Comparison Overview
Arkema High Performance Polymers

Arkema High Performance Polymers
420, Rue d'Estienne d'Orves, Colombes, 92700, FR
Last Update: 07/02/2026
Arkema is a leading company in Specialty Materials driving innovation for a more sustainable world. We offer our customers the most extensive range of high-performance polymers as Rilsan® bio-based polyamide 11, Kynar® fluoropolymer, Pebax® elastomers, Orgasol® powder a...

Sasol
50 Katherine Street, Sandton, 2191, ZA
Last Update: 14/09/2026
Sasol is a global chemicals and energy company. We harness our knowledge and expertise to integrate sophisticated technologies and processes into world-scale operating facilities. We safely and sustainably source, produce and market a range of high-quality products in...
Compliance Ranges Comparison

Arkema High Performance Polymers







Sasol






Benchmark & Cyber Underwriting Signals
Incidents vs Chemical Manufacturing Industry Avg (This Year)
No incidents recorded for Arkema High Performance Polymers in 2026.
Incidents vs Chemical Manufacturing Industry Avg (This Year)
No incidents recorded for Sasol in 2026.
Incident History - Arkema High Performance Polymers (X = Date, Y = Severity)
Arkema High Performance Polymers cyber incidents detection timeline including parent company and subsidiaries.
Incident History - Sasol (X = Date, Y = Severity)
Sasol cyber incidents detection timeline including parent company and subsidiaries.
Notable Incidents

Arkema High Performance Polymers

Sasol
FAQ
Latest Global CVEs
A vulnerability was identified in Totolink A3002MU Hh-B20211125.1046. Affected is the function formWlEncrypt of the file /boafrm/formWlEncrypt. The manipulation of the argument submit-url leads to buffer overflow. It is possible to initiate the attack remotely. The exploit is publicly available and might be used.
A vulnerability was determined in Totolink A3002MU Hh-B20211125.1046. This impacts the function formWlAc of the file /boafrm/formWlAc. Executing a manipulation of the argument submit-url can lead to buffer overflow. The attack may be performed from remote. The exploit has been publicly disclosed and may be utilized.
A flaw was found in the OpenShift console. Unauthenticated access to the `/api/devfile/` and `/api/devfile/samples/` endpoints allows a remote attacker to send crafted devfile payloads. This can lead to Server-Side Request Forgery (SSRF), where the console pod makes requests to internal services and reflects partial responses to the attacker. Additionally, by sending repeated large requests without a specified content length, an attacker can cause unbounded memory growth, leading to a Denial of Service (DoS).
In Vinyl Cache before 9.0,2, workspace buffer overflow vulnerability was found in the .upper() and .lower() string type methods of VCL. This can be used as a remote denial of service (DoS) vector to make the child process segfault or assert, and then restart. Effectively exploiting this vulnerability requires prior knowledge about the VCL in use and the ability to craft a request that contains a string that is long enough to fill the remaining workspace at the call site while staying under the different request size limits (http_req_size, http_req_hdr_len, etc.).
A vulnerability was found in Totolink A3002MU Hh-B20211125.1046. This affects the function formSchedule of the file /boafrm/formSchedule. Performing a manipulation of the argument webpage results in buffer overflow. The attack is possible to be carried out remotely. The exploit has been made public and could be used.