Shower type leather shaping device for shoemaking
The shower-type leather shaping device for shoemaking, which integrates rotation and spray components, solves the problem of uneven softening of leather in certain areas, achieves uniform wetting and efficient shaping of the entire surface, improves work efficiency and reduces production costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG ZHUOSINI SHOES CO LTD
- Filing Date
- 2025-05-13
- Publication Date
- 2026-04-17
AI Technical Summary
Existing shower-type leather shaping devices for shoemaking suffer from uneven softening of leather in certain areas, which can lead to wrinkles during subsequent shaping and reduce work efficiency.
A device was designed that includes a frame, a sealed chamber, a control component, a circulation component, a collection component, a rotating component, and a spraying component. The rotating component drives the leather to rotate at a constant speed, the spraying component achieves uniform spraying of the modified liquid on the entire surface, the circulation component enables the reuse and purification of the liquid, and the control component enables one-button operation, reducing manual intervention and evaporation loss.
This achieves uniform wetting of the entire leather surface, reduces the risk of wrinkles during subsequent shaping, improves overall work efficiency, and lowers production costs.
Smart Images

Figure CN224133085U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a processing equipment, and more specifically, to a shower-type leather shaping device for shoemaking. Background Technology
[0002] The shower-type leather shaping device for shoemaking is an innovative piece of equipment that combines spraying technology with a temperature control system. It is mainly used for softening, shaping, and drying leather. This device moistens, softens, and shapes the leather surface by uniformly spraying a prepared liquid. Although existing technologies can use steam softening machines (such as the XCXYc-R type) to perform shaping operations by relying on single-point steam injection, this approach is prone to uneven softening of the leather in certain areas, requiring multiple adjustments and reducing work efficiency. Therefore, a shower-type leather shaping device for shoemaking is needed. This device can cover the leather with spray to achieve uniform wetting of the entire surface, reduce the risk of wrinkles during subsequent shaping, and improve overall work efficiency.
[0003] For the reasons mentioned above, how to cover leather with spray is the problem that this application addresses. Utility Model Content
[0004] To address the shortcomings of existing technologies, a shower-type leather shaping device for shoemaking is provided. This device can cover the leather with spray to achieve uniform wetting of the entire surface, reduce the risk of wrinkles during subsequent shaping, and improve overall work efficiency.
[0005] To achieve the above objectives, the following technical solution is provided: a shower-type leather shaping device for shoemaking, comprising a frame, a sealed chamber, a control component, a circulation component, a collection component, a rotating component, and a spraying component. The control component, circulation component, collection component, and sealed chamber are all mounted on the frame, while the rotating component and spraying component are all mounted on the sealed chamber. The control component is used to control the opening and closing of the circulation component, rotating component, and spraying component. The rotating component is used to mount the leather and shaping mold, the spraying component is used to spray the conditioning liquid, and the circulation component is used to recycle the conditioning liquid.
[0006] In summary, the above technical solution has the following beneficial effects: leather shaping is usually a reprocessing operation, so the leather is fixed on the shaping mold in advance during the operation. The sealed chamber is installed in the frame to provide a closed working environment. The control component serves as the central control system. The circulation component can recycle the conditioning liquid to reduce production costs. The rotation component rotates the leather and the mold to speed up the shaping operation. The spraying component can spray the conditioning liquid.
[0007] In use, the operator installs the leather and shaping mold on the rotating component, and then starts the system through the control component. The rotating component starts to run, driving the leather to rotate at a constant speed. The spraying component starts and sprays the conditioning liquid evenly on the surface of the leather. The sprayed conditioning liquid is collected and transported to the circulation component. The circulation component transports the conditioning liquid to the spraying component. If necessary, the conditioning liquid can also be filtered, purified, etc. The treated conditioning liquid is then supplied to the spraying component for reuse.
[0008] This invention achieves one-button operation through an integrated control system with control components. The main shaping work is concentrated in a sealed chamber, with automated cyclic processing reducing manual intervention. It also enables the reuse of the conditioning liquid, and the closed design reduces the loss of conditioning liquid due to evaporation. Finally, the leather is sprayed with a spray component to achieve uniform wetting of the entire surface, reducing the risk of wrinkles during subsequent shaping and improving overall work efficiency. Attached Figure Description
[0009] Figure 1 A three-dimensional structural diagram of a shower-type leather shaping device for shoemaking;
[0010] Figure 2 This is a cross-sectional view of the present invention;
[0011] Figure 3 for Figure 2 A magnified view of a portion of point A in the middle.
[0012] Reference numerals: 1. Frame; 2. Sealed chamber; 3. Control assembly; 4. Circulation assembly; 5. Collection assembly; 6. Rotation assembly; 7. Spraying assembly;
[0013] 31. Circulating motor; 32. Drive belt; 33. Rotary motor;
[0014] 41. Feeding chamber; 42. Drive wheel; 43. Circulating drive shaft; 44. Mixing component; 45. Waterproof plate component; 46. Filter screen; 47. Feeding port; 48. Circulating pump;
[0015] 51. Collection chamber; 52. Funnel;
[0016] 61. Support component; 62. Base; 63. First rotary drive shaft; 64. First bevel gear; 65. Second rotary drive shaft; 66. Second bevel gear; 67. Rotary disk; 68. Positioning assembly;
[0017] 681. Mounting plate; 682. Mounting hole; 683. First bracket; 684. Second bracket; 685. Conical guide; 686. Moving part; 687. Positioning rod;
[0018] 71. Sprinkler head. Detailed Implementation
[0019] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments. Identical components are indicated by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "upper," and "lower" used in the following description refer to directions in the accompanying drawings, and the terms "bottom surface," "top surface," "inner," and "outer" refer to directions toward or away from the geometric center of a specific component, respectively.
[0020] Reference Figure 1-3 As shown, a shower-type leather shaping device for shoemaking includes a frame 1, a sealed chamber 2, a control component 3, a circulation component 4, a collection component 5, a rotating component 6, and a spraying component 7. The control component 3, circulation component 4, collection component 5, and sealed chamber 2 are all mounted on the frame 1, while the rotating component 6 and spraying component 7 are all mounted on the sealed chamber 2. The control component 3 is used to control the opening and closing of the circulation component 4, rotating component 6, and spraying component 7. The rotating component 6 is used to mount the leather and shaping mold, the spraying component 7 is used to spray the conditioning liquid, and the circulation component 4 is used to recycle the conditioning liquid.
[0021] The shaping of leather is usually a reprocessing operation. Therefore, the leather is fixed on the shaping mold in advance during the operation. The sealed chamber 2 is installed in the frame 1 to provide a closed working environment. The control component 3 serves as the central control system. The circulation component 4 can recycle the conditioning liquid to reduce production costs. The rotation component 6 rotates the leather and the mold to speed up the shaping operation. The spray component 7 can spray the conditioning liquid.
[0022] In use, the operator installs the leather and shaping mold on the rotating component 6, and then starts the system through the control component 3. The rotating component 6 starts to run, driving the leather to rotate at a uniform speed. The spraying component 7 starts to spray the conditioning liquid evenly on the surface of the leather. The sprayed conditioning liquid is collected and transported to the circulation component 4. The circulation component 4 transports the conditioning liquid to the spraying component 7. If necessary, the conditioning liquid can also be filtered, purified, etc. The treated conditioning liquid is then supplied to the spraying component 7 for use.
[0023] This invention achieves one-button operation through the integrated control system of the control component 3, and the main shaping operation is concentrated in the sealed chamber 2. The automated cyclic processing reduces manual intervention and enables the reuse of the conditioning liquid. The closed design reduces the evaporation loss of the conditioning liquid. Finally, the leather is sprayed and covered by the spray component 7 to achieve uniform wetting of the entire surface, reduce the risk of wrinkles during subsequent shaping, and improve the overall work efficiency.
[0024] Furthermore, the control component 3 includes a circulating motor 31 and a transmission belt 32, and the circulation component 4 includes a feeding chamber 41, a transmission wheel 42, a circulating transmission shaft 43, and a stirring component 44. The circulating motor 31 is connected to the transmission belt 32, the transmission belt 32 is connected to the transmission wheel 42, the transmission wheel 42 is fixedly connected to the circulating transmission shaft 43, the circulating transmission shaft 43 is rotatably connected to the feeding chamber 41, and the stirring component 44 is fixedly connected to the circulating transmission shaft 43.
[0025] Furthermore, the circulation component 4 also includes a waterproof plate 45. There are at least two waterproof plates 45, which are respectively disposed at both ends of the circulation drive shaft 43 and are fixedly connected to the feeding chamber 41.
[0026] Furthermore, the circulation component 4 also includes a filter screen 46, and the bottom of the feeding chamber 41 is provided with a feeding port 47. The interior of the bottom of the feeding chamber 41 is inclined toward the feeding port 47, and the filter screen 46 is fixedly connected to the feeding port 47.
[0027] The circulating motor 31 drives the transmission wheel 42 to rotate via the transmission belt 32, which in turn causes the circulating transmission shaft 43 to rotate. When the circulating transmission shaft 43 rotates, it drives the stirring component 44 to rotate and play a stirring role, thereby mixing the various conditioning liquids and moving them toward the feeding port 47. At the same time, a waterproof plate 45 is provided to prevent leakage. In addition, a filter screen 46 is provided to filter impurities and prevent damage to the leather.
[0028] Furthermore, the control component 3 also includes a rotary motor 33, and the rotary component 6 includes a support 61, a base 62, a first rotary drive shaft 63, a first bevel gear 64, a second rotary drive shaft 65, a second bevel gear 66, a rotary disk 67, and a positioning component 68. The rotary motor 33 is connected to the first rotary drive shaft 63, and the first rotary drive shaft 63 is fixedly connected to the first bevel gear 64. The two ends of the support 61 are fixedly connected to the base 62 and the inner wall of the sealed chamber 2, respectively. The first rotary drive shaft 63 is rotatably connected to the base 62. The second rotary drive shaft 65 is fixedly connected to the second bevel gear 66, and the second bevel gear 66 is meshed with the first bevel gear 64. The second bevel gear 66 is fixedly connected to the rotary disk 67, and the rotary disk 67 is rotatably connected to the base 62. The positioning component 68 is installed on the mounting plate 681 and is used to install leather and shaping molds.
[0029] Furthermore, the positioning component 68 includes a mounting plate 681, which has a plurality of mounting holes 682.
[0030] Furthermore, the positioning component 68 also includes a first bracket 683, and the spraying component 7 includes a spray head 71, which is fixedly connected to the sealed chamber 2 and located above the mounting plate 681. The spray head 71 is connected to the feeding port 47, and both ends of the first bracket 683 are fixedly connected to the mounting plate 681 and the spray head 71, respectively.
[0031] Furthermore, the positioning component 68 also includes a second bracket 684 and a conical guide 685, the conical guide 685 being mounted on the rotating disk 67, and the two ends of the second bracket 684 being fixedly connected to the rotating disk 67 and the mounting disk 681, respectively.
[0032] Furthermore, the positioning component 68 also includes a movable part 686 and a plurality of positioning rods 687, the movable part 686 being slidably connected to the first bracket 683, and the positioning rods 687 being slidably connected to the movable part 686.
[0033] The rotary motor 33 drives the second bevel gear 66 to rotate through the first rotary transmission shaft 63 and the first bevel gear 64, thereby causing the rotary disk 67, which is fixedly connected to the second rotary transmission shaft 65, to rotate. The conditioning liquid passing through the filter screen 46 can be sprayed directly onto the rotary disk 67 through the spray head 71. When the rotary disk 67 rotates, it will generate a centrifugal force on the conditioning liquid, thereby separating the conditioning liquid from the leather. Therefore, the rotary disk 67 can be rotated slowly during the setting operation, and the rotary disk can be rotated quickly after the setting is completed to accelerate the separation of the conditioning liquid.
[0034] The shaping mold can be directly installed on the mounting plate 681 by plugging it in. If the leather itself is relatively hard, a positioning rod 687 can be used to assist in shaping the leather. The movable parts 686 and the positioning rod 687 can be adjusted according to the actual use.
[0035] When the rotating disk 67 rotates slowly, the conditioning liquid may be relatively viscous and therefore easily accumulates, affecting the setting operation. Therefore, a conical guide 685 is required to guide the conditioning liquid to the bottom of the sealed chamber 2. The mounting hole 682 is usually large and will not affect the flow of the conditioning liquid.
[0036] Furthermore, the circulation assembly 4 also includes a circulation pump 48, and the collection assembly 5 includes a collection chamber 51 and a funnel 52. The funnel 52 is connected to the collection chamber 51 and is located below the rotating disk 67. Both the collection chamber 51 and the feeding chamber 41 are connected to the circulation pump 48 and are used to transfer the conditioning liquid in the collection chamber 51 to the feeding chamber 41.
[0037] The above are merely preferred embodiments of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are within its protection scope. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within its protection scope.
Claims
1. A shower type leather shaping device for shoe manufacturing, characterized in that, The device includes a frame, a sealed chamber, a control assembly, a circulation assembly, a collection assembly, a rotating assembly, and a spraying assembly. The control assembly, circulation assembly, collection assembly, and sealed chamber are all mounted on the frame. The rotating assembly and spraying assembly are all mounted on the sealed chamber. The control assembly is used to control the opening and closing of the circulation assembly, the rotating assembly, and the spraying assembly. The rotating assembly is used to mount leather and shaping molds. The spraying assembly is used to spray the conditioning liquid. The circulation assembly is used to recycle the conditioning liquid.
2. The shower type leather shaping device for shoe manufacturing according to claim 1, wherein, The control component includes a circulating motor and a transmission belt. The circulating component includes a feeding chamber, a transmission wheel, a circulating transmission shaft, and a stirring component. The circulating motor is connected to the transmission belt, the transmission belt is connected to the transmission wheel, the transmission wheel is fixedly connected to the circulating transmission shaft, the circulating transmission shaft is rotatably connected to the feeding chamber, and the stirring component is fixedly connected to the circulating transmission shaft.
3. The shower type leather shaping device for shoe manufacturing according to claim 2, wherein, The circulation assembly also includes waterproof plates, and there are at least two waterproof plates. The two waterproof plates are respectively disposed at both ends of the circulation drive shaft and are fixedly connected to the feeding chamber.
4. The shower type leather shaping device for shoe manufacturing according to claim 3, wherein The circulation assembly also includes a filter screen, and the bottom of the feeding chamber is provided with a feeding port. The interior of the bottom of the feeding chamber is inclined towards the feeding port, and the filter screen is fixedly connected to the feeding port.
5. The shower type leather shaping device for shoe making according to claim 4, wherein, The control assembly further includes a rotary motor. The rotary assembly includes a support, a base, a first rotary transmission shaft, a first bevel gear, a second rotary transmission shaft, a second bevel gear, a rotating disk, and a positioning assembly. The rotary motor is connected to the first rotary transmission shaft, which is fixedly connected to the first bevel gear. Both ends of the support are fixedly connected to the base and the inner wall of the sealed chamber, respectively. The first rotary transmission shaft is rotatably connected to the base. The second rotary transmission shaft is fixedly connected to the second bevel gear, which meshes with the first bevel gear. The second bevel gear is fixedly connected to the rotating disk, which is rotatably connected to the base. The positioning assembly is installed on the mounting plate and is used to install leather and shaping molds.
6. The shower type leather shaping device for shoe manufacturing according to claim 5, wherein The positioning component includes a mounting plate with multiple mounting holes.
7. The shower type leather shaping device for shoe making according to claim 6, wherein The positioning component also includes a first bracket, and the spraying component includes a spray head. The spray head is fixedly connected to the sealed chamber and is located above the mounting plate. The spray head is connected to the feeding port, and the two ends of the first bracket are fixedly connected to the mounting plate and the spray head, respectively.
8. The shower type leather shaping device for shoe manufacturing according to claim 6, wherein The positioning assembly also includes a second bracket and a conical guide, the conical guide being mounted on the rotating disk, and the two ends of the second bracket being fixedly connected to the rotating disk and the mounting disk, respectively.
9. The shower type leather shaping device for shoe manufacturing according to claim 7, wherein, The positioning component further includes a movable component and multiple positioning rods. The movable component is slidably connected to the first bracket, and the positioning rods are slidably connected to the movable component.
10. The shower type leather shaping device for shoe manufacturing according to claim 5, wherein, The circulation assembly also includes a circulation pump, and the collection assembly includes a collection chamber and a funnel. The funnel is connected to the collection chamber and is located below the rotating disk. Both the collection chamber and the feeding chamber are connected to the circulation pump and are used to transfer the conditioning liquid in the collection chamber to the feeding chamber.