High-rigidity ceramic roller printing mechanism
By setting a second adjusting block and a threaded rod inside the two side walls of the printing host, and combining them with the first adjusting block and the threaded rod, multi-directional offset adjustment of the printing roller is realized, which solves the problem of low production efficiency caused by unidirectional correction of the printing roller in the prior art and improves production efficiency.
Patent Information
- Application Number
- CN202520053970.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2035-01-10
AI Technical Summary
The existing printing roller adjustment mechanism can only perform unidirectional correction, requiring the printing roller to be removed for repositioning, resulting in low production efficiency.
The high-rigidity ceramic roller printing mechanism uses a second adjusting block and a second threaded rod inside the two side walls of the printing host. Combined with the first adjusting block and the first threaded rod, the printing roller can be adjusted in multiple directions in the horizontal and vertical directions.
It enables multi-directional correction of the printing roller, improves production efficiency, and simplifies the adjustment process of the printing roller.
Smart Images

Figure CN223590328U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to printing mechanism technical field relates to a kind of high rigidity ceramic roller printing mechanism. BACKGROUND
[0002] The printing machine contains offset printing unit, which is a commonly used printing equipment. During printing, the printing plate with printing graphics is mounted on the plate roller. The ink is transferred to the printing plate of the plate roller by the inking roller. The printing graphics on the printing plate are transferred to the rubber roller (i.e. transfer roller) by the plate roller. Then, the printing graphics are transferred to the paper by the rubber roller. At present, many printing machines generally use printing rollers for printing. However, the printing rollers may deviate during use. Therefore, it is necessary to correct the deviation of the printing rollers. The printing roller adjusting mechanism is used for correcting the deviation. However, the existing adjusting mechanism can only correct the deviation in one direction. When the deviation in other directions needs to be corrected, the printing roller needs to be removed and then repositioned and installed. The installation process consumes a lot of time and affects the production efficiency. SUMMARY
[0003] The utility model aims at the above problems, provides a kind of high rigidity ceramic roller printing mechanism.
[0004] To achieve the above purpose, the utility model adopts the following technical scheme:
[0005] A kind of high rigidity ceramic roller printing mechanism, including printing host computer, the discharge assembly is installed in the upper of printing host computer, and the control panel is externally arranged on the upper of printing host computer, the second adjusting block is arranged in the two side walls of printing host computer, and the second threaded rod that is perpendicular is inserted into the two side walls of printing host computer and the second adjusting block, the second threaded rod is equipped with the second knob, the first adjusting block is arranged in the inner side of second adjusting block, and the first threaded rod that is horizontal is inserted into the two side walls of printing host computer and the first adjusting block, the first threaded rod is equipped with the first knob, the rotating column is arranged between the first adjusting block, and the printing roller is arranged on the rotating column.
[0006] In the high rigidity ceramic roller printing mechanism, the inward opening part is formed in the two side walls of printing host computer, and the opening of the inner side of the two inward opening parts is relative to the middle of printing host computer, the longitudinal slide part is formed on the inner wall of inward opening part, and the second adjusting block is inserted into the longitudinal slide part, and there is a distance between the side surface of second adjusting block and the inner wall of inward opening part.
[0007] In the high rigidity ceramic roller printing mechanism, the second threaded rod is inserted into the rotation connection of the two side walls of the printing host, and the second threaded rod is inserted into the rotation connection of the two side walls of the printing host.
[0008] In the high rigidity ceramic roller printing mechanism, the second threaded rod is inserted into the rotation connection of the two side walls of the printing host, and the second threaded rod is inserted into the rotation connection of the two side walls of the printing host.
[0009] In the high rigidity ceramic roller printing mechanism, the second threaded rod is inserted into the rotation connection of the two side walls of the printing host, and the second threaded rod is inserted into the rotation connection of the two side walls of the printing host.
[0010] In the high rigidity ceramic roller printing mechanism, the second threaded rod is inserted into the rotation connection of the two side walls of the printing host, and the second threaded rod is inserted into the rotation connection of the two side walls of the printing host.
[0011] In the high rigidity ceramic roller printing mechanism, the second threaded rod is inserted into the rotation connection of the two side walls of the printing host, and the second threaded rod is inserted into the rotation connection of the two side walls of the printing host.
[0012] In the high rigidity ceramic roller printing mechanism, the second threaded rod is inserted into the rotation connection of the two side walls of the printing host, and the second threaded rod is inserted into the rotation connection of the two side walls of the printing host.
[0013] In the high rigidity ceramic roller printing mechanism, the second threaded rod is inserted into the rotation connection of the two side walls of the printing host, and the second threaded rod is inserted into the rotation connection of the two side walls of the printing host.
[0014] In the high rigidity ceramic roller printing mechanism, the second threaded rod is inserted into the rotation connection of the two side walls of the printing host, and the second threaded rod is inserted into the rotation connection of the two side walls of the printing host.
[0015] Compared with the prior art, the high rigidity ceramic roller printing mechanism has the advantages of:
[0016] The utility model discloses a second adjusting block is equipped with in the both sides wall of printing host computer, and second threaded rod is inserted into printing host computer side wall and second adjusting block simultaneously, and the first adjusting block is inserted into the transverse slide section of the other side of second adjusting block, and the first adjusting block is inserted into the first threaded rod in the inward opening portion, and the connecting rotary column and printing roller between two first adjusting blocks are simultaneously connected, and the horizontal and vertical direction movement of printing roller is carried out respectively by first adjusting block and second adjusting block, thereby realized the offset adjustment of two directions, and the multidirectionality of printing roller deviation correction is increased, and the production is facilitated.
[0017] Other advantages, objects and features of the utility model will be embodied partly through the following description, and the person skilled in the art will also understand partly through the research and practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the whole schematic diagram of the utility model;
[0019] Figure 2 It is the enlarged schematic diagram of A of the utility model;
[0020] Figure 3 It is the whole overhead schematic diagram of the utility model;
[0021] Figure 4 It is the enlarged schematic diagram of B of the utility model;
[0022] Figure 5 It is the whole side view schematic diagram of the utility model;
[0023] Figure 6 It is the internal structure side view schematic diagram of the utility model.
[0024] In the drawing: 1, printing host computer;101, inward opening portion;102, longitudinal slide section;103, outward opening portion;2, discharge assembly;3, control panel;4, printing roller;5, rotary column;6, first adjusting block;7, first threaded rod;8, second adjusting block;801, transverse slide section;9, second threaded rod;10, first knob;11, second knob. DETAILED DESCRIPTION
[0025] The utility model will be further explained in combination with the drawings.
[0026] As Figures 1-6As shown, a kind of high-rigidity ceramic roller printing mechanism, including printing host 1, discharge assembly 2 is installed in the top of printing host 1, and control panel 3 is equipped on the side of the top of printing host 1, second adjusting block 8 is equipped in the two side walls of printing host 1, and second threaded rod 9 is inserted into the second adjusting block 8 in the two side walls of printing host 1, and second knob 11 is equipped on the top of second threaded rod 9, first adjusting block 6 is equipped in the inner side of second adjusting block 8, and first threaded rod 7 is inserted into the two side walls of printing host 1 in the first adjusting block 6, and first knob 10 is equipped on the one end of first threaded rod 7, rotating column 5 is equipped between the first adjusting block 6, and printing roller 4 is equipped on the outer sleeve of rotating column 5, and printing roller 4 is placed in the middle of printing host 1.
[0027] By being equipped with inward opening portion 101 in the two side walls of printing host 1, and the inner side of the two inward opening portions 101 is opened relative to the middle of printing host 1, longitudinal slide portion 102 is opened on the inner wall of inward opening portion 101, and second adjusting block 8 is inserted into longitudinal slide portion 102, and there is a distance between the side of second adjusting block 8 and the inner wall of inward opening portion 101.
[0028] Further, second threaded rod 9 is inserted into the two side walls of printing host 1, and second threaded rod 9 is inserted into the two side walls of printing host 1, and second knob 11 is fixedly connected to the top of second threaded rod 9, and second threaded rod 9 is inserted into the bottom of inward opening portion 101, and there is a distance between second threaded rod 9 and longitudinal slide portion 102.
[0029] Further, second threaded rod 9 passes through rotatingly connected second adjusting block 8 in the middle, and second adjusting block 8 is provided with internal thread, and transverse slide portion 801 is opened on the other side of second adjusting block 8, and the two transverse slide portions 801 are relative to the middle of printing host 1.
[0030] Inward opening portion 101 is opened on the two side walls of printing host 1, and second threaded rod 9 and second adjusting block 8 are equipped in inward opening portion 101, and when second knob 11 is rotated on the top of second threaded rod 9, second adjusting block 8 can move up and down in longitudinal slide portion 102 depending on second threaded rod 9.
[0031] By being inserted into slidingly connected first adjusting block 6 on one side of transverse slide portion 801, and the other side of first adjusting block 6 is flush with the inner side of the side wall of printing host 1, and there is a distance between the two ends of first adjusting block 6 and the two side walls of inward opening portion 101.
[0032] Further, outward opening portion 103 is opened in the two side walls of printing host 1, and the two outward opening portions 103 are opened to the outside, and there is a distance between the two outward opening portions 103 and the inner side of inward opening portion 101.
[0033] Further, the outward opening part 103 and the inward opening part 101 are both transversely inserted with the first threaded rod 7, and one end of the first threaded rod 7 is arranged in the outward opening part 103, while the other end of the first threaded rod 7 is inserted into the inner side wall of the inward opening part 101.
[0034] Further, the middle part of the first threaded rod 7 is inserted into the middle of the first adjusting block 6, and an internal thread is arranged in the first adjusting block 6, while the first threaded rod 7 and the second threaded rod 9 are cross-shaped.
[0035] Further, one end of the first threaded rod 7 is fixedly connected with the first knob 10, and the first knob 10 is arranged in the outward opening part 103.
[0036] The first adjusting block 6 is clamped on one side of the second adjusting block 8, and the first adjusting block 6 and the inward opening part 101 are both inserted with the first threaded rod 7, so that when the first knob 10 is rotated, the first adjusting block 6 can move left and right in the horizontal direction of the second adjusting block 8 depending on the first threaded rod 7.
[0037] Further, the other side of the middle part of the first adjusting block 6 is fixedly connected with both ends of the rotating column 5, and the rotating column 5 is rotatably sleeved with the printing roller 4.
[0038] After the rotating column 5 and the printing roller 4 are installed between the first adjusting block 6, the first threaded rod 7 can adjust the horizontal position of the printing roller 4, and the second threaded rod 9 can adjust the vertical position of the printing roller 4.
[0039] Working principle:
[0040] The second adjusting block 8 is arranged in the inward opening part 101 arranged in the side wall of the printing host 1, and the second adjusting block 8 is clamped in the longitudinal slide part 102 arranged in the inward opening part 101, while the second threaded rod 9 is vertically inserted into the side wall of the printing host 1, and the second threaded rod 9 is inserted into the inward opening part 101 and the second adjusting block 8 at the same time, so that when the second knob 11 above the second threaded rod 9 is rotated, the second adjusting block 8 moves up and down in the longitudinal slide part 102, thereby driving the structure on the other side of the second adjusting block 8, the first adjusting block 6 is clamped in the transverse slide part 801 arranged on the other side of the second adjusting block 8, and the first adjusting block 6 is transversely inserted with the first threaded rod 7 in the inward opening part 101, so that when the first knob 10 at one end of the first threaded rod 7 is rotated, the first adjusting block 6 moves left and right in the transverse slide part 801, since the rotating column 5 and the printing roller 4 are connected between the two first adjusting blocks 6, and the first adjusting block 6 is clamped in the second adjusting block 8, and the movement tracks of the first adjusting block 6 and the second adjusting block 8 are horizontal and vertical respectively, so that the rotating column 5 and the printing roller 4 can adjust the horizontal offset according to the first adjusting block 6, and the rotating column 5 and the printing roller 4 can adjust the vertical offset according to the second adjusting block 8.
[0041] In addition, the printing host 1 side wall is provided with an outward opening part 103, and the first knob 10 connected with one end of the first threaded rod 7 is placed in the outward opening part 103. When adjusting, the worker can turn the first knob 10 by hand in the outward opening part 103.
[0042] The specific embodiments described herein are merely illustrative of the spirit of the present application. Those skilled in the art to which the present application belongs can make various modifications or supplements to the described specific embodiments or use similar ways to replace, but will not deviate from the spirit of the present application.
[0043] Although the terms such as 1, printing host; 101, inward opening part; 102, longitudinal slide part; 103, outward opening part; 2, discharging assembly; 3, control panel; 4, printing roller; 5, rotating column; 6, first adjusting block; 7, first threaded rod; 8, second adjusting block; 801, transverse slide part; 9, second threaded rod; 10, first knob; 11, second knob are used more in this paper, but the possibility of using other terms is not excluded. Using these terms is only to more conveniently describe and explain the essence of the present application, and it is contrary to the spirit of the present application to interpret them as any kind of additional limitation.
Claims
1. A high-rigidity ceramic roller printing mechanism, comprising a printing main machine (1), a discharging assembly (2) is installed inside above the printing main machine (1), and a control panel (3) is arranged outside above one side of the printing main machine (1), characterized in that: The second adjusting block (8) is arranged in the two side walls of the printing host (1), the vertical second threaded rod (9) is inserted into the second adjusting block (8) and the two side walls of the printing host (1), the second knob (11) is arranged above the second threaded rod (9), the first adjusting block (6) is arranged in the second adjusting block (8), the horizontal first threaded rod (7) is inserted into the first adjusting block (6) and the two side walls of the printing host (1), the first knob (10) is arranged at one end of the first threaded rod (7), the rotating column (5) is arranged between the first adjusting blocks (6), the printing roller (4) is arranged on the rotating column (5), and the printing roller (4) is arranged in the middle of the printing host (1).
2. The high rigidity ceramic roller printing mechanism according to claim 1, characterized by: The inward opening part (101) is arranged in the two side walls of the printing host (1), the two inward opening parts (101) are arranged on the inner side of the printing host (1), the longitudinal sliding groove part (102) is arranged on the inner wall of the inward opening part (101), the second adjusting block (8) is slidably connected to one side of the longitudinal sliding groove part (102), and the second adjusting block (8) is arranged at a distance from the inner wall of the inward opening part (101).
3. The high rigidity ceramic roller printing mechanism according to claim 2, characterized by: The rotating connection second threaded rod (9) is inserted into the two side walls of the printing host (1), the second threaded rod (9) penetrates out of the top of the two side walls of the printing host (1), the second knob (11) is fixedly connected to the top of the second threaded rod (9), the rotating connection second threaded rod (9) is inserted into the bottom of the inward opening part (101), and the second threaded rod (9) is spaced from the longitudinal sliding groove part (102).
4. The high rigidity ceramic roller printing mechanism according to claim 3, characterized by: The second threaded rod (9) penetrates through the middle of the rotating connection second adjusting block (8), the second adjusting block (8) is internally threaded, the other side of the second adjusting block (8) is provided with a transverse sliding groove part (801), and the two transverse sliding groove parts (801) are arranged on the inner side of the printing host (1).
5. The high rigidity ceramic roller printing mechanism according to claim 4, characterized by: The first adjusting block (6) is slidably connected to one side of the transverse sliding groove part (801), and the other side of the first adjusting block (6) is flush with the inner side of the side wall of the printing host (1), and the two ends of the first adjusting block (6) are spaced from the two side walls of the inward opening part (101).
6. The high rigidity ceramic roller printing mechanism according to claim 5, characterized by: The outward opening part (103) is arranged in the two side walls of the printing host (1), the two outward opening parts (103) are arranged to be open to the outside, and the outward opening part (103) is arranged at a distance between the inner sides of the inward opening parts (101).
7. The high rigidity ceramic roller printing mechanism according to claim 6, characterized by: The first threaded rod (7) is transversely inserted into the inward opening part (101) and the outward opening part (103), one end of the first threaded rod (7) is arranged in the outward opening part (103), and the other end of the first threaded rod (7) is inserted into the inner side wall of the inward opening part (101).
8. The high rigidity ceramic roller printing mechanism according to claim 1, characterized by: The first threaded rod (7) is inserted into the middle of the rotating connection first adjusting block (6), the first adjusting block (6) is internally threaded, and the first threaded rod (7) and the second threaded rod (9) are in a cross shape.
9. The high rigidity ceramic roller printing mechanism according to claim 8, characterized by: The first threaded rod (7) is fixedly connected with a first knob (10) at one end, and the first knob (10) is arranged in the outward opening part (103).
10. The high rigidity ceramic roller printing mechanism according to claim 9, characterized by: The first adjusting block (6) is fixedly connected with both ends of a rotating column (5) at the other side and the middle part, and the rotating column (5) is externally sleeved with a rotatingly connected printing roller (4).