A chest radiography integrated radiation protection lead suit
By designing an integrated protective lead suit, which uses a PVC outer protective layer, a lead layer, and a carbon fiber layer, combined with a lead glass observation window and Velcro fastening, the problems of inconvenience in wearing traditional radiation protection suits and protective loopholes are solved, achieving fast, comfortable and effective radiation protection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XIANGNAN UNIV
- Filing Date
- 2025-04-24
- Publication Date
- 2026-07-03
AI Technical Summary
Traditional split-type radiation protection lead suits are inconvenient to wear, and protective gaps are easily created at the joints between components. Furthermore, scattered radiation can easily accumulate in confined spaces, affecting the protective effect.
An integrated protective lead suit was designed, consisting of the protective suit body and the testing suit. It uses a PVC outer protective layer, a lead layer and a polyurethane inner lining, combined with a carbon fiber layer. It is equipped with a lead glass observation window and Velcro fasteners to improve the ease of wearing and the protective effect.
It enables quick donning and doffing, effective protection, reduces radiation hazards, ensures clear vision, adapts to different body shapes, and improves wearing comfort and the protective effect of protective clothing.
Smart Images

Figure CN224441361U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of radiation protection lead clothing technology, and in particular to an integrated radiation protection lead clothing for chest X-ray imaging. Background Technology
[0002] In the field of medical diagnostics, chest examinations, such as X-rays and CT scans, are extremely common and important, providing doctors with crucial diagnostic information to assist in the accurate diagnosis and treatment planning of diseases. However, the ionizing radiation generated by these examinations, while bringing convenience to medical care, also poses a potential threat to human health. Long-term or excessive exposure to radiation can increase the risk of cancer and damage the immune and reproductive systems. As a key location for conducting chest examinations, the spatial layout and protection requirements of the computer room are closely related. Small computer rooms, with their limited space, compact equipment arrangement, and restricted personnel movement, present many unique challenges to radiation protection work.
[0003] Currently, traditional two-piece lead suits for radiation protection require considerable time to put on and adjust multiple parts, making them inconvenient to put on and take off. Furthermore, in small computer rooms, the scattering effect of radiation from walls and equipment is more pronounced, and scattered radiation tends to accumulate in confined spaces, increasing radiation levels. The joints between the components of two-piece lead suits are also prone to leaks, leading to radiation leakage and compromising protective effectiveness. Utility Model Content
[0004] The purpose of this invention is to solve the problems of existing traditional split-type radiation protection lead suits, which require a lot of time to put on and adjust multiple parts, making them inconvenient to put on and take off. Furthermore, in small machine rooms, the scattering effect of radiation from walls and equipment is more pronounced, and scattered radiation tends to accumulate in confined spaces, increasing radiation levels. Additionally, the joints between the components of split-type lead suits are prone to protective gaps, leading to radiation leakage and affecting the protective effect. Therefore, this invention proposes an integrated radiation protection lead suit for chest X-ray imaging.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] An integrated radiation protection lead suit for chest X-ray imaging includes a protective suit body and an inspection suit. The inspection suit has elastic bands sewn onto both sides of the chest area. The top of the protective suit body has an integrated protective cap with an observation window on its outer surface. One side of the integrated protective cap has a protective neck warmer with a first fleece layer on one side, and another side of the integrated protective cap has a first hook-and-loop layer bonded together. The inside of the protective neck warmer has a lead protective pad. The bottom of the inspection suit has a front skirt and a back skirt, both with Velcro fasteners on their inner sides.
[0007] Furthermore, the protective suit body, front skirt, and back skirt are made of a PVC outer protective layer, a lead layer, and a polyurethane inner lining bonded together.
[0008] Furthermore, the testing garment is composed of an outer fabric layer, a resin matrix layer, and a carbon fiber layer bonded together.
[0009] Furthermore, the observation window is specifically made of lead glass.
[0010] Furthermore, the integrated protective cap has a breathing opening on one side.
[0011] Furthermore, the bottom of the testing garment is fitted with a connecting strap, and both ends of the connecting strap are connected to adjustment buckles.
[0012] Furthermore, a waistband is provided on one side of the connecting belt.
[0013] The beneficial effects of this utility model are as follows:
[0014] 1. This utility model avoids the protection loopholes at the joints of traditional split lead suit components through an integrated design, effectively blocking radiation and reducing the harm of radiation to the human body. The observation window of the integrated protective cap structure is inlaid with lead glass, which can protect the head and eyes and ensure clear vision without affecting the operator's normal work. The protective neck guard contains carbon fiber on both sides and lead in the middle, which is beneficial to protect the thyroid gland and does not affect the generation of images of the lung apex.
[0015] 2. This utility model uses Velcro closures at the front and back hems, the connection between the integrated protective cap and the neck, and Velcro closures on both sides, allowing for quick donning and doffing in a very small space, thus improving efficiency. There is also a plastic adjustment buckle at the waist, which allows people of different body shapes to adjust the tightness of the protective clothing according to their own situation, thus improving the comfort of wearing it.
[0016] 3. The examination gown of this utility model is made of carbon fiber material, with the chest, left and right shoulders and upper arms made of carbon fiber material, which has good X-ray transmission performance and will not affect the X-ray imaging effect. Attached Figure Description
[0017] Figure 1 This is a front view structural diagram of an integrated radiation protection lead suit for chest X-ray imaging proposed in this utility model.
[0018] Figure 2 This is a rear view structural diagram of an integrated radiation protection lead suit for chest X-ray imaging proposed in this utility model.
[0019] Figure 3 This is a schematic diagram of the integrated protective cap structure of an integrated radiation protection lead suit for chest X-ray imaging proposed in this utility model.
[0020] Figure 4 This is a cross-sectional structural diagram of the protective suit body of an integrated radiation protection lead suit for chest X-ray imaging proposed in this utility model.
[0021] Figure 5 This is a cross-sectional structural diagram of the detection garment of the integrated radiation protection lead suit for chest X-ray imaging proposed in this utility model.
[0022] In the diagram: 1. Protective suit body; 101. PVC outer protective layer; 102. Lead layer; 103. Polyurethane inner lining; 2. Testing suit; 201. Outer fabric; 202. Resin matrix layer; 203. Carbon fiber layer; 3. Elastic chest band; 4. Integrated protective cap; 5. Observation window; 6. Breathing opening; 7. Protective neck warmer; 8. Lead protective pad; 9. First felt layer; 10. First hook-and-loop layer; 11. Front skirt; 12. Back skirt; 13. Velcro closure; 14. Connecting strap; 15. Adjustment buckle; 16. Waist sash. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0024] Reference Figures 1-5 A one-piece radiation protection lead suit for chest X-ray imaging includes a protective suit body 1 and a detection suit 2. Both sides of the detection suit 2 are sewn with elasticated chest straps 3, which facilitate wearing by individuals of different body shapes. The top of the protective suit body 1 is equipped with an integrated protective cap 4, and the outer surface of the integrated protective cap 4 has an observation window 5, specifically made of lead glass. The lead glass ensures a certain level of visual clarity while maintaining protective effectiveness. One side of the integrated protective cap 4 has a breathing opening 6, and another side of the integrated protective cap 4 has a protective neck brace 7. The protective neck brace 7 can... It can better protect the neck and prevent radiation from entering through the gap between the integrated protective cap 4 and the protective clothing body 1. The protective neck warmer 7 has a first fleece layer 9 on one side and a first hook layer 10 on one side of the integrated protective cap 4. The first fleece layer 9 and the first hook layer 10 are bonded together. The user can adjust the tightness and length appropriately through the first fleece layer 9 and the first hook layer 10. The protective neck warmer 7 has a lead protection pad 8 inside. The bottom of the detection clothing 2 has a front skirt 11 and a back skirt 12. The inside of the front skirt 11 and the back skirt 12 are equipped with Velcro fasteners 13.
[0025] The protective suit body 1, the front skirt 11 and the back skirt 12 are made of PVC outer protective layer 101, lead layer 102 and polyurethane inner lining 103 bonded together. The inspection suit 2 is made of outer fabric 201, resin matrix layer 202 and carbon fiber layer 203 bonded together. The carbon fiber layer 203 has good X-ray transmission performance and will not affect the X-ray imaging effect. The bottom of the inspection suit 2 is fitted with a connecting strap 14, and both ends of the connecting strap 14 are connected to the adjusting buckle 15. A waist belt 16 is provided on one side of the connecting strap 14.
[0026] The working principle of this embodiment is as follows: During use, the radiation protection lead suit for radiology, with its integrated protective cap 4 topped with a protective neck guard 7, allows the user to adjust the tightness and length using the first textured surface 9 and the first hook-and-loop surface 10. This prevents the integrated protective cap 4 from slipping off or becoming loose. The protective neck guard 7 effectively protects the neck, preventing radiation from entering through the gap between the integrated protective cap 4 and the testing suit 2. The testing suit 2 has an elasticated chest band 3 for comfort for individuals of different body types. The user slips the suit over their head, closes it using the Velcro 13, and then adjusts the chest adjustment buckle 15 and waist Velcro 13 according to their body shape, achieving comfortable and effective protection. This convenient wearing method solves the problem of inconvenient wearing of existing radiation protection suits, making the protective suit 1 easy to wear, saving time, and suitable for relevant X-ray work environments. The observation window 5 of the integrated protective cap 4 incorporates lead glass in the glasses area, ensuring both protective effectiveness and a certain degree of visual clarity. The protective neck warmer (7) uses a lead protective layer at the thyroid gland area and a black X-ray transparent carbon fiber layer (203) for the remaining areas, ensuring protection of the thyroid gland without obstructing vital organs during chest examinations. The examination gown (2) also uses black X-ray transparent carbon fiber material to better visualize vital organs during chest examinations.
[0027] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A chest radiography integrated radiation protection lead suit comprising a protection suit body (1) and a detection suit (2), characterized in that, The testing suit (2) has elastic bands (3) sewn on both sides. The top of the protective suit body (1) is provided with an integrated protective cap (4), and the outer surface of the integrated protective cap (4) is provided with an observation window (5). The integrated protective cap (4) is provided with a protective neck brace (7) on one side, and the protective neck brace (7) is provided with a first fleece layer (9) on one side. The integrated protective cap (4) is provided with a first hook layer (10) on one side. The first fleece layer (9) is bonded to the first hook layer (10). The protective neck brace (7) is provided with a lead protective pad (8) inside. The bottom of the testing suit (2) is provided with a front skirt (11) and a back skirt (12). The inner sides of the front skirt (11) and the back skirt (12) are provided with Velcro fasteners (13).
2. The integrated radiological protection lead vest for chest radiography according to claim 1, wherein, The protective suit body (1), front skirt (11) and back skirt (12) are made of a PVC outer protective layer (101), a lead layer (102) and a polyurethane inner lining (103) bonded together.
3. The integrated radiological protection lead vest for chest radiography according to claim 1, wherein, The testing garment (2) is composed of an outer fabric (201), a resin matrix layer (202), and a carbon fiber layer (203) bonded together.
4. The integrated radiological protection lead vest for chest radiography of claim 1, wherein, The observation window (5) is specifically made of lead glass.
5. The integrated radiation protection lead suit for chest X-ray imaging according to claim 1, characterized in that, The integrated protective cap (4) has a breathing opening (6) on one side.
6. The integrated radiological protective lead vest for chest radiography of claim 1, wherein, The bottom of the testing garment (2) is fitted with a connecting strap (14), and both ends of the connecting strap (14) are connected to the adjusting buckle (15).
7. The integrated radiological protective lead vest for chest radiography of claim 6, wherein, A waistband (16) is provided on one side of the connecting belt (14).