Mold structure of shell device of temperature and humidity monitoring system
By introducing sliders and toothed cores into the mold, the problem of difficult convex rib molding is solved, and the low-cost production of the mold is achieved.
Patent Information
- Application Number
- CN202422266452.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-09-18
AI Technical Summary
When making the temperature and humidity monitoring system shell, the convex ribs are difficult to form and the production cost is high.
The front and rear molds are connected by guide column guides, and sliders and toothed die cores are provided on the front and rear molds. The sliders drive the toothed die core movement to achieve one-time overall molding of the convex ribs.
Simple forming of convex ribs is achieved, reducing production costs.
Smart Images

Figure CN223199452U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of mold manufacturing, in particular to a mold structure of a shell device of a temperature and humidity monitoring system. Background Art
[0002] See Figure 1 The product temperature and humidity monitoring system shell device has a convex rib part, so when making the mold, it is necessary to achieve one-piece molding of the convex rib and prevent the damage of the convex rib. In the existing mold structure, the mold molding of the convex rib is relatively difficult, and the production cost of the mold is also high, which increases the production cost. Summary of the Invention
[0003] In view of the above technical problems, the utility model provides a mold structure for a housing device of a temperature and humidity monitoring system, which has a simple structure and effectively reduces production costs.
[0004] The technical solution is as follows: a mold structure for a shell device of a temperature and humidity monitoring system, which includes a front mold and a rear mold, the front mold and the rear mold are connected by guide columns, a front model core is provided on the front mold, a front model cavity is provided on the front model core, the front model cavity is connected to the gate through a runner, a rear model core corresponding to the front model core is provided on the rear mold, and a rear model cavity is provided on the rear model core, characterized in that: sliders are provided on the front mold and the rear mold corresponding to the front model core and the rear model core, and the sliders are connected to the toothed mold core.
[0005] It is further characterized in that an upper module is provided on the front mold core corresponding to the front mold cavity; an inclined guide column is provided on the front mold, and a shovel base corresponding to the inclined guide column is provided on the rear mold, and a guide hole corresponding to the inclined guide column is provided on the shovel base, and the slider is connected to the shovel base; the front mold includes a front mold connecting plate and a front template, the front mold core is provided on the front template, the rear mold includes a rear mold connecting plate and a rear template, and the rear mold core is provided on the rear template; the rear mold connecting plate and the rear template are connected by a bracket to form a cavity, a top plate is provided in the cavity, the top plate is guided and connected by a top plate guide column, the top plate is connected to the rear template by a compression spring, and an ejector pin is provided on the top plate; the ejector pin includes a runner ejector pin and a product ejector pin.
[0006] The utility model adopts the above structure. Since sliders are provided on the front mold and the rear mold corresponding to the front mold core and the rear mold core, and the sliders are connected to the toothed mold core, when the front and rear molds are separated, the sliders drive the toothed mold core to move, thereby realizing the one-time integral forming of the convex ribs. The structure is simple and the production cost is effectively reduced. BRIEF DESCRIPTION OF THE DRAWINGS
[0007] Figure 1 This is a product image of the housing device of the temperature and humidity monitoring system;
[0008] Figure 2 This is the front view of the mold structure of the housing device of the temperature and humidity monitoring system of the utility model;
[0009] Figure 3 yes Figure 2 BB cross-sectional view;
[0010] Figure 4 This is the AA rotated section view of 2. DETAILED DESCRIPTION
[0011] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0012] like Figure 2 、 Figure 3 and Figure 4 A mold structure for a shell device of a temperature and humidity monitoring system includes a front mold 1 and a rear mold 2, which are connected by a guide column 3. A front mold core 4 is provided on the front mold 1, and a front mold cavity 5 is provided on the front mold core 4. The front mold cavity 5 is connected to a gate 7 through a runner 6. A rear mold core 8 corresponding to the front mold core 4 is provided on the rear mold 2, and a rear mold cavity 9 is provided on the rear mold core 8. Sliders 10 are provided on the front mold 1 and the rear mold 2 corresponding to the front mold core 4 and the rear mold core 8. The slider 10 is connected to a toothed mold core 11. When the front and rear molds are separated, the slider drives the toothed mold core to move, thereby realizing the one-time integral molding of the ribs. Its structure is simple and effectively reduces the production cost.
[0013] An upper module 12 is provided on the front mold core 4 corresponding to the front mold cavity 5 to realize structural molding of the upper end of the product.
[0014] An inclined guide column 13 is provided on the front mold 1, and a shovel base 14 corresponding to the inclined guide column 13 is provided on the rear mold 2. A guide hole 15 corresponding to the inclined guide column 13 is provided on the shovel base 14. The slider 10 is connected to the shovel base 14. When the mold is opened, the lateral movement of the slider is realized through the inclined guide column, thereby driving the lateral movement of the toothed mold core to realize the forming of the convex ribs on the product.
[0015] The front mold 1 includes a front mold connecting plate 16 and a front mold plate 17, and the front mold core 4 is set on the front mold plate 17. The rear mold 2 includes a rear mold connecting plate 18 and a rear mold plate 19, and the rear mold core 8 is set on the rear mold plate 19 to realize the installation of the mold core.
[0016] The rear mold connecting plate 18 and the rear mold plate 19 are connected by a bracket 20 to form a cavity 21. A top plate 22 is provided in the cavity 21. The top plate 22 is guided and connected by a top plate guide column 23. The top plate 22 is connected to the rear mold plate 19 through a compression spring 24. An ejector pin 25 is provided on the top plate 22. The ejector pin 25 includes a runner ejector pin 26 and a product ejector pin 27. After the front and rear molds are separated, the product is ejected by the ejector pin, and the compression spring realizes the reset of the mold. At the same time, the runner ejector pin prevents the material on the runner from driving the product to move, thereby damaging the product, and the product ejector pin prevents the product from moving and damaging the product.
[0017] The above schematically describes the present invention and its implementation methods. This description is not restrictive. What is shown in the accompanying drawings is only one of the implementation methods of the present invention. The actual structure is not limited to this. Ordinary technicians in this field can be inspired by it and, without departing from the purpose of this invention, creatively design structural methods and embodiments similar to the technical solution. They should all fall within the scope of protection of the present invention.
Claims
1. A mold structure for a housing device of a temperature and humidity monitoring system, comprising a front mold and a rear mold, the front mold and the rear mold being connected by guide pins, a front mold core being provided on the front mold, a front mold cavity being provided on the front mold core, the front mold cavity being connected to a gate via a runner, and a rear mold core being provided on the rear mold corresponding to the front mold core, a rear mold cavity being provided on the rear mold core, characterized in that: The front mold and the rear mold are provided with sliders corresponding to the front mold core and the rear mold core, the sliders are connected to the toothed mold core, the front mold is provided with inclined guide columns, the rear mold is provided with a shovel base corresponding to the inclined guide columns, the shovel base is provided with guide holes corresponding to the inclined guide columns, and the sliders are connected to the shovel base.
2. The mold structure of the housing device of the temperature and humidity monitoring system according to claim 1, characterized in that: An upper module is provided on the front mold core corresponding to the front mold cavity.
3. The mold structure of the housing device of the temperature and humidity monitoring system according to claim 1, characterized in that: The front mold includes a front mold connecting plate and a front mold plate, and the front mold core is arranged on the front mold plate. The rear mold includes a rear mold connecting plate and a rear mold plate, and the rear mold core is arranged on the rear mold plate.
4. A mold structure for a housing device of a temperature and humidity monitoring system according to any one of claims 1 to 3, characterized in that: The rear mold connecting plate and the rear mold plate are connected by a bracket to form a cavity, a top plate is provided in the cavity, the top plate is guided and connected by a top plate guide column, the top plate is connected to the rear mold plate by a compression spring, and an ejector pin is provided on the top plate.
5. The mold structure of the housing device of the temperature and humidity monitoring system according to claim 4, characterized in that: The ejector pins include flow channel ejector pins and product ejector pins.