulation of static electricity during the operation, improves the safety and comfort of the operation, and ensures that static electricity does not affect patients or medical staff.
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Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of surgical gowns, and particularly to a medical antibacterial and anti-permeation composite disposable surgical gown. Background Art
[0002] Surgical gowns mainly play a role in barrier performance, preventing medical staff from inevitably coming into contact with patients' blood and body fluids during medical rescue, and at the same time being able to avoid the contact between bacteria carried by medical staff and patients. When performing surgery wearing existing surgical gowns, static electricity will inevitably be generated. The main factors for generating static electricity are firstly fiber friction. Surgical gowns are usually made of synthetic fibers or blended materials, and these materials are prone to generating static electricity when rubbed. When the surgical gown comes into contact with and separates from other materials, such as gloves, sheets, and instruments, electron transfer will cause static electricity to be generated.
[0003] Medical staff will move frequently during surgery, and the surgical gown rubs against the body or other objects, resulting in the accumulation of static electricity. The static electricity is directly transmitted to the affected part along the surgical instruments, which will cause discomfort to the patient or medical staff and affect the surgical operation. Summary of the Invention
[0004] To solve the above problems, the present invention provides a medical antibacterial and anti-permeation composite disposable surgical gown, which includes a gown body and a first fiber lining provided on the inner side of the gown body. The first fiber lining is a mesh blended layer made of metal fibers and carbon fibers. A door closure is provided on the front side of the gown body. One side of the door closure is provided with an anti-permeation cloth strip. A metal female button is installed on the inner surface of the anti-permeation cloth strip. A metal male button that is buckled together with the metal female button is installed on the other side of the door closure. A metal wire is threaded through the metal male button. One end of the metal wire enters the inner side of the gown body and is connected to the metal fibers in the first fiber lining. The other end of the metal wire is provided with three metal wire branches. The first metal wire branch is connected to the metal male button, and the metal male button is sewn to one of the sleeves. Another metal wire branch is sewn to the other sleeve. A hip cloth is connected to the inner surface of the back of the gown body. The hip cloth is provided with a perforation. The third metal wire branch passes through the perforation from the back of the hip cloth and extends to the ground.
[0005] As a further preferred option, the end of the third metal wire branch is provided with an elastic spiral part, and the elastic spiral part extends to the ground.
[0006] As a further preferred option, each of the inner surface and the back surface of the hip cloth is provided with a layer of second fiber lining. The composition of the second fiber lining is the same as that of the first fiber lining. The second fiber lining is arranged on the surface of the hip cloth. The top edge of the hip cloth is sewn to the inner side of the back of the gown body. The bottom edge of the hip cloth hangs freely. The third metal wire branch passes through the second fiber lining from the perforation and is intertwined with the metal fibers on the second fiber lining.
[0007] As a further preference, a metal ring is inlaid on the perforation. When the third metal wire branch passes through the second fiber lining via the metal ring on the perforation, it will also contact the metal ring.
[0008] As a further preference, the top end of the door flap is opened to the collar of the clothing body, the bottom end of the door flap is opened to the armpit under the right sleeve, and is opened from the armpit under the right sleeve to the hem.
[0009] As a further preference, the cloth edge of the door flap is streamline-shaped, and the shape of the anti-seepage cloth strip is the same as that of the door flap.
[0010] As a further preference, there are several metal female buttons, and several metal female buttons are evenly distributed along the streamline of the door flap. There are several metal male buttons, and several metal male buttons are evenly distributed along the streamline of the door flap and are buckled with the metal female buttons one by one. The metal wire is covered within the anti-seepage cloth strip and sequentially connects all the metal male buttons.
[0011] As a further preference, first elastic structures are provided at the cuffs of the left and right sleeves of the clothing body, and a second elastic structure is provided at the hem of the clothing body. The two metal wire branches extending along the left and right sleeves to the left and right cuffs respectively enter into the first elastic structures and are connected to the inner surfaces of the first elastic structures.
[0012] The beneficial effects of the present invention compared with the prior art are as follows:
[0013] 1. When wearing the medical gown during the operation, part of the static electricity is released to the left cuff through the first metal wire branch, and another part of the static electricity is released to the right cuff through the second metal wire branch. At the same time, the static electricity generated in the left and right cuffs will also be released to the metal wire through these two metal wire branches. After they converge, they are released to the ground through the third metal wire branch. After the metal wire is released in a large area through the metal fibers in the first fiber lining, it will also be released closer to the palm through the two metal wire branches at the cuffs, and will be completely released to the ground through the third metal wire branch. During the operation, the static electricity is prevented from being released to the instruments, making the operation safer and reducing discomfort. The metal wire is connected to the metal male button, and with the buckling relationship between the metal female button and the metal male button, the static electricity release effect is further improved.
[0014] 2. A hip cloth is provided on the inner surface of the back of the surgical gown, and a second fiber lining is also provided on the hip cloth. The third metal wire branch is grounded after passing through the hip cloth. When the medical staff stands, the hip cloth will hang freely at this time, so the inner surface of the hip cloth will lean against the buttocks of the medical staff, forcing the third metal wire branch to be released along the leg to the ground, achieving the purpose of quickly releasing the static electricity on the lower limbs. Especially when the medical staff bends, as the bending amplitude increases, the fitting force of the hip cloth against the buttocks increases, the fitting force between the metal fibers on the second fiber lining and the buttocks also increases, and the force of the hip cloth pressing the third metal wire branch against the leg also increases, further improving the static electricity release speed on the upper and lower limbs. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 FIG. is a front schematic view of the medical antibacterial and anti-permeation composite disposable surgical gown provided by the embodiment of the present invention;
[0016] Figure 2 FIG. is a back schematic view of the medical antibacterial and anti-permeation composite disposable surgical gown provided by the embodiment of the present invention;
[0017] Figure 3 FIG. is a schematic view of the medical antibacterial and anti-permeation composite disposable surgical gown provided by the embodiment of the present invention after being opened from the access control;
[0018] Figure 4 FIG. is for the medical antibacterial and anti-permeation composite disposable surgical gown provided by the embodiment of the present invention Figure 1 Enlarged schematic view of part A drawn out.
[0019] In the figure: 1. Gown body; 2. First fiber lining; 3. Access control; 4. Metal wire; 5. Anti-permeation cloth strip; 6. Metal mother button; 7. Metal son button; 8. Metal wire branch; 9. Hip cloth; 10. First elastic structure; 11. Second elastic structure; 12. Perforation; 13. Second fiber lining; 14. Metal ring; 15. Elastic spiral part. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] The following will clearly and completely describe the above and other embodiments and advantages of the present invention with reference to the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them.
[0021] In one embodiment, as Figures 1-4 shown:
[0022] The present embodiment provides a medical antibacterial and anti-penetration composite disposable surgical gown, comprising a gown body 1 and a first fiber lining 2 arranged on the inner lining of the gown body 1, the first fiber lining 2 being a mesh blended layer made of metal fiber and carbon fiber, an access control 3 being provided on the front side of the gown body 1, an anti-seepage cloth strip 5 being provided on one side of the access control 3, a metal female buckle 6 being installed on the inner surface of the anti-seepage cloth strip 5, a metal sub-button 7 being installed on the other side of the access control 3 and being buckled with the metal female buckle 6, a metal wire 4 being passed through the metal sub-button 7, one end of the metal wire 4 entering the inner lining of the gown body 1 and being connected with the metal fiber in the first fiber lining 2, three metal wire branches 8 being provided on the other end of the metal wire 4, the first metal wire branch 8 being connected to the metal sub-button 7, and the metal sub-button 7 being sewn to one side cuff, and the other metal wire branch 8 being sewn to the other side cuff, a hip cloth 9 being connected to the inner surface of the back of the gown body 1, the hip cloth 9 being provided with a perforation 12, the third metal wire branch 8 passing through the back side of the hip cloth 9 from the perforation 12 and extending to the ground.
[0023] Principle of electrostatic discharge: When medical staff wear the surgical gown for surgery, frequent movements inevitably cause friction between the body and the lining of the surgical gown, and static electricity is generated due to friction. The static electricity is released to the metal mother buckle 6 through the metal fiber in the first fiber lining 2, and then released to the metal sub-button 7 by the metal mother buckle 6. The buckling relationship between the metal sub-button 7 and the metal mother buckle 6 improves the release effect and then releases it to the metal wire 4. Part of the static electricity is released to the left cuff through the first metal wire branch 8, and the other part of the static electricity is energized by the second metal wire branch 8 and released to the right cuff. At the same time, the static electricity generated in the left and right cuffs will also be released to the metal wire 4 through these two metal wire branches 8. After they merge, they are released to the ground through the third metal wire branch 8. After the metal wire 4 is released over a large area through the metal fiber in the first fiber lining 2, it will also be released through the two metal wire branches 8 at the cuffs with static electricity closer to the palm, and will also be completely released to the ground through the third metal wire branch 8. Static electricity is avoided from being released to the instrument during surgery, making the surgery safer and reducing discomfort. The metal wire 4 is connected to the metal sub-button 7, and with the buckling relationship between the metal female buckle 6 and the metal sub-button 7, the static electricity release effect is further improved.
[0024] In addition, when the metal sub-buckle 7 and the metal female buckle 6 are buckled together, the anti-seepage cloth strip 5 will also cover the outside of the access control 3 to protect the access control 3. After the surgical gown is worn, not only the access control 3 is closed to prevent dust from entering and causing increased static electricity, but the anti-seepage cloth strip 5 also uses its covering effect on the access control 3 to cover the metal wire 4.
[0025] In addition, static electricity can be released to the hip cloth 9 through the metal fibers in the first fiber lining 2. Since the hip cloth 9 is provided with a second fiber lining 13, and the second fiber lining 13 is also provided with metal fiber components, and the hip cloth 9 will droop freely when the medical staff stands to perform the operation, the static electricity is released to the second fiber lining 13 through the metal fibers in the first fiber lining 2, and is released to the third metal wire branch 8 by the metal fibers in the second fiber lining 13, and then released to the ground by the end of the third metal wire branch 8. When the medical staff stands, the hip cloth 9 will droop freely, pressing the second fiber lining 13 tightly against the buttocks, and Driven by this, the third metal wire branch 8 is forced to be tightly attached to the back side of the leg. When static electricity is released, it is released along the leg to the ground, achieving the purpose of quickly releasing static electricity on the lower limbs. In particular, when the medical staff moves their waist, as the bending range increases, the fit of the hip cloth 9 to the buttocks becomes stronger, the fit of the metal fibers on the second fiber lining 13 to the buttocks also becomes stronger, and the force with which the hip cloth 9 presses the third metal wire branch 8 against the leg also becomes stronger. Even if the back side of the hem is lifted up due to the bending action, the hip cloth 9 can be used to fit the second fiber lining 13 to the buttocks, so that the static electricity release efficiency is further improved.
[0026] like Figures 1 to 3 As shown, the end of the third wire branch 8 is provided with an elastic spiral portion 15, and the elastic spiral portion 15 extends to the ground. The operation cannot be completed by one medical staff, and other personnel will inevitably step on the ground end of the third wire branch 8 when they work together. At this time, the elastic spiral portion 15 will release its length, and the elastic spiral portion 15 uses the characteristic of length release to increase the span of the medical staff when pacing, which will not cause discomfort. Since the range of surgical activities is small, the length of the elastic spiral portion 15 meets the environmental requirements.
[0027] A second fiber lining 13 is provided on the inner surface and the back surface of the hip cloth 9. The composition of the second fiber lining 13 is consistent with that of the first fiber lining 2. The second fiber lining 13 is arranged on the surface of the hip cloth 9. The top edge of the hip cloth 9 is sewn to the back inside of the garment body 1. The bottom edge of the hip cloth 9 falls freely. The third metal wire branch 8 passes through the second fiber lining 13 through the perforation 12 and interweaves with the metal fibers on the second fiber lining 13. The perforation 12 is inlaid with a metal ring 14. When the third metal wire branch 8 passes through the second fiber lining 13 through the metal ring 14 on the perforation 12, it will also contact the metal ring 14. The third metal wire branch 8 extends downward through the metal ring 14 on the hip cloth 9 and then is grounded. The metal ring 14 further collects the static electricity on the surgical gown, and then releases it to the ground through the third metal wire branch 8, thereby improving the release efficiency.
[0028] As a further preference, the fabric edge of the door flap 3 is streamlined. The shape of the anti-seepage cloth strip 5 is the same as that of the door flap 3. The top end of the door flap 3 is opened to the collar of the clothing body 1, and the bottom end of the door flap 3 is opened to the armpit under the right sleeve and extends from the armpit under the right sleeve to the hem, which increases the opening and closing range and facilitates the wearing by medical staff. The metal male buttons 7 and the metal female buttons 6 are arranged according to the shape of the door flap 3. Moreover, there are several metal female buttons 6, and several metal female buttons 6 are evenly distributed along the streamline of the door flap 3. There are several metal male buttons 7, and several metal male buttons 7 are evenly distributed along the streamline of the door flap 3 and are buckled with the metal female buttons 6 one by one. The metal wire 4 is covered within the anti-seepage cloth strip 5 and sequentially connects all the metal male buttons 7. Moreover, when the metal wire 4 passes through the door flap 3, it is sequentially connected to these metal male buttons 7. It can be seen from this that the metal wire 4 is inclined on the chest and is relatively long. Moreover, by using the buckling relationship of multiple metal male buttons 7, the release efficiency of static electricity to the three metal wire branches 8 is improved.
[0029] As Figure 1 , Figure 2 shown, at the cuffs of the left and right sleeves of the clothing body 1, there are first elastic structures 10, and at the hem of the clothing body 1, there is a second elastic structure 11. The two metal wire branches 8 extending along the left and right sleeves to the left and right cuffs respectively enter into the first elastic structures 10 and are connected to the inner surfaces of the first elastic structures 10. The first elastic structure 10 improves the tight relationship between the cuffs and the wrists, and the second elastic structure 11 improves the tight relationship between the hem and the legs, avoiding dust from entering the interior and generating additional static electricity, and improving the protection performance. The two metal wire branches 8 are connected to the first elastic structures 10, and can be directly close to the palms. The static electricity released to the surgical instruments can be directly released to these two metal wire branches 8 at a short distance, shortening the release path.
[0030] The above orientation references do not represent the specific orientations of the components in this implementation scheme. This implementation scheme is only for the convenience of describing the scheme and is set with relative descriptions with reference to the orientations in the figure. In essence, the specific orientations of the components are based on their actual installation, actual use, and the habitual orientation descriptions of those skilled in the art. This is hereby stated.
[0031] The above-described specific implementation manners have further elaborated on the invention purpose, technical solutions, and beneficial effects of the present invention. It should be understood that the above is only the specific implementation manner of the present invention and is not used to limit the protection scope of the present invention. It is particularly pointed out that for those skilled in the art, any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. The medical antibacterial and anti-permeation composite disposable surgical gown is characterized in that, It includes a clothing body (1) and a first fiber lining (2) provided on the inner side of the clothing body (1). The first fiber lining (2) is a mesh blended layer made of metal fibers and carbon fibers. A door closure (3) is provided on the front side of the clothing body (1). An anti-seepage cloth strip (5) is provided on one side of the door closure (3). A metal female button (6) is installed on the inner surface of the anti-seepage cloth strip (5). A metal male button (7) that is fastened to the metal female button (6) is installed on the other side of the door closure (3). A metal wire (4) is threaded through the metal male button (7). One end of the metal wire (4) enters the inner part of the clothing body (1) and is connected to the metal fibers in the first fiber lining (2). The other end of the metal wire (4) is provided with three metal wire branches (8). The first metal wire branch (8) is connected to the metal male button (7), and the metal male button (7) is sewn to one of the cuffs. Another metal wire branch (8) is sewn to the other cuff. A hip cloth (9) is connected to the inner surface of the back of the clothing body (1). A perforation (12) is provided on the hip cloth (9). The third metal wire branch (8) passes through the perforation (12) to the back of the hip cloth (9) and extends to the ground.
2. The disposable surgical gown of the medical antibacterial and anti-permeation composite type according to claim 1, wherein An elastic spiral part (15) is provided at the end of the third metal wire branch (8) described above, and the elastic spiral part (15) extends to the ground.
3. The disposable surgical gown of the medical antibacterial and anti-permeation composite type according to claim 2, characterized in that, A layer of second fiber lining (13) is provided on each of the inner surface and the back surface of the hip cloth (9). The composition of the second fiber lining (13) is the same as that of the first fiber lining (2). The second fiber lining (13) is provided on the surface of the hip cloth (9). The top edge of the hip cloth (9) is sewn to the inner side of the back of the clothing body (1). The bottom edge of the hip cloth (9) hangs freely. The third metal wire branch (8) passes through the second fiber lining (13) from the perforation (12) and is intertwined with the metal fibers on the second fiber lining (13).
4. The disposable surgical gown with medical antibacterial and anti-permeation composite according to claim 3, characterized in that, A metal ring (14) is inlaid on the perforation (12). When the third metal wire branch (8) passes through the second fiber lining (13) from the metal ring (14) on the perforation (12), it also contacts the metal ring (14).
5. The disposable surgical gown with medical antibacterial and anti-permeation composite according to claim 4, characterized in that, The top end of the door closure (3) is opened to the collar of the clothing body (1), and the bottom end of the door closure (3) is opened to the armpit under the right sleeve and is opened from the armpit under the right sleeve to the hem.
6. The medical antibacterial and anti-permeation composite disposable surgical gown according to claim 5, characterized in that, The cloth edge of the door closure (3) is streamlined, and the shape of the anti-seepage cloth strip (5) is the same as that of the door closure (3).
7. The disposable surgical gown of the medical antibacterial and anti-permeation composite type according to claim 6, characterized in that, There are several metal female buttons (6). The several metal female buttons (6) are evenly distributed along the streamline of the door closure (3). There are several metal male buttons (7). The several metal male buttons (7) are evenly distributed along the streamline of the door closure (3) and are fastened to the metal female buttons (6) one by one. The metal wire (4) is covered within the anti-seepage cloth strip (5) and sequentially connects all the metal male buttons (7).
8. The disposable surgical gown of the medical antibacterial and anti-permeation composite type according to claim 7, wherein, The cuffs of the left and right sleeves of the clothing body (1) are provided with a first elastic structure (10), the hem of the clothing body (1) is provided with a second elastic structure (11), and two wire branches (8) extending along the left and right sleeves to the left and right cuffs respectively enter into the first elastic structure (10) and are connected to the inner surface of the first elastic structure (10).