Manual control rolling tool and manual control mechanism
By setting up a hand-controlled component and an automatic control mechanism on the glass product rolling fixture, the clamping or releasing of the rolling component can be controlled by hand, which solves the problem of complicated operation requiring both hands and feet in the existing technology, and improves rolling efficiency and ease of operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-04-10
AI Technical Summary
Existing glass product rolling fixtures require both hand and foot operation, resulting in a complex and inefficient process.
Design a hand-controlled rolling fixture. By setting a hand control component and a rolling component on a fixed plate and equipping it with an automatic control mechanism, the operation only requires hand control. The fixture includes components such as a handle, switch operation component, control component, and cylinder valve to achieve automatic control of clamping or releasing.
The operation process is simplified, the rolling efficiency is improved, the operation is more convenient, the number of movements is reduced, and the production cycle is increased.
Smart Images

Figure CN224105737U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of rolling technology, especially to a hand control rolling tool and hand control mechanism. BACKGROUND
[0002] The existing glass product rolling tool usually adopts the way of controlling by stepping on the foot and cooperating with the hand to move the rolling tool to complete the rolling work of the glass product. However, the use of the tool requires the operation of the hands and feet, resulting in more actions and slower rhythm in the whole operation process, and there are problems of complex operation process and inconvenience in use. UTILITY MODEL CONTENTS
[0003] The utility model solves the technical problem of providing a hand control rolling tool and hand control mechanism, which is more convenient to operate and improves the rolling efficiency.
[0004] In order to solve the above technical problems, the utility model adopts the technical scheme of:
[0005] A hand control rolling tool, comprising a fixed plate, a hand control assembly and a rolling assembly; the hand control assembly is arranged on the control surface of the fixed plate; the rolling assembly is arranged on the rolling surface of the fixed plate; the rolling assembly comprises an automatic control mechanism; the signal end of the automatic control mechanism is connected with the hand control assembly; the control end of the hand control assembly is used as a control switch to control the automatic control mechanism to clamp or release the rolling assembly.
[0006] Further, it further comprises a handle; the handle is arranged on the control surface of the fixed plate; one end of the handle is connected with the fixed plate, and the other end of the handle is connected with the hand control assembly; the handle is used for holding and cooperating with the hand control assembly to control the switch.
[0007] Further, the hand control assembly comprises a switch operating piece and a control piece; the input end of the switch operating piece is connected with the control piece; the output end of the control piece is connected with the control end of the automatic control mechanism.
[0008] Further, the rolling assembly comprises a first roller and a second roller oppositely arranged in a first direction, and a clamping gap is formed between the first roller and the second roller; the movable end of the automatic control mechanism is connected with the first roller or / and the second roller, so as to increase or decrease the clamping gap.
[0009] Further, the rolling assembly further comprises a third roller and a fourth roller oppositely arranged in a second direction; the second direction is perpendicular to the first direction, and the first roller and the second roller are arranged between the third roller and the fourth roller; the third roller and the fourth roller are used for abutting against the edge of the product.
[0010] Further, the first roller, the second roller, the third roller and the fourth roller all comprise resin rollers.
[0011] Further, the automatic control mechanism comprises a gas valve and a gas cylinder; a gas outlet position of the gas valve corresponds to and is connected to a gas inlet position of the gas cylinder; a movable end of the gas cylinder is rotatably connected to the first roller or the second roller; and a control end of the gas valve is connected to a signal end of the hand control assembly.
[0012] Further, the gas cylinder comprises switchable first and second gas inlets; and the gas inlet and outlet states of the first gas inlet and the second gas inlet are opposite.
[0013] To solve the above technical problems, the utility model adopts the technical scheme that:
[0014] A hand control mechanism comprises a gas cylinder and a gas valve; the gas cylinder comprises first and second gas inlets; the gas valve comprises first and second gas outlets; the first gas outlet of the gas valve is connected to the first gas inlet of the gas cylinder; and the second gas outlet of the gas valve is connected to the second gas inlet of the gas cylinder.
[0015] To solve the above technical problems, the utility model adopts the technical scheme that:
[0016] A hand control mechanism comprises a gas cylinder and a gas valve; the gas cylinder comprises first and second gas inlets; the gas valve comprises first and second gas outlets; the first gas outlet of the gas valve is connected to the second gas inlet of the gas cylinder; and the second gas outlet of the gas valve is connected to the first gas inlet of the gas cylinder.
[0017] The utility model discloses the beneficial effect lies in: through setting up hand control assembly and setting up the rolling pressure assembly on the fixed plate rolling pressure surface respectively on the control surface of fixed plate, and the rolling pressure assembly comprises an automatic control mechanism, and the signal end of hand control assembly and automatic control mechanism, so that after the control signal generated through the control end of hand control assembly, makes automatic control mechanism control rolling pressure assembly and clamps or releases, and the whole control process can be realized only through hand operation, compared with the operation mode of the prior art that needs to use hands and feet, operation is more convenient and the rolling pressure efficiency is higher. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a structure schematic view of a hand control rolling tool in the utility model embodiment;
[0019] Figure 2 It is a front view of a hand control rolling tool in the utility model embodiment;
[0020] Figure 3 is a rear view of a hand control rolling tool according to an embodiment of the present application;
[0021] Figure 4 is an electrical connection schematic diagram of a hand control mechanism according to an embodiment of the present application;
[0022] Figure 5 is another electrical connection schematic diagram of a hand control mechanism according to an embodiment of the present application;
[0023] Figure 6 is a use schematic diagram of a hand control rolling tool according to an embodiment of the present application;
[0024] Label explanation:
[0025] 1, fixed plate; 11, control surface; 12, rolling surface;
[0026] 2, hand control assembly; 21, switch operating piece; 22, control piece;
[0027] 3, rolling assembly; 31, automatic control mechanism; 311, gas valve; 3111, first gas outlet; 3112, second gas outlet; 312, gas cylinder; 3121, first air inlet; 3122, second air inlet; 313, roller support; 32, first roller; 33, second roller; 34, third roller; 35, fourth roller;
[0028] 4, handle; 5, glass; 6, clamping strip. DETAILED DESCRIPTION
[0029] In order to make the technical content of the present application, the purpose and effect achieved are clear, the following will be described in conjunction with the drawings.
[0030] The traditional glass rolling process needs to be operated by hands and feet, resulting in many actions and slow rhythm in the whole operation process, and there are problems of complex operation process and inconvenience for use.
[0031] Therefore, based on the above-mentioned technical problems, the present application provides a hand control rolling tool, which sets the hand control assembly and the rolling assembly on the fixed plate, so that the whole control process can be realized only by hand operation, thereby simplifying the existing operation mode and improving the rolling efficiency.
[0032] Among them, the application takes the application scene of rolling production when installing the lower clamping strip of the automobile front windshield glass as an example to introduce the structure of the hand control rolling tool and its use mode. The hand control rolling tool provided by the present application is not only suitable for automobile front windshield glass production, but also suitable for other product rolling production application scenes, specifically:
[0033] Please refer to Figures 1-3The utility model provides a hand control rolling tool, including fixed plate 1, hand control subassembly 2 and rolling subassembly 3, hand control subassembly 2 sets up in the control surface 11 of fixed plate 1, and rolling subassembly 3 sets up in the rolling surface 12 of fixed plate 1, and rolling subassembly 3 includes automatic control mechanism 31, and automatic control mechanism 31 is connected with the signal end of hand control subassembly 2, and the control end of hand control subassembly 2 is used as control switch to make automatic control mechanism 31 control rolling subassembly 3 to carry out clamping or release, through setting up hand control subassembly 2 on the control surface 11 of fixed plate 1 respectively and setting up rolling subassembly 3 on the rolling surface 12 of fixed plate 1, and rolling subassembly 3 includes automatic control mechanism 31, and the signal end of hand control subassembly 2 is connected with automatic control mechanism 31, so that after generating control signal through the control end of hand control subassembly 2, makes automatic control mechanism 31 control rolling subassembly 3 to carry out clamping or release, and the whole control process can be realized only through hand operation, compared with the operation mode of using hands and feet simultaneously, operation is more convenient and rolling efficiency is higher.
[0034] In some embodiments, the handle 4 is further included; the handle 4 is arranged on the control surface 11 of the fixed plate 1; one end of the handle 4 is connected with the fixed plate 1, and the other end of the handle 4 is connected with the hand control subassembly 2; the handle 4 is used for holding and cooperating with the hand control subassembly 2 to control the switch. By arranging the handle 4, the operator can more conveniently operate the tool.
[0035] In some embodiments, the hand control subassembly 2 includes a switch operating member 21 and a control member 22; the switch operating member 21 is connected with the input end of the control member 22; the output end of the control member 22 is connected with the control end of the automatic control mechanism 31. That is, after generating the control signal by operating the switch operating member 21, the control member 22 reacts to the control signal and transmits it to the automatic control mechanism 31, so that the automatic control mechanism 31 controls the rolling subassembly 3 to clamp or release.
[0036] In some embodiments, the rolling subassembly 3 includes a first roller 32 and a second roller 33 oppositely arranged in a first direction, and a clamping gap is formed between the first roller 32 and the second roller 33; the movable end of the automatic control mechanism 31 is connected with the first roller 32 or / and the second roller 33, so as to increase or decrease the clamping gap. That is, by controlling the automatic control mechanism 31 to increase or decrease the clamping gap, the clamping or release of the glass 5 is realized; and the rolling in the clamping direction can be carried out during the clamping process.
[0037] In some embodiments, the rolling assembly 3 further comprises a third roller 34 and a fourth roller 35 arranged oppositely in a second direction; the second direction is perpendicular to the first direction, and the first roller 32 and the second roller 33 are arranged between the third roller 34 and the fourth roller 35; the third roller 34 and the fourth roller 35 are used to abut against the edge of the product. By arranging the third roller 34 and the fourth roller 35 in the second direction perpendicular to the first direction, and arranging the first roller 32 and the second roller 33 between the third roller 34 and the fourth roller 35, the stability of the rolling process is improved by abutting the third roller 34 and the fourth roller 35 against the edge of the glass 5, and the third roller 34 and the fourth roller 35 play a guiding role to enable rolling along the edge of the glass 5.
[0038] In an optional embodiment, the first roller 32, the second roller 33, the third roller 34 and the fourth roller 35 all comprise resin rollers. By using resin rollers as the first roller 32, the second roller 33, the third roller 34 and the fourth roller 35, damage to the edge and surface of the glass 5 during the rolling process can be avoided.
[0039] In some embodiments, the automatic control mechanism 31 comprises an air valve 311 and an air cylinder 312; the air outlet position of the air valve 311 corresponds to and is connected to the air inlet position of the air cylinder 312; the movable end of the air cylinder 312 is rotatably connected to the first roller 32 or the second roller 33; and the control end of the air valve 311 is connected to the signal end of the manual control assembly 2. By controlling the extension and retraction of the air cylinder 312 through the air valve 311, the first roller 32 or the second roller 33 is driven to extend and retract by the air cylinder 312, so as to adjust the size of the clamping gap and complete clamping or releasing of the glass 5.
[0040] In some embodiments, the air cylinder 312 comprises a first air inlet 3121 and a second air inlet 3122 which are switchable; the air inlet and outlet states of the first air inlet 3121 and the second air inlet 3122 are opposite, i.e., when the first air inlet 3121 is in the air inlet state, the second air inlet 3122 is in the air outlet state; and when the first air inlet 3121 is in the air outlet state, the second air inlet 3122 is in the air inlet state. By arranging the first air inlet 3121 and the second air inlet 3122 which are switchable on the air cylinder 312, and by making the control logic of the first air inlet 3121 opposite to that of the second air inlet 3122, the clamping or releasing control of the rolling assembly 3 can be realized based on different control modes.
[0041] In some embodiments, the movable end of the air cylinder 312 is provided with a roller support 313; the roller support 313 is rotatably connected to the first roller 32 or the second roller 33. By providing the roller support 313 on the movable end of the air cylinder 312, the stability of the first roller 32 or the second roller 33 can be improved.
[0042] In some embodiments, the air cylinder 312, the roller support 313, the first roller 32 and the second roller 33 are arranged in a line. By arranging the air cylinder 312, the roller support 313, the first roller 32 and the second roller 33 in a line, the first roller 32 and the second roller 33 move in a direction perpendicular to the surface of the glass 5, i.e. the force exerted by the first roller 32 and the second roller 33 on the surface of the glass 5 is perpendicular to the glass 5, so that a better clamping effect on the glass 5 can be achieved.
[0043] Please refer to Figure 4 A hand control mechanism includes an air cylinder 312 and an air valve 311; the air cylinder 312 includes a first air inlet 3121 and a second air inlet 3122; the air valve 311 includes a first air outlet 3111 and a second air outlet 3112; the first air outlet 3111 of the air valve 311 is connected to the first air inlet 3121 of the air cylinder 312; the second air outlet 3112 of the air valve 311 is connected to the second air inlet 3122 of the air cylinder 312. That is, when the first air inlet 3121 is supplied with air, the air cylinder 312 retracts, and the roller assembly 3 loosens the product; the second air inlet 3122 is supplied with air, the air cylinder 312 extends, and the roller assembly 3 clamps; so that when the control end of the hand control assembly 2 is pressed for a long time, the air cylinder 312 is controlled to extend, so that the clamping gap gradually decreases; and when the control end of the hand control assembly 2 is released, the air cylinder 312 is controlled to retract, so that the clamping gap gradually increases, thereby achieving control of clamping and releasing.
[0044] Please refer to Figure 5 A hand control mechanism includes an air cylinder 312 and an air valve 311; the air cylinder 312 includes a first air inlet 3121 and a second air inlet 3122; the air valve 311 includes a first air outlet 3111 and a second air outlet 3112; the first air outlet 3111 of the air valve 311 is connected to the second air inlet 3121 of the air cylinder 312; the second air outlet 3112 of the air valve 311 is connected to the first air inlet 3122 of the air cylinder 312. That is, when the first air inlet 3121 is supplied with air, the air cylinder 312 extends, and the roller assembly 3 clamps the product; the second air inlet 3122 is supplied with air, the air cylinder 312 retracts, and the roller assembly 3 loosens the product; so that when the control end of the hand control assembly 2 is actuated, the air cylinder 312 is controlled to retract, so that the clamping gap gradually increases; and when the control end of the hand control assembly 2 is released, the air cylinder 312 is controlled to extend, so that the clamping gap gradually decreases, thereby achieving control of clamping and releasing.
[0045] The following embodiments are preferred solutions of the above-mentioned embodiments.
[0046] Please refer to Figures 1 to 4The hand control rolling tool comprises a fixed plate 1, a hand control assembly 2 and a rolling assembly 3; the hand control assembly 2 is arranged on a control surface 11 of the fixed plate 1; the rolling assembly 3 is arranged on a rolling surface 12 of the fixed plate 1; the rolling assembly 3 comprises an automatic control mechanism 31; the automatic control mechanism 31 is connected with a signal end of the hand control assembly 2; a control end of the hand control assembly 2 serves as a control switch for enabling the automatic control mechanism 31 to control the rolling assembly 3 to clamp or release. The tool further comprises a handle 4; the handle 4 is arranged on the control surface 11 of the fixed plate 1; one end of the handle 4 is connected with the fixed plate 1, and the other end of the handle 4 is connected with the hand control assembly 2; the handle 4 is used for holding and cooperating with the hand control assembly 2 to control the switch.
[0047] Please refer to Figure 2 The rolling assembly 3 comprises a first roller 32 and a second roller 33 arranged oppositely in a first direction, and a clamping gap is formed between the first roller 32 and the second roller 33; a movable end of the automatic control mechanism 31 is connected with the first roller 32 or / and the second roller 33, so as to increase or decrease the clamping gap; meanwhile, the rolling assembly 3 further comprises a third roller 34 and a fourth roller 35 arranged oppositely in a second direction; the second direction is perpendicular to the first direction, and the first roller 32 and the second roller 33 are arranged between the third roller 34 and the fourth roller 35; the third roller 34 and the fourth roller 35 are used for abutting against the edge of a product. The first direction is perpendicular to the surface of the glass, and the second direction is parallel to the surface of the glass; the number of the first roller 32, the second roller 33, the third roller 34 and the fourth roller 35 can be adjusted according to actual conditions, for example, a plurality of sets of the third roller 34 and the fourth roller 35 can be arranged on both sides of the first roller 32 and the second roller 33, or a plurality of sets of the first roller 32 and the second roller 33 can be arranged on the third roller 34 and the fourth roller 35. In an optional embodiment, the first roller 32, the second roller 33, the third roller 34 and the fourth roller 35 are all resin rollers.
[0048] Please refer to Figure 1 and Figure 3, the automatic control mechanism 31 comprises a gas valve 311 and a cylinder 312; the gas outlet position of the gas valve 311 corresponds to the gas inlet position of the cylinder 312, and they are connected correspondingly; the movable end of the cylinder 312 is rotatably connected with the first roller 32 or the second roller 33; for example, in the embodiment, the cylinder 312 is arranged at the lower end of the second roller 33, and the cylinder 312 is rotatably connected with the second roller 33; the control end of the gas valve 311 is connected with the signal end of the hand control assembly 2. Wherein, the movable end of the cylinder 312 is provided with a roller support 313; the roller support 313 is rotatably connected with the first roller 32 or the second roller 33. Moreover, the cylinder 312, the roller support 313, the first roller 32 and the second roller 33 are arranged in a line. The hand control assembly 2 comprises a switch operating part 21 and a control part 22; the switch operating part 21 is connected with the input end of the control part 22; the output end of the control part 22 is connected with the control end of the telescopic assembly. Wherein, the control part 22, the gas valve 311 and the cylinder 312 are connected through a gas pipe.
[0049] In an optional embodiment, the cylinder 312 comprises a switchable first gas inlet 3121 and a second gas inlet 3122, and the gas inlet and outlet states of the first gas inlet 3121 and the second gas inlet 3122 are opposite, for example, when the first gas inlet 3121 is in the gas inlet state, the second gas inlet 3122 is in the gas outlet state; when the first gas inlet 3121 is in the gas outlet state, the second gas inlet 3122 is in the gas inlet state.
[0050] As Figure 4 and Figure 5 shown, it is the electrical schematic diagram of the hand control roller pressing tool in the embodiment; wherein, the control part 22 adopts a gas control valve, the gas valve 311 adopts a two-position five-way valve, and the control of the second roller 33 is realized by connecting the gas control valve, the two-position five-way valve and the cylinder 312 in sequence. Moreover, two different control modes can be realized by exchanging the first gas inlet (A) 3121 and the second gas inlet (B) 3122.
[0051] Please refer to Figure 6 , it is the use schematic diagram of the hand control roller pressing tool, and the two control modes are as follows:
[0052] (1) long press the handle 4, please refer to Figure 4 , in this state, the first gas outlet 3111 of the gas valve 311 is connected with the first gas inlet 3121 of the cylinder 312; the second gas outlet 3112 of the gas valve 311 is connected with the second gas inlet 3122 of the cylinder 312.
[0053] The clamping gap between the first roller 32 and the second roller 33 is maximum in the initial state; the handle 4 is controlled to be pressed for a long time to control the cylinder 312 to extend, and the extension of the cylinder 312 drives the second roller 33 to move towards the first roller 32, so that the clamping gap is gradually reduced, and the first roller 32 and the second roller 33 press the glass 5 and the clamping strip 6; then, the tool moves along the mounting surface, the third roller 34 and the fourth roller 35 press the big head edge of the glass 5 and roll along the big head edge, and the installation of the clamping strip 6 and the glass 5 is realized. Finally, the handle 4 is released to control the cylinder 312 to retract, so as to release the clamping strip 6 and the glass 5, and the installation work is completed.
[0054] (2) Point the handle 4, please refer to Figure 5 In this state, the first gas outlet 3111 of the gas valve 311 is connected with the second gas inlet 3121 of the cylinder 312; the second gas outlet 3112 of the gas valve 311 is connected with the first gas inlet 3122 of the cylinder 312.
[0055] The clamping gap between the first roller 32 and the second roller 33 is minimum in the initial state; the handle 4 is controlled to be dials to control the cylinder 312 to retract, and the retraction of the cylinder 312 drives the second roller 33 to move away from the first roller 32, that is, the clamping gap is gradually increased; at this time, the positions of the glass 5 and the clamping strip 6 are aligned, the handle 4 is released to control the cylinder 312 to extend, so that the first roller 32 and the second roller 33 press the glass 5 and the clamping strip 6; then, the tool moves along the mounting surface, the third roller 34 and the fourth roller 35 press the big head edge of the glass 5 and roll along the big head edge, and the installation of the clamping strip 6 and the glass 5 is realized. The handle 4 is dials again, so that the cylinder 312 retracts, thereby releasing the clamping strip 6 and the glass 5, and the installation work is completed.
[0056] The above is only an embodiment of the present application, and does not limit the patent range of the present application, and any equivalent transformation or direct or indirect application in related technical fields based on the content of the present application is also included in the patent protection range of the present application.
Claims
1. A hand-controlled rolling tool, characterized in that, The fixed plate, the hand control assembly and the rolling assembly are included. The hand control assembly is arranged on the control surface of the fixed plate. The rolling assembly is arranged on the rolling surface of the fixed plate. The rolling assembly includes an automatic control mechanism. The automatic control mechanism is connected with the signal end of the hand control assembly. The control end of the hand control assembly is used as a control switch to make the automatic control mechanism control the rolling assembly to clamp or release.
2. A hand rolling tool as claimed in claim 1, wherein The handle is further included. The handle is arranged on the control surface of the fixed plate. One end of the handle is connected with the fixed plate, and the other end of the handle is connected with the hand control assembly. The handle is used for holding and switching control of the hand control assembly.
3. A hand rolling tool as claimed in claim 1, wherein The hand control assembly includes a switch operating member and a control member. The switch operating member is connected with the input end of the control member. The output end of the control member is connected with the control end of the automatic control mechanism.
4. A hand rolling tool as claimed in claim 1, wherein The automatic control mechanism includes a first roller and a second roller arranged oppositely in a first direction, and a clamping gap is formed between the first roller and the second roller. The movable end of the automatic control mechanism is connected with the first roller or / and the second roller to increase or decrease the clamping gap.
5. A hand rolling tool as claimed in claim 4, wherein The rolling assembly further includes a third roller and a fourth roller arranged oppositely in a second direction. The second direction is perpendicular to the first direction, and the first roller and the second roller are arranged between the third roller and the fourth roller. The third roller and the fourth roller are used for abutting against the edge of a product.
6. A hand rolling tool as claimed in claim 5, wherein The first roller, the second roller, the third roller and the fourth roller all include resin rollers.
7. A hand rolling tool as claimed in claim 4, wherein The automatic control mechanism includes a gas valve and a gas cylinder. The gas outlet position of the gas valve corresponds to and is connected with the gas inlet position of the gas cylinder. The movable end of the gas cylinder is rotatably connected with the first roller or the second roller. The control end of the gas valve is connected with the signal end of the hand control assembly.
8. A hand rolling tool as claimed in claim 7, wherein, The gas cylinder includes switchable first and second gas inlets. The gas inlet and outlet states of the first gas inlet are opposite to those of the second gas inlet.
9. A hand control mechanism characterized by, The gas cylinder and the gas valve are included. The gas cylinder includes first and second gas inlets. The gas valve includes first and second gas outlets. The first gas outlet of the gas valve is connected with the first gas inlet of the gas cylinder. The second gas outlet of the gas valve is connected with the second gas inlet of the gas cylinder.
10. A hand control mechanism characterized by, The gas cylinder and the gas valve are included. The gas cylinder includes first and second gas inlets. The gas valve includes first and second gas outlets. The first gas outlet of the gas valve is connected with the second gas inlet of the gas cylinder. The second gas outlet of the gas valve is connected with the first gas inlet of the gas cylinder.